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Sustained release of plasmid DNA from PLLA/POSS nanofibers for angiogenic therapy

机译:来自PLLA / POTS纳米纤维的质粒DNA的持续释放用于血管生成治疗

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摘要

Angiogenesis plays a critical role to provide a desired microenvironment during tissue repair and regeneration. Gene-activated scaffold is increasingly showing potential in tissue engineering and regenerative medicine. Herein, functional polyhedral oligomeric silsesquioxane (POSS) nanoparticles, known for the organic-inorganic structure and biocompatibility, were incorporated into poly(L-lactic acid) (PLLA) matrix and processed by electrospinning into nanofibers as a delivery vehicle of plasmid DNA encoding angiopoietin-1 (pAng). The introduction of functional POSS nanoparticles increased the strength and toughness of the matrix simultaneously, and formed the porous fiber structure. PAng released from the nanofibrous scaffold showed sustained delivery over 35 days and maintained high transfection efficiency. A full-thickness skin wound model was used to evaluate the pAng delivery efficacy and angiogenesis capability of the plasmid DNA-based polymeric scaffold in vivo. The results indicated that the pAng loaded PLLA/POSS scaffold effectively promoted angiogenesis and dermal wound healing.
机译:血管生成在组织修复和再生期间提供了所需的微环境的关键作用。基因活化支架越来越多地显示组织工程和再生医学的潜力。在此,用于有机 - 无机结构和生物相容性已知的功能性多面体低聚倍半硅氧烷(POSS)纳米颗粒,其掺入聚(L-乳酸)(PLLA)基质中,并通过静电纺丝成纳米纤维作为编码血管发球率的质粒DNA的输送载体。 -1(庞)。功能性容量纳米颗粒的引入同时增加了基质的强度和韧性,形成了多孔纤维结构。从纳米纤维支架中释放的庞显示35天的持续递送,并保持高转染效率。使用全厚的皮肤伤口模型来评估体内质粒DNA的聚合物支架的庞递送功效和血管生成能力。结果表明,庞载PLLA / POLL支架有效促进血管生成和皮肤伤口愈合。

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