Chemical Formula: C47H86O5

Chemical Formula C47H86O5

Found 123 metabolite its formula value is C47H86O5

DG(20:2(11Z,14Z)/24:1(15Z)/0:0)

(2S)-1-hydroxy-3-[(11Z,14Z)-icosa-11,14-dienoyloxy]propan-2-yl (15Z)-tetracos-15-enoate

C47H86O5 (730.6474906)


DG(20:2(11Z,14Z)/24:1(15Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(20:2(11Z,14Z)/24:1(15Z)/0:0), in particular, consists of one chain of eicosadienoic acid at the C-1 position and one chain of nervonic acid at the C-2 position. The eicosadienoic acid moiety is derived from fish oils and liver, while the nervonic acid moiety is derived from fish oils. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections. Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-2 position. DG(20:2(11Z,14Z)/24:1(15Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(20:2(11Z,14Z)/24:1(15Z)/0:0), in particular, consists of one chain of eicosadienoic acid at the C-1 position and one chain of nervonic acid at the C-2 position. The eicosadienoic acid moiety is derived from fish oils and liver, while the nervonic acid moiety is derived from fish oils. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.

   

DG(20:3(5Z,8Z,11Z)/24:0/0:0)

(2S)-1-hydroxy-3-[(5Z,8Z,11Z)-icosa-5,8,11-trienoyloxy]propan-2-yl tetracosanoate

C47H86O5 (730.6474906)


DG(20:3(5Z,8Z,11Z)/24:0/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(20:3(5Z,8Z,11Z)/24:0/0:0), in particular, consists of one chain of mead acid at the C-1 position and one chain of lignoceric acid at the C-2 position. The mead acid moiety is derived from fish oils, liver and kidney, while the lignoceric acid moiety is derived from groundnut oil. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections. Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-2 position. DG(20:3(5Z,8Z,11Z)/24:0/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(20:3(5Z,8Z,11Z)/24:0/0:0), in particular, consists of one chain of mead acid at the C-1 position and one chain of lignoceric acid at the C-2 position. The mead acid moiety is derived from fish oils, liver and kidney, while the lignoceric acid moiety is derived from groundnut oil. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.

   

DG(20:3(8Z,11Z,14Z)/24:0/0:0)

(2S)-1-hydroxy-3-[(8Z,11Z,14Z)-icosa-8,11,14-trienoyloxy]propan-2-yl tetracosanoate

C47H86O5 (730.6474906)


DG(20:3(8Z,11Z,14Z)/24:0/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(20:3(8Z,11Z,14Z)/24:0/0:0), in particular, consists of one chain of homo-g-linolenic acid at the C-1 position and one chain of lignoceric acid at the C-2 position. The homo-g-linolenic acid moiety is derived from fish oils, liver and kidney, while the lignoceric acid moiety is derived from groundnut oil. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections. Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-2 position.

   

DG(22:1(13Z)/22:2(13Z,16Z)/0:0)

(2S)-1-[(13Z)-docos-13-enoyloxy]-3-hydroxypropan-2-yl (13Z,16Z)-docosa-13,16-dienoate

C47H86O5 (730.6474906)


DG(22:1(13Z)/22:2(13Z,16Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(22:1(13Z)/22:2(13Z,16Z)/0:0), in particular, consists of one chain of erucic acid at the C-1 position and one chain of docosadienoic acid at the C-2 position. The erucic acid moiety is derived from seed oils and avocados, while the docosadienoic acid moiety is derived from animal fats. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections. Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-2 position. DG(22:1(13Z)/22:2(13Z,16Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(22:1(13Z)/22:2(13Z,16Z)/0:0), in particular, consists of one chain of erucic acid at the C-1 position and one chain of docosadienoic acid at the C-2 position. The erucic acid moiety is derived from seed oils and avocados, while the docosadienoic acid moiety is derived from animal fats. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.

   

DG(22:2(13Z,16Z)/22:1(13Z)/0:0)

(2S)-2-[(13Z)-docos-13-enoyloxy]-3-hydroxypropyl (13Z,16Z)-docosa-13,16-dienoate

C47H86O5 (730.6474906)


DG(22:2(13Z,16Z)/22:1(13Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(22:2(13Z,16Z)/22:1(13Z)/0:0), in particular, consists of one chain of docosadienoic acid at the C-1 position and one chain of erucic acid at the C-2 position. The docosadienoic acid moiety is derived from animal fats, while the erucic acid moiety is derived from seed oils and avocados. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections. Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-2 position. DG(22:2(13Z,16Z)/22:1(13Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(22:2(13Z,16Z)/22:1(13Z)/0:0), in particular, consists of one chain of docosadienoic acid at the C-1 position and one chain of erucic acid at the C-2 position. The docosadienoic acid moiety is derived from animal fats, while the erucic acid moiety is derived from seed oils and avocados. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.

   

DG(24:0/20:3(5Z,8Z,11Z)/0:0)

(2S)-3-hydroxy-2-[(5Z,8Z,11Z)-icosa-5,8,11-trienoyloxy]propyl tetracosanoate

C47H86O5 (730.6474906)


DG(24:0/20:3(5Z,8Z,11Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(24:0/20:3(5Z,8Z,11Z)/0:0), in particular, consists of one chain of lignoceric acid at the C-1 position and one chain of mead acid at the C-2 position. The lignoceric acid moiety is derived from groundnut oil, while the mead acid moiety is derived from fish oils, liver and kidney. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections. Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-2 position. DG(24:0/20:3(5Z,8Z,11Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(24:0/20:3(5Z,8Z,11Z)/0:0), in particular, consists of one chain of lignoceric acid at the C-1 position and one chain of mead acid at the C-2 position. The lignoceric acid moiety is derived from groundnut oil, while the mead acid moiety is derived from fish oils, liver and kidney. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.

   

DG(24:0/20:3(8Z,11Z,14Z)/0:0)

(2S)-3-hydroxy-2-[(8Z,11Z,14Z)-icosa-8,11,14-trienoyloxy]propyl tetracosanoate

C47H86O5 (730.6474906)


DG(24:0/20:3(8Z,11Z,14Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(24:0/20:3(8Z,11Z,14Z)/0:0), in particular, consists of one chain of lignoceric acid at the C-1 position and one chain of homo-g-linolenic acid at the C-2 position. The lignoceric acid moiety is derived from groundnut oil, while the homo-g-linolenic acid moiety is derived from fish oils, liver and kidney. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections. Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-2 position.

   

DG(24:1(15Z)/20:2(11Z,14Z)/0:0)

(2S)-3-hydroxy-2-[(11Z,14Z)-icosa-11,14-dienoyloxy]propyl (15Z)-tetracos-15-enoate

C47H86O5 (730.6474906)


DG(24:1(15Z)/20:2(11Z,14Z)/0:0) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at both the C-1 and C-2 positions. DG(24:1(15Z)/20:2(11Z,14Z)/0:0), in particular, consists of one chain of nervonic acid at the C-1 position and one chain of eicosadienoic acid at the C-2 position. The nervonic acid moiety is derived from fish oils, while the eicosadienoic acid moiety is derived from fish oils and liver. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections. Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-2 position.

   

DG(24:0/0:0/20:3n9)

(2R)-2-Hydroxy-3-[(5Z,8Z,11Z)-icosa-5,8,11-trienoyloxy]propyl tetracosanoic acid

C47H86O5 (730.6474906)


DG(24:0/0:0/20:3n9) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at the C-1, C-2, or C-3 positions. DG(24:0/0:0/20:3n9), in particular, consists of one chain of lignoceric acid at the C-1 position and one chain of mead acid at the C-3 position. The lignoceric acid moiety is derived from groundnut oil, while the mead acid moiety is derived from fish oils, liver and kidney. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.
Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.
Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-3 position.

   

DG(24:0/0:0/20:3n6)

2-hydroxy-3-[(8Z,11Z,14Z)-icosa-8,11,14-trienoyloxy]propyl tetracosanoate

C47H86O5 (730.6474906)


DG(24:0/0:0/20:3n6) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at the C-1, C-2, or C-3 positions. DG(24:0/0:0/20:3n6), in particular, consists of one chain of lignoceric acid at the C-1 position and one chain of homo-g-linolenic acid at the C-3 position. The lignoceric acid moiety is derived from groundnut oil, while the homo-g-linolenic acid moiety is derived from fish oils, liver and kidney. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.
Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.
Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-3 position.

   

DG(22:1n9/0:0/22:2n6)

(2R)-3-[(13Z)-Docos-13-enoyloxy]-2-hydroxypropyl (13Z,16Z)-docosa-13,16-dienoic acid

C47H86O5 (730.6474906)


DG(22:1n9/0:0/22:2n6) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at the C-1, C-2, or C-3 positions. DG(22:1n9/0:0/22:2n6), in particular, consists of one chain of erucic acid at the C-1 position and one chain of docosadienoic acid at the C-3 position. The erucic acid moiety is derived from seed oils and avocados, while the docosadienoic acid moiety is derived from animal fats. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.
Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.
Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-3 position.

   

DG(24:1n9/0:0/20:2n6)

(2R)-2-Hydroxy-3-[(11Z,14Z)-icosa-11,14-dienoyloxy]propyl (15Z)-tetracos-15-enoic acid

C47H86O5 (730.6474906)


DG(24:1n9/0:0/20:2n6) is a diglyceride, or a diacylglycerol (DAG). It is a glyceride consisting of two fatty acid chains covalently bonded to a glycerol molecule through ester linkages. Diacylglycerols can have many different combinations of fatty acids attached at the C-1, C-2, or C-3 positions. DG(24:1n9/0:0/20:2n6), in particular, consists of one chain of nervonic acid at the C-1 position and one chain of eicosadienoic acid at the C-3 position. The nervonic acid moiety is derived from fish oils, while the eicosadienoic acid moiety is derived from fish oils and liver. Mono- and diacylglycerols are common food additives used to blend together certain ingredients, such as oil and water, which would not otherwise blend well. Dacylglycerols are often found in bakery products, beverages, ice cream, chewing gum, shortening, whipped toppings, margarine, and confections.
Synthesis of diacylglycerol begins with glycerol-3-phosphate, which is derived primarily from dihydroxyacetone phosphate, a product of glycolysis (usually in the cytoplasm of liver or adipose tissue cells). Glycerol-3-phosphate is first acylated with acyl-coenzyme A (acyl-CoA) to form lysophosphatidic acid, which is then acylated with another molecule of acyl-CoA to yield phosphatidic acid. Phosphatidic acid is then de-phosphorylated to form diacylglycerol.
Diacylglycerols are precursors to triacylglycerols (triglyceride), which are formed by the addition of a third fatty acid to the diacylglycerol under the catalysis of diglyceride acyltransferase. Since diacylglycerols are synthesized via phosphatidic acid, they will usually contain a saturated fatty acid at the C-1 position on the glycerol moiety and an unsaturated fatty acid at the C-3 position.

   

DG(22:0/22:3/0:0)[iso2]

1-docosanoyl-2-(10Z,13Z,16Z-docosatrienoyl)-sn-glycerol

C47H86O5 (730.6474906)


   

DG(22:1/22:2/0:0)[iso2]

1-(13Z-docosenoyl)-2-(13Z,16Z-docosadienoyl)-sn-glycerol

C47H86O5 (730.6474906)


   

Diglyceride

1-lignoceroyl-2-homo-gamma-linolenoyl-sn-glycerol

C47H86O5 (730.6474906)


   

DG 44:3

1-(13Z-docosenoyl)-2-(13Z,16Z-docosadienoyl)-sn-glycerol

C47H86O5 (730.6474906)


   

1-Nervonoyl-3-eicosadienoyl-sn-glycerol

1-Nervonoyl-3-eicosadienoyl-sn-glycerol

C47H86O5 (730.6474906)


   

(1-hydroxy-3-octanoyloxypropan-2-yl) (22Z,25Z,28Z)-hexatriaconta-22,25,28-trienoate

(1-hydroxy-3-octanoyloxypropan-2-yl) (22Z,25Z,28Z)-hexatriaconta-22,25,28-trienoate

C47H86O5 (730.6474906)


   

(1-hydroxy-3-tetradecanoyloxypropan-2-yl) (16Z,19Z,22Z)-triaconta-16,19,22-trienoate

(1-hydroxy-3-tetradecanoyloxypropan-2-yl) (16Z,19Z,22Z)-triaconta-16,19,22-trienoate

C47H86O5 (730.6474906)


   

(1-decanoyloxy-3-hydroxypropan-2-yl) (20Z,23Z,26Z)-tetratriaconta-20,23,26-trienoate

(1-decanoyloxy-3-hydroxypropan-2-yl) (20Z,23Z,26Z)-tetratriaconta-20,23,26-trienoate

C47H86O5 (730.6474906)


   

[2-[(9Z,12Z)-hexadeca-9,12-dienoyl]oxy-3-hydroxypropyl] (Z)-octacos-17-enoate

[2-[(9Z,12Z)-hexadeca-9,12-dienoyl]oxy-3-hydroxypropyl] (Z)-octacos-17-enoate

C47H86O5 (730.6474906)


   

(1-hydroxy-3-icosanoyloxypropan-2-yl) (10Z,13Z,16Z)-tetracosa-10,13,16-trienoate

(1-hydroxy-3-icosanoyloxypropan-2-yl) (10Z,13Z,16Z)-tetracosa-10,13,16-trienoate

C47H86O5 (730.6474906)


   

(1-dodecanoyloxy-3-hydroxypropan-2-yl) (18Z,21Z,24Z)-dotriaconta-18,21,24-trienoate

(1-dodecanoyloxy-3-hydroxypropan-2-yl) (18Z,21Z,24Z)-dotriaconta-18,21,24-trienoate

C47H86O5 (730.6474906)


   

[1-[(Z)-hexadec-9-enoyl]oxy-3-hydroxypropan-2-yl] (17Z,20Z)-octacosa-17,20-dienoate

[1-[(Z)-hexadec-9-enoyl]oxy-3-hydroxypropan-2-yl] (17Z,20Z)-octacosa-17,20-dienoate

C47H86O5 (730.6474906)


   

[2-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoyl]oxy-3-hydroxypropyl] octacosanoate

[2-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoyl]oxy-3-hydroxypropyl] octacosanoate

C47H86O5 (730.6474906)


   

(1-hexadecanoyloxy-3-hydroxypropan-2-yl) (14Z,17Z,20Z)-octacosa-14,17,20-trienoate

(1-hexadecanoyloxy-3-hydroxypropan-2-yl) (14Z,17Z,20Z)-octacosa-14,17,20-trienoate

C47H86O5 (730.6474906)


   

[1-hydroxy-3-[(Z)-tetradec-9-enoyl]oxypropan-2-yl] (19Z,22Z)-triaconta-19,22-dienoate

[1-hydroxy-3-[(Z)-tetradec-9-enoyl]oxypropan-2-yl] (19Z,22Z)-triaconta-19,22-dienoate

C47H86O5 (730.6474906)


   

(1-hydroxy-3-octadecanoyloxypropan-2-yl) (12Z,15Z,18Z)-hexacosa-12,15,18-trienoate

(1-hydroxy-3-octadecanoyloxypropan-2-yl) (12Z,15Z,18Z)-hexacosa-12,15,18-trienoate

C47H86O5 (730.6474906)


   

[3-[(Z)-hexadec-9-enoxy]-2-octanoyloxypropyl] (11Z,14Z)-icosa-11,14-dienoate

[3-[(Z)-hexadec-9-enoxy]-2-octanoyloxypropyl] (11Z,14Z)-icosa-11,14-dienoate

C47H86O5 (730.6474906)


   

[3-octoxy-2-[(Z)-tetradec-9-enoyl]oxypropyl] (13Z,16Z)-docosa-13,16-dienoate

[3-octoxy-2-[(Z)-tetradec-9-enoyl]oxypropyl] (13Z,16Z)-docosa-13,16-dienoate

C47H86O5 (730.6474906)


   

[1-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoyl]oxy-3-octoxypropan-2-yl] octadecanoate

[1-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoyl]oxy-3-octoxypropan-2-yl] octadecanoate

C47H86O5 (730.6474906)


   

(2-hexadecanoyloxy-3-octoxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

(2-hexadecanoyloxy-3-octoxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

C47H86O5 (730.6474906)


   

[3-[(13Z,16Z)-docosa-13,16-dienoxy]-2-octanoyloxypropyl] (Z)-tetradec-9-enoate

[3-[(13Z,16Z)-docosa-13,16-dienoxy]-2-octanoyloxypropyl] (Z)-tetradec-9-enoate

C47H86O5 (730.6474906)


   

[3-[(11Z,14Z,17Z)-icosa-11,14,17-trienoxy]-2-octanoyloxypropyl] hexadecanoate

[3-[(11Z,14Z,17Z)-icosa-11,14,17-trienoxy]-2-octanoyloxypropyl] hexadecanoate

C47H86O5 (730.6474906)


   

[3-[(Z)-octadec-9-enoxy]-2-octanoyloxypropyl] (9Z,12Z)-octadeca-9,12-dienoate

[3-[(Z)-octadec-9-enoxy]-2-octanoyloxypropyl] (9Z,12Z)-octadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

[1-[(9Z,12Z)-octadeca-9,12-dienoyl]oxy-3-octoxypropan-2-yl] (Z)-octadec-9-enoate

[1-[(9Z,12Z)-octadeca-9,12-dienoyl]oxy-3-octoxypropan-2-yl] (Z)-octadec-9-enoate

C47H86O5 (730.6474906)


   

[3-[(11Z,14Z)-icosa-11,14-dienoxy]-2-octanoyloxypropyl] (Z)-hexadec-9-enoate

[3-[(11Z,14Z)-icosa-11,14-dienoxy]-2-octanoyloxypropyl] (Z)-hexadec-9-enoate

C47H86O5 (730.6474906)


   

(3-octoxy-2-tetradecanoyloxypropyl) (10Z,13Z,16Z)-docosa-10,13,16-trienoate

(3-octoxy-2-tetradecanoyloxypropyl) (10Z,13Z,16Z)-docosa-10,13,16-trienoate

C47H86O5 (730.6474906)


   

(3-icosoxy-2-octanoyloxypropyl) (7Z,10Z,13Z)-hexadeca-7,10,13-trienoate

(3-icosoxy-2-octanoyloxypropyl) (7Z,10Z,13Z)-hexadeca-7,10,13-trienoate

C47H86O5 (730.6474906)


   

[3-[(10Z,13Z,16Z)-docosa-10,13,16-trienoxy]-2-octanoyloxypropyl] tetradecanoate

[3-[(10Z,13Z,16Z)-docosa-10,13,16-trienoxy]-2-octanoyloxypropyl] tetradecanoate

C47H86O5 (730.6474906)


   

[3-[(Z)-icos-11-enoxy]-2-octanoyloxypropyl] (9Z,12Z)-hexadeca-9,12-dienoate

[3-[(Z)-icos-11-enoxy]-2-octanoyloxypropyl] (9Z,12Z)-hexadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

[2-[(9Z,12Z)-hexadeca-9,12-dienoyl]oxy-3-octoxypropyl] (Z)-icos-11-enoate

[2-[(9Z,12Z)-hexadeca-9,12-dienoyl]oxy-3-octoxypropyl] (Z)-icos-11-enoate

C47H86O5 (730.6474906)


   

(2-octanoyloxy-3-tetradecoxypropyl) (10Z,13Z,16Z)-docosa-10,13,16-trienoate

(2-octanoyloxy-3-tetradecoxypropyl) (10Z,13Z,16Z)-docosa-10,13,16-trienoate

C47H86O5 (730.6474906)


   

[3-[(9Z,12Z)-hexadeca-9,12-dienoxy]-2-octanoyloxypropyl] (Z)-icos-11-enoate

[3-[(9Z,12Z)-hexadeca-9,12-dienoxy]-2-octanoyloxypropyl] (Z)-icos-11-enoate

C47H86O5 (730.6474906)


   

[2-[(Z)-hexadec-9-enoyl]oxy-3-octoxypropyl] (11Z,14Z)-icosa-11,14-dienoate

[2-[(Z)-hexadec-9-enoyl]oxy-3-octoxypropyl] (11Z,14Z)-icosa-11,14-dienoate

C47H86O5 (730.6474906)


   

[3-[(9Z,12Z)-octadeca-9,12-dienoxy]-2-octanoyloxypropyl] (Z)-octadec-9-enoate

[3-[(9Z,12Z)-octadeca-9,12-dienoxy]-2-octanoyloxypropyl] (Z)-octadec-9-enoate

C47H86O5 (730.6474906)


   

[2-octanoyloxy-3-[(Z)-tetradec-9-enoxy]propyl] (13Z,16Z)-docosa-13,16-dienoate

[2-octanoyloxy-3-[(Z)-tetradec-9-enoxy]propyl] (13Z,16Z)-docosa-13,16-dienoate

C47H86O5 (730.6474906)


   

[3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoxy]-2-octanoyloxypropyl] icosanoate

[3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoxy]-2-octanoyloxypropyl] icosanoate

C47H86O5 (730.6474906)


   

[2-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoyl]oxy-3-octoxypropyl] icosanoate

[2-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoyl]oxy-3-octoxypropyl] icosanoate

C47H86O5 (730.6474906)


   

(3-octadecoxy-2-octanoyloxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

(3-octadecoxy-2-octanoyloxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

C47H86O5 (730.6474906)


   

(3-hexadecoxy-2-octanoyloxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

(3-hexadecoxy-2-octanoyloxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

C47H86O5 (730.6474906)


   

[3-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoxy]-2-octanoyloxypropyl] octadecanoate

[3-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoxy]-2-octanoyloxypropyl] octadecanoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(10Z,13Z,16Z)-docosa-10,13,16-trienoxy]propyl] dodecanoate

[2-decanoyloxy-3-[(10Z,13Z,16Z)-docosa-10,13,16-trienoxy]propyl] dodecanoate

C47H86O5 (730.6474906)


   

[3-[(Z)-tetradec-9-enoxy]-2-[(Z)-tetradec-9-enoyl]oxypropyl] (Z)-hexadec-9-enoate

[3-[(Z)-tetradec-9-enoxy]-2-[(Z)-tetradec-9-enoyl]oxypropyl] (Z)-hexadec-9-enoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(11Z,14Z)-icosa-11,14-dienoxy]propyl] (Z)-tetradec-9-enoate

[2-decanoyloxy-3-[(11Z,14Z)-icosa-11,14-dienoxy]propyl] (Z)-tetradec-9-enoate

C47H86O5 (730.6474906)


   

[2-dodecanoyloxy-3-[(Z)-hexadec-9-enoxy]propyl] (9Z,12Z)-hexadeca-9,12-dienoate

[2-dodecanoyloxy-3-[(Z)-hexadec-9-enoxy]propyl] (9Z,12Z)-hexadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

[2-[(Z)-tetradec-9-enoyl]oxy-3-tetradecoxypropyl] (9Z,12Z)-hexadeca-9,12-dienoate

[2-[(Z)-tetradec-9-enoyl]oxy-3-tetradecoxypropyl] (9Z,12Z)-hexadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(Z)-octadec-9-enoxy]propyl] (9Z,12Z)-hexadeca-9,12-dienoate

[2-decanoyloxy-3-[(Z)-octadec-9-enoxy]propyl] (9Z,12Z)-hexadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

[2-dodecanoyloxy-3-[(11Z,14Z,17Z)-icosa-11,14,17-trienoxy]propyl] dodecanoate

[2-dodecanoyloxy-3-[(11Z,14Z,17Z)-icosa-11,14,17-trienoxy]propyl] dodecanoate

C47H86O5 (730.6474906)


   

(2-dodecanoyloxy-3-tetradecoxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

(2-dodecanoyloxy-3-tetradecoxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

C47H86O5 (730.6474906)


   

(3-decoxy-2-dodecanoyloxypropyl) (10Z,13Z,16Z)-docosa-10,13,16-trienoate

(3-decoxy-2-dodecanoyloxypropyl) (10Z,13Z,16Z)-docosa-10,13,16-trienoate

C47H86O5 (730.6474906)


   

[2-dodecanoyloxy-3-[(9Z,12Z)-hexadeca-9,12-dienoxy]propyl] (Z)-hexadec-9-enoate

[2-dodecanoyloxy-3-[(9Z,12Z)-hexadeca-9,12-dienoxy]propyl] (Z)-hexadec-9-enoate

C47H86O5 (730.6474906)


   

[3-decoxy-2-[(Z)-hexadec-9-enoyl]oxypropyl] (9Z,12Z)-octadeca-9,12-dienoate

[3-decoxy-2-[(Z)-hexadec-9-enoyl]oxypropyl] (9Z,12Z)-octadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

(3-decoxy-2-hexadecanoyloxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

(3-decoxy-2-hexadecanoyloxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

C47H86O5 (730.6474906)


   

(2-decanoyloxy-3-tetradecoxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

(2-decanoyloxy-3-tetradecoxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

C47H86O5 (730.6474906)


   

(2-decanoyloxy-3-hexadecoxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

(2-decanoyloxy-3-hexadecoxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

C47H86O5 (730.6474906)


   

[3-decoxy-2-[(9Z,12Z)-hexadeca-9,12-dienoyl]oxypropyl] (Z)-octadec-9-enoate

[3-decoxy-2-[(9Z,12Z)-hexadeca-9,12-dienoyl]oxypropyl] (Z)-octadec-9-enoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoxy]propyl] octadecanoate

[2-decanoyloxy-3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoxy]propyl] octadecanoate

C47H86O5 (730.6474906)


   

(3-decoxy-2-tetradecanoyloxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

(3-decoxy-2-tetradecanoyloxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(9Z,12Z)-hexadeca-9,12-dienoxy]propyl] (Z)-octadec-9-enoate

[2-decanoyloxy-3-[(9Z,12Z)-hexadeca-9,12-dienoxy]propyl] (Z)-octadec-9-enoate

C47H86O5 (730.6474906)


   

[3-decoxy-2-[(Z)-tetradec-9-enoyl]oxypropyl] (11Z,14Z)-icosa-11,14-dienoate

[3-decoxy-2-[(Z)-tetradec-9-enoyl]oxypropyl] (11Z,14Z)-icosa-11,14-dienoate

C47H86O5 (730.6474906)


   

(2-decanoyloxy-3-dodecoxypropyl) (10Z,13Z,16Z)-docosa-10,13,16-trienoate

(2-decanoyloxy-3-dodecoxypropyl) (10Z,13Z,16Z)-docosa-10,13,16-trienoate

C47H86O5 (730.6474906)


   

[1-dodecoxy-3-[(9Z,12Z)-hexadeca-9,12-dienoyl]oxypropan-2-yl] (Z)-hexadec-9-enoate

[1-dodecoxy-3-[(9Z,12Z)-hexadeca-9,12-dienoyl]oxypropan-2-yl] (Z)-hexadec-9-enoate

C47H86O5 (730.6474906)


   

[2-dodecanoyloxy-3-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoxy]propyl] tetradecanoate

[2-dodecanoyloxy-3-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoxy]propyl] tetradecanoate

C47H86O5 (730.6474906)


   

[2-tetradecanoyloxy-3-[(Z)-tetradec-9-enoxy]propyl] (9Z,12Z)-hexadeca-9,12-dienoate

[2-tetradecanoyloxy-3-[(Z)-tetradec-9-enoxy]propyl] (9Z,12Z)-hexadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

(2-dodecanoyloxy-3-hexadecoxypropyl) (7Z,10Z,13Z)-hexadeca-7,10,13-trienoate

(2-dodecanoyloxy-3-hexadecoxypropyl) (7Z,10Z,13Z)-hexadeca-7,10,13-trienoate

C47H86O5 (730.6474906)


   

[3-[(Z)-hexadec-9-enoxy]-2-[(Z)-tetradec-9-enoyl]oxypropyl] (Z)-tetradec-9-enoate

[3-[(Z)-hexadec-9-enoxy]-2-[(Z)-tetradec-9-enoyl]oxypropyl] (Z)-tetradec-9-enoate

C47H86O5 (730.6474906)


   

(2-tetradecanoyloxy-3-tetradecoxypropyl) (7Z,10Z,13Z)-hexadeca-7,10,13-trienoate

(2-tetradecanoyloxy-3-tetradecoxypropyl) (7Z,10Z,13Z)-hexadeca-7,10,13-trienoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(Z)-hexadec-9-enoxy]propyl] (9Z,12Z)-octadeca-9,12-dienoate

[2-decanoyloxy-3-[(Z)-hexadec-9-enoxy]propyl] (9Z,12Z)-octadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

[3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoxy]-2-tetradecanoyloxypropyl] tetradecanoate

[3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoxy]-2-tetradecanoyloxypropyl] tetradecanoate

C47H86O5 (730.6474906)


   

[1-dodecoxy-3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoyl]oxypropan-2-yl] hexadecanoate

[1-dodecoxy-3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoyl]oxypropan-2-yl] hexadecanoate

C47H86O5 (730.6474906)


   

[3-decoxy-2-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoyl]oxypropyl] octadecanoate

[3-decoxy-2-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoyl]oxypropyl] octadecanoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(11Z,14Z,17Z)-icosa-11,14,17-trienoxy]propyl] tetradecanoate

[2-decanoyloxy-3-[(11Z,14Z,17Z)-icosa-11,14,17-trienoxy]propyl] tetradecanoate

C47H86O5 (730.6474906)


   

[2-dodecanoyloxy-3-[(Z)-tetradec-9-enoxy]propyl] (9Z,12Z)-octadeca-9,12-dienoate

[2-dodecanoyloxy-3-[(Z)-tetradec-9-enoxy]propyl] (9Z,12Z)-octadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(9Z,12Z)-octadeca-9,12-dienoxy]propyl] (Z)-hexadec-9-enoate

[2-decanoyloxy-3-[(9Z,12Z)-octadeca-9,12-dienoxy]propyl] (Z)-hexadec-9-enoate

C47H86O5 (730.6474906)


   

(2-dodecanoyloxy-3-dodecoxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

(2-dodecanoyloxy-3-dodecoxypropyl) (11Z,14Z,17Z)-icosa-11,14,17-trienoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoxy]propyl] hexadecanoate

[2-decanoyloxy-3-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoxy]propyl] hexadecanoate

C47H86O5 (730.6474906)


   

[2-decanoyloxy-3-[(Z)-tetradec-9-enoxy]propyl] (11Z,14Z)-icosa-11,14-dienoate

[2-decanoyloxy-3-[(Z)-tetradec-9-enoxy]propyl] (11Z,14Z)-icosa-11,14-dienoate

C47H86O5 (730.6474906)


   

[3-dodecoxy-2-[(Z)-tetradec-9-enoyl]oxypropyl] (9Z,12Z)-octadeca-9,12-dienoate

[3-dodecoxy-2-[(Z)-tetradec-9-enoyl]oxypropyl] (9Z,12Z)-octadeca-9,12-dienoate

C47H86O5 (730.6474906)


   

[2-dodecanoyloxy-3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoxy]propyl] hexadecanoate

[2-dodecanoyloxy-3-[(7Z,10Z,13Z)-hexadeca-7,10,13-trienoxy]propyl] hexadecanoate

C47H86O5 (730.6474906)


   

[2-dodecanoyloxy-3-[(9Z,12Z)-octadeca-9,12-dienoxy]propyl] (Z)-tetradec-9-enoate

[2-dodecanoyloxy-3-[(9Z,12Z)-octadeca-9,12-dienoxy]propyl] (Z)-tetradec-9-enoate

C47H86O5 (730.6474906)


   

(3-dodecoxy-2-tetradecanoyloxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

(3-dodecoxy-2-tetradecanoyloxypropyl) (9Z,12Z,15Z)-octadeca-9,12,15-trienoate

C47H86O5 (730.6474906)


   

(2-decanoyloxy-3-octadecoxypropyl) (7Z,10Z,13Z)-hexadeca-7,10,13-trienoate

(2-decanoyloxy-3-octadecoxypropyl) (7Z,10Z,13Z)-hexadeca-7,10,13-trienoate

C47H86O5 (730.6474906)


   

[1-[(9Z,12Z)-hexadeca-9,12-dienoxy]-3-[(Z)-tetradec-9-enoyl]oxypropan-2-yl] tetradecanoate

[1-[(9Z,12Z)-hexadeca-9,12-dienoxy]-3-[(Z)-tetradec-9-enoyl]oxypropan-2-yl] tetradecanoate

C47H86O5 (730.6474906)


   

[3-hydroxy-2-[(11Z,14Z,17Z)-icosa-11,14,17-trienoyl]oxypropyl] tetracosanoate

[3-hydroxy-2-[(11Z,14Z,17Z)-icosa-11,14,17-trienoyl]oxypropyl] tetracosanoate

C47H86O5 (730.6474906)


   

[3-hydroxy-2-[(9Z,12Z)-octadeca-9,12-dienoyl]oxypropyl] (Z)-hexacos-15-enoate

[3-hydroxy-2-[(9Z,12Z)-octadeca-9,12-dienoyl]oxypropyl] (Z)-hexacos-15-enoate

C47H86O5 (730.6474906)


   

[2-[(13Z,16Z)-docosa-13,16-dienoyl]oxy-3-hydroxypropyl] (Z)-docos-13-enoate

[2-[(13Z,16Z)-docosa-13,16-dienoyl]oxy-3-hydroxypropyl] (Z)-docos-13-enoate

C47H86O5 (730.6474906)


   

[1-hydroxy-3-[(Z)-octadec-9-enoyl]oxypropan-2-yl] (15Z,18Z)-hexacosa-15,18-dienoate

[1-hydroxy-3-[(Z)-octadec-9-enoyl]oxypropan-2-yl] (15Z,18Z)-hexacosa-15,18-dienoate

C47H86O5 (730.6474906)


   

[2-[(10Z,13Z,16Z)-docosa-10,13,16-trienoyl]oxy-3-hydroxypropyl] docosanoate

[2-[(10Z,13Z,16Z)-docosa-10,13,16-trienoyl]oxy-3-hydroxypropyl] docosanoate

C47H86O5 (730.6474906)


   

[1-hydroxy-3-[(Z)-icos-11-enoyl]oxypropan-2-yl] (13Z,16Z)-tetracosa-13,16-dienoate

[1-hydroxy-3-[(Z)-icos-11-enoyl]oxypropan-2-yl] (13Z,16Z)-tetracosa-13,16-dienoate

C47H86O5 (730.6474906)


   

[3-hydroxy-2-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoyl]oxypropyl] hexacosanoate

[3-hydroxy-2-[(9Z,12Z,15Z)-octadeca-9,12,15-trienoyl]oxypropyl] hexacosanoate

C47H86O5 (730.6474906)


   

[3-hydroxy-2-[(11Z,14Z)-icosa-11,14-dienoyl]oxypropyl] (Z)-tetracos-13-enoate

[3-hydroxy-2-[(11Z,14Z)-icosa-11,14-dienoyl]oxypropyl] (Z)-tetracos-13-enoate

C47H86O5 (730.6474906)


   

[(2S)-1-hydroxy-3-[(8E,11E,14E)-icosa-8,11,14-trienoyl]oxypropan-2-yl] tetracosanoate

[(2S)-1-hydroxy-3-[(8E,11E,14E)-icosa-8,11,14-trienoyl]oxypropan-2-yl] tetracosanoate

C47H86O5 (730.6474906)


   

[(2S)-2-[(13E,16E)-docosa-13,16-dienoyl]oxy-3-hydroxypropyl] (E)-docos-13-enoate

[(2S)-2-[(13E,16E)-docosa-13,16-dienoyl]oxy-3-hydroxypropyl] (E)-docos-13-enoate

C47H86O5 (730.6474906)


   

[(2S)-3-hydroxy-2-[(9E,12E)-octadeca-9,12-dienoyl]oxypropyl] (E)-hexacos-5-enoate

[(2S)-3-hydroxy-2-[(9E,12E)-octadeca-9,12-dienoyl]oxypropyl] (E)-hexacos-5-enoate

C47H86O5 (730.6474906)


   

[(2S)-1-hydroxy-3-[(E)-octadec-11-enoyl]oxypropan-2-yl] (5E,9E)-hexacosa-5,9-dienoate

[(2S)-1-hydroxy-3-[(E)-octadec-11-enoyl]oxypropan-2-yl] (5E,9E)-hexacosa-5,9-dienoate

C47H86O5 (730.6474906)


   

[(2S)-1-hydroxy-3-[(9E,12E)-octadeca-9,12-dienoyl]oxypropan-2-yl] (E)-hexacos-5-enoate

[(2S)-1-hydroxy-3-[(9E,12E)-octadeca-9,12-dienoyl]oxypropan-2-yl] (E)-hexacos-5-enoate

C47H86O5 (730.6474906)


   

[(2S)-1-hydroxy-3-[(11E,14E)-icosa-11,14-dienoyl]oxypropan-2-yl] (E)-tetracos-15-enoate

[(2S)-1-hydroxy-3-[(11E,14E)-icosa-11,14-dienoyl]oxypropan-2-yl] (E)-tetracos-15-enoate

C47H86O5 (730.6474906)


   

[(2S)-3-hydroxy-2-[(11E,14E)-icosa-11,14-dienoyl]oxypropyl] (E)-tetracos-15-enoate

[(2S)-3-hydroxy-2-[(11E,14E)-icosa-11,14-dienoyl]oxypropyl] (E)-tetracos-15-enoate

C47H86O5 (730.6474906)


   

[(2S)-1-[(13E,16E)-docosa-13,16-dienoyl]oxy-3-hydroxypropan-2-yl] (E)-docos-13-enoate

[(2S)-1-[(13E,16E)-docosa-13,16-dienoyl]oxy-3-hydroxypropan-2-yl] (E)-docos-13-enoate

C47H86O5 (730.6474906)


   

[(2S)-3-hydroxy-2-[(E)-octadec-11-enoyl]oxypropyl] (5E,9E)-hexacosa-5,9-dienoate

[(2S)-3-hydroxy-2-[(E)-octadec-11-enoyl]oxypropyl] (5E,9E)-hexacosa-5,9-dienoate

C47H86O5 (730.6474906)


   

[(2S)-3-hydroxy-2-[(9E,12E,15E)-octadeca-9,12,15-trienoyl]oxypropyl] hexacosanoate

[(2S)-3-hydroxy-2-[(9E,12E,15E)-octadeca-9,12,15-trienoyl]oxypropyl] hexacosanoate

C47H86O5 (730.6474906)


   

[(2S)-3-hydroxy-2-[(8E,11E,14E)-icosa-8,11,14-trienoyl]oxypropyl] tetracosanoate

[(2S)-3-hydroxy-2-[(8E,11E,14E)-icosa-8,11,14-trienoyl]oxypropyl] tetracosanoate

C47H86O5 (730.6474906)


   

[(2S)-1-hydroxy-3-[(9E,12E,15E)-octadeca-9,12,15-trienoyl]oxypropan-2-yl] hexacosanoate

[(2S)-1-hydroxy-3-[(9E,12E,15E)-octadeca-9,12,15-trienoyl]oxypropan-2-yl] hexacosanoate

C47H86O5 (730.6474906)


   

1-(13Z-docosenoyl)-2-(13Z,16Z-docosadienoyl)-sn-glycerol

1-(13Z-docosenoyl)-2-(13Z,16Z-docosadienoyl)-sn-glycerol

C47H86O5 (730.6474906)


   

DG(20:2(11Z,14Z)/24:1(15Z)/0:0)

DG(20:2(11Z,14Z)/24:1(15Z)/0:0)

C47H86O5 (730.6474906)