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Leukemic stromal hematopoietic microenvironment negatively regulates the normal hematopoiesis in mouse model of leukemia 被引量:3

Leukemic stromal hematopoietic microenvironment negatively regulates the normal hematopoiesis in mouse model of leukemia
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摘要 Background and Objective: Leukemic microenvironment has a major role in the progression of leukemia. Leukemic cells can induce reversible changes in microenvironmental components, especially the stromal function which results in improved growth conditions for maintaining the malignant leukemic cells. This study aimed to investigate the survival advantage of leukemic cells over normal hematopoietic cells in stromal microenvironment in long term. Methods: The mice were injected intraperitoneally with N-N’ ethylnitrosourea (ENU) to induce leukemia; the mice received injection of normal saline were used as control. At 180 days after ENU induction, the mice were killed and the bone marrows were cultured for 19 days. Colony-forming assays were used to analyze the formation of various cell colonies. The expression of Sca-1, CD146, VEGFR2, CD95, pStat3, pStat5, and Bcl-xL in marrow cells were detected by flow cytometry. Results: Long-term leukemic bone marrow culture showed abnormal elongated stromal fibroblasts with almost absence of normal hematopoietic cells. Adherent cell colonies were increased, but CFU-F and other hematopoietic cell colonies were significantly decreased in leukemia group (P< 0.001). Primitive progenitor-specific Sca-1 receptor expression was decreased with subsequent increased expression of CD146 and VEGFR-2 in leukemic bone marrow cells. Decreased Fas antigen expression with increased intracellular pStat3, pStat5 and Bcl-xL proteins were observed in leukemic bone marrow cells. Conclusions: Stromal microenvironment shows altered morphology and decreased maturation in leukemia. Effective progenitor cells are decreased in leukemia with increased leukemia-specific cell population. Leukemic microenvironment plays a role in promoting and maintaining the leukemic cell proliferation and survivability in long term. Background and Objective: Leukemic microenvironment has a major role in the progression of leukemia. Leukemic cells can induce reversible changes in microenvironmental components, especially the stromal function which results in improved growth conditions for maintaining the malignant leukemic cells. This study aimed to investigate the survival advantage of leukemic cells over normal hematopoietic cells in stromal microenvironment in long term. Methods: The mice were injected intraperitoneally with N-N’ ethylnitrosourea (ENU) to induce leukemia; the mice received injection of normal saline were used as control. At 180 days after ENU induction, the mice were killed and the bone marrows were cultured for 19 days. Colony-forming assays were used to analyze the formation of various cell colonies. The expression of Sca-1, CD146, VEGFR2, CD95, pStat3, pStat5, and Bcl-xL in marrow cells were detected by flow cytometry. Results: Long-term leukemic bone marrow culture showed abnormal elongated stromal fibroblasts with almost absence of normal hematopoietic cells. Adherent cell colonies were increased, but CFU-F and other hematopoietic cell colonies were significantly decreased in leukemia group (P 0.001). Primitive progenitor-specific Sca-1 receptor expression was decreased with subsequent increased expression of CD146 and VEGFR-2 in leukemic bone marrow cells. Decreased Fas antigen expression with increased intracellular pStat3, pStat5 and Bcl-xL proteins were observed in leukemic bone marrow cells. Conclusions: Stromal microenvironment shows altered morphology and decreased maturation in leukemia. Effective progenitor cells are decreased in leukemia with increased leukemia-specific cell population. Leukemic microenvironment plays a role in promoting and maintaining the leukemic cell proliferation and survivability in long term.
出处 《Chinese Journal of Cancer》 SCIE CAS CSCD 北大核心 2010年第12期969-979,共11页
关键词 白血病细胞 环境基质 造血功能 小鼠 负调控 造血微环境 骨髓细胞 集落形成 Stromal microenvironment hematopoiesis leukemia
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  • 1Bugarski D, Krstic A, Mojsilovic S, et al. Signaling Pathways Implicated in Hematopoietic Progenitor Cell Proliferation and Differentiation [J]. Exp Biol Med, 2007, 232(1):156-163.
  • 2Dexter TM, Spooncer E. Growth and differentiation in the hemopoietic system [J]. Ann Rev Cell Biol, 1987, 3:432-441.
  • 3Domen J, Weissman IL. Self-renewal, differentiation or death: regulation and manipulation of hematopoietic stem cell fate [J]. Mol Med Today, 1999, 5(5):201-208.
  • 4Dexter TM, Allen TD, Lajtha LG. Conditions controlling the proliferation of hematopoietic stem cells in-vitro [J]. J Cell Physiol, 1977, 91(3):335-344.
  • 5Metcalf D. Hematopoietic regulators: redundancy or subtlety [J]. Blood, 1993, 82:3515-3523.
  • 6Ogawa M. Differentiation and proliferation of hematopoietic stem cells [J]. Blood, 1993, 81(11 ):2844-2853.
  • 7Okubo T, Matsui N, Yanai N, et al. Stroma dependent maintenance of cytokine responsive hematopoietic progenitor cells derived from long -term bone marrow culture [J]. Cell Struct Funct, 2000, 25(2): 133-139.
  • 8Tavassoli M, Friedenstein A. Hematopoietic stromal microenvironment [J]. Ann J Hematol, 1993, 15(2):195-203.
  • 9Yamada M, Suzu S, Tanaka-Douzono M, et al. Effects of cytokines on the Proliferation/differentiation of stroma-initiating cells [J], J Cell Physiol, 2000,184(3):351-355.
  • 10Li Z, Li L Understanding hematopoietic stem-cell microenvironments [J]. Trends Biochem Sci, 2006, 31(10):589-595.

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