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Selective deletion of the soluble Colony-Stimulating Factor 1 isoform in vivo prevents estrogen-deficiency bone loss in mice

机译:体内选择性删除可溶性集落刺激因子1同工型可防止小鼠雌激素缺乏性骨丢失

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摘要

Neutralizing CSF1 in vivo completely prevents ovariectomy (OVX)-induced bone loss in mice. There are two isoforms of CSF1, soluble (sCSF1), and membrane-bound (mCSF1), but their individual biological functions are unclear. It had been previously reported that mCSF1 knockout (K/O) and wild type (Wt) female mice experience the same degree of bone loss following OVX. In Wt mice the expression of sCSF1 was elevated fourfold in skeletal tissue following OVX while expression of mCSF1 was unchanged. To examine the role of sCSF1 in OVX-induced bone loss, mice were engineered in which sCSF1 was not expressed but expression of mCSF1 was unaffected (sCSF1 K/O). Isoform-specific reverse transcription PCR confirmed the absence of transcripts for sCSF1 in bone tissue isolated from these animals and no circulating CSF1 was detected by ELISA. Surprisingly, there were no significant differences in bone mineral density (BMD) between sCSF1 K/O mice and Wt controls as assessed by dual-energy X-ray absorptiometry and micro-CT. However, one month after OVX, femoral, spinal and total BMD had declined by 11.2%, 8.9%, and 8.7% respectively in OVX-Wt animals as compared to Sham-OVX. In contrast OVX sCSF1 K/O mice showed changes of +0.1%, −2.4%, and +2.3% at the same 3 sites compared to Sham-OVX sCSF1 K/O mice. These data indicate important non-redundant functions for the two isoforms of CSF1 and suggest that sCSF1, but not mCSF1, plays a key role in estrogen-deficiency bone loss.
机译:体内中和CSF1可完全防止小鼠卵巢切除术(OVX)引起的骨质流失。 CSF1有两种亚型,可溶的(sCSF1)和膜结合的(mCSF1),但是它们各自的生物学功能尚不清楚。先前已有报道,OVC后,mCSF1基因敲除(K / O)和野生型(Wt)雌性小鼠经历相同程度的骨质流失。在Wt小鼠中,OVX后骨骼组织中sCSF1的表达增加了四倍,而mCSF1的表达未改变。为了检查sCSF1在OVX引起的骨质流失中的作用,对小鼠进行了工程改造,使之不表达sCSF1,但不影响mCSF1的表达(sCSF1 K / O)。同工型特异性逆转录PCR证实从这些动物分离的骨组织中不存在sCSF1的转录本,并且通过ELISA未检测到循环的CSF1。出乎意料的是,通过双能X射线吸收法和微型CT评估,sCSF1 K / O小鼠和Wt对照之间的骨矿物质密度(BMD)没有显着差异。然而,与Sham-OVX相比,OVX后一个月,OVX-Wt动物的股骨,脊髓和总BMD分别下降了11.2%,8.9%和8.7%。相反,与Sham-OVX sCSF1 K / O小鼠相比,OVX sCSF1 K / O小鼠在相同的3个位点显示+0.1%,-2.4%和+ 2.3%的变化。这些数据表明,CSF1的两个同工型具有重要的非冗余功能,并且表明sCSF1(而非mCSF1)在雌激素缺乏型骨质流失中起关键作用。

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