Laboratory of Synthetic and Natural Medicinal Compounds Chemistry, A.B. Bekturov Institute of Chemical Sciences, 106 Sh. Ualikhanov St., Almaty 050010, Kazakhstan.
School of Chemical Engineering, Kazakh-British Technical University, 59 Tole bi St., Almaty 050000, Kazakhstan.
Molecules. 2024 Oct 30;29(21):5135. doi: 10.3390/molecules29215135.
The synthesized compound, 1-(2-ethoxyethyl)-4-(pent-1-yn-1-yl)piperidin-4-yl propionate (), and its 1:1 complex with β-cyclodextrin () have been characterized for the first time through a comprehensive suite of analytical methods. This study explores the therapeutic potential of in modulating immune responses and accelerating the resolution of septic inflammation induced by chromium and vanadium ions in outbred male rats. The research highlights the significant impact of on the dynamics of regulatory T lymphocytes (Tregs), notably causing a reduction in the CD4CD25 fractions at the onset of inflammation. This effect is attributed to the inhibition of Treg proliferation, which is crucial in hastening the resolution of inflammation. These findings underscore the potential of as a promising therapeutic agent in controlling and mitigating inflammation mediated by heavy metal exposure, thereby offering a new avenue for the development of anti-inflammatory treatments.
首次通过一系列全面的分析方法对合成化合物 1-(2-乙氧基乙基)-4-(戊-1-炔-1-基)哌啶-4-基丙酸酯 ()及其与β-环糊精的 1:1 复合物 ()进行了表征。本研究探讨了 在调节免疫反应和加速铬和钒离子诱导的败血症炎症消退方面的治疗潜力。研究强调了 对调节性 T 淋巴细胞 (Tregs)动态的重大影响,特别是在炎症开始时导致 CD4CD25 分数减少。这种效应归因于 Treg 增殖的抑制,这对于加速炎症消退至关重要。这些发现强调了 作为一种有前途的治疗剂在控制和减轻重金属暴露引起的炎症的潜力,从而为抗炎治疗的发展提供了新的途径。