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海藻酸钠/聚乙二醇凝胶中通过施蒂丁格连接交联的胰岛微囊化。

Microencapsulation of islets within alginate/poly(ethylene glycol) gels cross-linked via Staudinger ligation.

机构信息

Department of Biomedical Engineering, College of Engineering, University of Miami, 1450 NW 10th Avenue, Miami, FL 33136, USA.

出版信息

Acta Biomater. 2011 Feb;7(2):614-24. doi: 10.1016/j.actbio.2010.07.016. Epub 2010 Jul 21.

Abstract

Functionalized alginate and poly(ethylene glycol) (PEG) polymers were used to generate covalently linked alginate-PEG (XAlgPEG) microbeads of high stability. The cell-compatible Staudinger ligation scheme was used to cross-link phosphine-terminated PEG chemoselectively to azide-functionalized alginate, resulting in XAlgPEG hydrogels. XAlgPEG microbeads were formed by co-incubation of the two polymers, followed by ionic cross-linking of the alginate using barium ions. The enhanced stability and gel properties of the resulting XAlgPEG microbeads, as well as the compatibility of these polymers for the encapsulation of islets and beta cells lines, were investigated. The data show that XAlgPEG microbeads exhibit superior resistance to osmotic swelling compared with traditional barium cross-linked alginate (Ba-Alg) beads, with a five-fold reduction in observed swelling, as well as resistance to dissolution via chelation solution. Diffusion and porosity studies found XAlgPEG beads to exhibit properties comparable with standard Ba-Alg. XAlgPEG microbeads were found to be highly cell compatible with insulinoma cell lines, as well as rat and human pancreatic islets, where the viability and functional assessment of cells within XAlgPEG are comparable with Ba-Alg controls. The remarkable improved stability, as well as demonstrated cellular compatibility, of XAlgPEG hydrogels makes them an appealing option for a wide variety of tissue engineering applications.

摘要

功能化的藻酸盐和聚乙二醇(PEG)聚合物被用于生成共价连接的藻酸盐-PEG(XAlgPEG)微球,其具有高稳定性。使用细胞相容的Staudinger 连接方案将膦端接的 PEG 选择性地交联到叠氮基功能化的藻酸盐上,从而得到 XAlgPEG 水凝胶。XAlgPEG 微球是通过共孵育两种聚合物形成的,然后使用钡离子对藻酸盐进行离子交联。研究了所得 XAlgPEG 微球的增强稳定性和凝胶性质,以及这些聚合物对胰岛和β细胞系的封装的相容性。数据表明,与传统的钡交联藻酸盐(Ba-Alg)珠相比,XAlgPEG 微球具有优异的耐渗透压肿胀能力,观察到的肿胀减少了五倍,并且通过螯合溶液溶解的阻力也增强了。扩散和孔隙率研究发现 XAlgPEG 珠具有与标准 Ba-Alg 相当的性能。XAlgPEG 微球与胰岛素瘤细胞系以及大鼠和人胰岛高度细胞相容,其中 XAlgPEG 内细胞的活力和功能评估与 Ba-Alg 对照相当。XAlgPEG 水凝胶的显著改善的稳定性以及表现出的细胞相容性使它们成为各种组织工程应用的有吸引力的选择。

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