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血小板裂解液蛋白通过非天然二硫键自组装成微粒用于从头构建组织工程。

Self-Assembly of Platelet Lysates Proteins into Microparticles by Unnatural Disulfide Bonds for Bottom-Up Tissue Engineering.

机构信息

Department of Chemistry CICECO-Aveiro Institute of Materials University of Aveiro, Campus Universitário de Santiago, Aveiro, 3810-193, Portugal.

出版信息

Adv Mater. 2023 Oct;35(41):e2304659. doi: 10.1002/adma.202304659. Epub 2023 Aug 24.

Abstract

There is a demand to design microparticles holding surface topography while presenting inherent bioactive cues for applications in the biomedical and biotechnological fields. Using the pool of proteins present in human-derived platelet lysates (PLs), the production of protein-based microparticles via a simple and cost-effective method is reported, exploring the prone redox behavior of cysteine (Cy-SH) amino acid residues. The forced formation of new intermolecular disulfide bonds results in the precipitation of the proteins as spherical, pompom-like microparticles with adjustable sizes (15-50 µm in diameter) and surface topography consisting of grooves and ridges. These PL microparticles exhibit extraordinary cytocompatibility, allowing cell-guided microaggregates to form, while also working as injectable systems for cell support. Early studies also suggest that the surface topography provided by these PL microparticles can support osteogenic behavior. Consequently, these PL microparticles may find use to create live tissues via bottom-up procedures or injectable tissue-defect fillers, particularly for bone regeneration, with the prospect of working under xeno-free conditions.

摘要

人们需要设计具有表面形貌的微粒,同时提供固有生物活性信号,以应用于生物医学和生物技术领域。本研究利用人血小板裂解液 (PL) 中存在的蛋白质库,通过一种简单且经济有效的方法来生产基于蛋白质的微粒,探索半胱氨酸 (Cy-SH) 氨基酸残基的易氧化还原行为。强制形成新的分子间二硫键会导致蛋白质沉淀形成具有可调节尺寸(直径 15-50μm)和表面形貌(由凹槽和脊组成)的球形、绒球状微粒。这些 PL 微粒表现出非凡的细胞相容性,允许细胞引导微聚集体形成,同时也可用作细胞支持的可注射系统。早期研究还表明,这些 PL 微粒提供的表面形貌可以支持成骨行为。因此,这些 PL 微粒可用于通过自下而上的程序或可注射的组织缺陷填充物来创建活体组织,特别是用于骨再生,有望在无异种条件下发挥作用。

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