2,3-Dihydroxypropyl oleate

2,3-Dihydroxypropyl oleate is a lipid of Glycerolipids (GL) class. The involved functions are known as enzyme activity and acyltransferase activity. 2,3-dihydroxypropyl oleate often locates in soluble fraction.

Cross Reference

Introduction

To understand associated biological information of 2,3-Dihydroxypropyl oleate, we collected biological information of abnormalities, associated pathways, cellular/molecular locations, biological functions, related genes/proteins, lipids and common seen animal/experimental models with organized paragraphs from literatures.

What diseases are associated with 2,3-Dihydroxypropyl oleate?

There are no associated biomedical information in the current reference collection.

Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with 2,3-Dihydroxypropyl oleate

PubChem Associated disorders and diseases

What pathways are associated with 2,3-Dihydroxypropyl oleate

There are no associated biomedical information in the current reference collection.

PubChem Biomolecular Interactions and Pathways

Link to PubChem Biomolecular Interactions and Pathways

What cellular locations are associated with 2,3-Dihydroxypropyl oleate?

Related references are published most in these journals:

Location Cross reference Weighted score Related literatures
Loading... please refresh the page if content is not showing up.

What functions are associated with 2,3-Dihydroxypropyl oleate?


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with 2,3-Dihydroxypropyl oleate?

There are no associated biomedical information in the current reference collection.

What genes are associated with 2,3-Dihydroxypropyl oleate?

There are no associated biomedical information in the current reference collection.

What common seen animal models are associated with 2,3-Dihydroxypropyl oleate?

There are no associated biomedical information in the current reference collection.

NCBI Entrez Crosslinks

All references with 2,3-Dihydroxypropyl oleate

Download all related citations
Per page 10 20 50 100 | Total 520
Authors Title Published Journal PubMed Link
Rodríguez Patino JM et al. Structure, miscibility, and rheological characteristics of beta-casein-monoglyceride mixed films at the air-water interface. 2003 J. Agric. Food Chem. pmid:12502394
Sennoga C et al. Membrane-protein crystallization in cubo: temperature-dependent phase behaviour of monoolein-detergent mixtures. 2003 Acta Crystallogr. D Biol. Crystallogr. pmid:12554934
Chernyshev A et al. Kinetic isotope effects of proton transfer in aqueous and methanol containing solutions, and in gramicidin A channels. 2003 Biophys. Chem. pmid:12568940
Barauskas J et al. Towards redox active liquid crystalline phases of lipids: a monoolein/water system with entrapped derivatives of ferrocene. 2003 Chem. Phys. Lipids pmid:12637167
Chupin V et al. Effect of phospholipids and a transmembrane peptide on the stability of the cubic phase of monoolein: implication for protein crystallization from a cubic phase. 2003 Biophys. J. pmid:12668446
Angelov B et al. Diamond-type lipid cubic phase with large water channels. 2003 J. Am. Chem. Soc. pmid:12797787
Pomès R and Yu CH Relay and blockage of protons in water chains. 2003 Front. Biosci. pmid:12957853
Kararli TT and Gupta VW Solubilization and dissolution properties of a leukotriene-D4 antagonist in micellar solutions. 1992 J Pharm Sci pmid:1403686
Kararli TT et al. Enhancement of nasal delivery of a renin inhibitor in the rat using emulsion formulations. 1992 Pharm. Res. pmid:1409372
Chung H and Caffrey M Direct correlation of structure changes and thermal events in hydrated lipid established by simultaneous calorimetry and time-resolved x-ray diffraction. 1992 Biophys. J. pmid:1420889
Kararli TT et al. Oral delivery of a renin inhibitor compound using emulsion formulations. 1992 Pharm. Res. pmid:1438002
Norling T et al. Formulation of a drug delivery system based on a mixture of monoglycerides and triglycerides for use in the treatment of periodontal disease. 1992 J. Clin. Periodontol. pmid:1447387
Misquitta Y and Caffrey M Detergents destabilize the cubic phase of monoolein: implications for membrane protein crystallization. 2003 Biophys. J. pmid:14581209
Lee J et al. Kinetic characterization of swelling of liquid crystalline phases of glyceryl monooleate. 2003 Arch. Pharm. Res. pmid:14609139
Rowiński P et al. Electrodes modified with monoolein cubic phases hosting laccases for the catalytic reduction of dioxygen. 2004 Anal. Chem. pmid:14719872
Rodrigues B et al. Long term incubation of cardiac myocytes with oleic acid and very-low density lipoprotein reduces heparin-releasable lipoprotein lipase activity. 1992 Mol. Cell. Biochem. pmid:1480152
Sintov AC and Shapiro L New microemulsion vehicle facilitates percutaneous penetration in vitro and cutaneous drug bioavailability in vivo. 2004 J Control Release pmid:14980766
Kumar M K et al. Effect of drug solubility and different excipients on floating behaviour and release from glyceryl monooleate matrices. 2004 Int J Pharm pmid:15019078
Tanaka S et al. Crystallization of a globular protein in lipid cubic phase. 2004 Phys. Rev. Lett. pmid:15089713
Bojar RA et al. The effect of lipids on the adherence of axillary aerobic coryneform bacteria. 2004 Lett. Appl. Microbiol. pmid:15130141
Okonogi S et al. Development of local injectable dental gel: the influence of certain additives on physicochemical properties of glycerylmonooleate-based formulations. 2004 Drug Dev Ind Pharm pmid:15132177
Sánchez CC and Rodríguez Patino JM Flow-induced molecular segregation in beta-casein-monoglyceride mixed films spread at the air-water interface. 2004 Langmuir pmid:15248719
Leesajakul W et al. Interaction of cubosomes with plasma components resulting in the destabilization of cubosomes in plasma. 2004 Colloids Surf B Biointerfaces pmid:15261065
Partenskii MB et al. Membrane inclusions as coupled harmonic oscillators: effects due to anisotropic membrane slope relaxation. 2004 J Chem Phys pmid:15267626
Kim JC et al. Monoolein cubic phases containing hydrogen peroxide. 2004 Colloids Surf B Biointerfaces pmid:15276632
Puri V and Bansal AK In vitro-in vivo characterization of release modifying agents for parenteral sustained-release ketorolac formulation. 2004 Drug Dev Ind Pharm pmid:15285335
Sparr E et al. The effect of bacteriorhodopsin, detergent and hydration on the cubic-to-lamellar phase transition in the monoolein-distearoyl phosphatidyl glycerol-water system. 2004 Biochim. Biophys. Acta pmid:15471581
Qutub Y et al. Crystallization of transmembrane proteins in cubo: mechanisms of crystal growth and defect formation. 2004 J. Mol. Biol. pmid:15491610
Zimmermann R et al. Fat mobilization in adipose tissue is promoted by adipose triglyceride lipase. 2004 Science pmid:15550674
Misquitta LV et al. Membrane protein crystallization in lipidic mesophases with tailored bilayers. 2004 Structure pmid:15576026
Nithipatikom K et al. 2-arachidonoylglycerol: a novel inhibitor of androgen-independent prostate cancer cell invasion. 2004 Cancer Res. pmid:15604240
Kraineva J et al. Kinetics of lamellar-to-cubic and intercubic phase transitions of pure and cytochrome c containing monoolein dispersions monitored by time-resolved small-angle X-ray diffraction. 2005 Langmuir pmid:15807602
Shah MH and Paradkar A Cubic liquid crystalline glyceryl monooleate matrices for oral delivery of enzyme. 2005 Int J Pharm pmid:15814241
Bilewicz R et al. Modified electrodes based on lipidic cubic phases. 2005 Bioelectrochemistry pmid:15833697
Lopes LB et al. Topical delivery of cyclosporin A: an in vitro study using monoolein as a penetration enhancer. 2005 Eur J Pharm Biopharm pmid:15848052
Johnsson M et al. Aqueous phase behavior and dispersed nanoparticles of diglycerol monooleate/glycerol dioleate mixtures. 2005 Langmuir pmid:15896065
Amar-Yuli I and Garti N Transitions induced by solubilized fat into reverse hexagonal mesophases. 2005 Colloids Surf B Biointerfaces pmid:15921902
Masum SM et al. Effect of positively charged short peptides on stability of cubic phases of monoolein/dioleoylphosphatidic acid mixtures. 2005 Langmuir pmid:15924452
Wang Z et al. Effect of sucrose on the structure of a cubic phase formed from a monoolein/water mixture. 2005 J Colloid Interface Sci pmid:15927636
Bender J et al. Lipid cubic phases for improved topical drug delivery in photodynamic therapy. 2005 J Control Release pmid:15967535
Steluti R et al. Topical glycerol monooleate/propylene glycol formulations enhance 5-aminolevulinic acid in vitro skin delivery and in vivo protophorphyrin IX accumulation in hairless mouse skin. 2005 Eur J Pharm Biopharm pmid:15996585
Wörle G et al. Transformation of vesicular into cubic nanoparticles by autoclaving of aqueous monoolein/poloxamer dispersions. 2006 Eur J Pharm Sci pmid:16157479
Bonacucina G et al. Rheological and dielectric characterization of monoolein/water mesophases in the presence of a peptide drug. 2005 J Pharm Sci pmid:16200546
Lee SJ et al. Bioadhesive drug delivery system using glyceryl monooleate for the intravesical administration of paclitaxel. 2005 Chemotherapy pmid:16224181
Borné J et al. Vesicle formation and other structures in aqueous dispersions of monoolein and sodium oleate. 2003 J Colloid Interface Sci pmid:16256485
Kraineva J et al. Incorporation of alpha-chymotrypsin into the 3D channels of bicontinuous cubic lipid mesophases. 2006 Biochim. Biophys. Acta pmid:16330264
Ilardia-Arana D et al. Biorelevant dissolution media: aggregation of amphiphiles and solubility of estradiol. 2006 J Pharm Sci pmid:16374874
Fenske DB and Cullis PR Chemical exchange between lamellar and non-lamellar lipid phases. A one- and two-dimensional 31P-NMR study. 1992 Biochim. Biophys. Acta pmid:1637844
Boyd BJ et al. Lyotropic liquid crystalline phases formed from glycerate surfactants as sustained release drug delivery systems. 2006 Int J Pharm pmid:16413980
Ferreira DA et al. Cryo-TEM investigation of phase behaviour and aggregate structure in dilute dispersions of monoolein and oleic acid. 2006 Int J Pharm pmid:16439076