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首页> 外文期刊>Biomacromolecules >Two-Step Self-Assembly of Liposome-Multidomain Peptide Nanofiber Hydrogel for Time-Controlled Release
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Two-Step Self-Assembly of Liposome-Multidomain Peptide Nanofiber Hydrogel for Time-Controlled Release

机译:脂质体多域肽纳米纤维水凝胶的两步自组装,用于时间控制释放

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摘要

Progress in self-assembly and supramolecular chemistry has been directed toward obtaining macromolecular assemblies with higher degrees of complexity, simulating the highly structured environment in natural systems. One approach to this type of complexity are multistep, multi-component, self-assembling systems that allow approaches comparable to traditional multistep synthetic organic chemistry; however, only a few examples of this approach have appeared in the literature. Our previous work demonstrated nanofibrous mimics of the extracellular matrix. Here we demonstrate the ability to create a unique hydrogel, developed by stepwise self-assembly of multidomain peptide fibers and liposomes. The two-component system allows for controlled release of bioactive factors at multiple time points. The individual components of the self-assembled gel and the composite hydrogel were characterized by TEM, SEM, and rheometry, demonstrating that peptide nanofibers and lipid vesicles both retain their structural integrity in the composite gel. The rheological robustness of the hydrogel is shown to be largely unaffected by the presence of liposomes. Release studies from the composite gels loaded with different growth factors EGF, MCP-1, and P1GF-1 showed delay and prolongation of release by liposomes entrapped in the hydrogel compared to more rapid release from the hydrogel alone. This bimodal release system may have utility in systems where timed cascades of biological signals may be valuable, such as in tissue regeneration.
机译:自组装和超分子化学方面的进展一直致力于获得具有更高复杂度的大分子组装体,以模拟自然系统中高度结构化的环境。解决这种复杂性的一种方法是多步,多组分,自组装系统,可以与传统的多步合成有机化学方法相媲美。然而,文献中仅出现了这种方法的几个例子。我们以前的工作证明了细胞外基质的纳米纤维模拟物。在这里,我们展示了通过逐步自组装多域肽纤维和脂质体开发出独特水凝胶的能力。两组分系统允许在多个时间点控制释放生物活性因子。自组装凝胶和复合水凝胶的各个成分均通过TEM,SEM和流变法进行了表征,表明肽纳米纤维和脂质囊泡均在复合凝胶中保留了其结构完整性。水凝胶的流变稳定性显示出在很大程度上不受脂质体的影响。从载有不同生长因子EGF,MCP-1和P1GF-1的复合凝胶中进行的释放研究表明,与单独从水凝胶中释放更快相比,包裹在水凝胶中的脂质体释放的延迟和延长。该双峰释放系统可以在生物信号的定时级联可能有价值的系统中有用,例如在组织再生中。

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