首页> 外文期刊>American Journal of Pathology >Septoclast Deficiency Accompanies Postnatal Growth Plate Chondrodysplasia in the Toothless (tl) Osteopetrotic, Colony-Stimulating Factor-1 (CSF-1)-Deficient Rat and Is Partially Responsive to CSF-1 Injections
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Septoclast Deficiency Accompanies Postnatal Growth Plate Chondrodysplasia in the Toothless (tl) Osteopetrotic, Colony-Stimulating Factor-1 (CSF-1)-Deficient Rat and Is Partially Responsive to CSF-1 Injections

机译:Septoclast缺乏症伴随无齿(tl)骨质,集落刺激因子1(CSF-1)缺乏症大鼠的产后生长板软骨发育不良,对CSF-1注射有部分反应

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摘要

The septoclast is a specialized, cathepsin B-rich, perivascular cell type that accompanies invading capillaries on the metaphyseal side of the growth plate during endochondral bone growth. The putative role of septoclasts is to break down the terminal transverse septum of growth plate cartilage and permit capillaries to bud into the lower hypertrophic zone. This process fails in osteoclast-deficient, osteopetrotic animal models, resulting in a progressive growth plate dysplasia. The toothless rat is severely osteopetrotic because of a frameshift mutation in the colony-stimulating factor-1 (CSF-1) gene (Csf1tl). Whereas CSF-1 injections quickly restore endosteal osteoclast populations, they do not improve the chondrodysplasia. We therefore investigated septoclast populations in Csf1tl/Csf1tl rats and wild-type littermates, with and without CSF-1 treatment, at 2 weeks, before the dysplasia is pronounced, and at 4 weeks, by which time it is severe. Tibial sections were immunolabeled for cathepsin B and septoclasts were counted. Csf1tl/Csf1tl mutants had significant reductions in septoclasts at both times, although they were more pronounced at 4 weeks. CSF-1 injections increased counts in wild-type and mutant animals at both times, restoring mutants to normal levels at 2 weeks. In all of the mutants, septoclasts seemed misoriented and had abnormal ultrastructure. We conclude that CSF-1 promotes angiogenesis at the chondroosseous junction, but that, in Csf1tl/Csf1tl rats, septoclasts are unable to direct their degradative activity appropriately, implying a capillary guidance role for locally supplied CSF-1.
机译:septoclast是一种特殊的,富含组织蛋白酶B的血管周 细胞类型,在软骨内骨生长过程中伴随着生长板干phy端 侧的毛细血管侵入。破骨细胞的 的主要作用是分解生长板软骨的末端横生 隔,并使毛细血管发芽进入下部肥厚区。此过程在破骨细胞缺乏的 骨质疏松动物模型中失败,导致进行性生长 板块发育不良。由于集落刺激因子-1 (CSF-1)基因(Csf1 tl )发生移码突变,无牙大鼠严重骨化 。尽管CSF-1注射可以快速恢复 内膜破骨细胞群,但它们并不能改善软骨发育不良。 因此,我们调查了Csf1 tl / Csf1 < sup> tl 大鼠和野生型同窝幼仔,有或没有CSF-1治疗, 在不典型增生前2周和第4周, 哪个时间比较严重。对胫骨切片进行组织蛋白酶B的免疫标记 并计数破骨细胞。 Csf1 tl / Csf1 tl 突变体在两次破骨细胞中均具有明显的破骨细胞减少, 尽管在4岁时更为明显周。 CSF-1注射 在两次野生动物和突变动物中均增加, 在2周时恢复突变至正常水平。在所有的 突变体中,破骨细胞似乎取向错误并且具有异常的超微结构。 我们得出结论,CSF-1促进了软骨 连接处的血管生成,但是,在Csf1 tl / Csf1 tl 大鼠中,破骨细胞不能 适当地指导其降解活性,这意味着 毛细血管本地提供的CSF-1的指导角色。

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  • 来源
    《American Journal of Pathology》 |2009年第6期|2668-2675|共8页
  • 作者单位

    From the Departments of Cell Biology,University of Massachusetts Medical School, Worcester, Massachusetts;

    From the Departments of Cell Biology,University of Massachusetts Medical School, Worcester, Massachusetts|and Orthopedics,University of Massachusetts Medical School, Worcester, Massachusetts;

    From the Departments of Cell Biology,University of Massachusetts Medical School, Worcester, Massachusetts;

    From the Departments of Cell Biology,University of Massachusetts Medical School, Worcester, Massachusetts;

    and the Department of Biology,Merrimack College, North Andover, Massachusetts;

    From the Departments of Cell Biology,University of Massachusetts Medical School, Worcester, Massachusetts;

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