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Adapting Biodegradable Oligo(Poly(Ethylene Glycol) Fumarate) Hydrogels for Pigment Epithelial Cell Encapsulation and Lens Regeneration

机译:适应生物可降解寡聚(乙二醇)富马酸酯水凝胶的色素上皮细胞包囊和晶状体再生。

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摘要

This study investigated the encapsulation of newt iris pigment epithelial cells (PECs), which have the ability to regenerate a lens by trans-differentiation in vivo, within a biodegradable hydrogel of oligo(poly(ethylene glycol) fumarate) crosslinked with poly(ethylene glycol)-diacrylate. Hydrogel beads of initial diameter of 1 mm were fabricated by a molding technique. The swelling ratio and degradation rate of the hydrogel beads decreased with increasing crosslinking ratios. Confocal microscopy confirmed the cytocompatibility of crosslinking hydrogel formulations as evidenced by the viability of an encapsulated model cell line within a crosslinked hydrogel bead. Hydrogel beads encapsulating iris PECs were also implanted into lentectomized newts in vivo; histological evaluation of explants after 30 days revealed a regenerated lens, thus demonstrating that the presence of degrading hydrogel did not adversely affect lens regeneration. The results of this study suggest the potential of a method for lens regeneration involving oligo(poly(ethylene glycol) fumarate) hydrogels for iris PEC encapsulation and transplantation.
机译:这项研究调查了iris虹膜色素上皮细胞(PECs)的封装,该上皮细胞具有在体内通过转分化来再生晶状体的能力,可在聚(乙二醇)富马酸酯交联的可生物降解的低聚(乙二醇)富马酸酯的水凝胶中进行。 )-二丙烯酸酯。初始直径为1 mm的水凝胶珠粒是通过模塑技术制成的。水凝胶珠粒的溶胀率和降解率随交联率的增加而降低。共聚焦显微镜证实了交联水凝胶制剂的细胞相容性,这是通过在交联的水凝胶珠粒内封装的模型细胞系的生存力证明的。封装虹膜PECs的水凝胶珠子也被植入体内经扁豆切除的new中。 30天后外植体的组织学评价显示晶状体再生,因此表明降解的水凝胶的存在对晶状体再生没有不利影响。这项研究的结果表明涉及虹膜PEC封装和移植的涉及寡聚聚乙二醇富马酸酯水凝胶的晶状体再生方法的潜力。

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