Exact Mass: 353.186508

Exact Mass Matches: 353.186508

Found 74 metabolites which its exact mass value is equals to given mass value 353.186508, within given mass tolerance error 0.01 dalton. Try search metabolite list with more accurate mass tolerance error 0.001 dalton.

Rosmarinine

Senecionan-11,16-dione, 1,2-dihydro-2,12-dihydroxy-, (1alpha,2alpha)-

C18H27NO6 (353.1838282)


   
   

(5E,7E)-Undeca-2,5,7-trienedioylcarnitine

3-[(10-carboxydeca-2,5,7-trienoyl)oxy]-4-(trimethylazaniumyl)butanoate

C18H27NO6 (353.1838282)


(5E,7E)-Undeca-2,5,7-trienedioylcarnitine is an acylcarnitine. More specifically, it is an (5E,7E)-undeca-2,5,7-trienedioic acid ester of carnitine. Acylcarnitines were first discovered more than 70 year ago (PMID: 13825279). It is believed that there are more than 1000 types of acylcarnitines in the human body. The general role of acylcarnitines is to transport acyl-groups (organic acids and fatty acids) from the cytoplasm into the mitochondria so that they can be broken down to produce energy. This process is known as beta-oxidation. According to a recent review [Dambrova et al. 2021, Physiological Reviews], acylcarnitines (ACs) can be classified into 9 different categories depending on the type and size of their acyl-group: 1) short-chain ACs; 2) medium-chain ACs; 3) long-chain ACs; 4) very long-chain ACs; 5) hydroxy ACs; 6) branched chain ACs; 7) unsaturated ACs; 8) dicarboxylic ACs and 9) miscellaneous ACs. Short-chain ACs have acyl-groups with two to five carbons (C2-C5), medium-chain ACs have acyl-groups with six to thirteen carbons (C6-C13), long-chain ACs have acyl-groups with fourteen to twenty once carbons (C14-C21) and very long-chain ACs have acyl groups with more than 22 carbons. (5E,7E)-Undeca-2,5,7-trienedioylcarnitine is therefore classified as a medium chain AC. As a medium-chain acylcarnitine (5E,7E)-Undeca-2,5,7-trienedioylcarnitine is somewhat less abundant than short-chain acylcarnitines. These are formed either through esterification with L-carnitine or through the peroxisomal metabolism of longer chain acylcarnitines (PMID: 30540494). Many medium-chain acylcarnitines can serve as useful markers for inherited disorders of fatty acid metabolism. Carnitine octanoyltransferase (CrOT, EC:2.3.1.137) is responsible for the synthesis of all medium-chain (MCAC, C5-C12) and medium-length branched-chain acylcarnitines in peroxisomes (PMID: 10486279). The study of acylcarnitines is an active area of research and it is likely that many novel acylcarnitines will be discovered in the coming years. It is also likely that many novel roles in health and disease will be uncovered. An excellent review of the current state of knowledge for acylcarnitines is available at [Dambrova et al. 2021, Physiological Reviews].

   

Undeca-4,6,8-trienedioylcarnitine

3-[(10-carboxydeca-4,6,8-trienoyl)oxy]-4-(trimethylazaniumyl)butanoate

C18H27NO6 (353.1838282)


Undeca-4,6,8-trienedioylcarnitine is an acylcarnitine. More specifically, it is an undeca-4,6,8-trienedioic acid ester of carnitine. Acylcarnitines were first discovered more than 70 year ago (PMID: 13825279). It is believed that there are more than 1000 types of acylcarnitines in the human body. The general role of acylcarnitines is to transport acyl-groups (organic acids and fatty acids) from the cytoplasm into the mitochondria so that they can be broken down to produce energy. This process is known as beta-oxidation. According to a recent review [Dambrova et al. 2021, Physiological Reviews], acylcarnitines (ACs) can be classified into 9 different categories depending on the type and size of their acyl-group: 1) short-chain ACs; 2) medium-chain ACs; 3) long-chain ACs; 4) very long-chain ACs; 5) hydroxy ACs; 6) branched chain ACs; 7) unsaturated ACs; 8) dicarboxylic ACs and 9) miscellaneous ACs. Short-chain ACs have acyl-groups with two to five carbons (C2-C5), medium-chain ACs have acyl-groups with six to thirteen carbons (C6-C13), long-chain ACs have acyl-groups with fourteen to twenty once carbons (C14-C21) and very long-chain ACs have acyl groups with more than 22 carbons. Undeca-4,6,8-trienedioylcarnitine is therefore classified as a medium chain AC. As a medium-chain acylcarnitine Undeca-4,6,8-trienedioylcarnitine is somewhat less abundant than short-chain acylcarnitines. These are formed either through esterification with L-carnitine or through the peroxisomal metabolism of longer chain acylcarnitines (PMID: 30540494). Many medium-chain acylcarnitines can serve as useful markers for inherited disorders of fatty acid metabolism. Carnitine octanoyltransferase (CrOT, EC:2.3.1.137) is responsible for the synthesis of all medium-chain (MCAC, C5-C12) and medium-length branched-chain acylcarnitines in peroxisomes (PMID: 10486279). The study of acylcarnitines is an active area of research and it is likely that many novel acylcarnitines will be discovered in the coming years. It is also likely that many novel roles in health and disease will be uncovered. An excellent review of the current state of knowledge for acylcarnitines is available at [Dambrova et al. 2021, Physiological Reviews].

   

Undeca-5,7,9-trienedioylcarnitine

3-[(10-carboxydeca-5,7,9-trienoyl)oxy]-4-(trimethylazaniumyl)butanoate

C18H27NO6 (353.1838282)


Undeca-5,7,9-trienedioylcarnitine is an acylcarnitine. More specifically, it is an undeca-5,7,9-trienedioic acid ester of carnitine. Acylcarnitines were first discovered more than 70 year ago (PMID: 13825279). It is believed that there are more than 1000 types of acylcarnitines in the human body. The general role of acylcarnitines is to transport acyl-groups (organic acids and fatty acids) from the cytoplasm into the mitochondria so that they can be broken down to produce energy. This process is known as beta-oxidation. According to a recent review [Dambrova et al. 2021, Physiological Reviews], acylcarnitines (ACs) can be classified into 9 different categories depending on the type and size of their acyl-group: 1) short-chain ACs; 2) medium-chain ACs; 3) long-chain ACs; 4) very long-chain ACs; 5) hydroxy ACs; 6) branched chain ACs; 7) unsaturated ACs; 8) dicarboxylic ACs and 9) miscellaneous ACs. Short-chain ACs have acyl-groups with two to five carbons (C2-C5), medium-chain ACs have acyl-groups with six to thirteen carbons (C6-C13), long-chain ACs have acyl-groups with fourteen to twenty once carbons (C14-C21) and very long-chain ACs have acyl groups with more than 22 carbons. Undeca-5,7,9-trienedioylcarnitine is therefore classified as a medium chain AC. As a medium-chain acylcarnitine Undeca-5,7,9-trienedioylcarnitine is somewhat less abundant than short-chain acylcarnitines. These are formed either through esterification with L-carnitine or through the peroxisomal metabolism of longer chain acylcarnitines (PMID: 30540494). Many medium-chain acylcarnitines can serve as useful markers for inherited disorders of fatty acid metabolism. Carnitine octanoyltransferase (CrOT, EC:2.3.1.137) is responsible for the synthesis of all medium-chain (MCAC, C5-C12) and medium-length branched-chain acylcarnitines in peroxisomes (PMID: 10486279). The study of acylcarnitines is an active area of research and it is likely that many novel acylcarnitines will be discovered in the coming years. It is also likely that many novel roles in health and disease will be uncovered. An excellent review of the current state of knowledge for acylcarnitines is available at [Dambrova et al. 2021, Physiological Reviews].

   

Undeca-3,6,9-trienedioylcarnitine

3-[(10-carboxydeca-3,6,9-trienoyl)oxy]-4-(trimethylazaniumyl)butanoate

C18H27NO6 (353.1838282)


Undeca-3,6,9-trienedioylcarnitine is an acylcarnitine. More specifically, it is an undeca-3,6,9-trienedioic acid ester of carnitine. Acylcarnitines were first discovered more than 70 year ago (PMID: 13825279). It is believed that there are more than 1000 types of acylcarnitines in the human body. The general role of acylcarnitines is to transport acyl-groups (organic acids and fatty acids) from the cytoplasm into the mitochondria so that they can be broken down to produce energy. This process is known as beta-oxidation. According to a recent review [Dambrova et al. 2021, Physiological Reviews], acylcarnitines (ACs) can be classified into 9 different categories depending on the type and size of their acyl-group: 1) short-chain ACs; 2) medium-chain ACs; 3) long-chain ACs; 4) very long-chain ACs; 5) hydroxy ACs; 6) branched chain ACs; 7) unsaturated ACs; 8) dicarboxylic ACs and 9) miscellaneous ACs. Short-chain ACs have acyl-groups with two to five carbons (C2-C5), medium-chain ACs have acyl-groups with six to thirteen carbons (C6-C13), long-chain ACs have acyl-groups with fourteen to twenty once carbons (C14-C21) and very long-chain ACs have acyl groups with more than 22 carbons. Undeca-3,6,9-trienedioylcarnitine is therefore classified as a medium chain AC. As a medium-chain acylcarnitine Undeca-3,6,9-trienedioylcarnitine is somewhat less abundant than short-chain acylcarnitines. These are formed either through esterification with L-carnitine or through the peroxisomal metabolism of longer chain acylcarnitines (PMID: 30540494). Many medium-chain acylcarnitines can serve as useful markers for inherited disorders of fatty acid metabolism. Carnitine octanoyltransferase (CrOT, EC:2.3.1.137) is responsible for the synthesis of all medium-chain (MCAC, C5-C12) and medium-length branched-chain acylcarnitines in peroxisomes (PMID: 10486279). The study of acylcarnitines is an active area of research and it is likely that many novel acylcarnitines will be discovered in the coming years. It is also likely that many novel roles in health and disease will be uncovered. An excellent review of the current state of knowledge for acylcarnitines is available at [Dambrova et al. 2021, Physiological Reviews].

   

Epiroprim

5-{[3,5-diethoxy-4-(1H-pyrrol-1-yl)phenyl]methyl}pyrimidine-2,4-diamine

C19H23N5O2 (353.1851658)


C254 - Anti-Infective Agent > C276 - Antiparasitic Agent > C277 - Antiprotozoal Agent C471 - Enzyme Inhibitor > C2153 - Dihydrofolate Reductase Inhibitor

   
   

3,4-Dehydro-beta-yohimbine

3,4-Dehydro-beta-yohimbine

C21H25N2O3 (353.186508)


   

Platyphylline N-oxide

Platyphylline N-oxide

C18H27NO6 (353.1838282)


   
   

JWH 122 N-(4-pentenyl) analog

JWH 122 N-(4-pentenyl) analog

C25H23NO (353.1779548)


   
   
   
   

12,15-dihydroxy-(12alphaH,15betaH)-15,20-dihydro-senecionane-11,16-dione|Bislin|bisline

12,15-dihydroxy-(12alphaH,15betaH)-15,20-dihydro-senecionane-11,16-dione|Bislin|bisline

C18H27NO6 (353.1838282)


   

Trichodesmine

Trichodesmine

C18H27NO6 (353.1838282)


Origin: Plant; SubCategory_DNP: Alkaloids derived from ornithine, Pyrrolizidine alkaloids

   
   
   

crotolarine lactone

crotolarine lactone

C18H27NO6 (353.1838282)


   
   

(+)-7-epi-12-hydroxy-12-oxojasmonoyl-L-isoleucine

(+)-7-epi-12-hydroxy-12-oxojasmonoyl-L-isoleucine

C18H27NO6 (353.1838282)


   

Trichodesmine

(3R,4R,5R,8a1R,13aR)-4,5-dihydroxy-3-isopropyl-4,5-dimethyl-4,5,8,8a1,10,12,13,13a-octahydro-2H-[1,6]dioxacycloundecino[2,3,4-gh]pyrrolizine-2,6(3H)-dione

C18H27NO6 (353.1838282)


Trichodesmine is a natural product found in Crotalaria globifera, Crotalaria recta, and other organisms with data available.

   
   

N-[2-(4-sec-Butyl-phenoxy)-4,5-dihydroxy-6-hydroxymethyl-tetrahydro-pyran-3-yl]-acetamide

"NCGC00160345-01!N-[2-(4-sec-Butyl-phenoxy)-4,5-dihydroxy-6-hydroxymethyl-tetrahydro-pyran-3-yl]-acetamide"

C18H27NO6 (353.1838282)


   
   
   

1-benzhydryl-3-(benzylamino)azetidine-3-carbonitrile

1-benzhydryl-3-(benzylamino)azetidine-3-carbonitrile

C24H23N3 (353.1891878)


   

9-ETHYL-3-[[(2-METHYL-1-INDOLINYL)IMINO]METHY]CARBAZOLE

9-ETHYL-3-[[(2-METHYL-1-INDOLINYL)IMINO]METHY]CARBAZOLE

C24H23N3 (353.1891878)


   

N-(2-chloroethyl)-N-methyl-4-[2-(1,3,3-trimethylindol-1-ium-2-yl)ethenyl]aniline

N-(2-chloroethyl)-N-methyl-4-[2-(1,3,3-trimethylindol-1-ium-2-yl)ethenyl]aniline

C22H26ClN2+ (353.17844060000004)


   

Benzyl (4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl)carbamate

Benzyl (4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl)carbamate

C20H24BNO4 (353.1798294)


   

N-(4-(Dimethylamino)phenethyl)-3-ethyl-5-fluoro-1H-indole-2-carboxamide

N-(4-(Dimethylamino)phenethyl)-3-ethyl-5-fluoro-1H-indole-2-carboxamide

C21H24FN3O (353.1903306)


   

2-(1-trityl-1H-imidazol-4-yl)ethanamine

2-(1-trityl-1H-imidazol-4-yl)ethanamine

C24H23N3 (353.1891878)


   
   

(R)-Di-2-naphthylprolinol

(R)-Di-2-naphthylprolinol

C25H23NO (353.1779548)


   

(S)-DINAPHTHALEN-2-YL(PYRROLIDIN-2-YL)METHANOL

(S)-DINAPHTHALEN-2-YL(PYRROLIDIN-2-YL)METHANOL

C25H23NO (353.1779548)


   
   

Butenafine hydrochloride

Butenafine hydrochloride

C23H28ClN (353.19101580000006)


D000890 - Anti-Infective Agents > D000935 - Antifungal Agents C254 - Anti-Infective Agent > C514 - Antifungal Agent Butenafine Hydrochloride (KP363 Hydrochloride) is a synthetic benzylamine antifungal, works by inhibiting the synthesis of sterols by inhibiting squalene epoxidase.

   

(s)-o-tolyl-cbs-oxazaborolidine, 0.5m i&

(s)-o-tolyl-cbs-oxazaborolidine, 0.5m i&

C24H24BNO (353.1950844)


   

(r)-o-tolyl-cbs-oxazaborolidine, 0.5m i&

(r)-o-tolyl-cbs-oxazaborolidine, 0.5m i&

C24H24BNO (353.1950844)


   

Imidazo(1,2-b)pyridazine, 3-(6-(2-methoxyethyl)-3-pyridinyl)-2-methyl-8-(4-morpholinyl)-

Imidazo(1,2-b)pyridazine, 3-(6-(2-methoxyethyl)-3-pyridinyl)-2-methyl-8-(4-morpholinyl)-

C19H23N5O2 (353.1851658)


   

5-Amino-1-Tert-Butyl-3-(7-Ethoxyquinolin-3-Yl)-1h-Pyrazole-4-Carboxamide

5-Amino-1-Tert-Butyl-3-(7-Ethoxyquinolin-3-Yl)-1h-Pyrazole-4-Carboxamide

C19H23N5O2 (353.1851658)


   

(4R,16R)-5,6-dihydroxy-5,6-dimethyl-4-propan-2-yl-2,8-dioxa-13-azatricyclo[8.5.1.013,16]hexadec-10-ene-3,7-dione

(4R,16R)-5,6-dihydroxy-5,6-dimethyl-4-propan-2-yl-2,8-dioxa-13-azatricyclo[8.5.1.013,16]hexadec-10-ene-3,7-dione

C18H27NO6 (353.1838282)


   

16-Hydroxytabersoninium

16-Hydroxytabersoninium

C21H25N2O3+ (353.186508)


The indole alkaloid cation that is the conjugate acid of 16-hydroxytabersonine, arising from protonation of the tertiary amino function; major species at pH 7.3.

   

(3R)-1,2-didehydro-3-hydroxy-2,3-dihydrotabersonine

(3R)-1,2-didehydro-3-hydroxy-2,3-dihydrotabersonine

C21H25N2O3+ (353.186508)


   

methyl (1R,10S,11S,12E,17S)-12-ethylidene-10-(hydroxymethyl)-8-aza-14-azoniapentacyclo[9.5.2.01,9.02,7.014,17]octadeca-2,4,6,8-tetraene-10-carboxylate

methyl (1R,10S,11S,12E,17S)-12-ethylidene-10-(hydroxymethyl)-8-aza-14-azoniapentacyclo[9.5.2.01,9.02,7.014,17]octadeca-2,4,6,8-tetraene-10-carboxylate

C21H25N2O3+ (353.186508)


   
   

N-[[(1R)-3-Oxo-2alpha-[(2Z)-5-hydroxy-5-oxo-2-pentenyl]cyclopentane-1alpha-yl]acetyl]-L-isoleucine

N-[[(1R)-3-Oxo-2alpha-[(2Z)-5-hydroxy-5-oxo-2-pentenyl]cyclopentane-1alpha-yl]acetyl]-L-isoleucine

C18H27NO6 (353.1838282)


   

Undeca-4,6,8-trienedioylcarnitine

Undeca-4,6,8-trienedioylcarnitine

C18H27NO6 (353.1838282)


   

Undeca-5,7,9-trienedioylcarnitine

Undeca-5,7,9-trienedioylcarnitine

C18H27NO6 (353.1838282)


   

Undeca-3,6,9-trienedioylcarnitine

Undeca-3,6,9-trienedioylcarnitine

C18H27NO6 (353.1838282)


   

(5E,7E)-Undeca-2,5,7-trienedioylcarnitine

(5E,7E)-Undeca-2,5,7-trienedioylcarnitine

C18H27NO6 (353.1838282)


   

Ajmalicine(1+)

Ajmalicine(1+)

C21H25N2O3+ (353.186508)


An ammonium ion resulting from the protonation of the tertiary amino group of ajmalicine. The major species at pH 7.3.

   

Tetrahydroalstonine(1+)

Tetrahydroalstonine(1+)

C21H25N2O3+ (353.186508)


An ammonium ion resulting from the protonation of the tertiary amino group of tetrahydroalstonine. The major microspecies at pH 7.3.

   

4-(butan-2-yl)phenyl 2-(acetylamino)-2-deoxy-beta-D-glucopyranoside

4-(butan-2-yl)phenyl 2-(acetylamino)-2-deoxy-beta-D-glucopyranoside

C18H27NO6 (353.1838282)


   

2-cyano-N-(3-methoxypropyl)-2-[3-(1-pyrrolidinyl)-2-quinoxalinyl]acetamide

2-cyano-N-(3-methoxypropyl)-2-[3-(1-pyrrolidinyl)-2-quinoxalinyl]acetamide

C19H23N5O2 (353.1851658)


   

1-(4-Ethylphenyl)-3-[1-(phenylmethyl)-4-piperidinyl]thiourea

1-(4-Ethylphenyl)-3-[1-(phenylmethyl)-4-piperidinyl]thiourea

C21H27N3S (353.19255820000006)


   

Lochnericine(1+)

Lochnericine(1+)

C21H25N2O3+ (353.186508)


An ammonium ion derivative resulting from the protonation of the tertiary amino group of lochnericine. The major species at pH 7.3.

   

(-)-(R)-19-hydroxytabersonine

(-)-(R)-19-hydroxytabersonine

C21H25N2O3+ (353.186508)


   

N-acetyl-1-[(2R)-5-hydroxy-2-pentyltetrahydrofuran-3-yl]-L-histidine

N-acetyl-1-[(2R)-5-hydroxy-2-pentyltetrahydrofuran-3-yl]-L-histidine

C17H27N3O5 (353.1950612)


   

N-[[3-(4-methylphenyl)-1-phenyl-4-pyrazolyl]methyl]-1-phenylmethanamine

N-[[3-(4-methylphenyl)-1-phenyl-4-pyrazolyl]methyl]-1-phenylmethanamine

C24H23N3 (353.1891878)


   

(1R,5S)-7-[4-(2-fluorophenyl)phenyl]-N-propyl-3,6-diazabicyclo[3.1.1]heptane-6-carboxamide

(1R,5S)-7-[4-(2-fluorophenyl)phenyl]-N-propyl-3,6-diazabicyclo[3.1.1]heptane-6-carboxamide

C21H24FN3O (353.1903306)


   

(1S,5R)-7-[4-(3-fluorophenyl)phenyl]-N-propyl-3,6-diazabicyclo[3.1.1]heptane-3-carboxamide

(1S,5R)-7-[4-(3-fluorophenyl)phenyl]-N-propyl-3,6-diazabicyclo[3.1.1]heptane-3-carboxamide

C21H24FN3O (353.1903306)


   

2-(dimethylamino)-1-[(1S,5R)-7-[4-(2-fluorophenyl)phenyl]-3,6-diazabicyclo[3.1.1]heptan-3-yl]ethanone

2-(dimethylamino)-1-[(1S,5R)-7-[4-(2-fluorophenyl)phenyl]-3,6-diazabicyclo[3.1.1]heptan-3-yl]ethanone

C21H24FN3O (353.1903306)


   

2-phenyl-3-[(S)-pyridin-2-yl(pyrrolidin-1-yl)methyl]-1H-indole

2-phenyl-3-[(S)-pyridin-2-yl(pyrrolidin-1-yl)methyl]-1H-indole

C24H23N3 (353.1891878)


   

5-(2-Acetoxyethylamino)-3-methoxy-2,6-dimethyl-(6R*)-((2R*)-2-methylbutyryloxy)-2,4-cyclohexadien-1-one

5-(2-Acetoxyethylamino)-3-methoxy-2,6-dimethyl-(6R*)-((2R*)-2-methylbutyryloxy)-2,4-cyclohexadien-1-one

C18H27NO6 (353.1838282)


   
   

4-ethylidene-7-hydroxy-6,7-dimethyl-3,8-dioxo-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecan-14-ium-14-olate

4-ethylidene-7-hydroxy-6,7-dimethyl-3,8-dioxo-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadecan-14-ium-14-olate

C18H27NO6 (353.1838282)


   

(1r,4s,6r,7r,17r)-4-ethyl-4,7-dihydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadec-11-ene-3,8-dione

(1r,4s,6r,7r,17r)-4-ethyl-4,7-dihydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadec-11-ene-3,8-dione

C18H27NO6 (353.1838282)


   

(1r,4s,6r,7s,17r)-4-ethyl-4,7-dihydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadec-11-ene-3,8-dione

(1r,4s,6r,7s,17r)-4-ethyl-4,7-dihydroxy-6,7-dimethyl-2,9-dioxa-14-azatricyclo[9.5.1.0¹⁴,¹⁷]heptadec-11-ene-3,8-dione

C18H27NO6 (353.1838282)


   

(1r,4r,5r,6r,16r)-5,6-dihydroxy-4-isopropyl-5,6-dimethyl-2,8-dioxa-13-azatricyclo[8.5.1.0¹³,¹⁶]hexadec-10-ene-3,7-dione

(1r,4r,5r,6r,16r)-5,6-dihydroxy-4-isopropyl-5,6-dimethyl-2,8-dioxa-13-azatricyclo[8.5.1.0¹³,¹⁶]hexadec-10-ene-3,7-dione

C18H27NO6 (353.1838282)


   

(1r,4r,5s,6s,16s)-6-ethyl-5,6-dihydroxy-4-isopropyl-2,8-dioxa-13-azatricyclo[8.5.1.0¹³,¹⁶]hexadec-10-ene-3,7-dione

(1r,4r,5s,6s,16s)-6-ethyl-5,6-dihydroxy-4-isopropyl-2,8-dioxa-13-azatricyclo[8.5.1.0¹³,¹⁶]hexadec-10-ene-3,7-dione

C18H27NO6 (353.1838282)


   

7-{[(2,3-dihydroxy-2-methylbutanoyl)oxy]methyl}-2,3,5,7a-tetrahydro-1h-pyrrolizin-1-yl 3-methylbut-2-enoate

7-{[(2,3-dihydroxy-2-methylbutanoyl)oxy]methyl}-2,3,5,7a-tetrahydro-1h-pyrrolizin-1-yl 3-methylbut-2-enoate

C18H27NO6 (353.1838282)