CYTOCHALASIN B

CYTOCHALASIN B is a lipid of Polyketides (PK) class. Cytochalasin b is associated with abnormalities such as Renal tubular disorder and Chagas Disease. The involved functions are known as Membrane Protein Traffic, inhibitors, Metabolic Inhibition, Biochemical Pathway and Increased Sensitivy. Cytochalasin b often locates in Cytoplasmic matrix, Plasma membrane, Microtubules, Extracellular and Protoplasm. The associated genes with CYTOCHALASIN B are SLC2A2 gene, PFDN5 gene, SLC2A1 gene, OMG gene and SPEN gene. The related lipids are Steroids, Lipopolysaccharides and Liposomes. The related experimental models are Xenograft Model.

Cross Reference

Introduction

To understand associated biological information of CYTOCHALASIN B, 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 CYTOCHALASIN B?

CYTOCHALASIN B is suspected in Renal tubular disorder, Chagas Disease and other diseases in descending order of the highest number of associated sentences.

Related references are mostly published in these journals:

Disease Cross reference Weighted score Related literature
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Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with CYTOCHALASIN B

MeSH term MeSH ID Detail
Carbon Monoxide Poisoning D002249 9 associated lipids
Carcinoma 256, Walker D002279 22 associated lipids
Cell Transformation, Neoplastic D002471 126 associated lipids
Cell Transformation, Viral D002472 26 associated lipids
Chancroid D002602 4 associated lipids
Chondrosarcoma D002813 9 associated lipids
Colonic Neoplasms D003110 161 associated lipids
Dermatitis, Contact D003877 59 associated lipids
Diabetes Mellitus D003920 90 associated lipids
Diabetes Mellitus, Experimental D003921 85 associated lipids
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PubChem Associated disorders and diseases

What pathways are associated with CYTOCHALASIN B

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 CYTOCHALASIN B?

Related references are published most in these journals:

Location Cross reference Weighted score Related literatures
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What functions are associated with CYTOCHALASIN B?


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with CYTOCHALASIN B?

Related references are published most in these journals:

Lipid concept Cross reference Weighted score Related literatures
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What genes are associated with CYTOCHALASIN B?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with CYTOCHALASIN B?

Xenograft Model

Xenograft Model are used in the study 'Endofacial competitive inhibition of the glucose transporter 1 activity by gossypol.' (Pérez A et al., 2009).

Related references are published most in these journals:

Model Cross reference Weighted score Related literatures
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NCBI Entrez Crosslinks

All references with CYTOCHALASIN B

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Authors Title Published Journal PubMed Link
Noipha K et al. Carbazoles and coumarins from Clausena harmandiana stimulate glucose uptake in L6 myotubes. 2010 Diabetes Res. Clin. Pract. pmid:20888659
Kim BS et al. Effects of gonadotropins on in vitro maturation and of electrical stimulation on parthenogenesis of canine oocytes. 2010 Reprod. Domest. Anim. pmid:19144021
Fowler P et al. Etoposide; colchicine; mitomycin C and cyclophosphamide tested in the in vitro mammalian cell micronucleus test (MNvit) in Chinese hamster lung (CHL) cells at Covance laboratories; Harrogate UK in support of OECD draft Test Guideline 487. 2010 Mutat. Res. pmid:20226265
Elhajouji A Mitomycin C, 5-fluoruracil, colchicine and etoposide tested in the in vitro mammalian cell micronucleus test (MNvit) in the human lymphoblastoid cell line TK6 at Novartis in support of OECD draft Test Guideline 487. 2010 Mutat. Res. pmid:20338262
Schuler M et al. Evaluation of phenolphthalein, diazepam and quinacrine dihydrochloride in the in vitro mammalian cell micronucleus test in Chinese hamster ovary (CHO) and TK6 cells. 2010 Mutat. Res. pmid:20399283
Hashimoto K et al. Comparison of four different treatment conditions of extended exposure in the in vitro micronucleus assay using TK6 lymphoblastoid cells. 2011 Regul. Toxicol. Pharmacol. pmid:20800082
Al-Hallak MH et al. Microcalorimetric method to assess phagocytosis: macrophage-nanoparticle interactions. 2011 AAPS J pmid:21057907
Thomas P and Fenech M Cytokinesis-block micronucleus cytome assay in lymphocytes. 2011 Methods Mol. Biol. pmid:21057931
Tseng YC et al. Functional analysis of the glucose transporters-1a, [corrected] -6, and -13.1 expressed by zebrafish epithelial cells. 2011 Am. J. Physiol. Regul. Integr. Comp. Physiol. pmid:21123760
Dodonova SO and Bulychev AA Cyclosis-related asymmetry of chloroplast-plasma membrane interactions at the margins of illuminated area in Chara corallina cells. 2011 Protoplasma pmid:21103897
Sembon S et al. A simple method for producing tetraploid porcine parthenogenetic embryos. 2011 Theriogenology pmid:21652062
Pacini N et al. Melatonin enhances the in vitro action of cytochalasin B on globular resistance and osmotic fragility of erythrocytes. 2011 Neuro Endocrinol. Lett. pmid:21712781
Bevacqua RJ et al. Bovine parthenogenotes produced by inhibition of first or second polar bodies emission. 2011 Biocell pmid:21667666
Cakmak Demircigil G et al. Micronucleus frequencies in peripheral blood lymphocytes of children with chronic kidney disease. 2011 Mutagenesis pmid:21669938
Wang XL et al. Stochastic dynamics of actin filaments in guard cells regulating chloroplast localization during stomatal movement. 2011 Plant Cell Environ. pmid:21443604
Chan HH et al. Bioactive constituents from the roots of Panax japonicus var. major and development of a LC-MS/MS method for distinguishing between natural and artifactual compounds. 2011 J. Nat. Prod. pmid:21417387
Robichaud T et al. Determinants of ligand binding affinity and cooperativity at the GLUT1 endofacial site. 2011 Biochemistry pmid:21384913
SerebrianyÄ­ AM et al. [Distribution of individuals by spontaneous frequencies of lymphocytes with micronuclei. Particularity and consequences]. 2011 Tsitologiia pmid:21473112
Porter-Turner MM et al. Relationship between erythrocyte GLUT1 function and membrane glycation in type 2 diabetes. 2011 Br. J. Biomed. Sci. pmid:22263435
Praphasawat R et al. Antimutagenicity and antioxidative DNA damage properties of oligomeric proanthocyanidins from Thai grape seeds in TK6 cells. 2011 Asian Pac. J. Cancer Prev. pmid:21875289