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Artificial and Natural Sialic Acid Precursors Influence the Angiogenic Capacity of Human Umbilical Vein Endothelial Cells

机译:人工和天然唾液酸前体影响人脐静脉内皮细胞的血管生成能力

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摘要

N-acetylneuraminic acid (Neu5Ac) represents the most common terminal carbohydrate residue in many mammalian glycoconjugates and is directly involved in a number of different physiological as well as pathological cellular processes. Endogenous sialic acids derive from the biosynthetic precursor molecule N-acetyl-D-mannosamine (ManNAc). Interestingly, N-acyl-analogues of D-mannosamine (ManN) can also be incorporated and converted into corresponding artificial sialic acids by eukaryotic cells. Within this study, we optimized a protocol for the chemical synthesis of various peracetylated ManN derivatives resulting in yields of approximately 100%. Correct molecular structures of the obtained products ManNAc, N-propanoyl-ManN (ManNProp) and N-butyl-ManN (ManNBut) were verified by GC-, ESI-MS- and NMR-analyses. By applying these substances to human umbilical vein endothelial cells (HUVECs), we could show that each derivative was metabolized to the corresponding N-acylneuraminic acid variant and subsequently incorporated into nascent glycoproteins. To investigate whether natural and/or artificial sialic acid precursors are able to modulate the angiogenic capacity of HUVECs, a spheroid assay was performed. By this means, an increase in total capillary length has been observed when cells incorporated N-butylneuraminic acid (Neu5But) into their glycoconjugates. In contrast, the natural precursor ManNAc inhibited the growth of capillaries. Thus, sialic acid precursors may represent useful agents to modulate blood vessel formation.
机译:N-乙酰神经氨酸(Neu5Ac)代表许多哺乳动物糖结合物中最常见的末端碳水化合物残基,并且直接参与许多不同的生理和病理细胞过程。内源性唾液酸衍生自生物合成的前体分子N-乙酰基-D-甘露糖胺(ManNAc)。有趣的是,还可以掺入D-甘露糖胺(ManN)的N-酰基类似物,并通过真核细胞转化为相应的人工唾液酸。在这项研究中,我们优化了化学合成各种过乙酰化ManN衍生物的方案,产生了约100%的产率。通过GC-,ESI-MS-和NMR分析验证了所得产物ManNAc,N-丙酰基-ManN(ManNProp)和N-丁基-ManN(ManNBut)的正确分子结构。通过将这些物质应用于人脐静脉内皮细胞(HUVEC),我们可以证明每种衍生物都被代谢为相应的N-酰基神经氨酸酸变体,随后被掺入新生糖蛋白中。为了研究天然和/或人工唾液酸前体是否能够调节HUVEC的血管生成能力,进行了球体测定。通过这种方法,当细胞将N-丁基神经氨酸(Neu5But)掺入其糖缀合物中时,总毛细管长度就会增加。相反,天然前体ManNAc抑制了毛细血管的生长。因此,唾液酸前体可以代表调节血管形成的有用试剂。

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