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异位骨植入物引发的细胞与胫骨破骨细胞的形态学和组织化学比较。

Morphological and histochemical comparison of the cells elicited by ectopic bone implants and tibial osteoclasts.

作者信息

Kelly J D, Schneider G B

机构信息

Department of Cell Biology, Neurobiology and Anatomy, Loyola University of Chicago, Stritch School of Medicine, Maywood, Illinois 60153.

出版信息

Am J Anat. 1991 Sep;192(1):45-54. doi: 10.1002/aja.1001920106.

Abstract

Pellets of mineralized and demineralized bone and a composite mixture of mineralized and demineralized, devitalized bone particles were implanted subcutaneously on the dorsal body wall of young adult rats. Two weeks post-implantation, the pellets were removed and processed for histochemical and morphological analyses. Rat proximal tibia was also processed for evaluation. The levels of tartrate-resistant acid phosphatase (TRAP) activity in the multinucleated giant cells (MNGCs) from each of the three implants and from osteoclasts were assessed using an image analyzer. The osteoclasts from the proximal tibia and the majority of MNGCs from the demineralized implants demonstrated high levels of TRAP activity. MNGCs from the mineralized implants showed either a low level or absence of TRAP activity. Most MNGCs from the composite implants exhibited a low level of TRAP activity; however, there was a population of cells that demonstrated a high level of reaction product, similar to that seen in the tibia and demineralized implant. Morphologically, osteoclasts from the proximal tibia and from the osteogenic demineralized implant exhibited ruffled borders. A small population of MNGCs from the composite implant also revealed osteoclastic features. In summary, MNGCs from the mineralized implant did not exhibit a level of TRAP reaction product or morphology similar to osteoclasts, while the majority of cells from the demineralized implant and a subpopulation of the MNGCs elicited by the composite implant did demonstrate TRAP expression and morphology similar to osteoclasts. The expression of osteoclastic characteristics in cells at an ectopic site may be dependent on accessory signals from the skeletal microenvironment; such signals appear to be absent from or incomplete in the mineralized implants but appear to be present when demineralized bone particles are implanted.

摘要

将矿化和脱矿骨颗粒以及矿化、脱矿、失活骨颗粒的复合混合物皮下植入成年幼鼠的背部体壁。植入后两周,取出颗粒并进行组织化学和形态学分析。对大鼠近端胫骨也进行处理以进行评估。使用图像分析仪评估来自三种植入物中的每一种以及破骨细胞的多核巨细胞(MNGC)中抗酒石酸酸性磷酸酶(TRAP)活性水平。来自近端胫骨的破骨细胞和来自脱矿植入物的大多数MNGC显示出高水平的TRAP活性。来自矿化植入物的MNGC显示出低水平或无TRAP活性。来自复合植入物的大多数MNGC表现出低水平的TRAP活性;然而,有一群细胞表现出高水平的反应产物,类似于在胫骨和脱矿植入物中看到的情况。形态学上,来自近端胫骨和成骨脱矿植入物的破骨细胞表现出褶皱边缘。来自复合植入物的一小部分MNGC也显示出破骨细胞特征。总之,来自矿化植入物的MNGC未表现出与破骨细胞相似的TRAP反应产物水平或形态,而来自脱矿植入物的大多数细胞以及复合植入物引发的MNGC亚群确实表现出与破骨细胞相似的TRAP表达和形态。异位部位细胞中破骨细胞特征的表达可能依赖于来自骨骼微环境的辅助信号;矿化植入物中似乎不存在或不完整这种信号,但当植入脱矿骨颗粒时似乎存在。

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