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骨髓内皮细胞产生造血抑制因子
引用本文:程腊梅,王绮如. 骨髓内皮细胞产生造血抑制因子[J]. 中国实验血液学杂志, 2002, 10(6): 485-491
作者姓名:程腊梅  王绮如
作者单位:中南大学湘雅医学院血液生理研究室,长沙,410078
基金项目:国家自然科学基金资助项目编号 39970 0 9230 0 30 0 70
摘    要:本研究探讨骨髓内皮细胞分泌的造血抑制因子在扩增造血祖细胞中的作用并初步探讨其作用机制。收集无血清骨髓内皮细胞条件培养液 (BMEC CM) ,离心超滤 ,获得 >1 0kD和 <1 0kD的组分 ,以观察BMEC CM原液及其 >1 0kD和 <1 0kD组分对CFU GM及HPP CFC的增殖作用的影响 ;检测骨髓内皮细胞及BMEC CM中抑制因子的表达 ,用抗体中和实验检测BMEC CM中的抑制因子对造血集落的抑制活性 ;用膜杂交法检测抑制因子联合造血刺激因子扩增造血细胞时增殖与分化相关基因的改变。结果表明 :①BMEC CM ,>1 0kD及 <1 0kD组分分别加入集落培养体系 ,BMEC CM对CFU GM及HPP CFC的生成无明显影响 ,>1 0kD组分增加CFU GM及HPP CFC的生成 ,<1 0kD组分抑制CFU GM及HPP CFC的生成。②BMEC CM ,>1 0kD及 <1 0kD组分分别加入骨髓细胞液体培养体系培养 2 4小时后 ,BMEC CM组CFU GM明显减少 ,HPP CFC显著增加 ;>1 0kD组分组CFU GM明显增加 ,HPP CFC无显著改变 ;<1 0kD组分组CFU GM及HPP CFC均明显减少。③小鼠骨髓内皮细胞表达MIP 2 ,MIP 1α ,MSP ,TGF β,TNF α,IFN γ及Tβ4。BMEC CM中存在有MIP 2 ,MIP 1α ,MSP ,TGF β ,TNF α和Tβ4。④抗体中和实验结果表明在BMEC CM中的TGF β ,MSP ,MIP 1α,IFN γ和Tβ4有明显抑制活性。⑤Tβ4

关 键 词:造血干细胞扩增 造血祖细胞扩增 骨髓内皮细胞 造血抑制因子
修稿时间:2001-12-07

Hematopoietic Inhibitors Elaborated by Bone Marrow Endothelial Cells
CHENG La Mei,WANG Qi Ru. Hematopoietic Inhibitors Elaborated by Bone Marrow Endothelial Cells[J]. Journal of experimental hematology, 2002, 10(6): 485-491
Authors:CHENG La Mei  WANG Qi Ru
Affiliation:Laboratory of Blood Physiology, Xiang Ya Medical School of Central South University, Changsha 410078, China.
Abstract:In this study, the roles of hematopoietic inhibitors elaborated by bone marrow endothelial cells in the proliferation and differentiation of hematopoietic progenitors were investigated. Murine bone marrow endothelial cell conditioned medium (BMEC-CM) was collected and the components with > 10 kD and < 10 kD were obtained by centrifugal ultrafiltration. The effect of BMEC-CM and its components on proliferation of hematopoietic progenitors was evaluated by CFU-GM and HPP-CFC assay and antibody neutralization test. The expression of the inhibitors in BMEC and BMEC-CM was detected by RT-PCR and Western blot, and change of proliferation and differentiation-related genes during expansion of hematopoietic progenitors was examined by membrane hybridization technique. The results: (1) When BME C-CM and its components directly were added to CFU-GM and HPP-CFC culture system, BMEC-CM had no effect on colony formation, > 10 kD component enhanced and < 10 kD component inhibited the formation of CFU-GM and HPP-CFC. (2) When BMEC-C M and its components were added to liquid culture system of marrow cells, after 24 hours incubation, CFU-GM decreased and HPP-CFC increased significantly in B MEC-CM group, CFU-GM increased and HPP-CFC had no significant change in > 10 kD component group; and both CFU-GM and HPP-CFC reduced in < 10 kD group. (3) MIP-2, MIP-1 alpha, MSP, TGF-beta, TNF-alpha, IFN-gamma and T beta 4 were expressed in murine marrow endothelial cells, and MIP-2, MIP-1 alpha, MSP, TGF-beta, TNF-alpha and T beta 4 were existed in BMEC-CM. (4) Antibody neutralization test results demonstrated that TGF-beta, MSP, MIP-1 alpha, IFN-gamma and T beta 4 existed in BMEC-CM had significant suppressive effects on CFU-GM and HPP-CFC. (5) T beta 4 combined with 5 hematopoietic cytokines (SCF, IL-3, IL-6, GM-CSF and EPO) added to CD34(+) cells expansion culture system, HPP-CFC significantly increased compared with 5 cytokines group. T beta 4 could downregulated the expression of proliferation and differentiation-related genes and signal transduction-related genes. It is concluded that BM EC-CM promotes the proliferation of early hematopoietic progenitor cells, and this effect is related with the inhibitors existed in BMEC-CM and it could be executed via influencing cell proliferation and differentiation-related genes and signal-related genes.
Keywords:bone marrow endothelial cell  hematopoietic inhibitor  hematopoietic stem/progenitor cell expansion
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