Department of Chemistry, The University of Texas at San Antonio (UTSA), San Antonio, TX 78249, United States.
Department of Chemistry, The University of Texas at San Antonio (UTSA), San Antonio, TX 78249, United States.
Steroids. 2023 Sep;197:109260. doi: 10.1016/j.steroids.2023.109260. Epub 2023 Jun 17.
Low concentrations of hyocholic acid in human serum has been linked to diabetes. Due to its important role in human health, we were interested in synthesizing hyocholic acid to explore potential biochemical properties of this bile acid. Here, a synthesis of hyocholic acid is reported from chenodeoxycholic acid. The key step was a Rubottom oxidation of a silyl enol ether intermediate to directly incorporate the oxygen at C6. Furthermore, the synthesized hyocholic acid product was treated with NaIO to cleave the C6-C7 bond to yield a hemiacetal at C6. This CC bond cleavage reaction using NaIO was used to develop an ultra-performance liquid chromatography mass spectrometry method to distinguish between a 1 to 1 mixture of hyocholic acid and cholic acid (a 12α-hydroxylated bile acid), two bile acid regioisomers with identical masses. Upon treatment of the mixture with NaIO, hyocholic acid was selectively cleaved in the B ring (C6-C7 bond) to yield the hemiacetal that formed between the C3-hydroxy and the C6-aldehyde moiety with an m/z 405 while cholic acid remained intact with an m/z 407 in the negative electrospray ionization mode. Subsequently, a commercially available ox bile extract was treated with NaIO to detect bile acid derivatives by mass spectrometry. Two possible hyocholic acid derivatives conjugated to serine and gamma-glutamic semialdehyde were detected in electrospray ionization positive mode, which oxidatively cleaved with NaIO (m/z 496 and 522 to m/z 494 and 520, respectively).
血清中低浓度的鹅脱氧胆酸与糖尿病有关。鉴于其在人类健康中的重要作用,我们有兴趣合成鹅脱氧胆酸,以探索这种胆酸的潜在生化特性。在此,我们报道了从鹅去氧胆酸合成鹅脱氧胆酸的方法。关键步骤是对硅基烯醇醚中间体进行 Rubottom 氧化,以直接在 C6 位引入氧。此外,合成的鹅脱氧胆酸产物用 NaIO 处理,以裂解 C6-C7 键,在 C6 位生成半缩醛。该使用 NaIO 的 CC 键裂解反应用于开发超高效液相色谱质谱法,以区分鹅脱氧胆酸和胆酸(一种 12α-羟基化的胆酸)的 1:1 混合物,这两种胆酸区域异构体具有相同的质量。将该混合物用 NaIO 处理后,鹅脱氧胆酸在 B 环(C6-C7 键)选择性裂解,生成 C3-羟基和 C6-醛部分之间形成的半缩醛,其 m/z 为 405,而胆酸在负电喷雾电离模式下保持完整,m/z 为 407。随后,用 NaIO 处理市售牛胆汁提取物,通过质谱法检测胆汁酸衍生物。在正电喷雾电离模式下检测到两种可能与丝氨酸和γ-谷氨酰半醛结合的鹅脱氧胆酸衍生物,它们被 NaIO 氧化裂解(m/z 496 和 522 分别裂解为 m/z 494 和 520)。