| Literature DB >> 24779018 |
Yongjun Jiang1, Xiaojian Cui2, Chen Cui1, Jian Zhang1, Fangyuan Zhou1, Zining Zhang1, Yajing Fu1, Junjie Xu1, Zhenxing Chu1, Jing Liu1, Xiaoxu Han1, Christina Liao1, Yanan Wang1, Yaming Cao3, Hong Shang1.
Abstract
CD3(+)CD56(+) NKT-like cells are one of the critical effectors in the immune response to viral infection and tumors, but the functional features of NKT-like cells in HIV infection have been rarely reported. In this study, we observed and described the state of NKT-like cell functions in primary HIV-infected individuals (PHIs), chronic HIV-infected individuals (CHIs), long-term nonprogressors (LTNPs), and HIV-negative controls (NCs). The results showed that the percentage of IFN-γ(+)CD3(+)CD56(+) NKT-like cells was notably higher in LTNPs compared with CHIs, and the proportion of CD3(+)CD56(+) NKT-like cells with dual function (IFN-γ(+)CD107a(+) NKT-like cells) in LTNPs was also much higher than in CHIs. Additionally, the percentages of IFN-γ(+)CD107a(+) NKT-like cells negatively correlated with viral load. Taken together, our data demonstrated that good functions of CD3(+)CD56(+) NKT-like cells in LTNPs likely occurred as a protective mechanism that slows down HIV disease progression.Entities:
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Year: 2014 PMID: 24779018 PMCID: PMC3977420 DOI: 10.1155/2014/863625
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Characteristic of study subjects.
| Patient group | Number of individuals | CD4 count (range) | Viral load count (range) |
|---|---|---|---|
| Primary HIV infection (PHI) | 10 | 484 (166–774) | 52,000 (728–10,000,000) |
| Chronic HIV infection (CHI) | 13 | 328 (240–986) | 30903 (40–489779) |
| Long-term nonprogressor (LTNP) | 7 | 704 (547–1000) | 562 (40–5623) |
| Normal control | 14 | N/Aa | N/Aa |
N/Aa: not available.
Figure 1Gating strategy. P1 gate is lymphocytes (a), P2 gate is CD3+ lymphocytes (b), P3 gate is CD3+CD56+ NKT-like cells (c), and the expressions of IFN-γ and CD107a, in NKT-like cells are further analyzed ((d) and (e)).
Figure 2Representative flow cytometric graphs of NKT-like cells production of IFN-γ and expression of CD107a in NC group ((a) and (b)), PHI group ((c) and (d)), CHI group ((e) and (f)), and the LTNP group ((g) and (h)).
Figure 3Functional activity of NKT-like cells was compared in NCs, PHIs, CHIs, and LTNPs. Functional activity was assessed by measuring IFN-γ +CD3+CD56+ cells% and CD107a+CD3+CD56+ cells%. (a) NKT-like cells in PBMC were cultured with the MHC null K562 cell line; (b) NKT-like cells in PBMCs were coincubated with the strong stimulation of PMA/ionomycin. Data were analyzed by the Mann-Whitney U tests and P values <0.05 were considered significant.
Figure 4Combined analysis of the functional activity of NKT-like cells in NCs, PHIs, CHIs, and LTNPs. Combined analysis of the functional activity of NKT-like cells was assessed by measuring IFN-γ +CD107a+ NKT-like cells%, IFN-γ −CD107a+ NKT-like cells%, and IFN-γ +CD107a− NKT-like cells%. (a) NKT-like cells in PBMC were cultured with the MHC null K562 cell line; (b) NKT-like cells in PBMCs were coincubated with the strong stimulation of PMA/ionomycin. Data were analyzed by the Mann-Whitney U tests and P values <0.05 were considered significant.
Figure 5Correlation of NKT-like cell function with CD4+ T cell counts and viral loads in HIV-infected individuals. (a) When NKT-like cells in PBMCs were cultured together with the MHC null K562 cell line, we analyzed the correlation of the levels of IFN-γ +CD107a+ NKT-like cells with CD4+ T cell counts and viral loads. (b) With PMA and ionomycin stimulation, we analyzed the correlation of the levels of CD107a+IFN-γ − NKT-like cells with CD4+ T cell counts and viral loads. Correlations between variables were evaluated using the Spearman's rank correlation test and P values <0.05 were considered significant.