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首页> 外文期刊>Saudi Pharmaceutical Journal >In vitro and in vivo studies of nanoparticles of chitosan-Pandanus tectorius fruit extract as new alternative treatment for hypercholesterolemia via Scavenger Receptor Class B type 1 pathway
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In vitro and in vivo studies of nanoparticles of chitosan-Pandanus tectorius fruit extract as new alternative treatment for hypercholesterolemia via Scavenger Receptor Class B type 1 pathway

机译:体外和体内研究壳聚糖 - 平坦植物果提取物的纳米粒子作为高胆固醇血症通过清除肠血症B型途径的新替代处理

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Pandanus tectorius fruit, a natural product rich in tangeretin and ethyl caffeate, has been reported to have potential as anti-hypercholesterolemia agent via Scavenger Receptor Class B type 1 (SR-B1) pathway. However, due to its semi-polar properties, P. tectorius extract exhibits poor solubility when used as a medical remedy. The extract’s solubility can potentially be improved through a synthesis of nanoparticles of chitosan- P. tectorius fruit extract. This can also increase the extract’s SR-B1 gene expression activity. To date, no studies of nanoparticles of chitosan- P. tectorius fruit extract and its pathway via SR-B1 have been published anywhere. In this study, cytotoxicity properties against HepG2 were explored by MTT. Then luciferase assay was used to detect their effectiveness in increasing SR-B1 activity. An in vivo study using Sprague dawley was carried out to observe the extract nanoparticles’ effectiveness in reducing the cholesterol levels and the toxicity property in rat’s liver. As the results showed, the extract nanoparticles had no cytotoxic activity against HepG2 cells and exhibited higher SR-B1 gene expression activity than the non-nanoparticle form. As the in vivo study proved, nanoparticle treatment can reduce the levels of TC (197%), LDL (360%), and TG (109%), as well as increase the level of HDL cholesterol by 150%, in comparison to those for the untreated high-cholesterol diet group. From the toxicity study, it was found that there was non-toxicity in the liver. It can be concluded that nanoparticles of chitosan- P. tectorius fruit extract successfully increased P. tectorius fruit extract’s effectiveness in reducing hypercholesterolemia via SR-B1 pathway. Hence, it can be suggested that nanoparticles of chitosan- P. tectorius fruit extract is safe and suitable as an alternative treatment for controlling hypercholesterolemia via SR-B1 pathway.
机译:据报道,Pandanus Tectorius Fruit,富含丹麦汀和乙基咖啡因的天然产品,通过清除剂受体B型(SR-B1)途径具有抗高胆固醇血症剂。然而,由于其半极性特性,P. Tectorius提取物在用作医疗补救措施时表现出差的溶解度。通过合成壳聚糖P. Tectorius果提取物的纳米颗粒可以潜在地改善提取物的溶解度。这也可以增加提取物的SR-B1基因表达活性。迄今为止,在任何地方都没有出现含氯氏菌属果提取物及其通过SR-B1的途径的研究。在本研究中,MTT探索了对HepG2的细胞毒性特性。然后使用荧光素酶测定来检测其在增加SR-B1活性方面的有效性。进行了使用Sprague Dawley的体内研究,以观察提取纳米颗粒在降低大鼠肝脏中胆固醇水平和毒性性能的效果。结果表明,提取物纳米颗粒对HepG2细胞没有细胞毒性活性,并且表现出比非纳米颗粒形式更高的SR-B1基因表达活性。随着体内研究证明,纳米粒子处理可以减少TC(197%),LDL(360%)和Tg(109%)的水平,以及与那些相比,将HDL胆固醇的水平增加150%对于未经处理的高胆固醇饮食组。从毒性研究中,发现肝脏存在无毒。可以得出结论,壳聚糖植物植物培养皿纳米粒子的纳米粒子通过SR-B1途径成功地增加了P. Tectorius果提取物在减少高胆固醇血症中的有效性。因此,可以提出壳聚糖植物水果提取物的纳米粒子是安全的,并且作为通过SR-B1途径控制高胆固醇血症的替代处理。

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