期刊文献+

成人退变髓核细胞微载体旋转立体培养对细胞外基质合成的影响 被引量:2

The changes of extraceUular matrix in adult degenerative nucleus pulposus cells with stiring microcarrier culture system in vitro
原文传递
导出
摘要 目的探讨成人退变髓核细胞的体外微载体旋转立体培养模式及其对细胞外基质合成的影响。方法标本取自2005年9月至2009年5月因椎间盘疾患而施行椎体间融合术的患者,对总共34个退变的髓核组织进行体外培养,将其随机分为单层培养组和微载体旋转立体培养组。对2种培养方式的对数生长期髓核细胞进行Ⅰ、Ⅱ型胶原的SP-ABC免疫组化法染色,并行Ⅰ、Ⅱ型胶原的Wester nblot定量检测;用”S标记放射免疫定量分别检测两组处于不同生长期细胞的蛋白多糖含量,数据采用两独立样本的t检验进行统计分析。结果Ⅰ、Ⅱ型胶原的SP-ABC免疫组化法和Westernblot定量检测均显示微载体培养组高于单层培养组。SP-ABC免疫组化法结果:Ⅰ型胶原:32.5±4.4比15.2-4±1.2,t=2.871,P〈0.01;Ⅱ型胶原:43.6±4.1比23.1±2.2,t=2.375,P〈0.05;Westernblot定量检测结果:Ⅰ型胶原:0.62±0.08比0.504-0.06,t=3.327,P〈0.01;Ⅱ型胶原:1.464-0.08比0.86±0.04,t=2.453,P〈0.05。^35S标记放射免疫显示两种生长期的髓核细胞,微载体培养组表达蛋白多糖的含量均高于单层培养组(稳定生长期:348214±312比21046±673,t=2.134,P〈0.05;对数生长期:451344±175比321934±713,t=2.801,P〈0.01)。结论微载体旋转立体培养法对成人退变髓核细胞基质内Ⅰ、Ⅱ型胶原和蛋白多糖的表达具有正向调控的作用,可以适用于成人退变髓核细胞的大量扩增。 Objective To evaluate the biological effect on the synthesis of the extracellular matrix (ECM) in the cultivation of adult degenerative nucleus pulposus cells using the stiring microcarrier system in vitro. Methods Thirty-four specimens were collected after intervertebral fusion operations of the patients with intervertebral disc herniation diseases from September 2005 to May 2009. The specimens were then randomly allocated into 2 groups for in vitro cultivation: monolayer culture group and mierocarrier culture group. On the exponential phase, SP-ABC immunohistochemieal staining and Western blot quantitative analysis were conducted in the two groups to detect the collagen type Ⅰ and Ⅱ. Proteoglycan contents of two groups in different growth phases were detected with ^35S-sulfate incorporation assay. Results The expressions of collagen type Ⅰ and Ⅱ in microcarrier culture group were significantly higher than those in monolayer culture group: SP-ABC immunohistochemical staining (collagen type I : 32. 5 ± 4. 4 vs. 15.2 ±1.2, t =2. 871, P 〈0. 01; collagen type II : 43.6 ±4. 1 vs. 23.1 ±2. 2, t =2. 375, P 〈0. 05) ; Western blot quantitative analysis ( collagen type Ⅰ : 0. 62 ±0. 08 vs. O. 50 ±0.06, t = 3. 327, P 〈 0. 01 ; collagen type Ⅱ : 1.46 ±0. 08 vs. O. 86 ±0.04, t = 2. 453, P 〈 0. 05 ). Nucleus pulposus cells cultivated in stiring microcarrier system showed significantly increased proteoglycan synthesis than monolayer culture group does on both exponential phase and stationary phase ( exponential phase: 34 821 ±312 vs. 21 046 ±673,t=2.134, P 〈 0.05; stationary phase: 45 134 ±175 vs. 32 193 ±713, t = 2. 801, P 〈 0.01). Conclusions The expression of collagen type Ⅰ , Ⅱ and proteoglycan of adult degenerative nucleus pulposus cells are positive regulated by the stiring microcarrier system, which can be used in the mass amplification of the adult degenerative nucleus pulposus cells.
出处 《中华外科杂志》 CAS CSCD 北大核心 2013年第5期432-436,共5页 Chinese Journal of Surgery
基金 国家自然科学基金资助项目(30672132)
关键词 椎间盘 细胞外基质 微球体 胶原 蛋白聚糖类 Intervertebral disk Extracellular matrix Microspheres Collagens Proteoglycan
  • 相关文献

参考文献17

  • 1Samartzis D, Cheung KM. Lumbar intervertebral disk degeneration. Orthop Clin North Am, 2011,42 : xi-xii.
  • 2Inoue N, Espinoza Orias AA. Biomechanics of intervertebral disk degeneration. Orthop Clin North Am, 2011, 42 :487499.
  • 3Woods BI, Vo N, Sowa G, et al. Gene therapy for intervertebral disk degeneration. Orthop Clin North Am, 2011, 42 :563-574.
  • 4Bae WC, Masuda K. Emerging technologies for molecular therapy for intervertebral disk degeneration. Orthop Clin North Am, 2011 , 42 :585-60l.
  • 5ThompsonJP, Pearce RH, Schechter MT, et al. Preliminary evaluation of a scheme for grading the gross morphology of the human intervertebral disc. Spine (Phila Pa 1976) ,1990,15 :411- 415.
  • 6Tashiro S, Tsumoto K, Sano E. Establishment of a microcarrier culture system with serial sub-cultivation for functionally active human endothelial cells.J Biotechnol, 2012, 160:202-213.
  • 7Santos F, Andrade PZ, Abecasis MM, et al. Toward a clinical?grade expansion of mesenchymal stem cells from human sources: a microcarrier-based culture system under xeno-free conditions. Tissue Eng Part C Methods ,2011 , 17 :1201-1210.
  • 8Boo L, Selvaratnam L, Too CC, et al. Expansion and preservation of multi potentiality of rabbit bone-marrow derived mesenchymal stem cells in dextran-based microcarrier spin culture.J Mater Sci Mater Med, 2011, 22: 1343-1356.
  • 9Schrobback K, Klein TJ, Schuetz M, et al. Adult human articular chondrocytes in a microcarrier-based culture system: expansion and redifferentiation.J Orthop Res, 2011 , 29 :539-546.
  • 10刘勇,胡有谷,宁斌.退变腰椎间盘髓核细胞立体培养与单层培养的生物活性比较[J].中国脊柱脊髓杂志,2007,17(5):376-379. 被引量:8

二级参考文献11

  • 1Herbert CM,Lindberg KA,Jayson MI,et al.Proceedings:intervertebral disc collagen in degenerative disc disease[J].Ann Rheum Dis,1975,34(5):467-471.
  • 2Thompson JP,Oegema TR Jr,Bradford DS.Stimulation of mature canine intervertebral disc by growth factors[J].Spine,1991,16(3):253-260.
  • 3Ichimura K,Tsuji H,Matsui H,et al.Cell culture of the intervertebral disc of rats:factors influencing culture,proteoglycan,collagen,and deoxyribonucleic acid synthesis[J].J Spinal Disord,1991,4(4):428-436.
  • 4Helen E,Gruber E,Carl Fisher J,et al.Human intervertebral disc cells from the annulus:three dimensional culture in agarose or alginate and responsiveness to TGF-betal[J].Exp Cell Res,1997,235:13-21.
  • 5Holy C,Shcichet M,Davies J.Engineering three dimension a bone tissue in vitro using biodegradable scaffolds in vestigation initadell seeding lens it and culture period[J].J Biomed Mater Res,2000,51:376-382.
  • 6Gruber H,Hanley E.Human disc cells in monolayer vs 3D culture:cell shape,division and matrix formation[J].BMC Musculoskelet Disord,2000,1 (1):1-6.
  • 7Sato M,Kikuchi T,Asazuma T,et al.Glycosaminoylycan accumulation in primary culture of rabbit intervertebral disc cells[J].Spine,2002,26 (24):2653-2660.
  • 8Horner H,Roberts R,Menage J,et al.Cell from different regions of the intervertebral disc:effect of culture system matrix expression and cell pheno thpe[J].Spine,2002,27(10):1018-1028.
  • 9Sato M,Asazuma T,Ishihara M,et al.An atelocollagen honeycomb-shaped scaffold with a membrane seal (ACHMS-scaffold) for the culture of annulus fibrosus cells from an intervertebral disc[J].J Biomed Mater Res,2003,64A(2):248-256.
  • 10刘勇,胡有谷,吕振华.腰椎间盘细胞的培养及形态学观察[J].中华医学杂志,1999,79(2):109-111. 被引量:25

共引文献7

同被引文献16

引证文献2

二级引证文献9

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