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首页> 外文期刊>Nanoscale >Enhanced formation of bioactive and strong silk–bioglass hybrid materials through organic–inorganic mutual molecular nucleation induction and templating
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Enhanced formation of bioactive and strong silk–bioglass hybrid materials through organic–inorganic mutual molecular nucleation induction and templating

机译:通过有机-无机分子相互成核诱导和模板化,增强生物活性和强丝-生物玻璃杂化材料的形成

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摘要

Materials based on silk fibroin (SF) are important for many biomedical applications due to their excellent biocompatibility and tunable biodegradability. However, the insufficient mechanical strength and low bioactivity of these materials have limited their applications. For silk hydrogels, slow gelation is also a crucial problem. In this work, a simple approach is developed to address these challenging problems all at once. By mixing SF solution with bioglass (BG) sol, instant gelation of silk is induced, the storage modulus of the hydrogel and the compressive modulus of the aerogel are significantly enhanced. The formation of a complex of SF and tetraethyl orthosilicate (TEOS), either through hydrogen bonding or TEOS condensation on SF, facilitated the aggregation of SF and, on the other hand, created active sites for the condensation of TEOS and BG formation on the surface of silk nanofibrils. The resultant hybrid gels have much higher capacity for biomineralization, indicating their higher bioactivity, compared with the pristine silk gels. This organic (SF)–inorganic (BG) mutual nucleation induction and templating can be used for a general approach to produce bioactive silk materials of various formats not limited to gels and may also inspire the formation of other functional protein–BG hybrid materials.
机译:材料基于丝素蛋白(SF)是很重要的由于他们对许多生物医学应用优良的生物相容性和可调生物降解性。机械强度和较低的生物活性材料限制了它们的应用。丝水凝胶,凝胶缓慢也是至关重要的问题。发达国家为了解决这些挑战性的问题一次。(BG)溶胶、即时凝胶丝诱导,水凝胶和储能模量气凝胶的压缩模量显著增强。复杂的科幻和原硅酸四乙酯(teo),通过氢键或teo凝结在科幻小说上,促进了聚合科幻小说,另一方面,积极创建网站的teo和BG的凝结表面形成丝绸纺锤。合成混合凝胶有更高的能力生物矿化,来显示他们的更高生物活性,而原始的丝绸凝胶。成核诱导和模板可以使用对于一般的方法生产生物活性丝绸不限于凝胶材料的各种格式也可以激发其他的形成功能性protein-BG混合材料。

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