Division of Virology, Indian Council of Medical Research-National AIDS Research Institute, Pune, 411 026, India.
Nanobioscience Group, Agharkar Research Institute, Pune, 411 004, India.
J Nanobiotechnology. 2023 Jan 19;21(1):19. doi: 10.1186/s12951-022-01750-w.
The adoption of Antiretroviral Therapy (ART) substantially extends the life expectancy and quality of HIV-infected patients. Yet, eliminating the latent reservoirs of HIV to achieve a cure remains an unmet need. The advent of nanomedicine has revolutionized the treatment of HIV/AIDS. The present study explores a unique combination of Tenofovir (TNF) with gold nanoparticles (AuNPs) as a potential therapeutic approach to overcome several limitations of the current ART.
TNF-tethered AuNPs were successfully synthesized. Cell viability, genotoxicity, haemolysis, and histopathological studies confirmed the complete safety of the preparation. Most importantly, its anti-HIV1 reverse transcriptase activity was ~ 15 folds higher than the native TNF. In addition, it exhibited potent anti-HIV1 protease activity, a much sought-after target in anti-HIV1 therapeutics. Finally, the in vivo biodistribution studies validated that the AuNPs could reach many tissues/organs, serving as a secure nest for HIV and overcoming the problem of deficient drug delivery to HIV reservoirs.
We show that the combination of TNF and AuNPs exhibits multifunctional activity, viz. anti-HIV1 and anti-HIV1 protease. These findings are being reported for the first time and highlight the prospects of developing AuNP-TNF as a novel next-generation platform to treat HIV/AIDS.
抗逆转录病毒疗法(ART)的采用大大延长了 HIV 感染患者的预期寿命和生活质量。然而,消除 HIV 的潜伏储库以实现治愈仍然是未满足的需求。纳米医学的出现彻底改变了 HIV/AIDS 的治疗方法。本研究探索了将替诺福韦(TNF)与金纳米粒子(AuNPs)结合作为一种潜在治疗方法的独特组合,以克服当前 ART 的几个局限性。
成功合成了 TNF 键合的 AuNPs。细胞活力、遗传毒性、溶血和组织病理学研究证实了该制剂的完全安全性。最重要的是,它对 HIV1 逆转录酶的抑制活性比天然 TNF 高约 15 倍。此外,它还表现出有效的抗 HIV1 蛋白酶活性,这是抗 HIV1 治疗中非常需要的靶点。最后,体内生物分布研究证实,AuNPs 可以到达许多组织/器官,作为 HIV 的安全巢穴,克服了向 HIV 储库输送药物不足的问题。
我们表明,TNF 和 AuNPs 的组合具有多种功能活性,即抗 HIV1 和抗 HIV1 蛋白酶。这些发现是首次报道的,并强调了开发 AuNP-TNF 作为治疗 HIV/AIDS 的新型下一代平台的前景。