[Effect of rhG-CSF Mobilization on S1P5 Expression in T Lymphocyte Subsets of Allo-HSCT Donors].
Meng Li, Lixun Guan, Zhen-Yang Gu, Shasha Zhao, Feiyan Wang, Huaping Wei, Li Wang, Honghua Li, Jian Bo, Chunji Gao
Abstract
Meng Li, Lixun Guan, Zhen-Yang Gu, Shasha Zhao, Feiyan Wang, Huaping Wei, Li Wang, Honghua Li, Jian Bo, Chunji Gao
Abstract
OBJECTIVE: To explore the effect of recombinant human granulocyte colony-stimulating factor (rhG-CSF) mobilization on S1P5 expression in T lymphocyte subsets of allo-HSCT donors. METHODS: The peripheral blood was collected from 10 allo-hematopoietic stem cell transplantation (allo-HSCT) donors before and after mobilization with rhG-CSF for 4 days. The flow cytometry was used to detect S1P5 expression in T lymphocyte subsets. RESULTS: There was no S1P5 expression on the surface of T-lymphocytes both before and after rhG-CSF mobilization. After fixation with permeabilization agent, S1P5 expression could be detected in lymphocytes after rhG-CSF mobilization, which indicates S1P5 may be located in cells. Compared with level before rhG-CSF mobilization, S1P5 expression was significantly increased in T lymphocyte subsets after rhG-CSF mobilization, CD3(+)T cells (57.92±2.32)% vs (7.94±1.47)%(P<0.05), CD4(+)T cells (72.58±1.73)% vs (5.48±0.82)%(P<0.05), CD8(+)T cells(51.79±3.57)% vs (6.46±1.01)%(P<0.05),CD3-/CD56(+)NK cells(40.00±1.47)% vs(4.97±0.74)%(P<0.05). The up-regulated level of S1P5 expression in CD4(+)T cells was most high(P<0.05). CONCLUSION: S1P5 expression significantly increases in T lymphocyte subsets after rhG-CSF mobilization, and the up-regulated level of S1P5 expression in CD4(+)T cells is the most high.
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OBJECTIVE: To explore the effect of recombinant human granulocyte colony-stimulating factor (rhG-CSF) mobilization on S1P5 expression in T lymphocyte subsets of allo-HSCT donors. METHODS: The peripheral blood was collected from 10 allo-hematopoietic stem cell transplantation (allo-HSCT) donors before and after mobilization with rhG-CSF for 4 days. The flow cytometry was used to detect S1P5 expression in T lymphocyte subsets. RESULTS: There was no S1P5 expression on the surface of T-lymphocytes both before and after rhG-CSF mobilization. After fixation with permeabilization agent, S1P5 expression could be detected in lymphocytes after rhG-CSF mobilization, which indicates S1P5 may be located in cells. Compared with level before rhG-CSF mobilization, S1P5 expression was significantly increased in T lymphocyte subsets after rhG-CSF mobilization, CD3(+)T cells (57.92±2.32)% vs (7.94±1.47)%(P<0.05), CD4(+)T cells (72.58±1.73)% vs (5.48±0.82)%(P<0.05), CD8(+)T cells(51.79±3.57)% vs (6.46±1.01)%(P<0.05),CD3-/CD56(+)NK cells(40.00±1.47)% vs(4.97±0.74)%(P<0.05). The up-regulated level of S1P5 expression in CD4(+)T cells was most high(P<0.05). CONCLUSION: S1P5 expression significantly increases in T lymphocyte subsets after rhG-CSF mobilization, and the up-regulated level of S1P5 expression in CD4(+)T cells is the most high.
Key concepts: Granulocyte colony-stimulating factor, CD8, Flow cytometry, CD3, Lymphocyte, Mobilization, Haematopoiesis, Immunology