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兔自体骨髓间充质干细胞体内复合移植的成骨研究 被引量:16

Osteogenicity of in vivo composite grafting of autologous marrow mesenchymal stem cells of rabbits
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摘要 目的 观察兔自体骨髓间充质干细胞 (MSCs)体内复合移植的成骨能力 ,以寻求理想的MSCs载体。方法 将 10只新西兰大白兔随机分成A、B两组 ,从自体骨髓中分离出MSCs,体外培养并扩增后分别与相同大小的小牛脱钙骨 (DBCB)、自固化磷酸钙人工骨 (CPC)复合移植于两组大白兔左侧骶棘肌中 ,同时右侧骶棘肌分别植入相同大小的DBCB、CPC作空白对照 ;16周后取出标本 ,观察成骨情况并行组织学检查。结果 A组 5例 :MSCs+DBCB侧均发现有新骨组织形成 ,单纯DBCB侧3例被完全吸收、降解 ,2例大部分吸收、降解 ;B组 5例 :MSCs +CPC侧和单纯CPC侧均未见骨组织形成 ,植入物也无明显吸收。结论 自体骨髓MSCs在适合载体负载下可在体内自动分化成骨 ,DBCB是MSCs的良好载体之一。 Objective To observe osteogenicity of in vivo composite grafting of autologous marrow mesenchymal stem cells (MSCs) of rabbits and search for ideal matrix of MSCs. Methods The autologous MSCs of rabbits were isolated from bone marrow, grown in culture, and loaded onto demineralized bovine cancellous bone (DBCB) and calcium phosphate cement (CPC) respectively and then implanted separately into the left sacrospinal muscle of two groups of rabbits (group A with MSCs+DBCB and group B with MSCs+CPC). Meanwhile, the pure DBCB and CPC were separately implanted into the right sacrospinal muscle of two groups of rabbits (group A with pure DBCB and group B with pure CPC) as the blank control. 16 weeks later, the animals were killed and the specimens harvested to observe the formation of bone. The histological sections of specimens were stained and observed. Results In group A (of five rabbits),abundant new bone was found to have formed in all specimens of MSCs DBCB while the implanted pure DBCB was wholly or mostly absorbed and degraded.In group B (of five rabbits),no new bone was found in any specimens of MSCs CPC or pure CPC and none of the implanted specimens was markedly absorbed. Conclusion The autologous MSCs loaded onto appropriate matrix can form bone in vivo and DBCB is the satisfactory matrix for MCS.
出处 《临床骨科杂志》 2002年第2期81-85,共5页 Journal of Clinical Orthopaedics
基金 安徽省 2 0 0 2年度重点科研项目 (编号 :0 10 2 3 0 2 2 )
关键词 造血干细胞移植 骨再生 骨髓间充质干细胞 自体移植 hematopoietic stem cells transplantation bone regeneration
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  • 1Lennon DP, Haynesworth SE,Young RG et al. A Chemically defined medium supports in vitro proliferation and matains the esteo chondral potential of rat marrow-derived mesenchymal stem cells[J]. Exp Cell Res, 1995; 219(3):211~222
  • 2Lennon DP, Haynesworth SE, Bruder SP et al. Human and animal mesenchymal progenitor cells from bone marrow:identification of serum for optimal selection and proliferation[J]. In Vitro Cell Dev Biol, 1996;32(6):602~611
  • 3Bruder SP,Kraus KH, Goldberg VM et al. The effect of implants loaded with autologous mesenchymal stem cells on the healing of canine segmental bone defects[J]. J Bone Joint Surg Am, 1998;80(7):985~996
  • 4Caplan AI. Mesenchymal stem cells[J]. J Orthop Res ,1991;9(5):641~650
  • 5Falla N ,Vlasselaer PV, Bierkens J et al. Characterization of a 5-fluorouracial-enriched osteoprogenitor population of murine bone marrow[J]. Blood, 1993;82(12):3580~3591
  • 6Simmons PJ, Storb BT. Identification of stromal cell precursors in human bone marrow by a novel monoclonal antibody , stro-1[J]. Blood, 1991;78(1):55~62
  • 7Solchaga LA, Cassiede P, Caplan AI. Different response to osteo-inductive agents in done marrow and periosteum-derived cell preparation[J]. Acta Orthop Scand, 1998;69(4):426~432
  • 8Goshima J, Goldberg VM,Caplan AI. The osteogenic protential of culture-expanded rat marrow mesenchymal cells assayed in vivo in calium phosphate ceramic blocks[J]. Clin Orthop,1991;(262):298~311
  • 9Haynesworth SE,Goshima J, Goldberg VM et al. Characterization of cells with osteogenic potential from human marrow[J]. Bone,1992;13(1):81~88
  • 10Cornell CN, Lane JM. Current understanding of osteoconduction in bone regeneration[J]. Clin Orthop, 1998;(355):267~273

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