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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Preparation of Methacrylic Acid Copolymer S Nano-fibers Using a Solvent-Based Electrospinning Method and Their Application in Pharmaceutical Formulations
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Preparation of Methacrylic Acid Copolymer S Nano-fibers Using a Solvent-Based Electrospinning Method and Their Application in Pharmaceutical Formulations

机译:溶剂静电纺丝法制备甲基丙烯酸共聚物S纳米纤维及其在药物配方中的应用

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摘要

In this study, we applied an electrospinning (ES) method, which is mainly employed in the textile industry, to the field of pharmaceuticals. We developed and modified an ES instrument and then utilized it to produce methacrylic acid copolymer S (MAC) nano-fibers to prepare tablets. By attaching a conductor rod made from stainless steel to the central part of the nano-fiber-collection plate of the ES apparatus, a MAC nano-fiber sheet could be produced effectively. In addition, we studied various operating conditions for this new ES method, including needle gauge, voltage between the electrodes, distance between the needle and nano-fiber-collection plate and the flow rate of MAC polymer solution, but these had no significant effect on the diameter of MAC nano-fibers. On the other hand, the viscosity (concentration) of MAC polymer solution and permittivity of solvent used to dilute MAC were closely related to the mean diameter of the nano-fibers. Tableting of MAC nano-fibers was performed using a tableting machine without lubricants, and addition of Tween 20 to the tablets enabled regulation of the release profile of a water-soluble drug. The modified ES method reported here is a useful technique for the controlled-release of drugs and has wide-ranging potential for pharmaceutical applications.
机译:在这项研究中,我们将主要用于纺织工业的静电纺(ES)方法应用于制药领域。我们开发并修改了ES仪器,然后将其用于生产甲基丙烯酸共聚物S(MAC)纳米纤维以制备片剂。通过将由不锈钢制成的导体棒附接到ES设备的纳米纤维收集板的中央部分,可以有效地生产MAC纳米纤维片。此外,我们研究了该新ES方法的各种操作条件,包括针规,电极之间的电压,针与纳米纤维收集板之间的距离以及MAC聚合物溶液的流速,但这些操作条件对MAC纳米纤维的直径。另一方面,MAC聚合物溶液的粘度(浓度)和用于稀释MAC的溶剂的介电常数与纳米纤维的平均直径密切相关。 MAC纳米纤维的压片是在不使用润滑剂的压片机上进行的,向片剂中添加吐温20能够调节水溶性药物的释放曲线。此处报道的改良的ES方法是控制药物释放的有用技术,在制药应用中具有广泛的潜力。

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