Chinzei Nobuaki, Hayashi Shinya, Hashimoto Shingo, Kanzaki Noriyuki, Iwasa Kenjiro, Sakata Shuhei, Kihara Shinsuke, Fujishiro Takaaki, Kuroda Ryosuke, Kurosaka Masahiro
Department of Orthopedic Surgery, Kobe University Graduate School of Medicine, Kobe, Hyogo 650‑0017, Japan.
Mol Med Rep. 2015 Mar;11(3):1601-8. doi: 10.3892/mmr.2014.2889. Epub 2014 Nov 6.
Endochondral ossification at the growth plate is regulated by a number of factors and hormones. The cyclin‑dependent kinase inhibitor p21 has been identified as a cell cycle regulator and its expression has been reported to be essential for endochondral ossification in vitro. However, to the best of our knowledge, the function of p21 in endochondral ossification has not been evaluated in vivo. Therefore, the aim of this study was to investigate the function of p21 in embryonic endochondral ossification in vivo. Wild‑type (WT) and p21 knockout (KO) pregnant heterozygous mice were sacrificed on embryonic days E13.5, E15.5 and E18.5. Sagittal histological sections of the forearms of the embryos were collected and stained with Safranin O and 5‑bromo‑2'‑deoxyuridine (BrdU). Additionally, the expression levels of cyclin D1, type II collagen, type X collagen, Sox9, and p16 were examined using immunohistochemistry, and the expression levels of p27 were examined using immunofluorescence. Safranin O staining revealed no structural change between the cartilage tissues of the WT and p21KO mice at any time point. Type II collagen was expressed ubiquitously, while type X collagen was only expressed in the hypertrophic zone of the cartilage tissues. No differences in the levels of Sox9 expression were observed between the two groups at any time point. The levels of cyclin D1 expression and BrdU uptake were higher in the E13.5 cartilage tissue compared with those observed in the embryonic cartilage tissue at subsequent time points. Expression of p16 and p27 was ubiquitous throughout the tissue sections. These results indicate that p21 may not be essential for embryonic endochondral ossification in articular cartilage of mice and that other signaling networks may compensate for p21 deletion.
生长板处的软骨内成骨受多种因素和激素的调节。细胞周期蛋白依赖性激酶抑制剂p21已被确定为一种细胞周期调节因子,据报道其表达对于体外软骨内成骨至关重要。然而,据我们所知,p21在软骨内成骨中的功能尚未在体内进行评估。因此,本研究的目的是在体内研究p21在胚胎软骨内成骨中的功能。在胚胎第13.5天、15.5天和18.5天处死野生型(WT)和p21基因敲除(KO)的怀孕杂合小鼠。收集胚胎前臂的矢状组织学切片,并用番红O和5-溴-2'-脱氧尿苷(BrdU)染色。此外,使用免疫组织化学检测细胞周期蛋白D1、II型胶原、X型胶原、Sox9和p16的表达水平,使用免疫荧光检测p27的表达水平。番红O染色显示,在任何时间点,WT和p21KO小鼠的软骨组织之间均未观察到结构变化。II型胶原普遍表达,而X型胶原仅在软骨组织的肥大区表达。在任何时间点,两组之间均未观察到Sox9表达水平的差异。与后续时间点的胚胎软骨组织相比,E13.5软骨组织中的细胞周期蛋白D1表达水平和BrdU摄取更高。p16和p27的表达在整个组织切片中普遍存在。这些结果表明,p21可能对于小鼠关节软骨中的胚胎软骨内成骨并非必不可少,并且其他信号网络可能会补偿p21的缺失。