Acute malaria suppresses the B lymphocytic niche in the bone marrow through the alteration of CXCL12-abundant reticular cells.
Michelle Sue Jann LeeJulia Matsuo DapaahCamila Del Rosario ZorrillaYoshiki OmatsuTakashi NagasawaShun UemuraAtsushi IwamaKen J IshiiCevayir CobanPublished in: International immunology (2024)
Bone marrow is a dynamic organ composed of stem cells that constantly receive signals from stromal cells and other hematopoietic cells in the niches of the bone marrow to maintain hematopoiesis and generate immune cells. Perturbation of the bone marrow microenvironment by infection and inflammation affects hematopoiesis and may affect immune cell development. Little is known about the effect of malaria on the bone marrow stromal cells that govern the hematopoietic stem cell (HSC) niche. In this study, we demonstrate that the mesenchymal stromal CXCL12-abundant reticular (CAR) cell population is reduced during acute malaria infection. The reduction of CXCL12 and IL-7 signals in the bone marrow impairs the lymphopoietic niche, leading to the depletion of common lymphoid progenitors, B cell progenitors and mature B cells, including plasma cells in the bone marrow. We found that IFNγ is responsible for the upregulation of Sca1 on CAR cells, yet the decline in CAR cell and B cell populations in the bone marrow is IFNγ-independent. In contrast to the decline in B cell populations, HSCs and multipotent progenitors increased with expansion of myelopoiesis and erythropoiesis, indicating a bias in the differentiation of multipotent progenitors during malaria infection. These findings suggest that malaria may affect host immunity by modulating the bone marrow niche.
Keyphrases
- bone marrow
- induced apoptosis
- mesenchymal stem cells
- stem cells
- cell cycle arrest
- signaling pathway
- plasmodium falciparum
- immune response
- cell therapy
- oxidative stress
- endoplasmic reticulum stress
- liver failure
- single cell
- dendritic cells
- magnetic resonance imaging
- computed tomography
- poor prognosis
- pi k akt
- acute respiratory distress syndrome
- intensive care unit
- extracorporeal membrane oxygenation
- long non coding rna
- genetic diversity
- aortic dissection