Kenchappa Vanaja, Cao Ruoqiong, Venketaraman Vishwanath, Betageri Guru V
College of Pharmacy, Western University of Health Science, Pomona, CA 91766, USA.
College of Osteopathic Medicine of the Pacific, Western University of Health Science, Pomona, CA 91766, USA.
Appl Sci (Basel). 2022 Feb 1;12(3). doi: 10.3390/app12031468. Epub 2022 Jan 29.
Human immunodeficiency virus (HIV)-infected individuals display an enhanced production of reactive oxygen species (ROS). This reduction of antioxidant capacity in host tissues has been related to the decrease in total levels of ROS scavengers such as glutathione (GSH). Prevention of opportunistic infections due to a weakened immune system is becoming a key strategy along with HIV elimination. Research in these directions is clearly warranted, especially a combination of antiretrovirals and antioxidants to ameliorate oxidative stress, improve intracellular uptake and target viral reservoirs. Hence, we aimed to formulate liposomes loaded with the antiretroviral drug efavirenz (EFA) in the presence of glutathione, as these carriers can be engineered to enhance the ability to reach the target reservoirs. The goal of the present work was to investigate the intracellular uptake of EFA-loaded liposome (with and without GSH) by human monocytic leukemia cells (THP-1 cells) and examine cell viability and ROS scavenging activity. Results obtained provided significant data as follows: (i) treatment with EFA and GSH combination could enhance the uptake and reduce cytotoxicity; (ii) encapsulation of EFA into liposomes increased its levels in the macrophages, which was further enhanced in the presence of GSH; (iii) delivery of EFA in the presence of GSH quenched the intracellular ROS, which was significantly higher when delivered via liposomes. Data revealed that a combination of EFA and GSH encompasses advantages; hence, GSH supplementation could be a safe and cost-effective treatment to slow the development of HIV infection and produce an immune-enhancing effect.
人类免疫缺陷病毒(HIV)感染个体表现出活性氧(ROS)产生增加。宿主组织中抗氧化能力的降低与谷胱甘肽(GSH)等ROS清除剂总水平的下降有关。随着HIV消除,预防因免疫系统减弱导致的机会性感染正成为一项关键策略。显然有必要在这些方向上进行研究,特别是联合使用抗逆转录病毒药物和抗氧化剂来减轻氧化应激、改善细胞内摄取并靶向病毒储存库。因此,我们旨在制备在谷胱甘肽存在下负载抗逆转录病毒药物依非韦伦(EFA)的脂质体,因为这些载体可以进行改造以增强到达靶储存库的能力。本研究的目的是研究人单核细胞白血病细胞(THP-1细胞)对负载EFA的脂质体(含或不含GSH)的细胞内摄取,并检测细胞活力和ROS清除活性。获得的结果提供了如下重要数据:(i)EFA与GSH联合处理可增强摄取并降低细胞毒性;(ii)将EFA包封到脂质体中可提高其在巨噬细胞中的水平,在GSH存在下进一步增强;(iii)在GSH存在下递送EFA可淬灭细胞内ROS,通过脂质体递送时ROS水平显著更高。数据显示EFA与GSH联合具有优势;因此,补充GSH可能是一种安全且经济有效的治疗方法,可减缓HIV感染的发展并产生免疫增强作用。