首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >A comparative study on the therapeutic effects of Silymarin and Silymarin-Loaded Solid Lipid Nanoparticles on ^z>D-GalN/TNF-alpha-induced Liver Damage in Balb/c MiceMustafa Cengiz, H. Mehtap Kutlu, Dilek.D. Burukoglu, Adnan Ayhanci
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A comparative study on the therapeutic effects of Silymarin and Silymarin-Loaded Solid Lipid Nanoparticles on ^z>D-GalN/TNF-alpha-induced Liver Damage in Balb/c MiceMustafa Cengiz, H. Mehtap Kutlu, Dilek.D. Burukoglu, Adnan Ayhanci

机译:水飞蓟素和水飞蓟素固体脂质纳米颗粒对Balb / c小鼠Dz-D-GalN /TNF-α诱导的肝损伤的治疗作用的比较研究Mustafa Cengiz,H.Mehtap Kutlu,Dilek.D。阿鲁南·阿南奇·布卢科格卢

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摘要

Nanostructure-mediated drug delivery is known to have a potential to improve drug bioavailability, apart from fostering release deviation of drug molecules and enabling precision drug targeting. Solid lipid nanoparticles (SLNs) have drawn great deal of the attention of scientists in finding a solution to minimize pharmaceutic limitations of the drugs used. Silymarin (Sm) has so far been used for treating diverse liver and gallbladder disorders, such as cirrhosis, hepatitis, and jaundice, and for protecting the liver against poisoning from chemical and environmental toxins on account of its antihepatotoxic and antioxidative properties. The present study aims to develop a novel sirymarin-loaded solid lipid nanoparticle (Sm-loaded SLN) system with enhanced bioavailability and with an ability to provide excellent hepatic protection for poorly water-soluble drugs. Based upon our investigation results with apoptotic markers, PCNA and lightmicroscopic findings, it can be concluded that Sm-loaded SLN significantly reduced D-GalN/TNF-a-induced hepatotoxicity, which suggested improved bioactivity compared to Sm. In conclusion, Sm-loaded SLN could be a useful system for the delivery of poorly water-soluble Sm, apart from providing favourable hepatic protection.
机译:已知纳米结构介导的药物递送除了促进药物分子的释放偏差并实现精确的药物靶向外,还具有改善药物生物利用度的潜力。固态脂质纳米颗粒(SLN)在寻找一种解决方案以最大程度地减少所用药物的药物限制方面引起了科学家的极大关注。迄今为止,水飞蓟素(Symarin)已用于治疗各种肝胆疾病,例如肝硬化,肝炎和黄疸,并且由于其抗肝毒性和抗氧化特性,可保护肝脏免受化学和环境毒素的中毒。本研究旨在开发一种新型的负载水杨酸酯的固体脂质纳米颗粒(Sm负载的SLN)系统,该系统具有更高的生物利用度,并且能够为水溶性差的药物提供出色的肝保护作用。根据我们对细胞凋亡标记物,PCNA和光学显微镜结果的调查结果,可以得出结论,负载Sm的SLN显着降低了D-GalN / TNF-a诱导的肝毒性,这表明与Sm相比,其生物活性有所改善。总之,负载Sm的SLN除了可提供良好的肝保护作用外,还可以作为水溶性差Sm的有用系统。

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