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Biocompatible Tough Hydrogels via Micellar Copolymerization of NIPAM and Stearyl Acrylate: Synthesis and Characterization

机译:通过胶束共聚的NiPam和硬脂酰丙烯酸酯的生物相容性硬化水凝胶:合成和表征

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Novel biocompatible tough hydrogels were prepared through free radical micellar polymerization of vV-isopropylacrylamide (NIPAM) with ammonium persulphate (APS) as initiator, in which hydrophobic monomer stearyl acrylate (C18) underwent micellar polymerization in the presence of gelatin as emulsifier. FT-IR and DSC demonstrated the formation of co-polymer of NIPAM and C18. Swelling results indicated that hydrophobic polymer domains derived from C18 in aqueous medium acted as the physical crosslinking points by hydrophobic association. Uniaxial tensile test demonstrated the mechanical properties of hydrogels increased with increasing C18 and gelatin contents. The hydrogel exhibited low toxicity and promoted cell proliferation. The desirable toughness, low toxicity and the promoting effect of cell proliferation made the present hydrogels good candidates for tissue regeneration materials.
机译:通过与脱脂(AP)作为引发剂的VV-异丙基丙烯酰胺(NIPAM)的自由基胶束聚合来制备新的生物相容性坚硬的水凝胶,其中疏水性单体硬脂酰丙烯酸酯(C18)在明胶作为乳化剂存在下进行胶束聚合。 FT-IR和DSC证明了NIPAM和C18的共聚物的形成。膨胀结果表明,衍生自水性介质中的C18的疏水聚合物结构域通过疏水性缔合物作用为物理交联点。单轴拉伸试验证明了水凝胶的力学性能随着C18和明胶含量的增加而增加。水凝胶表现出低毒性和促进细胞增殖。细胞增殖的理想韧性,低毒性和促进效果使本发明的水凝胶是组织再生材料的良好候选者。

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