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A Gelatin Hydrogel-Containing Nano-Organic PEI–Ppy with a Photothermal Responsive Effect for Tissue Engineering Applications

机译:具有光热响应作用的含明胶水凝胶的纳米有机PEI–Ppy用于组织工程应用

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摘要

The introduction and designing of functional thermoresponsive hydrogels have been recommended as recent potential therapeutic approaches for biomedical applications. The development of bioactive materials such as thermosensitive gelatin-incorporated nano-organic materials with a porous structure and photothermally triggerable and cell adhesion properties may potentially achieve this goal. This novel class of photothermal hydrogels can provide an advantage of hyperthermia together with a reversibly transformable hydrogel for tissue engineering. Polypyrrole (Ppy) is a bioorganic conducting polymeric substance and has long been used in biomedical applications owing to its brilliant stability, electrically conductive features, and excellent absorbance around the near-infrared (NIR) region. In this study, a cationic photothermal triggerable/guidable gelatin hydrogel containing a polyethylenimine (PEI)–Ppy nanocomplex with a porous microstructure was established, and its physicochemical characteristics were studied through dynamic light scattering, scanning electronic microscopy, transmission electron microscopy, an FTIR; and cellular interaction behaviors towards fibroblasts incubated with a test sample were examined via MTT assay and fluorescence microscopy. Photothermal performance was evaluated. Furthermore, the in vivo study was performed on male Wistar rat full thickness excisions model for checking the safety and efficacy of the designed gelatin–PEI–Ppy nanohydrogel system in wound healing and for other biomedical uses in future. This photothermally sensitive hydrogel system has an NIR-triggerable property that provides local hyperthermic temperature by PEI–Ppy nanoparticles for tissue engineering applications. Features of the designed hydrogel may fill other niches, such as being an antibacterial agent, generation of free radicals to further improve wound healing, and remodeling of the promising photothermal therapy for future tissue engineering applications.
机译:已经推荐功能性热响应性水凝胶的引入和设计作为生物医学应用的最新潜在治疗方法。具有多孔结构和光热触发和细胞粘附特性的生物活性材料(如掺入热敏明胶的纳米有机材料)的开发可能有可能实现这一目标。这类新型的光热水凝胶可以为组织工程提供高温和可逆转化的水凝胶的优势。聚吡咯(Ppy)是一种生物有机导电聚合物,由于其出色的稳定性,导电特性以及在近红外(NIR)区域的出色吸收性,长期以来一直用于生物医学应用。本研究建立了阳离子光热可触发/可引导的明胶水凝胶,该凝胶包含具有多孔微结构的聚乙烯亚胺(PEI)-Ppy纳米复合物,并通过动态光散射,扫描电子显微镜,透射电子显微镜,FTIR研究了其理化特性;通过MTT测定和荧光显微镜检查对与测试样品一起温育的成纤维细胞的细胞相互作用行为。评价了光热性能。此外,在雄性Wistar大鼠全厚度切除模型上进行了体内研究,以检查设计的明胶– PEI – Ppy纳米水凝胶系统在伤口愈合以及将来用于其他生物医学领域的安全性和有效性。这种对光热敏感的水凝胶系统具有NIR可触发的特性,可通过PEI–Ppy纳米颗粒为组织工程应用提供局部高温。设计的水凝胶的功能可能会填补其他领域的空白,例如作为抗菌剂,产生自由基以进一步改善伤口愈合以及为将来的组织工程应用重塑有希望的光热疗法。

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