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生物功能肽点击 PEG 基水凝胶作为角膜上皮再生的 3D 细胞支架。

Biofunctional peptide-click PEG-based hydrogels as 3D cell scaffolds for corneal epithelial regeneration.

机构信息

Institute of Biomedical Engineering, School of Ophthalmology & Optometry and Eye Hospital, Wenzhou Medical University, 270 Xueyuan Road, Wenzhou 325027, P. R. China.

出版信息

J Mater Chem B. 2022 Aug 10;10(31):5938-5945. doi: 10.1039/d2tb00983h.

Abstract

Poly(ethylene glycol) (PEG)-based hydrogels as highly promising 3D cell scaffolds have been widely implemented in the field of tissue regrowth and regeneration, yet the functionalized PEG hydrogel providing dynamic, cell-instructive microenvironments is inherently difficult to obtain. Here, we have exploited the specificity of click reaction to develop a set of hydrogels based on 4-arm PEG tetraazide (4-arm-PEG-N) and di-propargylated peptides (GRGDG and GRDGG) with tunable physicochemical properties applicable for 3D cell scaffolds. The azide groups of PEG were reacted with the alkynyl groups of peptides, catalyzed by copper to form triazole rings, thus generating a cross-linked hydrogel. The gelation time and mechanical strength of the hydrogels varied according to the PEG/peptide feed ratio. The resulting hydrogel exhibited a typical porous microstructure and suitable swelling behavior. The cytotoxicity test indicated that the resulting hydrogels did not cause apparent cytotoxicity against human corneal epithelial cells (HCECs). After co-incubation with HCECs, the density of RGD as well as peptide sequence in the hydrogels remarkably affected the cell attachment, spreadability, and proliferation. Additionally, the proposed hydrogel showed high ocular biocompatibility after being embedded subconjunctivally into rabbit eyes. Overall, these findings highlighted that the biofunctional hydrogels formed by PEG and RGD motifs a controllable click reaction might be promising 3D cell scaffolds for corneal epithelial regeneration.

摘要

聚乙二醇(PEG)基水凝胶作为极具前景的 3D 细胞支架,已广泛应用于组织再生和修复领域,然而提供动态、细胞指令性微环境的功能化 PEG 水凝胶的获得具有内在的难度。在这里,我们利用点击反应的特异性,开发了一系列基于 4 臂 PEG 四氮唑(4-臂-PEG-N)和二炔丙基化肽(GRGDG 和 GRDGG)的水凝胶,这些水凝胶具有可调节的物理化学性质,适用于 3D 细胞支架。PEG 的叠氮基团与肽的炔基反应,在铜的催化下形成三唑环,从而生成交联水凝胶。水凝胶的凝胶时间和力学强度根据 PEG/肽的进料比而变化。所得水凝胶表现出典型的多孔微观结构和适宜的溶胀行为。细胞毒性试验表明,所得水凝胶对人角膜上皮细胞(HCEC)没有明显的细胞毒性。与人角膜上皮细胞共孵育后,水凝胶中 RGD 密度和肽序列显著影响细胞附着、铺展性和增殖。此外,所提出的水凝胶在兔眼结膜下植入后表现出较高的眼生物相容性。总的来说,这些发现表明,由 PEG 和 RGD 基序形成的生物功能水凝胶通过可控的点击反应可能是用于角膜上皮再生的有前途的 3D 细胞支架。

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