Teer Eman, Mukonowenzou Nyasha C, Essop M Faadiel
Centre for Cardio-Metabolic Research in Africa (CARMA), Department of Physiological Sciences, Stellenbosch University, Stellenbosch 7600, South Africa.
Centre for Cardio-Metabolic Research in Africa (CARMA), Division of Medical Physiology, BMRI, Faculty of Medicine and Health Sciences, Stellenbosch University, Cape Town 8000, South Africa.
Viruses. 2022 Aug 18;14(8):1813. doi: 10.3390/v14081813.
With the successful roll-out of combination antiretroviral treatment, HIV is currently managed as a chronic illness. Of note, immune activation and chronic inflammation are hallmarks of HIV-1 infection that persists even though patients are receiving treatments. Despite strong evidence linking immune activation and low-grade inflammation to HIV-1 pathogenesis, the underlying mechanisms remain less well-understood. As intracellular metabolism is emerging as a crucial factor determining the fate and activity of immune cells, this review article focuses on how links between early immune responses and metabolic reprograming may contribute to HIV pathogenicity. Here, the collective data reveal that immunometabolism plays a key role in HIV-1 pathogenesis. For example, the shift from quiescent immune cells to its activation leads to perturbed metabolic circuits that are major drivers of immune cell dysfunction and an altered phenotype. These findings suggest that immunometabolic perturbations play a key role in the onset of non-AIDS-associated comorbidities and that they represent an attractive target to develop improved diagnostic tools and novel therapeutic strategies to help blunt HIV-1 pathogenesis.
随着联合抗逆转录病毒治疗的成功推广,目前已将HIV作为一种慢性病来管理。值得注意的是,免疫激活和慢性炎症是HIV-1感染的标志,即便患者正在接受治疗,这种情况仍会持续存在。尽管有强有力的证据表明免疫激活和低度炎症与HIV-1发病机制相关,但潜在机制仍了解得不够透彻。由于细胞内代谢正成为决定免疫细胞命运和活性的关键因素,这篇综述文章聚焦于早期免疫反应与代谢重编程之间的联系如何可能促成HIV致病性。在此,汇总的数据表明免疫代谢在HIV-1发病机制中起关键作用。例如,从静止免疫细胞向激活状态的转变会导致代谢途径紊乱,而这是免疫细胞功能障碍和表型改变的主要驱动因素。这些发现表明,免疫代谢紊乱在非艾滋病相关合并症的发病过程中起关键作用,并且它们代表了一个有吸引力的靶点,可用于开发改进的诊断工具和新的治疗策略,以帮助抑制HIV-1发病机制。