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首页> 外文期刊>International Journal of Pharmaceutics >Electrospun nanofibrous polymeric scaffold with targeted drug release profiles for potential application as wound dressing.
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Electrospun nanofibrous polymeric scaffold with targeted drug release profiles for potential application as wound dressing.

机译:具有靶向药物释放曲线的电纺纳米纤维聚合物支架,可潜在地用作伤口敷料。

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摘要

We have successfully fabricated a dual drug release electrospun scaffold containing an anesthetic, lidocaine, and an antibiotic, mupirocin. Two drugs with different lipophilicities were electrospun from a poly-l-lactic acid (PLLA) solution with a dual spinneret electrospinning apparatus into a single scaffold. The release of the drugs from the scaffold showed different profiles for the two drugs. Lidocaine hydrochloride exhibited an initial burst release (80% release within an hour) followed by a plateau after the first few hours. Mupirocin exhibited only a 5% release in the first hour before experiencing a more sustained release to provide antibacterial action for over 72 h. For comparative purposes, both drugs were spun from a single spinneret and evaluated to determine their release profiles. The scaffold maintained its antibiotic activity throughout the processes of electrospinning and gas sterilization and supported cell viability. It has been reported in the literature that interactions between polymer and drug are known to govern the pattern of drug release from electrospun scaffolds. Here, it was found that the presence of the two drugs in the same polymer matrix altered the release kinetics of at least one drug. Based on the release profiles obtained, the dual spinneret technique was the preferred method of scaffold fabrication over the single spinneret technique to obtain a prototype wound healing device.
机译:我们已经成功地制备了包含麻醉药利多卡因和抗生素莫匹罗星的双重药物释放电纺丝支架。用双喷丝板电纺丝设备将两种具有不同亲脂性的药物从聚-1-乳酸(PLLA)溶液中电纺到单个支架中。药物从支架上的释放显示出两种药物的特征不同。盐酸利多卡因表现出最初的爆发释放(在一小时内释放80%),随后的最初几个小时达到平稳。在经历更持续的释放以提供抗菌作用超过72小时之前,莫匹罗星在最初的一个小时内仅表现出5%的释放。为了进行比较,将两种药物从单个喷丝头中纺出并进行评估以确定其释放曲线。支架在整个电纺和气体灭菌过程中保持其抗生素活性,并支持细胞活力。据文献报道,已知聚合物与药物之间的相互作用决定着电纺丝支架释放药物的方式。在此,发现在相同的聚合物基质中两种药物的存在改变了至少一种药物的释放动力学。基于获得的释放曲线,与单喷丝板技术相比,双喷丝板技术是支架制造的首选方法,以获得原型伤口愈合装置。

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