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具有杀精潜能的生物相容聚乙烯醇和 RISUG 混合聚合物薄膜。

Biocompatible polyvinyl alcohol and RISUG blend polymeric films with spermicidal potential.

机构信息

School of Medical Science and Technology, Indian Institute of Technology, Kharagpur 721302, India. School of Bio-Science and Engineering, Jadavpur University, Kolkata, West Bengal 700098, India.

出版信息

Biomed Mater. 2019 Apr 15;14(3):035017. doi: 10.1088/1748-605X/ab04e1.

Abstract

Majority of the commercially available vaginal contraceptives encompasses cervicovaginal membrane disrupting detergent molecules as pharmacologically active ingredients. Development of a tissue-compatible vaginal contraceptive agent is necessary to circumvent the existing demand for female contraception in the reproductive healthcare sector. With this objective, the present study delineates the use of RISUG based non-hormonal female contraceptive films. RISUG was blended with polyvinyl alcohol (PVOH) to formulate biodegradable intra-vaginal contraceptive films. The formulated films were characterized for their thermal, physiochemical and biological features. The results showed that both RISUG and PVOH were miscible and interacted at the intermolecular level. Variations in the concentration of RISUG resulted in the changes in physicochemical, thermal and rheological characteristics of the formulated blends. In vitro toxicological assay of the polymeric formulations did not show any significant toxicity. However, the blend films retained spermicidal potential of RISUG. Furthermore, in vivo toxicological evaluation of the polymeric blend in the rat model revealed about their biocompatibility with no significant organ toxicity, hematological and biochemical alterations. These results together confirm the potential applicability of the PVOH:RISUG blend films as a vaginal contraceptive.

摘要

大多数市售的阴道避孕药都包含宫颈阴道膜破坏洗涤剂分子作为药理学活性成分。为了满足生殖保健领域对女性避孕的现有需求,有必要开发一种组织相容性的阴道避孕药。有鉴于此,本研究描述了基于 RISUG 的非激素女性避孕药膜的使用。RISUG 与聚乙烯醇 (PVOH) 混合,制成可生物降解的阴道内避孕薄膜。对所制备的薄膜进行了热、物理化学和生物学特性的表征。结果表明,RISUG 和 PVOH 是可混溶的,并在分子间相互作用。RISUG 浓度的变化导致所制备的共混物的物理化学、热和流变特性发生变化。聚合制剂的体外毒理学试验没有显示出任何显著的毒性。然而,共混膜保留了 RISUG 的杀精潜力。此外,聚合物共混物在大鼠模型中的体内毒理学评价表明,它们具有良好的生物相容性,没有明显的器官毒性、血液学和生化改变。这些结果共同证实了 PVOH:RISUG 共混膜作为阴道避孕药的潜在适用性。

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