小鼠骨髓细胞中miR17 ~ 92的过表达通过减少骨吸收和增加骨形成以性别依赖的方式增加骨量。

IF 3.3 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM Calcified Tissue International Pub Date : 2025-01-03 DOI:10.1007/s00223-024-01325-x
Matilda H-C Sheng, Virginia M Stiffel, Jordan Taipia, Charles H Rundle, Kin-Hing William Lau
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引用次数: 0

摘要

本研究通过确定条件性转基因(cTG)miR17 ~ 92在骨髓细胞中的过表达对骨和破骨细胞的影响,评估了基于miR17 ~ 92的抗骨吸收策略的可行性。与年龄和性别匹配的野生型(WT)小鼠相比,雄性和雌性cTG突变体小鼠的破骨细胞均显示出3至5倍的miR17 ~ 92簇基因过表达。雄性(而非雌性)cTG突变小鼠的骨小梁和皮质骨更多,骨吸收率更低,这反映在破骨细胞数量和吸收表面的减少上。雄性而非雌性 cTG 突变体的破骨细胞显示出骨吸收活性降低。与破骨细胞成熟受到抑制相一致的是,雄性 cTG 突变体的破骨细胞更小、细胞核更少、与破骨细胞分化和融合相关的基因的 mRNA 水平降低,并形成了更多弥散的肌动蛋白环。破骨细胞过表达 miR17 ~ 92 也会增加骨形成,但雄性突变体的增加幅度远大于雌性突变体。雄性突变体骨形成增加是由于矿物质沉积率增加,反之,雌性突变体骨形成表面增加是由于矿物质沉积率增加。总之,miR17 ~ 92 的破骨细胞过表达通过减少骨吸收和增加骨形成,以男性特异性的方式增加了骨量。虽然破骨细胞过表达 miR17 ~ 92 引起的骨吸收抑制和骨形成增加支持了基于 miR17 ~ 92 的抗骨质吸收策略的可行性,但男性特异性骨骼对破骨细胞过表达 miR17 ~ 92 的反应差异可能会限制其临床应用,因为它可能不适用于绝经后骨质疏松症女性患者。
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Overexpression of miR17 ~ 92 in Myeloid Cells in Mice Increased Bone Mass Through Reduced Bone Resorption and Increased Bone Formation in Sex-Dependent Manner.

This study assessed the feasibility of miR17 ~ 92-based antiresorptive strategy by determining the effects of conditional transgenic (cTG) overexpression of miR17 ~ 92 in myeloid cells on bone and osteoclasts. Osteoclasts of male and female cTG mutant mice each showed 3- to fivefold overexpression of miR17 ~ 92 cluster genes compared to those of age- and sex-matched wildtype (WT) littermates. Male but not female cTG mutant mice had more trabecular and cortical bones as well as lower bone resorption reflected by reduction in osteoclast number and resorbing surface. Osteoclasts of male but not female cTG mutants showed decreased bone resorption activity. Consistent with suppression of osteoclast maturation, osteoclasts of male cTG mutants were smaller, contained less nuclei, showed reduced levels of mRNA of genes associated with osteoclast differentiation and fusion, and formed more diffused actin ring. Osteoclastic overexpression of miR17 ~ 92 also increased bone formation, but the increase was much larger in males than in females. The increase in male mutants was due to higher mineral apposition rate, and conversely, it was caused by increasing bone-forming surface in female mutants. In summary, osteoclastic overexpression of miR17 ~ 92 increased bone mass through reduction in bone resorption along with coupled increase in bone formation in male-specific manner. Although the osteoclastic overexpression of miR17 ~ 92-induced suppression of bone resorption and increases in bone formation support the feasibility of miR17 ~ 92-based antiresorptive strategies, the male-specific sexual disparity in skeletal responses to osteoclastic overexpression of miR17 ~ 92 could limit its clinical utility as it may not be used in women with postmenopausal osteoporosis.

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来源期刊
Calcified Tissue International
Calcified Tissue International 医学-内分泌学与代谢
CiteScore
8.00
自引率
2.40%
发文量
112
审稿时长
4-8 weeks
期刊介绍: Calcified Tissue International and Musculoskeletal Research publishes original research and reviews concerning the structure and function of bone, and other musculoskeletal tissues in living organisms and clinical studies of musculoskeletal disease. It includes studies of cell biology, molecular biology, intracellular signalling, and physiology, as well as research into the hormones, cytokines and other mediators that influence the musculoskeletal system. The journal also publishes clinical studies of relevance to bone disease, mineral metabolism, muscle function, and musculoskeletal interactions.
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