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Modular injectable matrices based on alginate solution/microsphere mixtures that gel in situ and co-deliver immunomodulatory factors

机译:基于藻酸盐溶液/微球混合物的模块化可注射基质,原位凝胶并共同传递免疫调节因子

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摘要

Biocompatible polymer solutions that can crosslink in situ following injection to form stable hydrogels are of interest as depots for sustained delivery of therapeutic factors or cells, and as scaffolds for regenerative medicine. Here, injectable self-gelling alginate formulations obtained by mixing alginate microspheres (as calcium reservoirs) with soluble alginate solutions were characterized for potential use in immunotherapy. Rapid redistribution of calcium ions from microspheres into the surrounding alginate solution led to crosslinking and formation of stable hydrogels. The mechanical properties of the resulting gels correlated with the concentration of calcium-reservoir microspheres added to the solution. Soluble factors such as the cytokine interleukin-2 were readily incorporated into self-gelling alginate matrices by simply mixing them with the formulation prior to gelation. Using alginate microspheres as modular components, strategies for binding immunostimulatory CpG oligonucleotides onto the surface of microspheres were also demonstrated. When injected subcutaneously in the flanks of mice, self-gelling alginate formed soft macroporous gels supporting cellular infiltration and allowing ready access to microspheres carrying therapeutic factors embedded in the matrix. This in situ gelling formulation may thus be useful for stimulating immune cells at desired locales, such as solid tumors or infection sites, as well as for other soft tissue regeneration applications.
机译:可以在注射后就地交联形成稳定水凝胶的生物相容性聚合物溶液,作为持续递送治疗因子或细胞的储库,以及作为再生医学的支架,受到关注。在这里,通过将藻酸盐微球体(作为钙储库)与可溶性藻酸盐溶液混合而获得的可注射的自胶凝藻酸盐制剂具有潜在的免疫治疗用途。钙离子从微球体快速重新分布到周围的藻酸盐溶液中,导致交联并形成稳定的水凝胶。所得凝胶的机械性能与添加到溶液中的钙储层微球的浓度相关。通过在胶凝之前将它们与制剂简单混合,即可将可溶性因子(例如细胞因子白介素2)轻松掺入自胶凝藻酸盐基质中。使用藻酸盐微球作为模块组件,还证明了将免疫刺激性CpG寡核苷酸结合到微球表面的策略。当皮下注射到小鼠的腹腔中时,自胶凝的藻酸盐形成软的大孔凝胶,支持细胞浸润并允许进入带有嵌入基质中的治疗因子的微球。因此,这种原位胶凝制剂可用于在期望的位置刺激免疫细胞,例如实体瘤或感染部位,以及用于其他软组织再生应用。

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