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Synthesis and characterization of PCL-DA:PEG-DA based polymeric blends grafted with SMA hydrogel as bio-degradable intrauterine contraceptive implant

机译:PCL-DA的合成与表征:与SMA水凝胶接枝的PEG-DA基聚合物共混物作为生物可降解的宫内避孕药

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Presently available long-acting reversible female contraceptive implants are said to be an effective way of preventing unintended pregnancy. Unacceptable side effects attributed by these contraceptive implants act as a major drawback for the practitioners. These problems pave the way for the development of a new form of long acting non-hormonal female contraceptive implant, especially in the developing countries. PCL-DA: PEG-DA polymeric scaffold is grafted with Styrene Maleic Anhydride (SMA) based hydrogel, and their physicochemical, thermal and biological parameters are being explored for developing a bio-degradable form of the non-hormonal intrauterine contraceptive implant. With the fixed ratio of PEG-DA: PCL-DA polymer, SMA hydrogel was added at four different concentrations to determine the optimum concentration of SMA hydrogel for the development of a promising long-acting biodegradable intrauterine contraceptive implant. Structural elucidation of the polymers was confirmed using H-1 and C-13 NMR spectroscopic analyses. The physiochemical characterization report suggests that SMA hydrogel interacts with the PCL-DA: PEG-DA polymeric scaffold through intermolecular hydrogen bonding interaction. The in-vitro spermicidal activity of the polymeric scaffold increases when the concentration of SMA based hydrogel in the polymer samples is increased without showing any significant toxicological effects. From the study results, it may be concluded that SMA hydrogel grafted PCL-DA: PEG-DA scaffold can be developed as intra-uterine biodegradable non-hormonal female contraceptive implant due to its excellent bio-compatibility and spermicidal activity.
机译:目前可用的长效可逆女性避孕植入物据说是预防意外怀孕的有效途径。这些避孕植入物归属的不可接受的副作用是从业者的主要缺点。这些问题为开发新形式的长起非激素女性避孕植入物的发展,特别是在发展中国家。 PCL-DA:PEG -DA聚合物支架用苯乙烯马来酸酐(SMA)的水凝胶接枝,并正在探索其物理化学,热和生物学参数,用于开发非激素宫内避孕植入物的生物可降解形式。具有PEG-DA:PCL-DA聚合物的固定比率,在四种不同浓度下加入SMA水凝胶,以确定SMA水凝胶的最佳浓度,用于开发有前途的长效的可生物降解的宫内避孕植入物。使用H-1和C-13 NMR光谱分析确认聚合物的结构阐明。物理化学表征报告表明,SMA水凝胶通过分子间氢键相互作用与PCL-DA:PEG-DA聚合物支架相互作用。当聚合物样品中的SMA基水凝胶的浓度增加而不显示任何显着的毒理学作用时,聚合物支架的体外精子活性增加。从研究结果中,可以得出结论,SMA水凝胶接枝PCL-DA:PEG-DA支架,由于其优异的生物相容性和初生活性,可以作为子宫内生物降解的非激素雌性避孕植入物。

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