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Development of hydrogel-like biomaterials via nanoparticle assembly and solid-hydrogel transformation

机译:通过纳米颗粒组装和固水凝胶转化的水凝胶样生物材料的研制

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摘要

Hydrogels for biomedical applications such as controlled drug release are usually synthesized with the chemical or physical crosslinking of monomers or macromers. In this work, we used gelatin to prepare hydrogel nanoparticles and studied whether gelatin nanoparticles (GNPs) could assemble to form a solid biomaterial and whether this solid biomaterial was capable of transforming into a hydrogel upon introduction to a hydrated environment. The data show that GNPs with or without aptamer functionalization could form a nanoparticle-assembled porous solid biomaterial after freezing and lyophilization treatment. This formation did not need any additional crosslinking reactions. More importantly, this solid biomaterial could undergo solid-to-hydrogel transition after contacting a solution and this transformation was tunable to match different shapes and geometries of defined molds. The formed hydrogel could also sequester and release growth factors for the promotion of skin wound healing. Thus, GNP-assembled solid biomaterials hold great potential as an off-the-shelf therapy for biomedical application such as drug delivery and regenerative medicine.
机译:用于生物医学应用的水凝胶,例如受控药物释放,通常用单体或大分子体的化学或物理交联合成。在这项工作中,我们使用明胶制备水凝胶纳米颗粒,并研究明胶纳米颗粒(GNP)是否可以组装以形成固体生物材料,并在引入水合环境后能够将其转化为水凝胶。数据显示,具有或不具有适体功能化的GNP可以在冷冻和冻干处理后形成纳米颗粒组装的多孔固体生物材料。这种形成不需要任何额外的交联反应。更重要的是,在接触溶液后,该固体生物材料可以经历固凝胶转变,并且该转变被调谐以匹配不同的形状和限定模具的几何形状。形成的水凝胶还可以螯合和释放促进皮肤伤口愈合的生长因子。因此,GNP组装的固体生物材料作为生物医学应用的现成疗法,如药物递送和再生医学。

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