4.5 Article

The impact of body mass index on adaptive immune cells in the human bone marrow

期刊

IMMUNITY & AGEING
卷 17, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12979-020-00186-w

关键词

BMI; CMV; Human; Bone marrow; Peripheral blood; T cells

资金

  1. European Union's Seventh Framework Programme [FP7/2007-2013] [280873 ADITEC]
  2. Austrian Science Fund (FWF
  3. doctoral programme HOROS) [W1253]
  4. EU H2020 project An integrated approach to dissect determinants, risk factors, and pathways of ageing of the immune system (ImmunoAgeing, H2020-PHC-2014 grant) [633964]

向作者/读者索取更多资源

Background Obesity has been associated with chronic inflammation and oxidative stress. Both conditions play a determinant role in the pathogenesis of age-related diseases, such as immunosenescence. Adipose tissue can modulate the function of the immune system with the secretion of molecules influencing the phenotype of immune cells. The importance of the bone marrow (BM) in the maintenance of antigen-experienced adaptive immune cells has been documented in mice. Recently, some groups have investigated the survival of effector/memory T cells in the human BM. Despite this, whether high body mass index (BMI) may affect immune cells in the BM and the production of molecules supporting the maintenance of these cells it is unknown. Methods Using flow cytometry, the frequency and the phenotype of immune cell populations were measured in paired BM and PB samples obtained from persons with different BMI. Furthermore, the expression of BM cytokines was assessed. The influence of cytomegalovirus (CMV) on T cell subsets was additionally considered, dividing the donors into the CMV- and CMV+ groups. Results Our study suggests that increased BMI may affect both the maintenance and the phenotype of adaptive immune cells in the BM. While the BM levels of IL-15 and IL-6, supporting the survival of highly differentiated T cells, and oxygen radicals increased in overweight persons, the production of IFN gamma and TNF by CD8(+) T cells was reduced. In addition, the frequency of B cells and CD4(+) T cells positively correlated with BMI in the BM of CMV- persons. Finally, the frequency of several T cell subsets, and the expression of senescence/exhaustion markers within these subpopulations, were affected by BMI. In particular, the levels of bona fide memory T cells may be reduced in overweight persons. Conclusion Our work suggests that, in addition to aging and CMV, obesity may represent an additional risk factor for immunosenescence in adaptive immune cells. Metabolic interventions may help in improving the fitness of the immune system in the elderly.

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