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首页> 外文期刊>Biomacromolecules >Synthesis and characterization of injectable poly(N-isopropylacrylamide-co-acrylic acid) hydrogels with proteolytically degradable cross-links
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Synthesis and characterization of injectable poly(N-isopropylacrylamide-co-acrylic acid) hydrogels with proteolytically degradable cross-links

机译:具有蛋白水解降解性交联的可注射聚(N-异丙基丙烯酰胺-丙烯酸)水凝胶的合成与表征

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Hydrogels composed of N-isopropylacrylamide (NIPAAm) and acrylic acid (AAc) were prepared by redox polymerization with peptide cross-linkers to create an artificial extracellular matrix (ECM) amenable for testing hypotheses regarding cell proliferation and migration in three dimensions.Peptide degradable cross-linkers were synthesized by the acrylation of the amine groups of glutamine and lysine residues within peptide sequences potentially cleavable by matrix metalloproteinases synthesized by mammalian cells (e.g.,osteoblasts).With the peptide cross-linker,loosely cross-linked poly(N-isopropylacrylamide-co-acrylic acid) [P(NIPAAm-co-AAC)] hydrogels were prepared,and their phase transition behavior,lower critical solution temperature (lCST),water content,and enzymatic degradation properties were investigated.The peptide-cross-linked P(NIPAAm-co-AAC) hydrogels were pliable and fluidlike at room temperature and could be injected through a small-diameter aperture.The LCST of peptide-cross0linked hydrogel was influenced by the monomer ratio of NIPAAm/AAc but not by cross-linking density within the polymer network.A peptide-cross-linked hydrogel with a 97/3 molar ratio of NIPAAm/AAc exhibited a LCST of approx34.5 degC.Swelling was influenced by NIPAAm/AAc monomer ratio,cross-linking density,and welling media;however,all hydrogels maintained more than 90% water even at 37 degC.In enzymatic degradation studies,breakdown of collagenase and the cross-linking density.These results suggest that peptide-cross-linked P(NIPAAm-co-AAc) hydrogels can be tailored to create environmentally-responsive artificial extracellular matrixes that are degraded by proteases.
机译:由N-异丙基丙烯酰胺(NIPAAm)和丙烯酸(AAc)组成的水凝胶是通过使用肽交联剂的氧化还原聚合反应制备的,从而创建了一种人工细胞外基质(ECM),可用于测试关于细胞增殖和迁移的三个维度的假设。 -接头是通过哺乳动物细胞(例如成骨细胞)合成的基质金属蛋白酶可能裂解的肽序列中的谷氨酰胺和赖氨酸残基的胺基的丙烯酸化而合成的。通过肽交联剂,松散交联的聚(N-异丙基丙烯酰胺)制备丙烯酸-共丙烯酸[P(NIPAAm-co-AAC)]水凝胶,研究了它们的相变行为,较低的临界溶液温度(lCST),水含量和酶促降解性能。 P(NIPAAm-co-AAC)水凝胶在室温下柔软且呈流体状,可以通过小直径孔注射。 0连接的水凝胶受NIPAAm / AAc的单体比例的影响,但不受聚合物网络中交联密度的影响.NIPAAm / AAc摩尔比为97/3的肽交联的水凝胶的LCST约为34.5 degC溶胀受到NIPAAm / AAc单体比例,交联密度和孔介质的影响;然而,即使在37摄氏度下,所有水凝胶仍能保持90%以上的水。在酶促降解研究中,胶原酶的分解和交联密度。这些结果表明,可以对肽交联的P(NIPAAm-co-AAc)水凝胶进行定制,以创建对环境敏感的人工胞外基质,该基质被蛋白酶降解。

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