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Tuning the Properties of Elastin Mimetic Hybrid Copolymers via a Modular Polymerization Method

机译:通过模块化聚合方法调节弹性蛋白模拟杂化共聚物的性能

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摘要

We have synthesized elastin mimetic hybrid polymers (EMHPs) via the step-growth polymerization of azide-functionalized poly(ethylene glycol) (PEG) and alkyne-terminated peptide (AKAAAKA)_2 (AK2) that is abundant in the cross-linking domains of the natural elastih. The modular nature of our synthesis allows facile adjustment of the peptide sequence to modulate the structural and biological properties of EMHPs, Therefore, EMHPs containing cell-binding domains (CBDs) were constructed from α,ω-azido-PEG and two types of alkyne-terminated AK2 peptides with sequencesof DGRGX(AKAAAKA)jX (AK2-CBD1) and X(AKAAAKA)_2XGGRGDSPG (AK2-CBD2, X = propargylglycine) via a step-growth, click coupling reaction. The resultant hybrid copolymers contain an estimated five to seven repeats of PEG and AK2 peptides. The secondary structure of EMHPs is sensitive to the specific sequence of the peptidic building blocks, with CBD-contalning EMHPs exhibiting a significant enhancement in the a-helical content as compared with the peptide alone. Elastomeric hydrogels formed by covalent cross-linking of the EMHPs had a compressive modulus of 1.06 ± 0.1 MPa. Neonatal human dermal fibroblasts (NHDFs) were able to adhere to the hydrogels within 1 h and to spread and develop F-actin filaments 24 h postseeding. NHDF proliferation was only observed on hydrogels containing RGDSP domains, demonstrating the importance of integrin engagement for cell growth and the potential use of these EMHPs as tissue engineering scaffolds. These cell-instructive, hybrid polymers are promising candidates as elastomeric scaffolds for tissue engineering.
机译:我们已经通过叠氮化物官能化的聚乙二醇(PEG)和炔烃封端的肽(AKAAAKA)_2(AK2)的逐步增长聚合反应合成了弹性蛋白模拟杂化聚合物(EMHPs),自然的弹性。我们合成的模块性质允许容易地调节肽序列以调节EMHP的结构和生物学特性,因此,包含细胞结合域(CBD)的EMHP由α,ω-叠氮基PEG和两种类型的炔烃构建而成。通过逐步增长的单击偶联反应,终止了具有DGRGX(AKAAAKA)jX(AK2-CBD1)和X(AKAAAKA)_2XGGRGDSPG(AK2-CBD2,X =炔丙基甘氨酸)序列的AK2肽。所得的杂化共聚物包含PEG和AK2肽的估计的五至七个重复。 EMHPs的二级结构对肽结构单元的特定序列敏感,与CBD结合的EMHPs与单独的肽段相比,α-螺旋含量显着提高。通过EMHP的共价交联形成的弹性体水凝胶的压缩模量为1.06±0.1 MPa。新生儿人真皮成纤维细胞(NHDF)能够在1小时内粘附到水凝胶上,并在播种后24小时内散布和发育F-肌动蛋白丝。仅在含有RGDSP域的水凝胶中观察到NHDF增殖,这表明整合素参与对细胞生长的重要性以及这些EMHP作为组织工程支架的潜在用途。这些具有细胞指导意义的杂化聚合物有望成为组织工程的弹性支架。

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