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一种新型秋水仙碱-厚朴酚杂合物的设计、合成及其抑制Lewis肺癌生长的生物学评价 以及 。 (原文最后“and.”表述不太完整准确,翻译可能会有些生硬,你可检查下原文是否正确完整 。)

Design, synthesis and biological evaluation of a novel colchicine-magnolol hybrid for inhibiting the growth of Lewis lung carcinoma and .

作者信息

Li Zhiyue, Hu Shengquan, Pu Liu-Yang, Li Ziwen, Zhu Guanbao, Cao Yongkai, Li Limin, Ma Yucui, Liu Zhanyan, Li Xinping, Liu Guangjie, Chen Keji, Wu Zhengzhi

机构信息

Shenzhen Institute of Translational Medicine, Shenzhen Second People's Hospital, The First Affiliated Hospital of Shenzhen University, Shenzhen, China.

Shenzhen Institute of Geriatrics, Shenzhen, China.

出版信息

Front Chem. 2022 Dec 13;10:1094019. doi: 10.3389/fchem.2022.1094019. eCollection 2022.

Abstract

Colchicine is a bioactive alkaloid originally from Colchicum autumnale and possesses excellent antiproliferative activity. However, colchicine-associated severe toxicity, gastrointestinal side effects in particular, limits its further therapeutic use. In the current study, we thus designed and synthesized a novel hybrid (CMH) by splicing colchicine and magnolol, a multifunctional polyphenol showing favorable gastrointestinal protection. The antitumor activity of CMH in Lewis lung carcinoma (LLC) was then evaluated and . Biologically, CMH inhibited the growth of LLC cells with an IC of 0.26 μM, 100 times more potently than cisplatin (26.05 μM) did. Meanwhile, the cytotoxicity of CMH was 10-fold lower than that of colchicine in normal human lung cells (BEAS-2B). In C57BL/6 mice xenograft model, CMH (0.5 mg/kg) worked as efficacious as colchicine (0.5 mg/kg) to inhibit tumor growth and 2 times more potently than cisplatin (1 mg/kg). In terms of mortality, 7 out of 10 mice died in colchicine group (0.75 mg/kg), while no death was observed in groups receiving CMH or cisplatin at 0.75 mg/kg. Mechanistic studies using Western blot revealed that CMH dose-dependently suppressed the protein expression of phosphorylated ERK. Molecular docking analysis further indicated that CMH was well fitted in the colchicine binding site of tubulin and formed several hydrogen bonds with tubulin protein. These results enable our novel hybrid CMH as a potential antineoplastic agent with lower toxicity, and provide perquisites for further investigation to confirm the therapeutic potentiality of this novel hybrid.

摘要

秋水仙碱是一种最初从秋水仙中提取的生物活性生物碱,具有出色的抗增殖活性。然而,秋水仙碱相关的严重毒性,尤其是胃肠道副作用,限制了其进一步的治疗应用。因此,在本研究中,我们通过将秋水仙碱与厚朴酚拼接设计并合成了一种新型杂合物(CMH),厚朴酚是一种具有良好胃肠道保护作用的多功能多酚。然后评估了CMH在Lewis肺癌(LLC)中的抗肿瘤活性。从生物学角度来看,CMH抑制LLC细胞生长的IC50为0.26μM,比顺铂(26.05μM)强100倍。同时,CMH在正常人肺细胞(BEAS-2B)中的细胞毒性比秋水仙碱低10倍。在C57BL/6小鼠异种移植模型中,CMH(0.5mg/kg)抑制肿瘤生长的效果与秋水仙碱(0.5mg/kg)相当,比顺铂(1mg/kg)强2倍。在死亡率方面,秋水仙碱组(0.75mg/kg)的10只小鼠中有7只死亡,而接受0.75mg/kg CMH或顺铂的组未观察到死亡。使用蛋白质免疫印迹法的机制研究表明,CMH剂量依赖性地抑制磷酸化ERK的蛋白表达。分子对接分析进一步表明,CMH很好地契合微管蛋白的秋水仙碱结合位点,并与微管蛋白形成了几个氢键。这些结果使我们的新型杂合物CMH成为一种潜在的低毒性抗肿瘤药物,并为进一步研究以确认这种新型杂合物的治疗潜力提供了前提条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff52/9792613/ad86d38e2bbb/fchem-10-1094019-g001.jpg

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