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首页> 外文期刊>Advanced materials interfaces >Nonaqueous Synthesis of Macroporous Nanocomposites Using High Internal Phase Emulsion Stabilized by Nanohydroxyapatite
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Nonaqueous Synthesis of Macroporous Nanocomposites Using High Internal Phase Emulsion Stabilized by Nanohydroxyapatite

机译:纳米羟基磷灰石稳定的高内相乳液的非水纳米复合材料的非水合成

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>Nonaqueous high internal phase emulsions (HIPEs) stabilized by nanohydroxyapatite (NHA)/surfactant hybrids are used as template to prepare interconnected porous monoliths. The use of a sustainable deep eutectic solvent (DES) comprised of urea and choline chloride (UChCl), as the internal phase, enables an efficient interaction of NHA/surfactant at the HIPE interface, which in turn allows for a bottom‐up approach to selective interfacial functionalization of poly(HIPE's) voids surface after polymerization of methyl methacrylate continuous phase. UChCl DES is a suitable internal phase for HIPE polymerization thanks to its polarity and viscosity that provides further stabilization of the emulsion precursor. This simple synthetic method produces well‐defined functional poly(methyl methacrylate) (pMMA) scaffolds with tunable mechanical properties and exposed NHA at the inner surface. Based upon a preliminary biocompatibility in vivo test, poly(HIPEs) show enhanced biocompatibility in comparison with sterile gauze. Interestingly, pMMA NHA nanocomposite scaffold remains in the tissue after 90 d allowing little ingrowth of cells while causing a normal foreign‐body reaction in the rats' muscle tissue. Interfacial functionalization of well‐defined interconnected porous monoliths with nanomaterials via DES‐based HIPEs approach is a promising method that encourages further investigation for the synthesis of biodegradable and biocompatible scaffolds nanocomposites for tissue engineering purposes.
机译: >通过纳米羟基磷灰石(NHA)/表面活性剂杂交稳定的非水性高内相乳液(Hipes)用作模板以制备相互连接的多孔整料。使用由尿素和氯化氯化胆碱(UCHCl)组成的可持续深的深共晶溶剂(DES),作为内部相,可以有效地相互作用NHA /表面活性剂在HIPE界面,这反过来允许自下而上的方法聚(HIPE的)空隙在聚合甲基丙烯酸甲酯连续相结合后的选择性界面官能化。由于其极性和粘度提供了乳液前体的进一步稳定,UCHCL DES是一种合适的内部相对于HIPE聚合的内部相。这种简单的合成方法产生明确定义的功能性聚(甲基丙烯酸甲酯)(PMMA)支架,其可调谐机械性能并在内表面下暴露NHA。基于体内试验中的初步生物相容性,与无菌纱布相比,聚(Hipes)显示出增强的生物相容性。有趣的是,在90 d后,PMMA NHA纳米复合支架残留在组织中留在组织中,允许在大鼠肌肉组织中导致正常的异物反应时缺少细胞的少量生长。通过DES基Hipes方法具有纳米材料良好定义的互连多孔整料的界面官能化是一种有希望的方法,促进进一步研究用于组织工程目的的可生物降解和生物相容性支架纳米复合材料的合成。

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