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胆汁酸的甲酰基和乙酰基衍生物及其克分子盐的溶血活性。

Haemolytic activity of formyl- and acetyl-derivatives of bile acids and their gramine salts.

作者信息

Kozanecka-Okupnik Weronika, Jasiewicz Beata, Pospieszny Tomasz, Matuszak Monika, Mrówczyńska Lucyna

机构信息

Faculty of Chemistry, Adam Mickiewicz University, Umultowska 89b, 61-614 Poznań, Poland.

Faculty of Chemistry, Adam Mickiewicz University, Umultowska 89b, 61-614 Poznań, Poland.

出版信息

Steroids. 2017 Oct;126:50-56. doi: 10.1016/j.steroids.2017.07.003. Epub 2017 Jul 13.

Abstract

Bile acids (lithocholic: LCA, deoxycholic: DCA and cholic: CA) and their formyl- and acetyl-derivatives can be used as starting material in chemical synthesis of compounds with different biological activity strongly depended on their chemical structures. Our previous studies showed that biological activity of bile acids salts with gramine toward human erythrocytes was significantly different from the activity of bile acids alone. Moreover, gramine effectively modified the membrane perturbing activity of other steroids. As a continuation of our work, the haemolytic activity of formyl- and acetyl-substituet bile acids as well as their gramine salts was studied in vitro. The structures of new compounds were confirmed by spectral (NMR, FT-IR) analysis, mass spectrometry (ESI-MS) as well as PM5 semiempirical methods. The results shown that the haemolytic activity of formyl- and acetyl-LCA and DCA was significantly higher in comparison with their native forms at the whole concentration range. At high concentration, formyl derivative of CA was as effective as LCA and DCA derivatives whereas at lower concentration its haemolytic activity was at the level of original acid. The acetyl-CA was not active as membrane perturbing agents. Furthermore, gramine significantly decreased the membrane-perturbing activity of hydrophobic bile acids derivatives. The results obtained with the cellular system are in line with physicochemical calculation.

摘要

胆汁酸(石胆酸:LCA、脱氧胆酸:DCA和胆酸:CA)及其甲酰基和乙酰基衍生物可作为化学合成具有不同生物活性的化合物的起始原料,这些生物活性很大程度上取决于它们的化学结构。我们之前的研究表明,胆酸盐与禾本科碱对人红细胞的生物活性与单独的胆汁酸活性显著不同。此外,禾本科碱有效地改变了其他类固醇的膜扰动活性。作为我们工作的延续,我们研究了甲酰基和乙酰基取代的胆汁酸及其禾本科碱盐的体外溶血活性。通过光谱(NMR、FT-IR)分析、质谱(ESI-MS)以及PM5半经验方法确认了新化合物的结构。结果表明,在整个浓度范围内,甲酰基和乙酰基-LCA和DCA的溶血活性与其天然形式相比显著更高。在高浓度下,CA的甲酰基衍生物与LCA和DCA衍生物一样有效,而在较低浓度下,其溶血活性与原始酸处于同一水平。乙酰-CA作为膜扰动剂没有活性。此外,禾本科碱显著降低了疏水性胆汁酸衍生物的膜扰动活性。在细胞系统中获得的结果与物理化学计算结果一致。

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