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Osteoporosis Treatments Affect Bone Matrix Maturation in a Rat Model of Induced Cortical Remodeling

机译:骨质疏松症治疗对诱导的皮质重塑大鼠模型中骨基质成熟的影响

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To test how osteoporosis drugs affect bone matrix maturation during cortical bone remodeling, 72 pregnant rats were switched from a 0.4% to a 0.01% calcium diet at parturition for a 23‐day lactation period. At weaning, eight dams were sacrificed to establish baseline values, while the remaining dams were returned to 0.4% calcium and treated with vehicle (saline), sodium fluoride (NaF), zoledronic acid (ZA), or sclerostin antibody (Scl‐Ab) for either 7 or 28 days (eight animals per group per time point). Femora were examined by μCT, dynamic histomorphometry, Fourier transform infrared imaging, and three‐point bending of notched specimens. Cortical porosity decreased in all groups from baseline to day 28. Intracortical mineralizing surface (MS/BS) and mineral apposition rate (MAR), as well as the mineral‐to‐matrix ratio were unaffected by treatment, but intracortical crystallinity was increased in the ZA group at day 10 compared with vehicle. Cortical area increased in all groups over 28 days mainly because of an addition of bone at the endocortical surface. Endocortical MS/BS did not vary among the groups, but endocortical MAR was suppressed in the NaF group at day 2 and elevated in the Scl‐Ab group at day 4 compared with vehicle. Endocortical mineral‐to‐matrix ratio was increased at days 5 and 10 following NaF treatment and endocortical crystallinity was increased at day 5 following ZA treatment compared with vehicle. Fracture toughness did not differ among the groups. Thus, the treatments affected matrix maturation more strongly at the endocortical then intracortical envelope. In this model of induced remodeling, the bone formation phase is synchronized at multiple sites, facilitating study of the effects of drugs or other bone‐targeting agents on matrix maturation independent of their effects on the initiation of remodeling. © 2020 The Authors. published by Wiley Periodicals, Inc. on behalf of American Society for Bone and Mineral Research.
机译:为了测试骨质疏松药物如何影响皮质骨重塑期间的骨基质成熟,将72只妊娠大鼠在分娩时从0.4%的钙饮食转换为0.01%的钙饮食,持续了23天的泌乳期。断奶时,将八个水坝处死以建立基线值,而其余的水坝则恢复至0.4%的钙水平,并用溶媒(盐水),氟化钠(NaF),唑来膦酸(ZA)或硬化蛋白抗体(Scl-Ab)处理7天或28天(每组每个时间点八只动物)。通过μCT,动态组织形态学,傅立叶变换红外成像以及带缺口的标本进行三点弯曲检查股骨。从基线到第28天,所有组的皮质孔隙率均降低。皮质内矿化表面(MS / BS)和矿物沉积率(MAR)以及矿物质与基质的比率不受处理的影响,但皮质内的结晶度在处理后增加。 ZA组在第10天与车辆相比。所有组的皮质面积在28天之内都有所增加,这主要是由于皮质内表面增加了骨骼。各组的内膜MS / BS值均无差异,但与媒介物相比,NaF组在第2天的皮质内MAR受到抑制,在Scl-Ab组的第4天升高。与媒介物相比,NaF处理后第5天和第10天,皮质内矿物质与基质的比率增加,而ZA处理后第5天,皮质内结晶度增加。各组之间的断裂韧性没有差异。因此,治疗在皮质内包膜比皮质内包膜更强烈地影响基质成熟。在这种诱导重塑模型中,骨形成阶段在多个位置同步,从而有助于研究药物或其他骨靶向剂对基质成熟的影响,而与它们对重塑开始的影响无关。 ©2020作者。由Wiley Periodicals,Inc.代表美国骨骼和矿物质研究学会出版。

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