山东大学学报(医学版) ›› 2015, Vol. 53 ›› Issue (2): 22-26.doi: 10.6040/j.issn.1671-7554.0.2014.732
李尚志, 刘海春, 武文亮, 曹聪, 陈允震
LI Shangzhi, LIU Haichun, WU Wenliang, CAO Cong, CHEN Yunzhen
摘要: 目的 观察机械应力作用下促进大鼠骨不连愈合的效果,为机械应力促进骨不连断端骨折愈合提供分子水平的理论依据.方法 选取6月龄雌性SD大鼠,采用自制的可调式外固定架建造大鼠骨不连模型,并通过骨不连断端影像学评分,确定骨不连模型的建立.待模型建成后,随机分为实验组和对照组,每组30只,其中实验组骨折断端加压,对照组骨折断端不作处理,进一步对断端影像学和组织学钙钴法染色、成骨因子(BMP、VEGF)扩增检测.结果 实验组加压12周后,影像学评分较同组4、8周及对照组差异有统计学意义(P<0.05).钙钴法显示,在不同时间点实验组骨不连断端成骨细胞数量明显增多,与对照组相比差异有统计学意义(P<0.05).实验组BMP、VEGF在不同时期的基因扩增明显高于对照组(P<0.05).结论 机械应力能有效促进骨不连断端成骨细胞数量的增多及成骨因子的扩增,并有效促进骨不连断端的愈合.
中图分类号:
| [1] Borrelli J Jr, Prickett WD, Ricci WM. Treatment of non-unions and osseous defects with bone graft and calcium sulfate[J]. Clin Orthop Relat Res, 2003, Jun:(411):245-254. [2] Cypher TJ, Grossman JP. Biological principles of bone graft healing[J]. J Foot Ankle Surg, 1996, 35(5):413-417. [3] Murnaghan M, Li G, Marsh DR. Nonsteroidal Antiinflammatory drug-induced fracture nonunion: an inhibition of angiogenesis[J]. J Bone Joint Surg Am, 2006, 88(Suppl 3):140-147. [4] Thiel M. Application of shock waves in medicine[J]. Clin Orthop, 2007, 387:18-21. [5] Chen YJ, Warts T, Wang CJ, et al. Recruitment of mesenchymal stem cells and expression of TGF-beta 1 and VEGF in the early stage of shock wave-promoted bone regeneration of segmental defect in rats[J]. J Orthop Res, 2006 , 22(3):526-534. [6] Kido S, Kuriwaka KR, Imamura T, et al. Mechanical stress induces interleukin-1 expression to stimulate osteoblast differentiation[J]. Bone, 2009, 45(6):1125-1132. [7] Mavcic B, Antolic V. Optimal mechanical environment of the healing bone fracture/osteotomy[J]. Int Orthop, 2012, 36(4):689-695. [8] 田林强, 郭风劲, 虞姬哲, 等. 动态压应力促进大鼠成骨细胞成熟分化的基因水平研究[J]. 中华物理医学与康复杂志, 2012, 34(3):181. TIAN linqiang, GUO Fengjin, YU jizhe, et al. A genetic study of dynamic compressive stress promoting proliferation and differentiation of rat osteoblasts[J]. Chin J Phys Med Rehabil, 2012, 34(3):181. [9] Rentz JA, Chapman B, Alvarez PJ,et al. Stimulation of hybrid poplar growth in petroleum-contaminated soils through oxygen addition and soil nutrient amendments[J]. Int J Phytoremediation, 2003, 5(1):57-72. [10] Lin H, Aubin CE, Parent S, et al. Recent advances in mechanobiological modeling of bone regeneration[J]. Mechanics Research Communications, 2012, 42:22-31. [11] Moutsatsos IK, Turgeman G, Zhou S, et al. Exogenously regulated stem cell-mediated gene therapy for bone regeneration[J]. Mol Ther, 2001, 3(4):449-461. [12] Langenfeld EM, Langenfeld J. Bone morphogenetic protein-2 stimulates angiogenesis in developing tumors[J]. Mol Cancer Res, 2004, 2(3):141-149. [13] Deckers MM, Vail Bezooijen RL, van der Horst G, et al. Bone morphogenetic proteins stimulate angiogenesis through osteoblast-derived vascular endothelial growth factor A[J]. Endocrinology, 2002, 143(4):1545-1553. [14] Barron MJ, Tsai CJ, Donahue SW. Mechanical stimulation mediates gene expression in MC3T3 osteoblastic cells differently in 2D and 3D environments[J]. J Biomech Eng, 2010, 132(4):041005. doi: 10.1115/1.4001162. [15] Groothuis A, Duda GN, Wilson CJ, et al. Mechanical stimulation of the pro-angiogenic capacity of human fracture haematoma: involvement of VEGF mechano-regulation[J]. Bone, 2010, 47(2):438-444. [16] Foo T, Reagan J, Watson JT, et al. External fixation of femoral defects in athymic rats: Applications for human stem cell implantation and bone regeneration[J]. Journal of tissue engineering, 2013, 4: 2041731413486368.doi:10.1177/2041731413486368, Print 2013. [17] Seamon J, Wang X, Cui F, et al. Adenoviral delivery of the VEGF and BMP-6 genes to rat mesenchymal stem cells potentiates osteogenesis[J]. Bone Marrow Res, 2013; 2013:737580. doi:10.1155/2013/737580. |
| [1] | 林锦秀,李晔,尹德超,王鲲鹏,谭宝利. 基于CT三维成像的难复性股骨粗隆间骨折分型与治疗[J]. 山东大学学报 (医学版), 2025, 63(12): 61-73. |
| [2] | 张迪,聂辰宇,刘继东,侯新国,陈丽. 常染色体显性遗传骨硬化症Ⅱ型的2例家系报道及文献复习[J]. 山东大学学报 (医学版), 2024, 62(6): 82-90. |
| [3] | 张杨,李晓旭. 加速康复外科理念在骨折治疗中的研究进展[J]. 山东大学学报 (医学版), 2024, 62(10): 18-25. |
| [4] | 唐宁,黄晓莉,宋桂花. 老年髋部骨折手术患者营养管理研究进展[J]. 山东大学学报 (医学版), 2024, 62(10): 42-47. |
| [5] | 张明慧,王丽云,王芸,张新月,沙凯辉. 髋部骨折患者术后恐动症风险的列线图分析[J]. 山东大学学报 (医学版), 2023, 61(11): 74-81. |
| [6] | 林均馨,刘玉江,刘培来,万连平,张鹏,杜建春,刘泽淼,孔杰,高升焘. 固定平台单髁术后胫骨假体周围骨折2例[J]. 山东大学学报 (医学版), 2022, 60(3): 96-99. |
| [7] | 田吉光,王志勇,程林,桑锡光. 一种新式骨盆及髋臼通道螺钉的置钉方法[J]. 山东大学学报 (医学版), 2022, 60(10): 17-26. |
| [8] | 刘华水,段升军,赵国辉,张朕,朱礼明,王学光,贾逢爽,刘士懂,刘珉岑,李明,陈华. 骨科手术机器人辅助微创治疗骨盆环损伤108例临床分析[J]. 山东大学学报 (医学版), 2019, 57(11): 52-59. |
| [9] | 林锦秀,孙东升,郑潇,付开封,李晔,尹德超. 老年股骨粗隆间骨折围手术期静脉应用蔗糖铁的有效性及安全性[J]. 山东大学学报 (医学版), 2018, 56(1): 86-89. |
| [10] | 刘华水,段升军,贾逢爽,刘士懂,陈华,王业本,贾堂宏,赵国辉,朱礼明,刘珉岑. TiRobot机器人辅助经皮空心螺钉内固定治疗不稳定型骨盆骨折[J]. 山东大学学报(医学版), 2017, 55(7): 103-109. |
| [11] | 刘华水,段升军,刘士懂,贾堂宏,贾逢爽. Stoppa入路手术治疗骨盆前环骨折合并后尿道断裂[J]. 山东大学学报(医学版), 2016, 54(8): 88-91. |
| [12] | 宋轲,刘寰,武文亮,刘海春,李尚志,陈允震. 骨髓间充质干细胞、血小板凝胶和体外冲击波联合应用治疗骨不连[J]. 山东大学学报(医学版), 2016, 54(6): 1-6. |
| [13] | 张振伟,范晓艳,张云华,蒋仲敏. 持续胸椎旁神经阻滞在多发肋骨骨折镇痛方面的应用[J]. 山东大学学报(医学版), 2016, 54(6): 39-42. |
| [14] | 刘涛,鲍飞龙,高伟,亢世杰,吕夫新,胡义明. 肘关节内翻后内侧旋转不稳的手术疗效[J]. 山东大学学报(医学版), 2016, 54(12): 41-45. |
| [15] | 孙祥耀,海涌,张希诺. 经皮内固定术与传统后路开放内固定术治疗胸腰椎骨折不良事件比较的Meta分析[J]. 山东大学学报(医学版), 2016, 54(11): 56-63. |
|
||