Controlled Release of Strontium through Neutralization Reaction within a Methoxy(Polyethylene Glycol)-Polyesterc hydrogel

Sydney Peng, Zhi-Teng Lai, D. Hong, I. Chu, P. Lai
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引用次数: 5

Abstract

Background The aim of this study was to develop a minimally invasive hydrogel system that can release strontium ions, an element that has been shown to increase osteoblast proliferation and prohibit bone resorption, in a controlled manner. Methods SrCO3 was selected as the salt of choice due to potential acid neutralization reaction between SrCO3 and degradation by-products of methoxy(polyethylene glycol)-co-poly(lactic-co-glycolic acid) (mPEG-PLGA): namely, lactic acid and glycolic acid. SrCO3 was incorporated into mPEG-PLGA hydrogel, and the system was assessed for gelation properties, drug release and biocompatibility. Results SrCO3 incorporation at hydrogel to SrCO3 ratios of 5:1, 3:1 and 1:1 (wt%) did not compromise the thermosensitivity of mPEG-PLGA hydrogels. Furthermore, incorporation of SrCO3 at 1:1 ratio prevented copolymer self-catalysis and decreased hydrogel weight loss from 85% to 61% in vitro after 30 days. During the 30-day time frame, zero-order strontium release was observed and was correlated to hydrogel degradation and acidity. The addition of SrCO3 also improved in vivo hydrogel biocompatibility, due to moderation of acidic microenvironment and amelioration of inflammatory response. Conclusions These results showed that the described system is suitable for the extended release of strontium and exhibits potential for localized treatment for osteoporosis or as a bone void filler.
甲氧基(聚乙二醇)-聚酯水凝胶中和反应中锶的控制释放
背景本研究的目的是开发一种微创水凝胶系统,该系统可以以可控的方式释放锶离子,锶离子是一种已被证明可以增加成骨细胞增殖和抑制骨吸收的元素。方法选择SrCO3作为盐,因为SrCO3与甲氧基(聚乙二醇)-共-聚(乳酸-共-乙醇酸)(mPEG-PLGA)的降解副产物,即乳酸和乙醇酸之间存在潜在的酸中和反应。将SrCO3掺入mPEG-PLGA水凝胶中,并评估该系统的凝胶化性能、药物释放和生物相容性。结果在水凝胶与SrCO3的比例为5:1、3:1和1:1(wt%)时掺入SrCO3不会影响mPEG-PLGA水凝胶的热敏性。此外,在体外30天后,以1:1的比例掺入SrCO3防止了共聚物的自催化,并将水凝胶的重量损失从85%降低到61%。在30天的时间范围内,观察到零级锶释放,并与水凝胶降解和酸度相关。SrCO3的加入也改善了体内水凝胶的生物相容性,这是由于酸性微环境的调节和炎症反应的改善。结论这些结果表明,所述系统适用于锶的缓释,并显示出局部治疗骨质疏松症或作为骨空隙填充物的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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