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Glucosylceramides(buttermilk)
本产品不向个人销售,仅用作科学研究,不用于任何人体实验及非科研性质的动物实验。
Glucosylceramides(buttermilk)图片
规格:98%
分子量:784.2
包装与价格:
包装价格(元)
500ug电议
1mg电议
5mg电议
50mg电议

产品介绍
C46H89NO8 (for docosanoyl)
货号:ajcx23916
CAS:N/A
分子式:C46H89NO8 (for docosanoyl)
分子量:784.2
溶解度:Chloroform:Methanol (2:1): Soluble
纯度:98%
存储:Store at -20°C
库存:现货

Background:

Glucosylceramides are formed by the tethering of glucose to a ceramide by glucosylceramides synthase.1They are present in neuronal and non-neuronal mammalian tissues and are found at low quantities in a large number of plant species, where they comprise 5-30% of total lipids in the plant plasma membrane, and in fungi.1,2,3Glucosylceramides levels decrease during cold acclimatization in plants and glucosylceramides in fungi are involved in the regulation of virulence and act as elicitors in plants, stimulating plant defense mechanisms.3,4Glucosylceramides are precursors in the synthesis of lactosylceramides and gangliosides. Increased levels of glucosylceramides are associated with obesity-induced insulin resistance in mice and with neuronal deficits observed in neuronopathic Gaucher disease.1,5This product is a mixture of glucosylceramides with variable ceramide chain lengths, extracted from bovine buttermilk. [Matreya, LLC. Catalog No. 1521]


1.Holland, W.L., and Summers, S.A.Sphingolipids, insulin resistance, and metabolic disease: New insights from in vivo manipulation of sphingolipid metabolismEndocr. Rev.29(4)381-402(2008) 2.Cahoon, E.B., and Lynch, D.V.Analysis of glucocerebrosides of rye (Secale cereale L. cv Puma) leaf and plasma membranePlant Physiol.95(1)56-68(1991) 3.Lynch, D.V., and Dunn, T.M.An introduction to plant sphingolipids and a review of recent advances in understanding their metabolism and functionNew Phytol.161(3)667-702(2004) 4.Rollin-Pinheiro, R., Bernardino, M.C., and Barreto-Bergter, E.Sphingolipids: Functional and biological aspects in mammals, plants, and fungiAnalysis of membrane lipids21-40(2020) 5.Dai, M., Liou, B., Swope, B., et al.Progression of behavioral and CNS deficits in a viable murine model of chronic neuronopathic Gaucher diseasePLoS One11(9)e0162367(2016)