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Preparation and Characterization of Tripterygium wilfordii Multi-Glycoside Nanoparticle Using Supercritical Anti-Solvent Process

机译:雷公藤多糖苷纳米粒的超临界反溶剂法制备及表征

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摘要

The aim of this study was to prepare nanosized Tripterygium wilfordii multi-glycoside (GTW) powders by the supercritical antisolvent precipitation process (SAS), and to evaluate the anti-inflammatory effects. Ethanol was used as solvent and carbon dioxide was used as an antisolvent. The effects of process parameters such as precipitation pressure (15–35 MPa), precipitation temperature (45–65 °C), drug solution flow rates (3–7 mL/min) and drug concentrations (10–30 mg/mL) were investigated. The nanospheres obtained with mean diameters ranged from 77.5 to 131.8 nm. The processed and unprocessed GTW were characterized by scanning electron microscopy, X-ray diffraction, Fourier-transform infrared spectroscopy and thermal gravimetric analysis. The present study was designed to investigate the beneficial effect of the GTW nanoparticles on adjuvant-induced arthritis in albino rats. The processed and unprocessed GTW were tested against Freund’s complete adjuvant-induced arthritis in rats. Blood samples were collected for the estimation of interleukins (IL-1α, IL-1β) and tumor necrosis factor-α (TNF-α). It was concluded that physicochemical properties and anti-inflammatory activity of GTW nanoparticles could be improved by physical modification, such as particle size reduction using supercritical antisolvent (SAS) process. Further, SAS process was a powerful methodology for improving the physicochemical properties and anti-inflammatory activity of GTW.
机译:这项研究的目的是通过超临界抗溶剂沉淀法(SAS)制备纳米级雷公藤多糖苷(GTW)粉末,并评估其抗炎作用。乙醇用作溶剂,而二氧化碳用作抗溶剂。诸如沉淀压力(15–35 MPa),沉淀温度(45–65°C),药物溶液流速(3–7 mL / min)和药物浓度(10–30 mg / mL)等工艺参数的影响为调查。获得的平均直径为77.5至131.8nm的纳米球。通过扫描电子显微镜,X射线衍射,傅立叶变换红外光谱和热重分析法对已加工和未加工的GTW进行了表征。本研究旨在研究GTW纳米颗粒对白化病大鼠佐剂诱发的关节炎的有益作用。对经过处理和未经处理的GTW进行了抗弗氏完全佐剂诱导的大鼠关节炎的测试。收集血液样本以估计白介素(IL-1α,IL-1β)和肿瘤坏死因子-α(TNF-α)。结论是,可以通过物理修饰例如使用超临界抗溶剂(SAS)工艺减小粒径来改善GTW纳米颗粒的理化性质和抗炎活性。此外,SAS工艺是改善GTW的理化性质和抗炎活性的有效方法。

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