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首页> 外文期刊>Polymer international >Porous organosilicone modified gelatin hybrids with controllable and homogeneous in vitro degradation behaviors for potential application as skin regeneration scaffold
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Porous organosilicone modified gelatin hybrids with controllable and homogeneous in vitro degradation behaviors for potential application as skin regeneration scaffold

机译:多孔有机硅氧烷改性明胶杂交物,具有可控和均匀的体外降解行为,用于潜在应用作为皮肤再生支架

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This work aims at investigating intensively the effects of organosilicone species and their dosage on the physicochemical and particularly the in vitro degradation properties of gelatin hybrids. We prepared various porous organosilicone modified gelatin hybrids with epoxy-polydimethylsiloxane (PDMS) and/or glycidoxypropyltrimethoxysilane (GPTMS) and further systematically investigated their degradation behaviors in simulated physiological environments. It was found that the chemical composition, thermal stability, crosslinking degree, mechanical properties and porous structure of the gelatin hybrids could be tuned by adjusting the amount of PDMS and GPTMS. More importantly, degradation rates of the gelatin hybrids were reduced with increasing content of GPTMS, implying that the degradation behaviors could be controlled by tailoring the chemical interaction between the gelatin and organosilicone moieties. In addition, gelatin hybrids modified with both PDMS and GPTMS (PGs-GE) were demonstrated as a homogeneous hybridization, and their maximum weight losses met the typical healing period of a normal skin wound. Noticeably, the P1G1-GE hybrid with PDMS to GPTMS molar ratio 1:1 exhibited appropriate weight loss, integrity of pore structure and synchronous dissolution of silicon and protein during the degradation process, indicating a homogeneous degradation behavior. Furthermore, both the original and degraded P1G1-GE hybrid exhibited favorable cytocompatibility in vitro. The findings will be helpful for further insight into the in vivo degradation of gelatin hybrids, suggesting their potential application as skin regeneration scaffolds. (c) 2019 Society of Chemical Industry
机译:这项工作旨在强烈地研究有机硅物种及其剂量对明胶杂交种的体外降解特性的影响。我们制备了各种多孔有机硅氧硅和/或缩水甘油氧基丙基三甲氧基硅烷(GPTMS)和/或缩水甘油氧基丙基三甲氧基硅烷(GPTMS),并进一步系统地研究了模拟生理环境中的降解行为。结果发现,通过调节PDMS和GPTM的量,可以调整明胶杂种的化学成分,热稳定性,交联度,机械性能和多孔结构。更重要的是,随着GPTM的含量增加,降低了明胶杂种的降解速率,这意味着可以通过定制明胶和有机硅部分之间的化学相互作用来控制降解行为。此外,用PDMS和GPTMS(PGS-GE)改性的明胶杂交种作为均匀杂交,其最大重量损失达到正常皮肤伤口的典型愈合周期。明显的是,P1G1-Ge杂交具有PDMS至LPTMS摩尔比的1:1表现出适当的重量损失,孔隙结构的完整性和硅和蛋白质在降解过程中的同步溶解,表明均匀的降解行为。此外,原始和降解的P1G1-GE杂种杂交体在体外表现出良好的细胞织立性。调查结果将有助于进一步洞察明胶杂种的体内降解,表明其潜在的应用作为皮肤再生支架。 (c)2019年化学工业协会

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