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依托泊苷化疗药物对骨骼的影响。

The skeletal impact of the chemotherapeutic agent etoposide.

机构信息

Periodontics and Oral Medicine, School of Dentistry, University of Michigan, Ann Arbor, MI, 48109-1078, USA.

Department of Pathology, School of Medicine, University of Michigan, Ann Arbor, MI, 48109, USA.

出版信息

Osteoporos Int. 2017 Aug;28(8):2321-2333. doi: 10.1007/s00198-017-4032-1. Epub 2017 Apr 20.

Abstract

UNLABELLED

Effects of the chemotherapeutic agent etoposide on the skeleton were determined in mice. Numbers of bone marrow cells were reduced and myeloid cells were increased. Bone volume was significantly decreased with signs of inhibition of bone formation. Etoposide after pre-treatment with zoledronic acid still reduced bone but overall bone volume was higher than with etoposide alone.

INTRODUCTION

Chemotherapeutics target rapidly dividing tumor cells yet also impact hematopoietic and immune cells in an off target manner. A wide array of therapies have negative side effects on the skeleton rendering patients osteopenic and prone to fracture. This study focused on the pro-apoptotic chemotherapeutic agent etoposide and its short- and long-term treatment effects in the bone marrow and skeleton.

METHODS

Six- to 16-week-old mice were treated with etoposide (20-25 mg/kg) or vehicle control in short-term (daily for 5-9 days) or long-term (3×/week for 17 days or 6 weeks) regimens. Bone marrow cell populations and their phagocytic/efferocytic functions were analyzed by flow cytometry. Blood cell populations were assessed by CBC analysis. Bone volume and area compartments and osteoclast numbers were measured by microCT, histomorphometry, and TRAP staining. Biomarkers of bone formation (P1NP) and resorption (TRAcP5b) were assayed from serum. Gene expression in bone marrow was assessed using qPCR.

RESULTS

Flow cytometric analysis of the bone marrow revealed short-term etoposide reduced overall cell numbers and B220 cells, with increased marrow apoptotic (AnnexinVPI) cells, mesenchymal stem-like cells, and CD68, CD45, and CD11b monocyte/myeloid cells (as a percent of the total marrow). After 6 weeks, the CD68, Gr1, CD11b, and CD45 cell populations were still relatively increased in etoposide-treated bone marrow. Skeletal phenotyping revealed etoposide decreased bone volume, trabecular thickness, and cortical bone volume. Gene expression in the marrow for the leptin receptor and CXCL12 were reduced with short-term etoposide, and an increased ratio of RANKL/OPG mRNA was observed. In whole bone, Runx2 and osteocalcin gene expressions were reduced, and in serum, P1NP was significantly reduced with etoposide. Treatment with the antiresorptive agent zoledronic acid prior to etoposide increased bone volume and improved the etoposide-induced decrease in skeletal parameters.

CONCLUSIONS

These data suggest that etoposide induces apoptosis in the bone marrow and significantly reduces parameters of bone formation with rapid reduction in bone volume. Pre-treatment with an antiresorptive agent results in a preservation of bone mass. Preventive approaches to preserving the skeleton should be considered in human clinical studies.

摘要

目的

研究化疗药物依托泊苷对骨骼的影响。

方法

六至十六周龄的小鼠用依托泊苷(20-25mg/kg)或载体对照进行短期(每日 5-9 天)或长期(每周 3 次共 17 天或 6 周)处理。用流式细胞术分析骨髓细胞群及其吞噬/胞吐功能。用 CBC 分析血细胞群。用 microCT、组织形态计量学和 TRAP 染色测量骨体积和面积室及破骨细胞数。用血清测定骨形成标志物(P1NP)和骨吸收标志物(TRAcP5b)。用 qPCR 检测骨髓中的基因表达。

结果

骨髓的流式细胞术分析显示,短期依托泊苷降低了整体细胞数量和 B220 细胞,增加了骨髓凋亡(AnnexinVPI)细胞、间充质干细胞样细胞和 CD68、CD45 和 CD11b 单核/髓样细胞(占总骨髓的百分比)。6 周后,依托泊苷处理的骨髓中 CD68、Gr1、CD11b 和 CD45 细胞群仍相对增加。骨骼表型分析显示依托泊苷减少了骨量、小梁厚度和皮质骨量。骨髓中瘦素受体和 CXCL12 的基因表达随短期依托泊苷减少,RANKL/OPG mRNA 的比值增加。在整个骨中,Runx2 和骨钙素基因表达减少,血清中 P1NP 随依托泊苷显著减少。在依托泊苷之前用抗吸收剂唑来膦酸治疗增加了骨量,并改善了依托泊苷引起的骨骼参数下降。

结论

这些数据表明依托泊苷诱导骨髓细胞凋亡,并显著减少骨形成参数,迅速减少骨量。抗吸收剂的预处理可保留骨量。在人类临床研究中应考虑预防骨骼的方法。

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The skeletal impact of the chemotherapeutic agent etoposide.依托泊苷化疗药物对骨骼的影响。
Osteoporos Int. 2017 Aug;28(8):2321-2333. doi: 10.1007/s00198-017-4032-1. Epub 2017 Apr 20.

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