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从逐步生长的聚乙二醇-肽水凝胶中生成和回收β细胞球体。

Generation and recovery of β-cell spheroids from step-growth PEG-peptide hydrogels.

作者信息

Raza Asad, Lin Chien-Chi

机构信息

Department of Biomedical Engineering, Purdue School of Engineering and Technology, Indiana University - Purdue University at Indianapolis.

出版信息

J Vis Exp. 2012 Dec 6(70):e50081. doi: 10.3791/50081.

Abstract

Hydrogels are hydrophilic crosslinked polymers that provide a three-dimensional microenvironment with tissue-like elasticity and high permeability for culturing therapeutically relevant cells or tissues. Hydrogels prepared from poly(ethylene glycol) (PEG) derivatives are increasingly used for a variety of tissue engineering applications, in part due to their tunable and cytocompatible properties. In this protocol, we utilized thiol-ene step-growth photopolymerizations to fabricate PEG-peptide hydrogels for encapsulating pancreatic MIN6 b-cells. The gels were formed by 4-arm PEG-norbornene (PEG4NB) macromer and a chymotrypsin-sensitive peptide crosslinker (CGGYC). The hydrophilic and non-fouling nature of PEG offers a cytocompatible microenvironment for cell survival and proliferation in 3D, while the use of chymotrypsin-sensitive peptide sequence (CGGY↓C, arrow indicates enzyme cleavage site, while terminal cysteine residues were added for thiol-ene crosslinking) permits rapid recovery of cell constructs forming within the hydrogel. The following protocol elaborates techniques for: (1) Encapsulation of MIN6 β-cells in thiol-ene hydrogels; (2) Qualitative and quantitative cell viability assays to determine cell survival and proliferation; (3) Recovery of cell spheroids using chymotrypsin-mediated gel erosion; and (4) Structural and functional analysis of the recovered spheroids.

摘要

水凝胶是亲水性交联聚合物,它能提供一个具有类似组织弹性和高渗透性的三维微环境,用于培养与治疗相关的细胞或组织。由聚乙二醇(PEG)衍生物制备的水凝胶越来越多地用于各种组织工程应用,部分原因是其具有可调节的细胞相容性。在本方案中,我们利用硫醇-烯逐步增长光聚合反应制备用于包裹胰腺MIN6 β细胞的PEG-肽水凝胶。凝胶由四臂PEG-降冰片烯(PEG4NB)大分子单体和一种对胰凝乳蛋白酶敏感的肽交联剂(CGGYC)形成。PEG的亲水性和抗污性为细胞在三维环境中的存活和增殖提供了细胞相容的微环境,而使用对胰凝乳蛋白酶敏感的肽序列(CGGY↓C,箭头表示酶切位点,末端添加半胱氨酸残基用于硫醇-烯交联)可使在水凝胶中形成的细胞构建体快速恢复。以下方案详细阐述了以下技术:(1)将MIN6 β细胞包裹在硫醇-烯水凝胶中;(2)定性和定量细胞活力测定以确定细胞存活和增殖情况;(3)使用胰凝乳蛋白酶介导的凝胶侵蚀回收细胞球体;(4)对回收的球体进行结构和功能分析。

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