Department of Medicine from Universidad Autónoma de Madrid: Immunology Unit, Hospital Universitario de la Princesa, Madrid, Spain.
Medicine Department, Universidad Autónoma de Madrid, Universidad Autónoma de Madrid.
Curr Opin HIV AIDS. 2022 Sep 1;17(5):308-314. doi: 10.1097/COH.0000000000000750. Epub 2022 Jul 25.
HIV-1 controller individuals represents a model that can be useful for the development of novel vaccines and therapies. Initial studies pointed to the involvement of improved adaptive immunity, however, new emerging evidence suggests the contribution of innate cells to effective antiviral responses in spontaneous controllers. Therefore, understanding the alterations on innate cell subsets might be crucial to develop new effective therapeutic strategies.
Among different innate immune cells, dendritic cell (DC) and natural killer (NK) cell are essential for effective antiviral responses. DC from controllers display improved innate detection of HIV-1 transcripts, higher induction of interferons, higher antigen presenting capacities and increased metabolism and higher capacities to induce polyfunctional CD8+ T-cell responses. Such properties have been mimicked by Toll-like receptor ligands and applied to DC-based immunotherapies in humans and in animal models. NK cells from controllers display higher expression of activating receptors promoting increased antibody-dependent cellular cytotoxicity (ADCC) and natural cytotoxicity activities. Neutralizing antibodies in combination with interleukin-15 superagonist or interferon-α can increase ADCC and cytotoxicity in NK cells from HIV-1 progressors.
Mimicking DC and NK cell innate profiles in controllers has become a promising strategy to step forward a novel efficient immunotherapy against the HIV-1 infection.
综述目的:HIV-1 控制者个体代表了一种可用于开发新型疫苗和治疗方法的模型。最初的研究表明,适应性免疫的改善与 HIV-1 控制有关,然而,新出现的证据表明,先天细胞对自发性控制者的有效抗病毒反应有贡献。因此,了解先天细胞亚群的改变对于开发新的有效治疗策略可能至关重要。
最新发现:在不同的先天免疫细胞中,树突状细胞(DC)和自然杀伤(NK)细胞对于有效的抗病毒反应至关重要。来自控制者的 DC 显示出对 HIV-1 转录本的先天检测能力提高,干扰素诱导能力增强,抗原呈递能力提高,代谢增强,诱导多功能 CD8+T 细胞反应的能力增强。这些特性已被 Toll 样受体配体模拟,并应用于人类和动物模型中的基于 DC 的免疫疗法。控制者的 NK 细胞表达更高水平的激活受体,促进抗体依赖性细胞毒性(ADCC)和自然细胞毒性活性增强。中和抗体与白细胞介素-15 超级激动剂或干扰素-α联合使用可增加 HIV-1 进展者 NK 细胞的 ADCC 和细胞毒性。
综述总结:模拟控制者中 DC 和 NK 细胞的先天特征已成为一种有前途的策略,可以推进针对 HIV-1 感染的新型有效免疫治疗。