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“点击”海藻酸盐水凝胶胶囊的合成及其与Ca(+2)交联海藻酸胶囊在稳定性、水溶胀性和扩散性能方面的比较。

Synthesis of "click" alginate hydrogel capsules and comparison of their stability, water swelling, and diffusion properties with that of Ca(+2) crosslinked alginate capsules.

作者信息

Breger Joyce C, Fisher Benjamin, Samy Raghu, Pollack Steven, Wang Nam Sun, Isayeva Irada

机构信息

Center for Devices and Radiological Health/Office of Science and Engineering Laboratories/FDA, Silver Spring, Maryland, 20993-002.

Department of Chemical and Biomolecular Engineering, University of Maryland, Maryland, 20742-2115.

出版信息

J Biomed Mater Res B Appl Biomater. 2015 Jul;103(5):1120-32. doi: 10.1002/jbm.b.33282. Epub 2014 Oct 6.

Abstract

Ionically crosslinked alginate hydrogels have been extensively explored for encapsulation and immunoisolation of living cells/tissues to develop implantable cell therapies, such as islet encapsulation for bioartificial pancreas. Chemical instability of these hydrogels during long-term implantation hinders the development of viable cell therapy. The exchange between divalent crosslinking ions (e.g., Ca(+2) ) with monovalent ions from physiological environment causes alginate hydrogels to degrade, resulting in exposure of the donor tissue to the host's immune system and graft failure. The goal of this study was to improve stability of alginate hydrogels by utilizing covalent "click" crosslinking while preserving other biomedically viable hydrogel properties. Alginate was first functionalized to contain either pendant alkyne or azide functionalities, and subsequently reacted via "click" chemistry to form "click" gel capsules. Alginate functionalization was confirmed by NMR and gel permeation chromatography. When compared with Ca(+2) capsules, "click" capsules exhibited superior stability in ionic media, while showing higher permeability to small size diffusants and similar molecular weight cut-off and water swelling. Physicochemical properties of "click" alginate hydrogels demonstrate their potential utility for therapeutic cell encapsulation and other biomedical applications.

摘要

离子交联海藻酸盐水凝胶已被广泛研究用于活细胞/组织的包封和免疫隔离,以开发可植入细胞疗法,如用于生物人工胰腺的胰岛包封。这些水凝胶在长期植入过程中的化学不稳定性阻碍了可行细胞疗法的发展。二价交联离子(如Ca(+2) )与生理环境中的单价离子之间的交换会导致海藻酸盐水凝胶降解,从而使供体组织暴露于宿主免疫系统并导致移植失败。本研究的目的是通过利用共价“点击”交联来提高海藻酸盐水凝胶的稳定性,同时保留其他生物医学上可行的水凝胶特性。首先将海藻酸盐功能化,使其含有炔基或叠氮化物侧基,随后通过“点击”化学反应形成“点击”凝胶胶囊。通过核磁共振和凝胶渗透色谱法确认了海藻酸盐的功能化。与Ca(+2) 胶囊相比,“点击”胶囊在离子介质中表现出卓越的稳定性,同时对小尺寸扩散剂具有更高的渗透性,并且具有相似的截留分子量和水溶胀性。“点击”海藻酸盐水凝胶的物理化学性质证明了它们在治疗性细胞包封和其他生物医学应用中的潜在用途。

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