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先天淋巴细胞在感染 HIV 的儿童血液和组织中的激活和持续耗竭,尽管进行了抗逆转录病毒治疗。

Innate Lymphoid Cell Activation and Sustained Depletion in Blood and Tissue of Children Infected with HIV from Birth Despite Antiretroviral Therapy.

机构信息

Africa Health Research Institute (AHRI), Durban 4001, South Africa.

Institute for Medical Engineering and Science, Department of Chemistry, and Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA 02139, USA; Broad Institute of MIT and Harvard, Cambridge, MA 02139, USA; Ragon Institute of MGH, Harvard, and MIT, Cambridge, MA 02139.

出版信息

Cell Rep. 2020 Sep 15;32(11):108153. doi: 10.1016/j.celrep.2020.108153.

Abstract

Innate lymphoid cells (ILCs) are important for response to infection and for immune development in early life. HIV infection in adults depletes circulating ILCs, but the impact on children infected from birth remains unknown. We study vertically HIV-infected children from birth to adulthood and find severe and persistent depletion of all circulating ILCs that, unlike CD4 T cells, are not restored by long-term antiretroviral therapy unless initiated at birth. Remaining ILCs upregulate genes associated with cellular activation and metabolic perturbation. Unlike HIV-infected adults, ILCs are also profoundly depleted in tonsils of vertically infected children. Transcriptional profiling of remaining ILCs reveals ongoing cell-type-specific activity despite antiretroviral therapy. Collectively, these data suggest an important and ongoing role for ILCs in lymphoid tissue of HIV-infected children from birth, where persistent depletion and sustained transcriptional activity are likely to have long-term immune consequences that merit further investigation.

摘要

先天淋巴细胞 (ILC) 对于感染的反应和生命早期的免疫发育非常重要。成人感染 HIV 会消耗循环 ILC,但从出生就感染 HIV 的儿童的影响仍不清楚。我们从出生开始研究垂直感染 HIV 的儿童,发现所有循环 ILC 都严重且持续耗竭,与 CD4 T 细胞不同,除非在出生时开始,否则长期抗逆转录病毒治疗并不能使其恢复。剩余的 ILC 上调与细胞激活和代谢扰动相关的基因。与 HIV 感染的成年人不同,垂直感染儿童的扁桃体中 ILC 也明显减少。尽管进行了抗逆转录病毒治疗,但对剩余 ILC 的转录谱分析显示仍存在持续的细胞特异性活性。总的来说,这些数据表明 ILC 在从出生开始就感染 HIV 的儿童的淋巴组织中具有重要且持续的作用,其中持续耗竭和持续的转录活性可能会产生长期的免疫后果,值得进一步研究。

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