Microparticles Formation of Ganoderma lucidum Extract by Electrospraying Method

Q4 Chemical Engineering
S. Machmudah, D. Setyorini, S. Winardi, W. Wahyudiono, H. Kanda
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引用次数: 1

Abstract

In this work, Ganoderma lucidum ( G. lucidum ) extract was produced in microparticles form by electrospraying. G. lucidum was extracted hydrothermally at temperature of 160 o C and pressure of 7 MPa. The extract solution was subsequently mixed with 6% of Polyvinyl pyrrolidone (PVP) and formed into microparticles by electrospraying process. The electrospraying was carried out at applied voltage of 12, 14, and 16 kV, and the distance between syringe tip and electrospun collector of 8, 10, and 12 cm. The microparticles formed was analyzed using scanning electron microscope (SEM), fourier-transform infrared (FTIR) spectroscopy, and UV-Vis spectrofotometer. The antioxidant efficiency of particles was also analyzed by 1,1-diphenyl-2-picrylhydrazyl (DPPH) assay. Based on the SEM analysis, the G. lucidum extract (GLE) – PVP spherical particles were formed by electrospraying. The finer fibres were clearly formed with the increasing applied voltage. The results showed that applied voltage and distance of tip to electrospun collector significantly influence the antioxidant efficiency and the diameter size of particles. The antioxidant efficiency increased with the rising applied voltage and gap of tip to electrospun collector, while the particle diameter decreased with the rising applied voltage and gap of tip to electrospun collector due to fast mass transfer and evaporation. The largest antioxidant efficiency of particles was 0.377/min obtained at 16 kV and 12 cm. It indicated that electrospraying is an effective process to produce pharmaceutical compounds in powder form.
电喷雾法制备灵芝提取物微颗粒
本研究采用电喷雾法制备了灵芝微颗粒提取物。采用水热提取法,温度160℃,压力7 MPa。将提取液与6%的聚乙烯吡咯烷酮(PVP)混合,采用电喷涂法制备微颗粒。在施加电压为12、14和16 kV时,注射器针尖与静电纺丝收集器之间的距离分别为8、10和12 cm。采用扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和紫外-可见分光光度计对所形成的微粒进行了分析。采用1,1-二苯基-2-苦味酰肼(DPPH)法分析了颗粒的抗氧化效果。通过SEM分析,电喷雾法制备了光芝提取物(GLE) - PVP球形颗粒。随着施加电压的增加,细纤维明显形成。结果表明,施加电压和电极尖距对电纺丝捕集器的抗氧化效率和粒径有显著影响。随着外加电压和电极间隙的增大,抗氧化效率提高,而随着电极电压和电极间隙的增大,粒子直径减小,这是由于粒子的快速传质和蒸发作用。在16 kV和12 cm条件下,颗粒的抗氧化效率最高,为0.377/min。结果表明,电喷涂是制备粉末状药物化合物的有效方法。
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来源期刊
ASEAN Journal of Chemical Engineering
ASEAN Journal of Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
15
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