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Design Synthesis and Biological Activities of Novel Gemini 20S-Hydroxyvitamin D3 Analogs

机译:新型双子座20S-羟基维生素D3类似物的设计合成和生物活性

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摘要

Vitamin D3 (D3) can be metabolized by cytochrome P450scc (CYP11A1) into 20S-hydroxyvitamin D3 (20D3) as a major metabolite. This bioactive metabolite has shown strong antiproliferative, antifibrotic, pro-differentiation and anti-inflammatory effects while being non-toxic (non-calcemic) at high concentrations. Since D3 analogs with two symmetric side chains (Gemini analogs) result in potent activation of the vitamin D receptor (VDR), we hypothesized that the chain length and composition of these types of analogs also containing a 20-hydroxyl group would affect their biological activities. In this study, we designed and synthesized a series of Gemini 20D3 analogs. Biological tests showed that some of these analogs are partial VDR activators and can significantly stimulate the expression of mRNA for VDR and VDR-regulated genes including CYP24A1 and transient receptor potential cation channel V6 (TRPV6). These analogs inhibited the proliferation of melanoma cells with potency comparable to that of 1α,25-dihydroxyvitamin D3. Moreover, these analogs reduced the level of interferon γ and up-regulated the expression of leukocyte associated immunoglobulin-like receptor 1 in splenocytes, indicating that they have potent anti-inflammatory activities. There are no clear correlations between the Gemini chain length and their VDR activation or biological activities, consistent with the high flexibility of the ligand-binding pocket of the VDR.
机译:维生素D3(D3)可以通过细胞色素P450scc(CYP11A1)代谢为20S-羟基维生素D3(20D3)作为主要代谢产物。这种具有生物活性的代谢产物在高浓度下显示出强大的抗增殖,抗纤维化,促分化和抗炎作用,同时无毒(无血钙)。由于具有两个对称侧链的D3类似物(Gemini类似物)会导致维生素D受体(VDR)的有效激活,因此我们假设这些类型的类似物(也包含20个羟基)的链长和组成会影响其生物学活性。 。在这项研究中,我们设计并合成了一系列Gemini 20D3类似物。生物学测试表明,其中一些类似物是部分VDR激活剂,可以显着刺激VDR和VDR调控基因(包括CYP24A1和瞬时受体电位阳离子通道V6(TRPV6))的mRNA表达。这些类似物抑制黑素瘤细胞的增殖,其效力与1α,25-二羟基维生素D3相当。而且,这些类似物降低了脾细胞中干扰素γ的水平,并上调了白细胞相关免疫球蛋白样受体1的表达,表明它们具有有效的抗炎活性。双子座的链长与其VDR激活或生物学活性之间没有明确的相关性,这与VDR的配体结合口袋的高度灵活性相一致。

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