成骨生长肽羧基端片段及其衍生物对去卵巢大鼠骨生物力学性能的影响
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国家自然科学基金资助项目(30271530)


Effect of OGP_((10-14)) and its derivatives on bone biomechanical characteristics in ovariectomized rats
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    摘要:

    目的探讨成骨生长肽羧基端片段(OGP10-14)及其衍生物G38I和G38K对去卵巢(OVX)骨质疏松大鼠股骨和腰椎生物力学性能的影响。方法56只3月龄SD雌性大鼠分为7组,1~6组行OVX手术,术后1~3组分别给予观察药物OGP(10-14)、G38I和G38K,4、5组分别给予利塞磷酸钠及阿伦磷酸钠作为治疗对照,6组术后给予安慰剂,7组为假手术组。术后第60天处死,分离股骨行三点弯曲实验,腰椎行压缩实验,检测并分析各组生物力学有关指标。结果OVX术后大鼠腰椎强度极限及最大应变分别下降为假手术组的80%和65%,变化较股骨明显,说明骨质疏松症早期,以松质骨为主的部位受累更加显著。OGP(10-14)及其衍生物治疗后,G38I,G38K组股骨弹性弯曲应力较OVX组显著升高,最大弯曲应力、弹性模量也有升高趋势,但差异无显著性。腰椎强度极限OGP(10-14)组升高达OVX组的1.28倍(P<0.01),与二磷酸盐治疗组近似,弹性模量OGP(10-14)组为OVX组的1.35倍。结论OGP(10-14)及其衍生物治疗后,在一定程度上提高了骨质疏松大鼠骨组织抗冲击、抗压缩的能力,改善了骨生物力学性能。

    Abstract:

    Objective To investigate the effect of OGP(10-14) and its derivatives G38I and G38K on bone biomechanical characteristics of femur and lumbar vertebra in rats with ovariectomy-induced osteoporosis. Methods Fifty-six female Sprague-Dawley rats, three month old, were randomly divided into 7 groups. Rats in group 1 to 6 were bilaterally ovariectomized (OVX) and the others in group 7 were sham-operated. Group 1 to 5 received OGP(10-14), G38I, G38K, residronate and alendronate respectively by subcutaneous injection daily after surgery. Group 6 and 7 received vehicle only. The rats were killed 60 days after operation. The left femora were taken for three-point bending test and the lumbar vertebrae were taken for compression test. The data were derived and analyzed by computer. Results The maximal stress and maximal strain of lumbar vertebra in OVX group were decreased to 80% and 65% respectively compared with the sham group. The changes in spine were more significant than that in femora and implied that cancellous bone was impacted earlier than cortical bone when osteoporosis happened. After the treatment, femoral elasticity bending stress increased significantly in G38I and G38K groups compared with OVX group. Although maximal bending stress and elastic modulus of femora enhanced in treated groups, the differences were not so significant. In OGP(10-14) -treated group, the maximal stress of lumbar vertebra was 1.28-times more than that in OVX group (P<0.01) and was similar to the group with bisphosphonates. The elastic modulus of lumbar vertebra was increased to 1.35-times in OGP(10-14) group compared with OVX group. Conclusion After the treatment with OGP(10-14) and its derivatives, the anti-impact and anti-compression ability of bone were increased in osteoporotic rats while the biomechanics was improved.

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刘虹丽,丁晓颖,邱明才,田桂杰,王德心.成骨生长肽羧基端片段及其衍生物对去卵巢大鼠骨生物力学性能的影响[J].医用生物力学,2005,20(2):81-84

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