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本文引用的文献

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Optimising bisphosphonate treatment outcomes in postmenopausal osteoporosis: review and Italian experience.优化绝经后骨质疏松症的双膦酸盐治疗效果:综述及意大利经验。
Clin Exp Rheumatol. 2011 Jul-Aug;29(4):728-35. Epub 2011 Sep 1.
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Bone marrow stromal cells contribute to bone formation following infusion into femoral cavities of a mouse model of osteogenesis imperfecta.骨髓基质细胞在注入成骨不全症小鼠模型的股腔后有助于骨形成。
Bone. 2010 Sep;47(3):546-55. doi: 10.1016/j.bone.2010.05.040. Epub 2010 Jun 4.
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Guidelines for assessment of bone microstructure in rodents using micro-computed tomography.骨组织形态计量学分析的鼠类骨骼microCT 评估指南
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Potential implications of cell therapy for osteogenesis imperfecta.细胞疗法对成骨不全症的潜在影响。
Int J Clin Rheumtol. 2009 Feb 1;4(1):57-66. doi: 10.2217/17584272.4.1.57.
5
Comparative efficacy of dermal fibroblast-mediated and direct adenoviral bone morphogenetic protein-2 gene therapy for bone regeneration in an equine rib model.真皮成纤维细胞介导与直接腺病毒骨形态发生蛋白-2 基因治疗在马肋模型中骨再生的比较疗效。
Gene Ther. 2010 Jun;17(6):733-44. doi: 10.1038/gt.2010.13. Epub 2010 Mar 11.
6
Dermal fibroblast-mediated BMP2 therapy to accelerate bone healing in an equine osteotomy model.真皮成纤维细胞介导的 BMP2 治疗加速马的截骨模型中的骨愈合。
J Orthop Res. 2010 Mar;28(3):403-11. doi: 10.1002/jor.20978.
7
Foamy and lentiviral vectors transduce canine long-term repopulating cells at similar efficiency.泡沫和慢病毒载体以相似的效率转导犬长期重编程细胞。
Hum Gene Ther. 2009 May;20(5):519-23. doi: 10.1089/hum.2008.170.
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Cell therapy for disorders of bone.用于治疗骨骼疾病的细胞疗法。
Cytotherapy. 2009;11(1):3-17. doi: 10.1080/14653240902753477.
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Restoration of bone mass and strength in glucocorticoid-treated mice by systemic transplantation of CXCR4 and cbfa-1 co-expressing mesenchymal stem cells.通过全身移植共表达CXCR4和Cbfa-1的间充质干细胞恢复糖皮质激素处理小鼠的骨量和骨强度。
J Bone Miner Res. 2009 May;24(5):837-48. doi: 10.1359/jbmr.081257.
10
Ex vivo-transduced autologous skin fibroblasts expressing human Lim mineralization protein-3 efficiently form new bone in animal models.表达人Lim矿化蛋白-3的体外转导自体皮肤成纤维细胞在动物模型中能有效形成新骨。
Gene Ther. 2008 Oct;15(19):1330-43. doi: 10.1038/gt.2008.116. Epub 2008 Jul 17.

自体植入表达骨形态发生蛋白2的真皮成纤维细胞以改善兔长骨的骨矿物质密度和结构。

Autologous implantation of BMP2-expressing dermal fibroblasts to improve bone mineral density and architecture in rabbit long bones.

作者信息

Ishihara Akikazu, Weisbrode Steve E, Bertone Alicia L

机构信息

Department of Veterinary Clinical Sciences, The Ohio State University, Columbus, Ohio.

Department of Veterinary Biosciences, The Ohio State University, Columbus, Ohio.

出版信息

J Orthop Res. 2015 Oct;33(10):1455-65. doi: 10.1002/jor.22791. Epub 2015 Aug 12.

DOI:10.1002/jor.22791
PMID:25418909
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4441610/
Abstract

Cell-mediated gene therapy may treat bone fragility disorders. Dermal fibroblasts (DFb) may be an alternative cell source to stem cells for orthopedic gene therapy because of their rapid cell yield and excellent plasticity with bone morphogenetic protein-2 (BMP2) gene transduction. Autologous DFb or BMP2-expressing autologous DFb were administered in twelve rabbits by two delivery routes; a transcortical intra-medullar infusion into tibiae and delayed intra-osseous injection into femoral drill defects. Both delivery methods of DFb-BMP2 resulted in a successful cell engraftment, increased bone volume, bone mineral density, improved trabecular bone microarchitecture, greater bone defect filling, external callus formation, and trabecular surface area, compared to non-transduced DFb or no cells. Cell engraftment within trabecular bone and bone marrow tissue was most efficiently achieved by intra-osseous injection of DFb-BMP2. Our results suggested that BMP2-expressing autologous DFb have enhanced efficiency of engraftment in target bones resulting in a measurable biologic response by the bone of improved bone mineral density and bone microarchitecture. These results support that autologous implantation of DFb-BMP2 warrants further study on animal models of bone fragility disorders, such as osteogenesis imperfecta and osteoporosis to potentially enhance bone quality, particularly along with other gene modification of these diseases.

摘要

细胞介导的基因治疗可能治疗骨脆性疾病。由于其细胞产量高且在骨形态发生蛋白-2(BMP2)基因转导方面具有出色的可塑性,真皮成纤维细胞(DFb)可能是骨科基因治疗中干细胞的替代细胞来源。通过两种给药途径将自体DFb或表达BMP2的自体DFb给予12只兔子;一种是经皮质骨髓内注入胫骨,另一种是延迟骨内注射到股骨钻孔缺损处。与未转导的DFb或无细胞相比,DFb-BMP2的两种给药方法均成功实现了细胞植入,增加了骨体积、骨矿物质密度,改善了小梁骨微结构,增加了骨缺损填充、骨痂形成和小梁表面积。通过骨内注射DFb-BMP2最有效地实现了小梁骨和骨髓组织内的细胞植入。我们的结果表明,表达BMP2的自体DFb在靶骨中的植入效率提高,导致骨对骨矿物质密度和骨微结构改善的可测量生物学反应。这些结果支持,DFb-BMP2的自体植入值得在骨脆性疾病动物模型(如成骨不全症和骨质疏松症)上进一步研究,以潜在提高骨质量,特别是与这些疾病的其他基因修饰一起。