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首页> 外文期刊>Biomacromolecules >Bioinspired pH- and Temperature-Responsive Injectable Adhesive Hydrogels with Polyplexes Promotes Skin Wound Healing
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Bioinspired pH- and Temperature-Responsive Injectable Adhesive Hydrogels with Polyplexes Promotes Skin Wound Healing

机译:Bioinspired pH-和温度响应的可注射粘合剂水凝胶促进皮肤伤口愈合

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摘要

Despite great potential, the delivery of genetic materials into cells or tissues of interest remains challenging owing to their susceptibility to nuclease degradation, lack of permeability to the cell membrane, and short in vivo half-life, which severely restrict their widespread use in therapeutics. To surmount these shortcomings, we developed a bioinspired in situ-forming pH- and temperature-sensitive injectable hydrogel depot that could control the delivery of DNA-bearing polyplexes for versatile biomedical applications. A series of multiblock copolymer, comprised of water-soluble poly(ethylene glycol) (PEG) and pH- and temperature responsive poly(sulfamethazine ester urethane) (PSMEU), has been synthesized as in situ-forming injectable hydrogelators. The free-flowing PEG PSMEU copolymer sols at high pH and room temperature (pH 8.5, 23 degrees C) were transformed to stable gel at the body condition (pH 7.4, 37 degrees C). Physical and mechanical properties of hydrogels, including their degradation rate and viscosity, are elegantly controlled by varying the composition of urethane ester units. Subcutaneous administration of free-flowing PEG PSMEU copolymer sols to the dorsal region of Sprague Dawley rats instantly formed hydrogel depot. The degradation of the hydrogel depot was slow at the beginning and found to be bioresorbable after two months. Cationic protein or DNA-bearing polyplex-loaded PEG-PSMEU copolymer sols formed stable gel and controlled its release over 10 days in vivo. Owing to the presence of urethane linkages, the PEG PSMEU possesses excellent adhesion strength to wide range of surfaces including glass, plastic, and fresh organs. More importantly, the hydrogels effectively adhered on human skin and peeled easily without eliciting an inflammatory response. Subcutaneous implantation of PEG PSMEU copolymer sols effectively sealed the ruptured skin, which accelerated the wound healing process as observed by the skin appendage morphogenesis. The bioinspired in situ-forming pH- and temperature-sensitive injectable adhesive hydrogel may provide a promising platform for myriad biomedical applications as controlled delivery vehicle, adhesive, and tissue regeneration.
机译:尽管有很大的潜力,但由于它们对核酸酶降解的易感性,细胞膜缺乏渗透性,并且在体内半衰期短的情况下,遗传物质遗留到感兴趣的细胞或组织中仍然挑战,这严重限制了其在治疗剂中的广泛使用。为了超越这些缺点,我们在原位形成的pH-和温度敏感的注射水凝胶储存中制定了一种生物悬浮的水凝胶储物,其可以控制携带DNA轴承的递送,用于多种生物医学应用。一系列由水溶性聚(乙二醇)(PEG)和pH-和温度响应性聚(磺胺甲嘧啶酯氨基甲酸酯)(PSMEU)组成的多嵌段共聚物已被合成为原位的注射水蛋白。将在高pH和室温(pH8.5,23℃)下的自由流动的PEG PSMEU共聚物溶胶在体状(pH 7.4,37℃)处转化到稳定的凝胶中。通过改变氨基甲酸酯酯单元的组成,水凝胶的物理和机械性能,包括它们的降解速率和粘度。将自由流动的PEG PSMEU共聚物溶胶皮下施用到Sprague Dawley大鼠的背部区域瞬间形成水凝胶仓。水凝胶贮库的降解在开始时慢,发现在两个月后被吸收。阳离子蛋白或DNA轴承负载的PEG-PSMEU共聚物溶胶形成稳定的凝胶并控制其在体内10天内释放。由于氨基甲酸酯连杆的存在,PEG PSMEU具有优异的粘合强度,以包括玻璃,塑料和新器官的宽范围的表面。更重要的是,水凝胶有效地粘附在人体皮肤上并容易剥离而不会引发炎症反应。 PEG PSMEU共聚物溶胶的皮下植入有效地密封了破裂的皮肤,这加速了皮肤阑尾形态发生的观察到的伤口愈合过程。 Bioinspired在原位形成的pH-和温度敏感的可注射粘合剂水凝胶可以为Myriad生物医学应用提供有希望的平台,作为受控输送载体,粘合剂和组织再生。

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  • 来源
    《Biomacromolecules 》 |2018年第8期| 共13页
  • 作者单位

    Sungkyunkwan Univ Sch Chem Engn Theranost Macromol Res Ctr Suwon 440746 South Korea;

    Sungkyunkwan Univ Sch Chem Engn Theranost Macromol Res Ctr Suwon 440746 South Korea;

    Sungkyunkwan Univ Sch Chem Engn Theranost Macromol Res Ctr Suwon 440746 South Korea;

    Ton Duc Thang Univ Fac Appl Sci Ho Chi Minh City 70000 Vietnam;

    Sungkyunkwan Univ Sch Pharm Theranost Macromol Res Ctr Suwon 440746 South Korea;

    Sungkyunkwan Univ Sch Chem Engn Theranost Macromol Res Ctr Suwon 440746 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
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