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G-CSF联合化疗动员外周血干细胞过程中某些生物因子的动态变化
引用本文:李彩霞,吴德沛,常伟荣,朱华亭,岑建农,张学光.G-CSF联合化疗动员外周血干细胞过程中某些生物因子的动态变化[J].中华血液学杂志,2003,24(8):398-401.
作者姓名:李彩霞  吴德沛  常伟荣  朱华亭  岑建农  张学光
作者单位:215007,苏州大学医学生物技术研究所、苏州大学附属第一医院血液科
基金项目:江苏省卫生厅重点课题基金资助项目 (H9816 ),国家卫生部科研基金资助项目 ( 98 1 32 4 ),江苏省核医学生物技术重点课题,江苏省135医学重点人才培养基金资助项目 (RC2 0 0 2 0 33)
摘    要:目的 探讨IL 8、可溶性血管细胞粘附分子 1 (sVCAM 1 )及可溶性细胞间粘附分子 1(sICAM 1 )在自体造血干细胞动员过程中的变化及其意义。方法 采用酶联免疫吸附实验方法动态分析患者造血干细胞动员过程中血浆IL 8、sICAM 1及sVCAM 1水平的变化 ;通过免疫荧光标记和流式细胞仪检测CD3 4+细胞 ;体外半固体培养CFU GM集落及血细胞计数法观察白细胞和血小板数量变化。结果 ①在动员过程中 ,外周血IL 8(2 4 7.4± 84.2 ) μg L]、sICAM 1 (530 .3± 2 86 .1 ) μg L]及sVCAM 1(575 .3± 350 .4) μg L]含量均较动员前和正常人显著升高 (P <0 .0 1 ) ;②患者外周血中IL 8、sVCAM 1水平与CD3 4+细胞和CFU GM集落数呈正相关 (P <0 .0 0 1 )。结论 在自体干细胞动员过程中 ,血浆IL 8和sVCAM 1的含量与患者CD3 4+细胞数和CFU GM集落形成有显著的相关性 ,分析这些生物因子的变化具有临床实用价值

关 键 词:自体干细胞动员  粒细胞集落刺激因子  白细胞介素-8  可溶性血管细胞粘附分子-l  可溶性细胞间粘附分子-1  酶联免疫吸附实验
修稿时间:2002年9月26日

Dynamic changes of cytokines in G-CSF mobilized peripheral blood
LI Ca i-xia,WU De-pei,CHANG Wei-rong,ZHU Hua-ting,CEN Jian-nong,ZHANG Xue-g uang. Suzhou Medical Biotechnology Institute,Suzhou University,Suzhou ,China Corresponding auther: ZHANG Xue-guang.Dynamic changes of cytokines in G-CSF mobilized peripheral blood[J].Chinese Journal of Hematology,2003,24(8):398-401.
Authors:LI Ca i-xia  WU De-pei  CHANG Wei-rong  ZHU Hua-ting  CEN Jian-nong  ZHANG Xue-g uang Suzhou Medical Biotechnology Institute  Suzhou University  Suzhou  China Corresponding auther: ZHANG Xue-guang
Institution:Suzhou Medical Biotechnology Institute, Suzhou University, Suzhou 215007, China.
Abstract:OBJECTIVE: To investigate the level and significance of interleukin-8 (IL-8), soluble intercellular adhesion molecule (sICAM-1) and soluble vascular cell adhesion molecule-1 (sVCAM-1) in patients peripheral blood (PB) during mobilization for peripheral blood stem cells harvesting. METHODS: The levels of IL-8, sICAM-1 and sVCAM-1 in patients were dynamically assayed by ELISA during the mobilization procedure and the number of CD(34)(+) cell, white blood cell (WBC) and platelet (BPC) by flow cytometric analysis and hematometry respectively. Colony formation was assayed by using semisolid methycellulose culture. RESULTS: There was a significant increase in plasma levels of IL-8 and both adhesion molecules IL-8 (247.4 +/- 84.2) microg/L (P < 0.01); sICAM-1 (530.3 +/- 286.1) microg/L (P = 0.002 7); sVCAM-1 (575.3 +/- 350.4) microg/L (P = 0.001 3)] during the mobilization process; furthermore, IL-8 and sVCAM-1 concentration in the patient's plasma was paralleled to the numbers of CD(34)(+) cell, CFU-GM, WBC and BPC (P < 0.001). CONCLUSION: The levels of IL-8, sICAM-1 and sVCAM-1 in the patient's plasma were correlated to the PB number of CD(34)(+) cells, CFU-GM, WBC and BPC during the mobilization process. It suggested that analysis of IL-8, and sVCAM-1 dynamic changes may serve as markers for CD(34)(+) cells.
Keywords:Mobilization  hematopoietic stem cell  Interleuk in-8  Vascular adhesion molecule-1  Intercellular adhesion molecule-1  Co lony stimulating factor-granulocyte
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