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The 18 kDa Translocator Protein (Peripheral Benzodiazepine Receptor) Expression in the Bone of Normal, Osteoprotegerin or Low Calcium Diet Treated Mice

机译:正常,骨保护素或低钙饮食治疗的小鼠的骨骼中18 kDa转运蛋白(外周苯二氮卓受体)的表达

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摘要

The presence of the translocator protein (TSPO), previously named as the mitochondrial or peripheral benzodiazepine receptor, in bone cells was studied in vitro and in situ using RT-qPCR, and receptor autoradiography using the selective TSPO ligand PK11195. In vitro, the TSPO is highly expressed in osteoblastic and osteoclastic cells. In situ, constitutive expression of TSPO is found in bone marrow and trabecular bone, e.g., spongiosa. Mice with a reduction of bone turnover induced by a 4-day treatment of osteoprotegerin reduces [3H]PK11195 binding in the spongiosa (320±128 Bq.mg−1, 499±106 Bq.mg−1 in saline-treated controls). In contrast, mice with an increase in bone turnover caused by a 4-day low calcium diet increases [3H]PK11195 binding in the spongiosa (615±90 Bq.mg−1).Further, our study includes technical feasibility data on [18F]fluoride microPET imaging of rodent bone with altered turnover. Despite [18F]fluoride having high uptake, the in vivo signal differences were small. Using a phantom model, we describe the spillover effect and partial volume loss that affect the quantitative microPET imaging of the small bone structures in experimental mouse models.In summary, we demonstrate the expression of TSPO in small rodent bone tissues, including osteoblasts and osteoclasts. A trend increase in TSPO expression was observed in the spongiosa from low to high bone turnover conditions. However, despite the potential utility of TSPO expression as an in vivo biomarker of bone turnover in experimental rodent models, our small animal PET imaging data using [18F]fluoride show that even under the condition of a good biological signal-to-noise ratio and high tracer uptake, the currently achievable instrument sensitivity and spatial resolution is unlikely to be sufficient to detect subtle differences in small structures, such as mouse bone.
机译:使用RT-qPCR在体外和原位研究骨细胞中易位蛋白(TSPO)(以前称为线粒体或周围苯并二氮杂receptor受体)的存在,并使用选择性TSPO配体PK11195对受体进行放射自显影。在体外,TSPO在成骨细胞和破骨细胞中高表达。在骨髓和小梁骨,例如海绵体内,原位发现TSPO的组成型表达。经过4天的骨保护素治疗而导致骨转换减少的小鼠减少了海绵体内的[ 3 H] PK11195结合(320±128 Bq.mg -1 ,在盐水处理的对照组中为499±106 Bq.mg -1 。相比之下,低钙饮食4天导致骨转换增加的小鼠增加了海绵体内[ 3 H] PK11195的结合(615±90 Bq.mg -1 18 F]氟化物microPET成像的啮齿类动物营业额发生变化的技术可行性数据。尽管[ 18 F]氟化物具有很高的摄取量,但体内信号差异却很小。使用幻影模型,我们描述了影响实验小鼠模型中小骨骼定量microPET成像的溢出效应和部分体积损失。总之,我们证明了TSPO在啮齿动物小骨组织(包括成骨细胞和破骨细胞)中的表达。从低到高骨转换条件,在海绵体内观察到TSPO表达的趋势增加。然而,尽管在实验性啮齿动物模型中,TSPO表达作为骨转换的体内生物标志物具有潜在的用途,但我们使用[ 18 F]氟化物的小动物PET成像数据显示,即使在良好的条件下由于生物学信噪比和高示踪剂摄取,目前可实现的仪器灵敏度和空间分辨率不可能足以检测小结构(如小鼠骨骼)中的细微差别。

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