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Incorporating redox-sensitive nanogels into bioabsorbable nanofibrous membrane to acquire ROS-balance capacity for skin regeneration

机译:将氧化还原碱性纳米凝胶掺入生物可吸收的纳米纤维中以获得皮肤再生的ROS平衡能力

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摘要

Facing the high incidence of skin diseases, it is urgent to develop functional materials with high bioactivity for wound healing, where reactive oxygen species (ROS) play an important role in the wound healing process mainly via adjustment of immune response and neovasculation. In this study, we developed a kind of bioabsorbable materials with ROS-mediation capacity for skin disease therapy. Firstly, redox-sensitive poly(N-isopropylacrylamide-acrylic acid) (PNA) nanogels were synthesized by radical emulsion polymerization method using a disulfide molecule as crosslinker. The resulting nanogels were then incorporated into the nanofibrous membrane of poly(l-lactic acid) (PLLA) via airbrushing approach to offer bioabsorbable membrane with redox-sensitive ROS-balance capacity. In vitro biological evaluation indicated that the PNA-contained bioabsorbable membrane improved cell adhesion and proliferation compared to the native PLLA membrane. In vivo study using mouse wound skin model demonstrated that PNA-doped nanofibrous membranes could promote the wound healing process, where the disulfide bonds in them were able to adjust the ROS level in the wound skin for mediation of redox potential to achieve higher wound healing efficacy.
机译:面对皮肤疾病的高发病率,迫切需要用伤口愈合具有高生物活性的功能性材料,其中活性氧(ROS)主要通过调节免疫应答和新生种在伤口愈合过程中起重要作用。在这项研究中,我们开发了一种具有ROS中介能力的生物可吸收材料,用于皮肤病治疗。首先,通过使用二硫化物分子作为交联剂,通过自由基乳液聚合方法合成氧化氧敏感聚(N-异丙基丙烯酰胺 - 丙烯酸)(PNA)纳米粒子。然后通过喷枪方法将所得纳米凝胶掺入聚(L-乳酸)(PLLA)的纳米纤维膜中,以提供具有氧化还原敏感的ROS平衡能力的生物可吸收膜。体外生物学评价表明,与天然PLLA膜相比,PNA含有的生物可吸收膜改善了细胞粘附和增殖。在使用鼠标伤口皮肤模型的体内研究表明,PNA掺杂的纳米纤维膜可以促进伤口愈合过程,其中它们中的二硫键能够调节伤口皮肤中的ROS水平,用于氧化还原潜力的调解,以实现更高的伤口愈合功效。

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