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Biological and biomaterial approaches for improved islet transplantation.

机译:改善胰岛移植的生物和生物材料方法。

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Islet transplantation may be used to treat type I diabetes. Despite tremendous progress in islet isolation, culture, and preservation, the clinical use of this modality of treatment is limited due to post-transplantation challenges to the islets such as the failure to revascularize and immune destruction of the islet graft. In addition, the need for lifelong strong immunosuppressing agents restricts the use of this option to a limited subset of patients, which is further restricted by the unmet need for large numbers of islets. Inadequate islet supply issues are being addressed by regeneration therapy and xenotransplantation. Various strategies are being tried to prevent beta-cell death, including immunoisolation using semipermeable biocompatible polymeric capsules and induction of immune tolerance. Genetic modification of islets promises to complement all these strategies toward the success of islet transplantation. Furthermore, synergistic application of more than one strategy is required for improving the success of islet transplantation. This review will critically address various insights developed in each individual strategy and for multipronged approaches, which will be helpful in achieving better outcomes.
机译:胰岛移植可用于治疗I型糖尿病。尽管在胰岛的分离,培养和保存方面取得了巨大的进步,但由于胰岛的移植后挑战,例如血管重建失败和胰岛移植物的免疫破坏,这种治疗方式的临床应用受到了限制。另外,对终身强力免疫抑制剂的需求将这种方法的使用限制在有限的一部分患者中,这进一步受到未满足的对大量胰岛需求的限制。再生疗法和异种移植正在解决胰岛供应不足的问题。人们正在尝试各种策略来防止β细胞死亡,包括使用半透性生物相容性聚合物胶囊进行免疫隔离以及诱导免疫耐受。胰岛的遗传修饰有望补充所有这些成功实现胰岛移植的策略。此外,需要协同应用多种策略来提高胰岛移植的成功率。这篇评论将批判性地解决在每个单独策略中以及针对多管齐下的方法开发的各种见解,这将有助于获得更好的结果。

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