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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Poly(acrylamide co-acrylic acid) for use as an in situ gelling vitreous substitute
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Poly(acrylamide co-acrylic acid) for use as an in situ gelling vitreous substitute

机译:聚(丙烯酰胺共丙烯酸)用作原位胶凝玻璃替代品

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摘要

Our objective is to improve on our previous work developing thiol-containing water-soluble copolyacrylamides that form hydrogels in situ for use as vitreous substitutes. In this study, we evaluate the incorporation of acrylic acid by varying the feed ratio of acrylic acid monomer from 0 to 40mol% in combination with acrylamide, and bis-acryloylcystamine as the reversible cross-linker. After polymerization, the formed copolymer hydrogels were reduced with dithiothreitol to cleave the disulfide cross-linkers. Purified, lyophilized copolymers were made in a concentration range of 12.5-17.5mg/mL (polymer in deionized water) and were gelled by oxidation. Chemical, physical, optical, and rheological characterizations along with in vitro biocompatibility studies were performed using thiazolyl blue and Electric Cell-substrate Impedance Sensing. Increasing the percentage of acrylic acid caused the polymer to gel at 12.5mg/mL as opposed to 20mg/mL without acrylic acid. Storage modulus values covered the range of natural vitreous (1-108Pa). Biocompatibility testing in tissue culture with retinal pigment epithelial cells (ARPE-19) showed no toxicity at 10mg/mL or less when compared to controls, higher concentrations. In contrast to our previously reported copolyacrylamide hydrogels, these hydrogels remain optically clear and gel at lower concentrations and have the potential for use as vitreous substitutes.
机译:我们的目的是改善我们以前的工作开发含硫醇的水溶性共聚酰胺酰胺,其原位形成水凝胶作为玻璃替代品。在该研究中,我们通过将丙烯酸单体与丙烯酰胺的组合改变丙烯酸单体的进给比和双丙烯酰基作为可逆交联剂来评估丙烯酸的掺入。聚合后,用二硫噻钛糖醇降低了形成的共聚物水凝胶,以切割二硫化物的交联剂。纯化的冻干共聚物在12.5-17.5mg / ml(去离子水中聚合物)的浓度范围内制成,并通过氧化凝胶化。使用噻唑蓝和电池 - 基板阻抗感测进行化学,物理,光学和流变性表征以及体外生物相容性研究。增加丙烯酸的百分比使聚合物在12.5mg / ml的凝胶中,而不是没有丙烯酸的20mg / ml。储存模量值涵盖了天然玻璃体(1-108Pa)的范围。与视网膜颜料上皮细胞(ARPE-19)的组织培养中的生物相容性测试在与对照组,更高的浓度相比时显示出10mg / ml或更小的毒性。与我们先前报道的共聚酰胺水凝胶相比,这些水凝胶保持光学透明且凝胶在较低浓度下并且具有用作玻璃替代品的可能性。

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