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首页> 外文期刊>AIDS Research and Therapy >Pre-clinical development as microbicide of zinc tetra-ascorbo-camphorate, a novel terpenoid derivative: Potent in vitro inhibitory activity against both R5- and X4-tropic HIV-1 strains without significant in vivo mucosal toxicity
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Pre-clinical development as microbicide of zinc tetra-ascorbo-camphorate, a novel terpenoid derivative: Potent in vitro inhibitory activity against both R5- and X4-tropic HIV-1 strains without significant in vivo mucosal toxicity

机译:临床上的新型抗坏血酸四抗坏血酸锌的杀微生物剂的临床开发:对R5-和X4-tropic HIV-1菌株均具有强大的体外抑制活性,而没有明显的体内粘膜毒性

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摘要

Background Terpenoid derivatives originating from many plants species, are interesting compounds with numerous biological effects, such as anti-HIV-1 activity. The zinc tetra-ascorbo-camphorate complex (or "C14"), a new monoterpenoid derivative was evaluated in vitro for its anti-HIV-1 activity on both R5- and X4-HIV-1 infection of primary target cells (macrophages, dendritic cells and T cells) and on HIV-1 transfer from dendritic cells to T cells. Results The toxicity study was carried out in vitro and also with the New Zealand White rabbit vaginal irritation model. C14 was found to be no cytotoxic at high concentrations (CC50 > 10 μM) and showed to be a potential HIV-1 inhibitor of infection of all the primary cells tested (EC50 = 1 μM). No significant changes could be observed in cervicovaginal tissue of rabbit exposed during 10 consecutive days to formulations containing up to 20 μM of C14. Conclusion Overall, these preclinical studies suggest that zinc tetra-ascorbo-camphorate derivative is suitable for further testing as a candidate microbicide to prevent male-to-female heterosexual acquisition of HIV-1.
机译:背景技术源自许多植物物种的萜类化合物衍生物是令人感兴趣的化合物,具有多种生物学作用,例如抗HIV-1活性。体外评估了新的单萜类衍生物四抗坏血酸-樟脑膦锌复合物(或“ C14”)对主要靶细胞(巨噬细胞,树突状细胞)的R5-和X4-HIV-1感染的抗HIV-1活性。细胞和T细胞)以及HIV-1从树突状细胞转移到T细胞。结果毒性试验是在体外进行的,并且也用新西兰白兔的阴道刺激模型进行。发现C14在高浓度下(CC50> 10μM)没有细胞毒性,并显示是所有测试的原代细胞感染的潜在HIV-1抑制剂(EC50 = 1μM)。在连续10天暴露于含有高达20μMC14的制剂的兔子的宫颈阴道组织中,没有观察到明显变化。结论总的来说,这些临床前研究表明,四抗坏血酸-樟脑脂酸锌衍生物适合作为候选杀微生物剂进行进一步测试,以防止男女间HIV-1的异性感染。

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