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首页> 外文期刊>Cellulose >A multifunctional electrospun and dual nano-carrier biobased system for simultaneous detection of pH in the wound bed and controlled release of benzocaine
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A multifunctional electrospun and dual nano-carrier biobased system for simultaneous detection of pH in the wound bed and controlled release of benzocaine

机译:一种多功能电纺和双纳米载体生物系统,用于同时检测伤口床中pH的pH和苯并控制释放

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摘要

Novel multifunctional bio-based nanofibrous mats were prepared which contain the commonly used pain reducing local anesthetic benzocaine (BZC) and the in situ pH-detecting dye bromocresol green (BCG). These can serve as a dual nano-carrier system for wound healing applications, especially in the treatment of infected wounds. BZC and BCG were introduced into cellulose acetate (CA) based nanofibers using a single-step needleless electrospinning process. The resulting CA nanofibers show a homogenous fiber diameter distribution around 600nm, hydrophobicity with a water contact angle of 134 degrees, and simultaneous porosities on the nano-micro- scale. In spite of their hydrophobic character, the nanofibrous mats showed a huge water absorption capacity (1657%), as well as good stability at physiological pH (negligible degradation). All the mentioned properties remain unchanged upon the inclusion of either BZC or BCG. Results from the in vitro drug release studies showed a pH dependent (i.e. controllable) release of BZC, and confirmed the expected maximum drug release rate at pH 9.0, which would correspond clinically to the pH of an infected wound. The accompanying color change of the nanofibrous mats, provided through the encapsulated BCG (from yellow to blue), is noticeable within a few seconds after the pH changes from acidic to alkaline. This rapid response of NSAID, together with the visible absorption of included dye, show the capacity of the proposed nanofibrous mats as an in situ pH-detecting system. Finally, the biocompatibility of the proposed nanofibrous mats was proven using human skin fibroblast cells, confirming their potential to be used in wound treatment.Graphical abstract
机译:制备了新型多功能生物基纳米纤维垫,其含有常用的疼痛还原局部麻醉剂苯并催化(BZC)和原位pH检测染料溴(BCG)。这些可以用作伤口愈合应用的双纳米载体系统,特别是在治疗感染的伤口。使用单步无需静电纺丝工艺将BZC和BCG引入醋酸纤维素(CA)的纳米纤维中。所得Ca纳米纤维显示出约600nm,疏水性的均匀纤维直径分布,其水接触角为134度,并在纳米微级上同时孔隙率。尽管他们的疏水性,但纳米纤维垫显示出巨大的吸水能力(1657%),以及在生理pH(可忽略可忽略的降解)的稳定性良好。在包含BZC或BCG时,所有提到的性质保持不变。体外药物释放研究的结果显示了BZC的pH依赖性(即可控的)释放,并确认了pH9.0的预期最大药物释放速率,其将临床上对应于感染的伤口的pH。通过包封的BCG(从黄色至蓝色)提供的纳米纤维垫的伴随的颜色变化在pH从酸性到碱性的pH变化后几秒钟内明显。这种NSAID的这种快速响应以及所附染料的可见吸收,显示出所提出的纳米纤维垫作为原位pH检测系统的能力。最后,使用人体皮肤成纤维细胞证明所提出的纳米纤维垫的生物相容性,证实了它们在伤口治疗中使用的潜力。摘要

著录项

  • 来源
    《Cellulose》 |2018年第12期|共21页
  • 作者单位

    Univ Maribor Lab Characterizat &

    Proc Polymers Fac Mech Engn Smetanova Ulica 17 Maribor 2000 Slovenia;

    Univ Maribor Lab Characterizat &

    Proc Polymers Fac Mech Engn Smetanova Ulica 17 Maribor 2000 Slovenia;

    Univ Maribor Lab Characterizat &

    Proc Polymers Fac Mech Engn Smetanova Ulica 17 Maribor 2000 Slovenia;

    Univ Maribor Lab Characterizat &

    Proc Polymers Fac Mech Engn Smetanova Ulica 17 Maribor 2000 Slovenia;

    Univ Maribor Inst Biomed Sci Fac Med Taborska Ulica 8 Maribor 2000 Slovenia;

    Univ Maribor Lab Characterizat &

    Proc Polymers Fac Mech Engn Smetanova Ulica 17 Maribor 2000 Slovenia;

    Univ Ljubljana Fac Chem &

    Chem Technol Vecna Pot 113 Ljubljana 1000 Slovenia;

    Univ Maribor Inst Biomed Sci Fac Med Taborska Ulica 8 Maribor 2000 Slovenia;

    Univ Maribor Lab Characterizat &

    Proc Polymers Fac Mech Engn Smetanova Ulica 17 Maribor 2000 Slovenia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

    Benzocaine; Bromocrezol green; Point-of-care; Biosensor; Cellulose acetate nanofibers; Drug delivery; pH indicator;

    机译:苯会蛋白;Bromocrezol Green;护理点;生物传感器;醋酸纤维素纳米纤维;药物递送;pH指示剂;

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