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Mycophenolic Acid Derivatives with Immunosuppressive Activity from the Coral-Derived Fungus Penicillium bialowiezense

机译:具有抑菌活性的珊瑚衍生真菌小青霉菌的霉酚酸衍生物

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摘要

Mycophenolic acid (MPA) is a potent inosine-5′-monophosphate dehydrogenase (IMPDH) inhibitor for immunosuppressive chemotherapy. Most importantly, as the 2-morpholinoethyl ester prodrug of MPA, mycophenolate mofetil (MMF) is a well-known immunosuppressant used to prevent rejection in organ transplantations. Nevertheless, due to its frequently occurred side effects, searching for new therapeutic agents is ongoing. In our current work, by virtue of efficient bioassay-guided fractionation and purification, eleven mycophenolic acid derivatives, including five previously unreported metabolites (>3–>7) and six known compounds (>1, >2, and >8–>11), were obtained from the coral-derived fungus Penicillium bialowiezense. Their structures were elucidated by means of extensive spectroscopic analyses (including 1D and 2D NMR and HRESIMS data) and comparison of the NMR and other physical data with those reported in the literature in the case of the known compounds. All the isolates >1–>11 were evaluated for the immunosuppressive activity, and >1–>3 showed potent IMPDH2 inhibitory potency with IC50 values of 0.84–0.95 μM, which were comparable to that of MPA (the positive control), while >4–>10 showed significant inhibitory potency with IC50 values of 3.27–24.68 μM. All the MPA derivatives showed promising immunosuppressive activity, endowing them as potential drug leads for organ transplantations and autoimmune related diseases.
机译:麦考酚酸(MPA)是一种有效的肌苷5'-单磷酸脱氢酶(IMPDH)抑制剂,可用于免疫抑制化学疗法。最重要的是,霉酚酸酯作为MPA的2-吗啉代乙酯的前药,是一种众所周知的免疫抑制剂,可用于预防器官移植中的排斥反应。然而,由于其经常发生的副作用,正在寻找新的治疗剂。在我们目前的工作中,借助有效的生物测定指导的分离和纯化,共有11种麦考酚酸衍生物,包括5种先前未报告的代谢物(> 3 – > 7 )和6种已知化合物( > 1 ,> 2 和> 8 – > 11 )是从珊瑚衍生的真菌小青霉(Penicillium bialowiezense)中获得的。通过广泛的光谱分析(包括1D和2D NMR和HRESIMS数据),以及将NMR和其他物理数据与文献中报道的已知化合物进行比较,阐明了它们的结构。对所有分离株> 1 – > 11 的免疫抑制活性进行了评估,并且> 1 – > 3 显示了有效的IMPDH2抑制能力IC50值为0.84-0.95μM,与MPA(阳性对照)相当,而> 4 – > 10 则显示出显着的抑制效力,IC50值为3.27– 24.68微米所有MPA衍生物均显示出有希望的免疫抑制活性,使其成为器官移植和自身免疫性相关疾病的潜在药物先导。

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