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继发性哈弗斯系统发育过程中破骨细胞及其细胞核的动力学

Kinetics of osteoclasts and their nuclei in evolving secondary Haversian systems.

作者信息

Jaworski Z F, Duck B, Sekaly G

出版信息

J Anat. 1981 Oct;133(Pt 3):397-405.

PMID:7328046
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1167611/
Abstract

A study of osteoclast and osteoclast nuclear population kinetics within evolving secondary osteons was undertaken in young adult Beagle dogs. Autoradiographs of serial longitudinal rib biopsy sections taken from 1 hour to 15 days after tritiated thymidine injection were analysed as to the time and the rate of appearance of the labelled nuclei within the osteoclasts and their nuclei. Such systems contained an average of nine osteoclasts, each containing an average of nine nuclei. Labelled osteoclast nuclei first appeared within 24 hours, peaked at 10% at 4 days, and declined to 1% or less after 11.5 days more. Thus, the entry rate of new nuclei into (and their exit from) the population of osteoclast nuclei under steady state conditions approximates 8% per day. Therefore, the total mononuclear osteoclast population may be viewed as divided into functional units, i.e. osteoclasts. From the ratio of the osteoclast nuclei in the cutting cone to the number of osteoblasts in the closing cone (as well as from their rates of resorption and formation), it was deduced that the osteoclast per nucleus is approximately 20-40 times more efficient than the osteoblast. Because of the intrinsically different efficiencies and life spans of these two cell types, the rates of resorption and formation within evolving Haversian systems and the amounts of bone ultimately resorbed and formed by the system, are determined by the rate and duration of the respective precursor cell proliferation. It is at this level that factors which control the bone remodelling and balance must operate.

摘要

对成年比格犬发育中的继发性骨单位内破骨细胞及其细胞核群体动力学进行了研究。分析了从注射氚标记胸腺嘧啶核苷后1小时至15天获取的系列纵向肋骨活检切片的放射自显影片,以确定破骨细胞及其细胞核内标记细胞核出现的时间和速率。此类系统平均含有9个破骨细胞,每个破骨细胞平均含有9个细胞核。标记的破骨细胞核在24小时内首次出现,在第4天达到峰值10%,11.5天后降至1%或更低。因此,在稳态条件下,新细胞核进入(及离开)破骨细胞核群体的速率约为每天8%。因此,单核破骨细胞总数可视为分为功能单位,即破骨细胞。从切割锥中破骨细胞核与闭合锥中成骨细胞数量的比例(以及它们的吸收和形成速率)推断,每个细胞核的破骨细胞效率比成骨细胞高约20 - 40倍。由于这两种细胞类型的内在效率和寿命不同,发育中的哈弗斯系统内的吸收和形成速率以及该系统最终吸收和形成的骨量,由各自前体细胞增殖的速率和持续时间决定。正是在这个层面上,控制骨重塑和平衡的因素必须发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ba/1167611/72b6ca47338a/janat00223-0080-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ba/1167611/0be8f2bc3d18/janat00223-0077-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ba/1167611/72b6ca47338a/janat00223-0080-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ba/1167611/0be8f2bc3d18/janat00223-0077-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ba/1167611/72b6ca47338a/janat00223-0080-a.jpg

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