MeSH term | MeSH ID | Detail |
---|---|---|
Alzheimer Disease | D000544 | 76 associated lipids |
Adenocarcinoma | D000230 | 166 associated lipids |
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.
Location | Cross reference | Weighted score | Related literatures |
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Function | Cross reference | Weighted score | Related literatures |
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Lipid concept | Cross reference | Weighted score | Related literatures |
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Gene | 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).
Model | Cross reference | Weighted score | Related literatures |
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Authors | Title | Published | Journal | PubMed Link |
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Maffey KG et al. | The influence of lipid composition and divalent cations on annexin V binding to phospholipid mixtures. | 2001 | Ann. Clin. Lab. Sci. | pmid:11314866 |
Kumar RK et al. | Cytoskeletal-like supramolecular assembly and nanoparticle-based motors in a model protocell. | 2011 | Angew. Chem. Int. Ed. Engl. | pmid:21770006 |
Orwick MC et al. | Detergent-free formation and physicochemical characterization of nanosized lipid-polymer complexes: Lipodisq. | 2012 | Angew. Chem. Int. Ed. Engl. | pmid:22473824 |
Koubi L et al. | Effects of the nonimmobilizer hexafluroethane on the model membrane dimyristoylphosphatidylcholine. | 2002 | Anesthesiology | pmid:12357150 |
Harris RA and Groh GI | Membrane disordering effects of anesthetics are enhanced by gangliosides. | 1985 | Anesthesiology | pmid:3918480 |
Durney BC et al. | Reversible phospholipid nanogels for deoxyribonucleic acid fragment size determinations up to 1500 base pairs and integrated sample stacking. | 2015 | Anal. Chim. Acta | pmid:26092346 |
Nguyen TT and Conboy JC | High-throughput screening of drug-lipid membrane interactions via counter-propagating second harmonic generation imaging. | 2011 | Anal. Chem. | pmid:21696170 |
Zhang Z et al. | Direct voltammetry and catalysis with Mycobacterium tuberculosis catalase-peroxidase, peroxidases, and catalase in lipid films. | 2002 | Anal. Chem. | pmid:11795785 |
Garcia-Manyes S et al. | Titration force microscopy on supported lipid bilayers. | 2006 | Anal. Chem. | pmid:16383311 |
Hasan IY and Mechler A | Cholesterol Rich Domains Identified in Unilamellar Supported Biomimetic Membranes via Nano-Viscosity Measurements. | 2016 | Anal. Chem. | pmid:27137411 |
Fox CB et al. | Detection of drug-membrane interactions in individual phospholipid vesicles by confocal Raman microscopy. | 2006 | Anal. Chem. | pmid:16841911 |
Warner DR et al. | Cell-free synthesis of functional type IV adenylyl cyclase. | 1995 | Anal. Biochem. | pmid:8600828 |
Gauger DR et al. | Defining the water content in oriented lipid films by Karl-Fischer titration. | 2001 | Anal. Biochem. | pmid:11726191 |
Johnson ML et al. | The measurement of the kinetics of lipid phase transitions: a volume-perturbation kinetic calorimeter. | 1983 | Anal. Biochem. | pmid:6846787 |
Vivek HK et al. | A facile assay to monitor secretory phospholipase Aâ‚‚ using 8-anilino-1-naphthalenesulfonic acid. | 2014 | Anal. Biochem. | pmid:24915638 |
Pastor I et al. | A ready-to-use fluorimetric biosensor for superoxide radical using superoxide dismutase and peroxidase immobilized in sol-gel glasses. | 2004 | Anal. Biochem. | pmid:15494141 |
Jansons VK and Mallett PL | Targeted liposomes: a method for preparation and analysis. | 1981 | Anal. Biochem. | pmid:7235241 |
Yamamoto T et al. | Apolipoprotein E isoform-specific binding to the low-density lipoprotein receptor. | 2008 | Anal. Biochem. | pmid:17923100 |
Cascio M and Wallace BA | Effects of local environment on the circular dichroism spectra of polypeptides. | 1995 | Anal. Biochem. | pmid:7668397 |
Bevan DR and Yonda NT | In vitro technique to study elution of benzo[a]pyrene from particulates into biomembranes with application to woodstove particulates. | 1985 | Anal. Biochem. | pmid:4083471 |