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Niclosamide loaded cationic Solid Lipid Nanoparticles for treatment of Cancer

机译:硝氯酰胺负载的阳离子固体脂质纳米颗粒用于治疗癌症

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Niclosamide (NIC), an anthelminthic drug exhibits poor oral bioavailability due to hydrophobic nature which limits its in vivo application. In recent times, NIC has been reported to exhibit anticancer activity against wide range of tumors. Solid Lipid Nanoparticles (SLNs) of NIC were prepared using solid lipid Glyceryl monostearate, charge modifier stearyl amine, soya lecithin, and tween 80 by emulsion solvent evaporation technique. The SLNs were characterized for their size and zeta potential using Zetasizer. Whereas, the morphology was studied using TEM analysis. The results suggested the formation of positively charged SLNs with a size range of 197.3±18.08nm and zeta potential of +10±3.43 mV. The interaction of the excipients with the drug was studied using FTIR which suggested their compatibility with NIC. The entrapment efficiency and loading efficiency was determined and found to be 75.64±8.49% and 8.16±0.31% respectively. The results of the drug release study indicated the prolonged and sustained release of NIC over a period of 24h. Hence, the NIC loaded solid lipid nanoparticles can deliver the drug for sustained period of time which can be used in the treatment of Cancer.
机译:杀虫药Niclosamide(NIC)由于具有疏水性,限制了其体内应用,因此口服生物利用度较差。近来,据报道NIC表现出对多种肿瘤的抗癌活性。通过固体溶剂甘油单硬脂酸酯,电荷改性剂硬脂胺,大豆卵磷脂和吐温80通过乳液溶剂蒸发技术制备了NIC的固体脂质纳米颗粒(SLN)。使用Zetasizer对SLN的大小和Zeta电位进行了表征。然而,使用TEM分析研究了形态。结果表明形成带正电的SLNs,其大小范围为197.3±18.08nm,ζ电位为+ 10±3.43 mV。使用FTIR研究了赋形剂与药物的相互作用,表明它们与NIC具有相容性。测定包封率和负载效率,分别为75.64±8.49%和8.16±0.31%。药物释放研究的结果表明,NIC在24小时内可以长时间持续释放。因此,负载有NIC的固体脂质纳米颗粒可以持续持续时间递送药物,该药物可以用于癌症的治疗。

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