期刊文献+

猪苓多糖对脐血造血干细胞体外扩增及干细胞移植后免疫重建的调节效应 被引量:13

Regulatory effects of polyporus umbellatus polyose on in vitro amplification of umbilical cord blood hematopoietic stem cells and immune reconstruction after umbilical cord blood hematopoietic stem cell transplantation
下载PDF
导出
摘要 目的:人脐血造血干细胞得以移植于小鼠体内,其理论基础是放射线照射使小鼠骨髓枯竭,龛位腾出,为移植的脐血造血干细胞提供空间,而猪苓多糖是从中药猪苓中提取的多糖成分,具有免疫调节抗肿瘤作用,也是一种非T细胞促有丝分裂素,对放射线照射有一定的防护作用。观察猪苓多糖对脐血造血干细胞体外扩增及干细胞移植后免疫重建效应。方法:实验于2004-06/2006-05在兰州大学基础医学院免疫研究所完成。①实验材料:清洁级BALB/c小鼠由兰州生物制品研究所提供,8周龄,体质量约20g,雌雄各半,实验过程中对动物处置符合动物伦理学标准。脐血样本由兰泰医院妇产科提供,产妇及家属对实验知情同意,并经医院伦理委员会批准。猪苓多糖由兰州大学第一医院提供。②实验方法:应用20,17.5,12.5,7.5mg/L猪苓多糖体外扩增培养脐血造血干细胞,并测定细胞增殖率及CD34+细胞数。将BALB/c小鼠分为正常对照组:尾静脉、腹腔注射等量生理盐水;照射空白组:3.5Gy经^(60)Coγ放射线照射联合尾静脉、腹腔注射等量生理盐水;照射药物组:3.5Gy经^(60)Coγ放射线照射联合尾静脉注射等量生理盐水、腹腔注射猪苓多糖;照射移植组(n=15):3.5Gy经^(60)Coγ放射线照射联合脐血造血干细胞移植、腹腔注射等量生理盐水;照射移植药物组:3.5Gy经^(60)Coγ放射线照射联合脐血造血干细胞移植、腹腔注射猪苓多糖。③实验评估:观察小鼠生存状况及血常规变化,流式细胞仪测定CD3、CD4、CD8、CD19水平。结果:57只小鼠均进入结果分析。①12.5mg/L猪苓多糖增殖效率最为显著(P<0.01),流式细胞仪测定显示CD34+细胞数扩增了6.33倍。移植药物组小鼠死亡率最低,死亡高峰集中在照射移植后7~14d左右。②移植药物组小鼠血象恢复正常,并且时间明显短于其他实验组(P<0.05)。③细胞及体液免疫恢复情况,移植药物组小鼠各项指标水平与正常小鼠无差别(P>0.05),与其他各组小鼠比较,除CD4、CD19水平与照射移植小鼠无差别外均有差别(P<0.05)。结论:猪苓多糖对脐血造血干细胞有明显扩增作用,并能促进脐血造血干细胞移植小鼠免疫造血重建。 AIM: Human umbilical cord blood hematopoietic stem cells can be transplanted into mice. It is based on vacation in mice bone marrow niches by irradiation. Polyporus umbellatus polyose drown from the Chinese medicine, polyporus umbellatus, has effects on immunoloregulation, tumor and irradiation prevention. This article observes immune reconstruction of polyporus umbellatus polyose on umbilical cord blood hematopoietic stem cell transplantation. METHODS: Experiments were conducted at the Institute of Immunology, Basic Medical College, Lanzhou University from June in 2004 to May in 2006. (1)Clear BALB/c mice, eight weeks old, weighing 20 g, of either sex, were supplied by Lanzhou Institute of Biological Products. Animal disposition met animal ethical standard. Cord blood was offered by the Lantai Hospital of Lanzhou. Parturiens and their family members signed the informed consent. The experimental procedures were approved by hospital ethics committee. Polyporus umbellatus polyose was provided by Vast Affiliated Hospital of Lanzhon University. (2)20, 17.5, 12.5, 7.5 mg/L polyporus umbellatus polyose was applied to culture umbilical cord blood hematopoietic stem cells in vitro. Cell proliferation rate and CD34^+ cell count were measured. BALB/c mice were divided into 5 groups. Mice in the normal control group were treated with saline via caudal vein and abdominal cavity. Mice in the irradiation blank group were irradiated with 3.5Gy by ^60Co gamma my and treated with saline via caudal vein and abdominal cavity. Mice in the irradiation-drug group received 3.5Gy by ^60Co gamma my, saline via caudal vein and polyporus umbellatus polyose via abdominal cavity. Mice in the irradiation-transplantation group (n =15) were irradiated with 3.5Gy by ^60Co gamma ray, treated with umbilical cord blood hematopoietic stem cell transplantation and saline via abdominal cavity. Mice in the irradiation-transplantation-drug group received 3.5Gy by ^60Co gamma ray, umbilical cord blood hematopoietic stem cell transplantation and polypoms umbellatus polyose injection via abdominal cavity. (3)Survival and changes in blood routine parameters of mice were examined. CD3, CD4, CD8 and CD 19 levels were determined with a flow cytometer. RESULTS: Totally 57 mice were involved in the result analysis. (1)Proliferation efficiency was the highest in mice treated with 12.5 mg/L polyporus umbellatus polyose (P 〈 0.01 ). The results of the flow cytometer determination showed that number of CD34^+ amplified 6.33 times. Death rate of mice was the lowest in the irradiation-transplantation-drug group, and a peak of death occurred at 7 14 days after the irradiation and transplantation. (2)Hemogram recovered to normal in the irradiation-transplantation-drug group, and the time of recovery was shorter than that of other groups (P 〈 0.05). (3)There was no significant difference in the recovery of cell and humoral immunity in mice of the irradiation-transplantation-drug group and normal mice (P 〉 0.05), so does the CD4 and CD 19 levels compared with the irradiation-transplantation group. There were significant differences in other indexes (P 〈 0.05). CONCLUSION: Polyporus umbellatus polyose can evidently amplify umbilical cord blood hematopoietic stem cells and promote immune and hematopoietic reconstruction in mice undergoing umbilical cord blood hematopoietic stem cell transplantation.
出处 《中国组织工程研究与临床康复》 CAS CSCD 北大核心 2008年第12期2216-2220,共5页 Journal of Clinical Rehabilitative Tissue Engineering Research
  • 相关文献

参考文献17

  • 1Gluckman E,BroxmeyerHE,Auerbach AD,et al. Hematopoietic reconstitution in a patient with Fanconi's anemia by means of umbilical-cord blood from an HLA-identical sibling.N Engl J Med 1989;321(17): 1174
  • 2Bomstein R,Flores AI,Montalban MA,et al.Modified cord blood collection method achieves sufficient cell levels for transplantation in nmst aduh patients.Stem Cell 2005;23:324-334
  • 3荆丽艳,刘令梅.辐射防护药物的研究现状[J].社区医学杂志,2004,2(4):29-30. 被引量:6
  • 4Rice AM, Wood JA, Milross CG, et al. Conditions that enable human hematopoietic stem cell engraftment in all NOD-SCID mice.Transplantation 2000;69(5):927-935
  • 5杜肖娜,何宏涛,王润田,刘殿武,王惠芬.中药猪苓多糖抑瘤作用机理的初探[J].中华微生物学和免疫学杂志,2001,21(3):296-297. 被引量:16
  • 6张子强,高顺宗,刘雪平,朱竹先.G-CSF动员自体造血干细胞在大鼠MCAO/R模型分化为神经元样细胞[J].基础医学与临床,2004,24(3):310-313. 被引量:14
  • 7Flores-Guzmán P, Gutiérrez-Rodríguez M, Mayani H.In vitro proliferation, expansion, and differentiation of a CD34+ cell-enriched hematopoietic cell population from human umbilical cord blood in response to recombinant cytokines.Arch Med Res 2002;33(2):107-114
  • 8Yao CL,Chu IM,Hsleh TB,et a1.A systematic strategy t0 0Dtimize exvivo expansion medium for human hematopoietic stem cells derived from umbilical cord blood mononuclear cells. Exp Hematol 2004;32(8):720-727
  • 9Gilmore GL,DePasquale DK,Lister J,et aL.Ex vivo expansion of human umbilical cord blood and peripheral blood CD34 hematopoietic stem cells.Exp Hematol 2000;28(11):1297-1305
  • 10赵粉琴,罗树彬,罗惠英,潘万龙,李淑萍,尹少甫.壳聚糖协同脐血造血干细胞对小鼠的免疫恢复研究[J].辐射防护,2007,27(1):25-31. 被引量:2

二级参考文献49

  • 1曹晶,孙淑爱,卢凤琦.壳聚糖的生物学评价[J].中国公共卫生,2005,21(3):332-332. 被引量:11
  • 2贺福初,宫锋.细胞因子在放射医学及辐射防护中的应用[J].中华放射医学与防护杂志,1994,14(4):219-220. 被引量:5
  • 3杨德安,李慎勤,李香铁,刘少鸽,王洪伟,高德军.猪苓和卡介苗预防膀胱肿瘤术后复发的长期观察[J].中华外科杂志,1994,32(7):433-434. 被引量:8
  • 4[1]Terstappen LWMM,et al. Sequential generations of hematopoietic colonies derived from single nonlineage-committed CD34+CD38-progenitor cells. Blood, 1991,77:1218
  • 5[2]Broxmeyer HE, et al. Umbilical cord blood hematopoietic and repopulating cells in human clinical transplantation. Blood Cells,1991,17:313
  • 6[3]Hayashi H,et al. Analyses of extrathymic T cell differentiation in nu/nu mice by grafting embryonal organs. Immunobiology, 1997,17:313
  • 7[2]Ding AH,Nathan CF,Stuehr DJ. Release of reactive nitrogen in termediates and reactive oxygen intermediates from mouse peritoneal macrophages[J]. J Immunol, 1988,141(7) :2407-2412.
  • 8[3]Wang W, Inoue N, Nakayama T, et al. An assay method for nitric oxide synthase in crude samples by determining product NADP[J]. AnalBiochem, 1995, 227(2) :274-280.
  • 9[4]Friedl R, Brunner M, Moeslinger T,et al. Testosterone inhibits expression of inducible nitric oxide synthase in murine macrophages[J]. Life Sci, 2000, 68(4): 417-429.
  • 10[5]Li Y, Ito N, Suzuki T,et al. Dexamathasone inhibits nitric oxide-mediated cytotoxicity via effects on both macrophages andtarget cells[J]. Immunopharmacology, 1995, 30(2) : 177-186.

共引文献84

同被引文献175

引证文献13

二级引证文献172

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部