CMPF
呋喃脂肪酸的内源性代谢物
| 规格 | 价格 | 货期 | 数量 |
|---|---|---|---|
| 500ug | ¥401.00 | 现货 | |
| 1mg | ¥768.00 | 现货 | |
| 5mg | ¥3214.00 | 现货 | |
| 10mg | ¥5625.00 | 现货 |
特色产品
- 用于免疫印迹和质谱分析等后续操作
- 适用于30 KDa-130 KDa大小的蛋白
- 可将信号灵敏度提高100倍
- 同时保持稳定的特异性和分辨率
- 提供更高的转录效率并抑制免疫激活
- 使用5-moUTP和Cy5-utp修饰
产品描述
CMPF is an endogenous metabolite of furan fatty acids. CMPF is highly bound to albumin. Its main role is to inhibit cell transport and subsequent deiodination of thyroxine (T4)[1].
CMPF can effectively replace the competitive T4 binding molecules in albumin and play a role by indirectly binding albumin. And CMPF can inhibit the binding of T4 and albumin by increasing the serum concentration of competitive binding molecules such as oleic acid[2].
References:
[1]. Lim C, Bernard B F, De Jong M, et al. A furan fatty acid and indoxyl sulfate are the putative inhibitors of thyroxine hepatocyte transport in uremia. The Journal of Clinical Endocrinology and Metabolism, 1993, 76(2): 318-324.
[2]. Lim C F, Stockigt J R, Curtis A J, et al. A naturally occuring furan fatty acid enhances drug inhibition of thyroxine binding in serum. Metabolism, 1993, 42(11): 1468-1474.
产品性质
| 物理外观 | A crystalline solid |
| CAS号 | 86879-39-2 |
| 分子式 | C12H16O5 |
| 分子量 | 240.25 |
| 化学名称 | 2-(2-carboxyethyl)-4-methyl-5-propylfuran-3-carboxylic acid |
| 溶解度 | insoluble in H2O; ≥48.4 mg/mL in EtOH; ≥49.4 mg/mL in DMSO |
| SMILES | CCCC1=C(C)C(C(O)=O)=C(CCC(O)=O)O1 |
| 存储条件 | -20°C |
| 运输条件 | 蓝冰 |
产品应用 (实验数据来自文献,APExBIO并未验证,仅供参考)
IC50和靶点
| 生物活性描述 | CMPF 是一种微管蛋白抑制剂;可用于研究肿瘤。 |
生物相关数据
质量控制
操作说明
APExBIO 顾客使用本产品发表的 3 篇科研文献
- 1. Yuanyuan Shi, Huajun Tian, et al. "Improved Dialysis Removal of Protein-Bound Uraemic Toxins with a Combined Displacement and Adsorption Technique." Blood Purif. 2022;51(6):548-558. PMID:34515053
- 2. Shi Y, Zhang Y, et al. "Improved dialytic removal of protein-bound uremic toxins by intravenous lipid emulsion in chronic kidney disease rats." Nephrol Dial Transplant. 2019 May 9. pii: gfz079. PMID:31071223
- 3. Shi Y, Tian H, et al. "Effect of Ionic Strength, pH and Chemical Displacers on the Percentage Protein Binding of Protein-Bound Uremic Toxins." Blood Purif. 2018 Dec 18:1-10. PMID:30562731



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