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Humanized mouse models reveal an immunologic classification of idiopathic CD4 lymphocytopenia subtypes
Ainhoa Perez-Diez, Xiangdong Liu, Virginia Sheikh, Gregg Roby, David F. Stroncek, Irini Sereti
Ainhoa Perez-Diez, Xiangdong Liu, Virginia Sheikh, Gregg Roby, David F. Stroncek, Irini Sereti
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Research Article Immunology Infectious disease

Humanized mouse models reveal an immunologic classification of idiopathic CD4 lymphocytopenia subtypes

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Abstract

Idiopathic CD4 lymphocytopenia (ICL) is a clinically heterogeneous immunodeficiency disorder defined by low numbers of circulating CD4+ T cells and increased susceptibility to opportunistic infections. CD8+ T cells, NK, and/or B cells may also be deficient in some patients. To delineate possible pathogenic cellular mechanisms in ICL, we compared immune system development and function in NOD-RAGKO-γcKO (NRG) mice transplanted with hematopoietic stem cells from patients with ICL or healthy controls. CD34+ hematopoietic stem cells from healthy controls and patients with ICL reconstituted NRG mice equally well. In contrast, PBMC transfers into NRG mice identified 2 ICL engraftment phenotypes, reconstituting and nonreconstituting (NR), based on the absence or presence of donor lymphopenia. For patients in the NR group, the distribution of lymphocyte subsets was similar in the peripheral blood of both the patient and the corresponding humanized mice. The NR-ICL group could be further divided into individuals whose CD3+ T cells had defects in proliferation or survival. Thus, ICL cellular pathogenesis might be classified by humanized mouse models into 3 distinct subtypes: (a) T cell extrinsic, (b) T cell intrinsic affecting proliferation, and (c) T cell intrinsic affecting survival. Humanized mouse models of ICL help to delineate etiology and ultimately to guide development of individualized therapeutic strategies.

Authors

Ainhoa Perez-Diez, Xiangdong Liu, Virginia Sheikh, Gregg Roby, David F. Stroncek, Irini Sereti

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Figure 2

CD34+ cells from patients with ICL and HCs develop similarly in vivo into mature CD4+ T cells.

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CD34+ cells from patients with ICL and HCs develop similarly in vivo int...
(A) Percentages of CD3+, CD4+, and naive CD4+ T cells in PBMCs from 5 HCs (open circles) and 3 ICL donors (ICL-37 in pink, ICL-24 in blue, and ICL-18 in green) whose CD34+ cells were transferred into NRG mice to form hCD34 mice. Naive CD4+ T cells in hPBMCs were identified as CD3+CD4+CCR7+CD45RO–. (B) Percentages of the same populations as in A but found in the blood of hCD34 mice 15 to 17 weeks after receiving CD34+ cells. Naive CD4+ T cells in hCD34 mice were identified as CD3+CD4+CD27+CD45RO–. Number of hCD45+ cells (C) and CD4+ T cells (D) found in the spleen of hCD34 mice 12 to 57 weeks after CD34 transfer. (E) Percentage of naive CD4+ T cells found in blood of hCD34 mice 12 to 56 weeks after CD34 transfer. (B–E) Each symbol represents a single mouse that received either HC (open symbols) or ICL (closed symbols) CD34+ HSCs. Data in B–E correspond to 4 independent experiments. CD34+ cells from ICL-37 were tested in 3 independent experiments and CD34+ cells from ICL-24 and ICL-18 were tested in 2. Each circle represents an individual measurement and the horizontal line represents the median value.

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ISSN 2379-3708

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