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Investigating Organ Toxicity Profile of Tenofovir and Tenofovir Nanoparticle on the Liver and Kidney: Experimental Animal Study

机译:研究替诺福韦和替诺福韦纳米颗粒对肝脏和肾脏的器官毒性特征:实验动物研究

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摘要

Tenofovir nanoparticles are novel therapeutic intervention in human immunodeficiency virus (HIV) infection reaching the virus in their sanctuary sites. However, there has been no systemic toxicity testing of this formulation despite global concerns on the safety of nano drugs. Therefore, this study was designed to investigate the toxicity of Tenofovir nanoparticle (NTDF) on the liver and kidney using an animal model. Fifteen adult male Sprague-Dawley (SD) rats maintained at the animal house of the biomedical resources unit of the University of KwaZulu-Natal were weighed and divided into three groups. Control animals (A) were administered with normal saline (NS). The therapeutic doses of Tenofovir (TDF) and nanoparticles of Tenofovir (NTDF) were administered to group B and C and observed for signs of stress for four weeks after which animals were weighed and sacrificed. Liver and kidney were removed and fixed in formal saline, processed and stained using H/E, PAS and MT stains for light microscopy. Serum was obtained for renal function test (RFT) and liver function test (LFT). Cellular measurements and capturing were done using ImageJ and Leica software 2.0. Data were analysed using graph pad 6, p values < 0.05 were significant. We observed no signs of behavioural toxicity and no mortality during this study, however, in the kidneys, we reported mild morphological perturbations widening of Bowman’s space, and vacuolations in glomerulus and tubules of TDF and NTDF animals. Also, there was a significant elevation of glycogen deposition in NTDF and TDF animals when compared with control. In the liver, there were mild histological changes with widening of sinusoidal spaces, vacuolations in hepatocytes and elevation of glycogen deposition in TDF and NTDF administered animals. In addition to this, there were no significant differences in stereological measurements and cell count, LFT, RFT, weight changes and organo-somatic index between treatment groups and control. In conclusion, NTDF and TDF in therapeutic doses can lead to mild hepatic and renal histological damage. Further studies are needed to understand the precise genetic mechanism.
机译:替诺福韦纳米颗粒是对人类免疫缺陷病毒(HIV)感染到达其保护区的新疗法。然而,尽管全球都对纳米药物的安全性感到担忧,但尚未对该制剂进行全身毒性试验。因此,本研究旨在使用动物模型研究替诺福韦纳米颗粒(NTDF)对肝脏和肾脏的毒性。称重15只成年雄性Sprague-Dawley(SD)大鼠,将其保存在夸祖鲁-纳塔尔大学生物医学资源单位的动物舍中,并分为三组。对照动物(A)被给予生理盐水(NS)。将治疗剂量的替诺福韦(TDF)和替诺福韦纳米颗粒(NTDF)分别施于B组和C组,并观察应激迹象四个星期,然后称重并处死动物。取出肝脏和肾脏并固定在生理盐水中,进行处理并使用H / E,PAS和MT染色进行光学显微镜检查。获得血清用于肾功能测试(RFT)和肝功能测试(LFT)。使用ImageJ和Leica软件2.0完成细胞测量和捕获。使用图形键盘6分析数据,p值<0.05为显着。在这项研究中,我们没有观察到任何行为毒性和死亡的迹象,但是,在肾脏中,我们报道了鲍曼氏空间的轻度形态扰动,以及TDF和NTDF动物的肾小球和肾小管的空泡化。此外,与对照相比,NTDF和TDF动物的糖原沉积显着升高。在肝脏中,有轻微的组织学变化,包括正弦曲线空间的扩大,肝细胞的空泡化以及TDF和NTDF给药动物的糖原沉积增加。除此之外,治疗组和对照组之间在体视学测量和细胞计数,LFT,RFT,体重变化和有机体指数方面无显着差异。总之,治疗剂量的NTDF和TDF可导致轻度的肝和肾组织学损害。需要进一步的研究以了解确切的遗传机制。

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