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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Role of disulfide linkage in action of bis(dialkylaminethiocarbonyl) disulfides as potent double-Edged microbicidal spermicide: Design, synthesis and biology
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Role of disulfide linkage in action of bis(dialkylaminethiocarbonyl) disulfides as potent double-Edged microbicidal spermicide: Design, synthesis and biology

机译:二硫键在双(二烷基胺硫代羰基)二硫作为有效的双刃杀微生物杀精子剂中的作用:设计,合成和生物学

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摘要

Trichomoniasis and candidiasis are amongst the most common morbidity-causing reproductive tract infections, generally treated by Metronidazole and Fluconazole respectively. Poor vaginal efficacy, drug resistance and non-spermicidal nature limit their use as topical microbicidal contraceptives. Bis(dialkylaminethiocarbonyl)disulfides (4-38) were designed as dually active, non-surfactant molecules capable of eliminating Trichomonas vaginalis and Candida strains as well as irreversibly immobilizing 100% human sperm instantly, at doses non-cytotoxic to human cervical epithelial cells and vaginal microflora in vitro. Compounds 12, 16, 17 were fifty times more active than nonoxynol-9, OTC vaginal spermicide, and compounds 12 and 17 have shown remarkable in vivo activity in rabbit model. Most promising compound 17 has shown promise for further development as a double-edged vaginal microbicide due to their improved activity and safety along with notable in vivo trichomonicidal activity. Role of disulfide group was established by loss of spermicidal activity on chemical modifications (39-56). These disulfides might be targeting thiol groups present over cell membrane of human sperm and Trichomonas as shown by fluorescence labeling of free thiols. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:滴虫病和念珠菌病是最常见的致病性生殖道感染,通常分别用甲硝唑和氟康唑治疗。阴道功效差,耐药性和非杀精性限制了它们作为局部杀菌剂的用途。双(二烷基胺硫代羰基)二硫化物(4-38)被设计为双重活性,非表面活性剂分子,能够消除阴道毛滴虫和念珠菌菌株,并立即以不可细胞毒性的剂量不可逆地固定100%人类精子,对人类宫颈上皮细胞和体外阴道菌群。化合物12、16、17的活性是壬诺酚9,OTC阴道杀精子剂的50倍,化合物12和17在兔模型中显示出显着的体内活性。最有前途的化合物17由于具有更高的活性和安全性以及显着的体内滴虫杀菌活性,已显示出有望进一步发展为双刃阴道杀微生物剂。二硫化物基团的作用是通过改变化学修饰的杀精活性来确定的(39-56)。这些二硫键可能靶向存在于人精子和滴虫的细胞膜上的巯基,如游离巯基的荧光标记所示。 (C)2016 Elsevier Masson SAS。版权所有。

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