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Ball milling synthesis of silica nanoparticle from rice husk ash for drug delivery application

机译:从稻壳灰中球磨法合成二氧化硅纳米粒子的应用

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Silica nanoparticles were synthesized from rice husk ash at room temperature by using high energy planetary ball mill. The milling time and mill rotational speed were varied in four levels. The morphology of the synthesized powders was investigated by the FE-SEM and TEM image as well as XRD patterns. The results have revealed that the nano-sized amorphous silica particles are formed after about 6 h ball milling and they are spherical in shape. The average particle size of the silica powders is found to be around 70 nm which decreases with increasing ball milling time or mill rotational speed. The as-synthesized silica nanoparticles were subsequently employed as drug carrier to investigate in vitro release behavior of Penicillin-G in simulated body fluid. UV-Vis spectroscopy was used to determine the amount of Penicillin-G released from the carrier. Penicillin-G release profile from silica nanoparticles exhibited a delayed release effect.
机译:使用高能行星式球磨机在室温下由稻壳灰合成二氧化硅纳米颗粒。研磨时间和研磨机转速分为四个级别。通过FE-SEM和TEM图像以及XRD图谱研究了合成粉末的形貌。结果表明,在约6小时的球磨之后形成纳米级无定形二氧化硅颗粒,并且它们为球形。发现二氧化硅粉末的平均粒度为约70nm,其随着球磨时间或磨机旋转速度的增加而减小。随后将所合成的二氧化硅纳米颗粒用作药物载体,以研究青霉素-G在模拟体液中的体外释放行为。紫外-可见光谱用于确定从载体释放的青霉素-G的量。来自二氧化硅纳米颗粒的青霉素-G释放曲线显示出延迟释放效果。

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