Trilaurin (BioDeep_00000605233)
Main id: BioDeep_00000017442
PANOMIX_OTCML-2023
代谢物信息卡片
化学式: C39H74O6 (638.5485103999999)
中文名称: 甘油三月桂酸酯
谱图信息:
最多检出来源 () 0%
分子结构信息
SMILES: CCCCCCCCCCCC(=O)OCC(COC(=O)CCCCCCCCCCC)OC(=O)CCCCCCCCCCC
InChI: InChI=1S/C39H74O6/c1-4-7-10-13-16-19-22-25-28-31-37(40)43-34-36(45-39(42)33-30-27-24-21-18-15-12-9-6-3)35-44-38(41)32-29-26-23-20-17-14-11-8-5-2/h36H,4-35H2,1-3H3
描述信息
Trilaurin could inhibit the formation of neoplasms initiated by dimethylbenzanthracene (DMBA) and promoted by croton oil[1].
Trilaurin could inhibit the formation of neoplasms initiated by dimethylbenzanthracene (DMBA) and promoted by croton oil[1].
同义名列表
35 个代谢物同义名
dodecanoic acid [2-(1-oxododecoxy)-1-(1-oxododecoxymethyl)ethyl] ester; lauric acid [2-lauroyloxy-1-(lauroyloxymethyl)ethyl] ester; [2-dodecanoyloxy-1-(dodecanoyloxymethyl)ethyl] dodecanoate; 1,3-di(dodecanoyloxy)propan-2-yl dodecanoate; Dodecanoic acid, 1,2,3-propanetriyl ester; Dodecanoic acid, 1,2,3-propantriyl ester; 1,2,3-Propanetriol tridodecanoate; Lauric acid triglycerin ester; 1,2,3-Tridodecanoylglycerol; Lauric acid triglyceride; 1,2,3-Trilauroylglycerol; Glyceryl tridodecanoate; Glycerin trilaurate; Glycerol trilaurate; Glyceryl trilaurate; Laurin, tri- (8CI); EINECS 208-687-0; Tridodecanoin; Laurin, tri-; AIDS-017734; T4891_SIGMA; 127377-16-6; CCRIS 6991; AIDS017734; AI3-11124; Trilaurin; ST5410468; 538-24-9; NSC 4061; NSC4061; Glyceryl tridodecanoic acid; TG(12:0/12:0/12:0); Triacylglycerol; Triglyceride; Tri-laurin
数据库引用编号
5 个数据库交叉引用编号
- ChEBI: CHEBI:77389
- PubChem: 10851
- Metlin: METLIN62030
- CAS: 538-24-9
- medchemexpress: HY-126573
分类词条
相关代谢途径
Reactome(0)
BioCyc(0)
PlantCyc(0)
代谢反应
0 个相关的代谢反应过程信息。
Reactome(0)
BioCyc(0)
WikiPathways(0)
Plant Reactome(0)
INOH(0)
PlantCyc(0)
COVID-19 Disease Map(0)
PathBank(0)
PharmGKB(0)
4 个相关的物种来源信息
- 429560 - Cullen corylifolium: 10.1016/0031-9422(80)83035-4
- 33090 - Plants: -
- 3438 - Umbellularia californica: 10.1007/BF02657546
- 33090 - 无患子皮: -
在这里通过桑基图来展示出与当前的这个代谢物在我们的BioDeep知识库中具有相关联信息的其他代谢物。在这里进行关联的信息来源主要有:
- PubMed: 来源于PubMed文献库中的文献信息,我们通过自然语言数据挖掘得到的在同一篇文献中被同时提及的相关代谢物列表,这个列表按照代谢物同时出现的文献数量降序排序,取前10个代谢物作为相关研究中关联性很高的代谢物集合展示在桑基图中。
- NCBI Taxonomy: 通过文献数据挖掘,得到的代谢物物种来源信息关联。这个关联信息同样按照出现的次数降序排序,取前10个代谢物作为高关联度的代谢物集合展示在桑吉图上。
- Chemical Taxonomy: 在物质分类上处于同一个分类集合中的其他代谢物
- Chemical Reaction: 在化学反应过程中,存在为当前代谢物相关联的生化反应过程中的反应底物或者反应产物的关联代谢物信息。
点击图上的相关代谢物的名称,可以跳转到相关代谢物的信息页面。
文献列表
- Van-Trung-Tin Huynh, Suenia de Paiva Lacerda, Fabienne Espitalier, Eric Beyssac, Maria-Inês Ré. Effect of talc and vitamin E TPGS on manufacturability, stability and release properties of trilaurin-based formulations for hot-melt coating.
International journal of pharmaceutics.
2024 Mar; 653(?):123866. doi:
10.1016/j.ijpharm.2024.123866
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International journal of pharmaceutics.
2020 Mar; 577(?):119033. doi:
10.1016/j.ijpharm.2020.119033
. [PMID: 31954864] - Yew Chee Kam, Kwan Kit Woo, Lisa Gaik Ai Ong. One-Step Partially Purified Lipases (ScLipA and ScLipB) from Schizophyllum commune UTARA1 Obtained via Solid State Fermentation and Their Applications.
Molecules (Basel, Switzerland).
2017 Dec; 22(12):. doi:
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European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
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. [PMID: 27634645] - Philip Carsten Christophersen, Long Zhang, Anette Müllertz, Hanne Mørck Nielsen, Mingshi Yang, Huiling Mu. Solid lipid particles for oral delivery of peptide and protein drugs II--the digestion of trilaurin protects desmopressin from proteolytic degradation.
Pharmaceutical research.
2014 Sep; 31(9):2420-8. doi:
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Nanomedicine (London, England).
2013 Jul; 8(7):1085-100. doi:
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. [PMID: 23075315] - Wenting Xu, Soo-Jeong Lim, Mi-Kyung Lee. Cellular uptake and antitumour activity of paclitaxel incorporated into trilaurin-based solid lipid nanoparticles in ovarian cancer.
Journal of microencapsulation.
2013; 30(8):755-61. doi:
10.3109/02652048.2013.788083
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Microbial cell factories.
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PloS one.
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. [PMID: 21738729] - Sriharsha Gupta Potta, Sriharsha Minemi, Ravi Kumar Nukala, Chairmane Peinado, Dimitrios A Lamprou, Andrew Urquhart, D Douroumis. Development of solid lipid nanoparticles for enhanced solubility of poorly soluble drugs.
Journal of biomedical nanotechnology.
2010 Dec; 6(6):634-40. doi:
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American journal of physiology. Regulatory, integrative and comparative physiology.
2010 Nov; 299(5):R1306-16. doi:
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Lipids.
2010 Nov; 45(11):975-86. doi:
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International journal of nanomedicine.
2010 Aug; 5(?):533-47. doi:
10.2147/ijn.s7681
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Pharmacognosy reviews.
2010 Jan; 4(7):69-76. doi:
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European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
2009 Jul; 37(5):555-62. doi:
10.1016/j.ejps.2009.04.010
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The journal of physical chemistry. B.
2009 Jan; 113(4):887-93. doi:
10.1021/jp806440d
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European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
2009 Jan; 71(1):80-7. doi:
10.1016/j.ejpb.2008.05.015
. [PMID: 18588976] - E Caudron, J Y Zhou, P England, M Ollivon, P Prognon. Some insights about 1,6-diphenyl-1,3,5-hexatriene-lipid supramolecular assemblies by steady-state fluorescence measurements.
Applied spectroscopy.
2007 Sep; 61(9):963-9. doi:
10.1366/000370207781745937
. [PMID: 17910793] - Tilakavati Karupaiah, Kalyana Sundram. Effects of stereospecific positioning of fatty acids in triacylglycerol structures in native and randomized fats: a review of their nutritional implications.
Nutrition & metabolism.
2007 Jul; 4(?):16. doi:
10.1186/1743-7075-4-16
. [PMID: 17625019] - Swati Gupta, Suresh P Vyas. Development and characterization of amphotericin B bearing emulsomes for passive and active macrophage targeting.
Journal of drug targeting.
2007 Apr; 15(3):206-17. doi:
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. [PMID: 17454358] - Melike Uner, Gülgün Yener. Importance of solid lipid nanoparticles (SLN) in various administration routes and future perspectives.
International journal of nanomedicine.
2007; 2(3):289-300. doi:
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International journal of pharmaceutics.
2006 May; 314(2):137-44. doi:
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The Journal of pharmacy and pharmacology.
2006 Mar; 58(3):321-6. doi:
10.1211/jpp.58.3.0005
. [PMID: 16536898] - Heike Bunjes, Michel H J Koch. Saturated phospholipids promote crystallization but slow down polymorphic transitions in triglyceride nanoparticles.
Journal of controlled release : official journal of the Controlled Release Society.
2005 Oct; 107(2):229-43. doi:
10.1016/j.jconrel.2005.06.004
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2005 Apr; 41(4):305-11. doi:
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Archives of disease in childhood.
2002 Dec; 87(6):522-5. doi:
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European journal of clinical investigation.
2002 Apr; 32(4):285-9. doi:
10.1046/j.1365-2362.2002.00959.x
. [PMID: 11952815] - S Iu Zaĭtsev, B Aha, T A Volchenkova, S V Belov, M P Schneider, A E Ivanov. [The study of hydrolysis of new lipid-like substrates and trilaurin in monolayers catalyzed with the lipase from Pseudomonas fluorescens].
Bioorganicheskaia khimiia.
2000 Mar; 26(3):224-30. doi:
"
. [PMID: 10816821] - J R Mancuso, D J McClements, E A Decker. Iron-accelerated cumene hydroperoxide decomposition in hexadecane and trilaurin emulsions.
Journal of agricultural and food chemistry.
2000 Feb; 48(2):213-9. doi:
10.1021/jf990757d
. [PMID: 10691618] - H Heiati, R Tawashi, N C Phillips. Drug retention and stability of solid lipid nanoparticles containing azidothymidine palmitate after autoclaving, storage and lyophilization.
Journal of microencapsulation.
1998 Mar; 15(2):173-84. doi:
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