AI Article Synopsis

  • IL-31 is a cytokine that interacts with its receptor IL-31R, which, in conjunction with OSM-Rbeta, plays a potential role in hematopoiesis (the formation of blood cells).
  • Studies using IL-31R-deficient mice showed reduced numbers and cycling status of certain hematopoietic progenitor cells (HPC) compared to their wild-type counterparts, although mature progenitor cells remained unaffected.
  • IL-31 did not stimulate or inhibit colony formation in HPC but improved their survival under specific conditions, suggesting it plays a supportive role in HPC's health and functioning rather than directly influencing their numbers.

Article Abstract

Objective: Interleukin (IL)-31 is a recently discovered helical cytokine. Its receptor consists of a ligand-specific IL-31 receptor (IL-31R) subunit and a receptor chain that is shared with Oncostatin M (OSM), called OSM-Rbeta. Because OSM-Rbeta-deficient animals have reduced hematopoietic progenitor cells (HPC) and OSM has effects on and is involved in homeostasis of HPC, we studied whether IL-31 and IL-31R play a role in hematopoiesis.

Materials And Methods: IL-31R(-/-) mice and their littermate wild-type (WT) controls were assessed for absolute numbers and cycling status of bone marrow and spleen HPC (colony-forming unit granulocyte macrophage [CFU-GM], burst-forming unit erythroid [BFU-E], colony-forming unit granulocyte, erythrocyte, macrophage, megakaryocyte). Recombinant IL-31 was evaluated for stimulation, enhancement, or inhibition of colony formation by HPC, and for survival-enhancing effects on HPC subjected to growth-factor withdrawal and delayed addition of grown factors. Hematopoietic stem cells (HSC) from WT and IL-31R(-/-) mice were compared for competitive repopulating capacity in lethally irradiated congenic mice.

Results: IL-31R(-/-) mice demonstrated significantly decreased absolute numbers and cycling status of immature subsets of HPC in bone marrow bone and spleen compared to WT mice. There were no significant differences in absolute numbers of more mature subsets of WT and IL-31R(-/-) bone marrow CFU-GM. WT but not IL-31R(-/-) bone marrow CFU-GM responded to synergistic stimulation by combinations of cytokines. While IL-31 had neither colony-stimulating, -enhancing, or -inhibiting activity for bone marrow HPC, it did enhance survival of these HPC in the context of delayed addition of growth factors. No significant differences were detected in competitive repopulating HSC activity between WT and IL-31R(-/-) bone marrow cells.

Conclusion: IL-31R is involved in positive regulation of absolute numbers and cycling status of immature subsets of HPC in vivo. While IL-31 in vitro does not modulate proliferation of HPC, it does enhance their survival, which may contribute to effects on cycling and numbers of HPC in vivo. Under steady-state conditions, loss of IL-31R on HPC does not appear to influence the activity of competitive repopulating HSC. These results with HPC may be of future utility for manipulation of hematopoiesis in a preclinical setting.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2706484PMC
http://dx.doi.org/10.1016/j.exphem.2007.01.028DOI Listing

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