首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Electrospraying: a facile technique for synthesis of chitosan-based microanospheres for drug delivery applications.
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Electrospraying: a facile technique for synthesis of chitosan-based microanospheres for drug delivery applications.

机译:电喷雾:一种用于合成基于壳聚糖的微/纳米球的简便技术,用于药物输送应用。

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Electrospraying is a novel technique for the generation of microanospheres for biomedical applications. Apart from being a high yield technique; electrospraying has an added advantage of not making use of an external dispersion/emulsion phase which often involves ingredients that are undesirable for biomedical applications. In this study, we report the use of electrospraying for the synthesis of chitosan microanospheres. The focus was to optimize the fabrication parameters involved in electrospraying for reproducible synthesis of chitosan based microanospheres and to study their potential as delivery vehicles for bioactive agents. The influence of the following was studied (i) electrospraying voltage, (ii) needle gauge, (iii) concentration of chitosan solution, (iv) concentration of acetic acid solution, and (v) electrospraying distance. SEM analysis demonstrated that microspheres of less than 1 mum were obtained when chitosan concentration was 2% dissolved in 90% acetic acid. The working distance and needle gauge that yielded favorable results were 7 cm and 26 g, respectively. Average particle size of ampicillin loaded chitosan microanospheres was 520 nm with zeta potential of +28.2 mV and encapsulation efficiency of 80.4%. The particles were characterized for drug release kinetics and results demonstrated an initial burst release followed by a sustained release over a period of 120 h. Further, antibacterial activity of drug loaded microanospheres demonstrated that the encapsulated drug was in its active form postexposure to high voltage during electrospraying. This study indicates that electrospraying is a facile technique for the synthesis of chitosan microanospheres for drug delivery applications.
机译:电喷雾是一种用于生物医学应用的微/纳米球生成的新技术。除了是高产技术外,电喷雾具有不使用外部分散/乳化相的附加优点,该外部分散/乳化相通常涉及生物医学应用中不希望的成分。在这项研究中,我们报告了使用电喷雾合成壳聚糖微/纳米球。重点是优化可重复合成基于壳聚糖的微球/纳米球的电喷雾中涉及的制造参数,并研究其作为生物活性剂传递载体的潜力。研究以下的影响:(i)电喷雾电压,(ii)针规,(iii)壳聚糖溶液的浓度,(iv)乙酸溶液的浓度,和(v)电喷雾距离。 SEM分析表明,当壳聚糖浓度为2%溶于90%乙酸中时,得到的微球小于1微米。产生良好效果的工作距离和针规分别为7 cm和26 g。负载氨苄青霉素的壳聚糖微/纳米球的平均粒径为520 nm,ζ电位为+28.2 mV,包封效率为80.4%。对该颗粒的药物释放动力学进行了表征,结果证明了最初的突释释放,然后在120小时内持续释放。此外,载有药物的微/纳米球的抗菌活性表明,在电喷雾过程中,暴露于高电压后,包封的药物呈活性形式。这项研究表明,电喷雾是用于药物递送应用的壳聚糖微/纳米球合成的简便技术。

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