超临界流体色谱法快速分离五种环孢素类似物

Y. Shao, Chunlei Wang, Atsu Apedo, O. Mcconnell
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引用次数: 8

摘要

最近,由于环肽在效价、渗透性、蛋白水解稳定性和相对于传统小分子药物的独特选择性方面的治疗优势,对环肽的兴趣重新抬头。环孢素是一类广泛应用于自身免疫抑制的环肽。环孢素类似物由11种氨基酸组成,主要区别在于其氨基酸残基的侧链。在这项研究中,利用超临界流体色谱(SFC)建立了一种单步分离方法,在裸硅填充柱上分离五种天然存在的环孢素类似物(环孢素a、B、C、D和H)。优化后的方法以乙醇修饰的二氧化碳为流动相,在80℃的硅柱上,在220 nm的紫外波长下进行检测。虽然柱温和背压对SFC分离的影响一般不显著,但我们的研究发现,温度和压力的增加大大改善了峰的形状和分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid Separation of Five Cyclosporin Analogs by Supercritical Fluid Chromatography
Recently there has been a resurgence of interest in cyclic peptides due to their therapeutic advantages in terms of potency, permeability, proteolytic stability, and unique selectivity relative to traditional smaller drug molecules. Cyclosporin is a family of cyclic peptides widely used as autoimmune suppression agents. Cyclosporin analogs consist of eleven amino acids with the main difference lying at the side chain of its amino acid residues. In this study, a single step separation method was developed utilizing Supercritical Fluid Chromatography (SFC) to resolve five naturally occurring cyclosporin analogs (Cyclosporin A, B, C, D, and H) on a bare silica-packed column. The optimized method involved use of ethanol-modified carbon dioxide as mobile phase on a bare silica column at 80 °C and UV detection at 220 nm. Although column temperature and back pressure generally had insignificant effect on SFC separation, it was found in our study that increasing temperature and pressure greatly improved peak shape and resolution.
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