18194-24-6 is a lipid of Glycerophospholipids (GP) class. 18194-24-6 is associated with abnormalities such as Cerebrovascular accident, Renal tubular disorder, Atherosclerosis, Hyperlipoproteinemia Type III and Lipid Metabolism Disorders. The involved functions are known as Process, protein folding, Catalyst, Biochemical Pathway and Fold in Medical Device Material. 18194-24-6 often locates in Tissue membrane, Membrane, periplasm, vesicle membrane and outer membrane. The associated genes with 18194-24-6 are Integral Membrane Proteins, Protein Structure, RTN4 gene, RTN4R gene and Protein, Organized by Structure. The related lipids are Micelles, dimyristoylphosphatidylglycerol, 1,2-dihexadecyl-sn-glycero-3-phosphocholine, Unilamellar Vesicles and cholesteryl oleate. The related experimental models are Mouse Model, Arthritis, Adjuvant-Induced, Disease model and Xenograft Model.
To understand associated biological information of 18194-24-6, 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.
18194-24-6 is suspected in Atherosclerosis, Cardiovascular Diseases, Dehydration, Abnormal shape, Renal tubular disorder, Hyperlipoproteinemia Type III and other diseases in descending order of the highest number of associated sentences.
Disease | Cross reference | Weighted score | Related literature |
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We collected disease MeSH terms mapped to the references associated with 18194-24-6
There are no associated biomedical information in the current reference collection.
Associated locations are in red color. Not associated locations are in black.
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Lipid concept | Cross reference | Weighted score | Related literatures |
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Mouse Model are used in the study 'Association of a model class A (apolipoprotein) amphipathic alpha helical peptide with lipid: high resolution NMR studies of peptide.lipid discoidal complexes.' (Mishra VK et al., 2006).
Arthritis, Adjuvant-Induced are used in the study 'T cell antigen receptor peptide-lipid membrane interactions using surface plasmon resonance.' (Bender V et al., 2004).
Disease model are used in the study 'Kupffer cells do not play a role in governing the efficacy of liposomal mitoxantrone used to treat a tumor model designed to assess drug delivery to liver.' (Lim HJ et al., 2000).
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Authors | Title | Published | Journal | PubMed Link |
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Mitra M et al. | Fluorescence study of the effect of cholesterol on spectrin-aminophospholipid interactions. | 2015 | Eur. Biophys. J. | pmid:26184723 |
Lockhart C and Klimov DK | Calcium enhances binding of Aβ monomer to DMPC lipid bilayer. | 2015 | Biophys. J. | pmid:25863071 |
Dong X et al. | Phospholipid Bicelles Improve the Conformational Stability of Rhodopsin Mutants Associated with Retinitis Pigmentosa. | 2015 | Biochemistry | pmid:26181234 |
Wrobel D et al. | Interaction study between maltose-modified PPI dendrimers and lipidic model membranes. | 2015 | Biochim. Biophys. Acta | pmid:25843678 |
BeliÄka M et al. | The component group structure of DPPC bilayers obtained by specular neutron reflectometry. | 2015 | Soft Matter | pmid:26160133 |
Å egota S et al. | Ionic strength and composition govern the elasticity of biological membranes. A study of model DMPC bilayers by force- and transmission IR spectroscopy. | 2015 | Chem. Phys. Lipids | pmid:25447291 |
Alexandrova L et al. | Wetting properties of phospholipid dispersion on tunable hydrophobic SiO2-glass plates. | 2015 | Adv Colloid Interface Sci | pmid:25441448 |
Nierzwicki L et al. | Interaction of cisplatin and two potential antitumoral platinum(II) complexes with a model lipid membrane: a combined NMR and MD study. | 2015 | Phys Chem Chem Phys | pmid:25429970 |
Khajeh A and Modarress H | Effect of cholesterol on behavior of 5-fluorouracil (5-FU) in a DMPC lipid bilayer, a molecular dynamics study. | 2014 Mar-Apr | Biophys. Chem. | pmid:24583772 |
Bian J et al. | Solid-phase extraction approach for phospholipids profiling by titania-coated silica microspheres prior to reversed-phase liquid chromatography-evaporative light scattering detection and tandem mass spectrometry analysis. | 2014 | Talanta | pmid:24725887 |
Salcedo CL et al. | Surface and hysteresis properties of lipid interphases composed by head group substituted phosphatidylethanolamines. | 2014 | Colloids Surf B Biointerfaces | pmid:24099791 |
Sommer LA and Dames SA | Characterization of residue-dependent differences in the peripheral membrane association of the FATC domain of the kinase 'target of rapamycin' by NMR and CD spectroscopy. | 2014 | FEBS Lett. | pmid:24704685 |
Marquardt D et al. | Dimyristoyl phosphatidylcholine: a remarkable exception to α-tocopherol's membrane presence. | 2014 | J. Am. Chem. Soc. | pmid:24308426 |
Manrique-Moreno M et al. | Structural effects of the Solanum steroids solasodine, diosgenin and solanine on human erythrocytes and molecular models of eukaryotic membranes. | 2014 | Biochim. Biophys. Acta | pmid:23954587 |
Muñoz F et al. | Possible mechanism of structural transformations induced by StAsp-PSI in lipid membranes. | 2014 | Biochim. Biophys. Acta | pmid:23954619 |
Majumdar A et al. | Modulation of non steroidal anti-inflammatory drug induced membrane fusion by copper coordination of these drugs: anchoring effect. | 2014 | J Phys Chem B | pmid:25380501 |
Giuffrida MC et al. | Lipophilic prodrug of paclitaxel: interaction with a dimyristoylphosphatidylcholine monolayer. | 2014 | Int J Pharm | pmid:25234865 |
Sarpietro MG et al. | DSC investigation of the effect of the new sigma ligand PPCC on DMPC lipid membrane. | 2014 | Int J Pharm | pmid:24768402 |
Hansen SK et al. | Lipid dynamics studied by calculation of 31P solid-state NMR spectra using ensembles from molecular dynamics simulations. | 2014 | J Phys Chem B | pmid:24738559 |
Armstrong CL et al. | Nanosecond lipid dynamics in membranes containing cholesterol. | 2014 | Soft Matter | pmid:24647350 |