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首页> 外文期刊>Acta biomaterialia >Synthesis and recovery characteristics of branched and grafted PNIPAAm-PEG hydrogels for the development of an injectable load-bearing nucleus pulposus replacement.
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Synthesis and recovery characteristics of branched and grafted PNIPAAm-PEG hydrogels for the development of an injectable load-bearing nucleus pulposus replacement.

机译:支链和接枝的PNIPAAm-PEG水凝胶的合成和回收特性,用于开发可注射的负压髓核替代物。

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A family of injectable poly(N-isopropyl acrylamide) (PNIPAAm) copolymer hydrogels has been fabricated in order to tune mechanical properties to support load-bearing function and dimensional recovery for possible use as load-bearing medical devices, such as a nucleus pulposus replacement for the intervertebral disc. PNIPAAm-polyethylene glycol (PEG) copolymers were synthesized with varying hydrophilic PEG concentrations as grafted or branched structures to enhance dimensional recovery of the materials. Polymerizations were confirmed with attenuated total reflectance-Fourier transform infrared spectroscopy and proton nuclear magnetic resonance spectroscopy studies. Incorporation of PEG was effective in raising water content of pure PNIPAAm hydrogels (29.3% water for pure PNIPAAm vs. 47.7% for PEG branches and 39.5% for PEG grafts). PNIPAAm with 7% grafted as well as 7% branched PEG had significantly reduced compressive modulus compared to that of pure PNIPAAm. Initially recovered compressive strain was significantly increased for 7% PEG branches after pre-testing immersion in PBS for up to 33 days, while 7% PEG grafts decreased this value. Sample height recovery for pure PNIPAAm was limited to 31.6%, while PNIPAAm with 7% branches was increased to 71.3%. When mechanically tested samples were allowed to recover without load over 30 min, each composition was able to significantly recover height, indicating that the time to recovery is slower than the unloading rates typically used in testing. While the incorporation of hydrophilic PEG was expected to alter the mechanical behavior of the hydrogels, only the branched form was able to significantly enhance dimensional recovery.
机译:为了调节机械性能以支持承重功能和尺寸恢复,已经制造了一系列可注射的聚(N-异丙基丙烯酰胺)(PNIPAAm)共聚物水凝胶,以可能用作承重医疗器械,例如髓核置换用于椎间盘。 PNIPAAm-聚乙二醇(PEG)共聚物具有不同的亲水性PEG浓度(接枝或支链结构),可以提高材料的尺寸恢复率。用衰减全反射-傅里叶变换红外光谱和质子核磁共振光谱研究证实了聚合。掺入PEG可有效提高纯PNIPAAm水凝胶的水含量(纯PNIPAAm的水含量为29.3%,而PEG分支的水含量为47.7%,PEG接枝的水含量为39.5%)。与纯PNIPAAm相比,接枝7%和7%支链PEG的PNIPAAm的压缩模量显着降低。在将PBS浸入水中进行长达33天的预测试后,最初恢复的压缩应变对于7%的PEG分支显着增加,而7%的PEG移植物降低了该值。纯PNIPAAm的样品高度回收率被限制为31.6%,而具有7%分支的PNIPAAm的样品高度恢复率则提高到71.3%。当使经过机械测试的样品在30分钟内无载荷地恢复时,每种组合物均能够显着恢复高度,这表明恢复时间比测试中通常使用的卸载速度要慢。虽然预期引入亲水性PEG会改变水凝胶的机械性能,但只有支链形式才能显着提高尺寸恢复率。

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