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在晚期实验性肾功能不全中,司维拉姆结合磷酸盐可在酸中毒情况下维持骨骼的机械性能。

Phosphate Binding with Sevelamer Preserves Mechanical Competence of Bone Despite Acidosis in Advanced Experimental Renal Insufficiency.

作者信息

Jokihaara Jarkko, Pörsti Ilkka H, Sievänen Harri, Kööbi Peeter, Kannus Pekka, Niemelä Onni, Turner Russell T, Iwaniec Urszula T, Järvinen Teppo L N

机构信息

Department of Hand and Microsurgery, Tampere University Hospital, Tampere, Finland.

Center for Hip Health and Mobility, Department of Orthopaedics, University of British Columbia, Vancouver, BC, Canada.

出版信息

PLoS One. 2016 Sep 22;11(9):e0163022. doi: 10.1371/journal.pone.0163022. eCollection 2016.

Abstract

INTRODUCTION

Phosphate binding with sevelamer can ameliorate detrimental histomorphometric changes of bone in chronic renal insufficiency (CRI). Here we explored the effects of sevelamer-HCl treatment on bone strength and structure in experimental CRI.

METHODS

Forty-eight 8-week-old rats were assigned to surgical 5/6 nephrectomy (CRI) or renal decapsulation (Sham). After 14 weeks of disease progression, the rats were allocated to untreated and sevelamer-treated (3% in chow) groups for 9 weeks. Then the animals were sacrificed, plasma samples collected, and femora excised for structural analysis (biomechanical testing, quantitative computed tomography).

RESULTS

Sevelamer-HCl significantly reduced blood pH, and final creatinine clearance in the CRI groups ranged 30%-50% of that in the Sham group. Final plasma phosphate increased 2.4- to 2.9-fold, and parathyroid hormone 13- to 21-fold in CRI rats, with no difference between sevelamer-treated and untreated animals. In the femoral midshaft, CRI reduced cortical bone mineral density (-3%) and breaking load (-15%) (p<0.05 for all versus Sham), while sevelamer increased bone mineral density (+2%) and prevented the deleterious changes in bone. In the femoral neck, CRI reduced bone mineral density (-11%) and breaking load (-10%), while sevelamer prevented the decrease in bone mineral density (+6%) so that breaking load did not differ from controls.

CONCLUSIONS

In this model of stage 3-4 CRI, sevelamer-HCl treatment ameliorated the decreases in femoral midshaft and neck mineral density, and restored bone strength despite prevailing acidosis. Therefore, treatment with sevelamer can efficiently preserve mechanical competence of bone in CRI.

摘要

引言

司维拉姆结合磷酸盐可改善慢性肾功能不全(CRI)患者骨骼有害的组织形态学变化。在此,我们探讨了盐酸司维拉姆治疗对实验性CRI大鼠骨强度和结构的影响。

方法

将48只8周龄大鼠分为手术切除5/6肾(CRI)组或肾被膜剥除术(假手术)组。疾病进展14周后,将大鼠分为未治疗组和司维拉姆治疗组(饲料中含3%),持续9周。然后处死动物,采集血浆样本,并切除股骨进行结构分析(生物力学测试、定量计算机断层扫描)。

结果

盐酸司维拉姆显著降低了血液pH值,CRI组的最终肌酐清除率为假手术组的30%-50%。CRI大鼠的最终血浆磷酸盐增加了2.4至2.9倍,甲状旁腺激素增加了13至21倍,司维拉姆治疗组和未治疗组动物之间无差异。在股骨干中部,CRI降低了皮质骨矿物质密度(-3%)和破坏负荷(-15%)(与假手术组相比,所有p<0.05),而司维拉姆增加了骨矿物质密度(+2%)并防止了骨骼的有害变化。在股骨颈,CRI降低了骨矿物质密度(-11%)和破坏负荷(-10%),而司维拉姆防止了骨矿物质密度的降低(+6%),因此破坏负荷与对照组无差异。

结论

在这个3-4期CRI模型中,盐酸司维拉姆治疗改善了股骨干中部和颈部矿物质密度的降低,并在存在酸中毒的情况下恢复了骨强度。因此,司维拉姆治疗可有效维持CRI患者骨骼的机械性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/834b/5033583/2b267e84a1d5/pone.0163022.g001.jpg

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