Department of Anatomy, School of Dentistry, Aichi Gakuin University, 1-100 Kusumoto-cho, Chikusa-ku, Nagoya, Aichi, 464-8650, Japan.
Sci Rep. 2024 May 29;14(1):12297. doi: 10.1038/s41598-024-63264-9.
The current study aimed to investigate the effect of Sox9-Cre-directed Nr5a1-conditional knockout (Sox9-Cre;Nr5a1) on adrenal development. We showed that SOX9 is expressed by adrenocortical cells at E10.5-E11.5 but is extinguished no later than E12.5. The number of adrenocortical cells significantly reduced in Sox9-Cre;Nr5a1 mice while the number of cleaved caspase 3-positive cells increased compared to that in the controls at E11.5-E12.5, when the adrenal primordium (AP) is about to expand. This indicated that fetal adrenocortical cells are lost via apoptosis due to Nr5a1 ablation by E12.5. Both medulla formation and encapsulation were perturbed, accompanied by a smaller AP size, in Sox9-Cre;Nr5a1 mice during embryonic development. Adult Sox9-Cre;Nr5a1 adrenals were hypoplastic and exhibited irregular organization of the medulla with aberrant sex differentiation in the X zone. Additionally, there were histologically eosin-negative vacuolated cells, which were negative for both the X-zone marker 20αHSD and the steroidogenesis marker 3βHSD at the innermost cortex of Sox9-Cre;Nr5a1 adrenals. Although Nr5a1 adrenals were hypoplastic, a small number of chromaffin cells were properly located in the center, having normal sex differences in the X-zone. The results collectively provided in-vivo evidence that Nr5a1 plays a critical role in AP expansion and subsequent adrenal development.
本研究旨在探讨 Sox9-Cre 介导的 Nr5a1 条件性敲除(Sox9-Cre;Nr5a1)对肾上腺发育的影响。我们发现 SOX9 在 E10.5-E11.5 时表达于肾上腺皮质细胞,但在 E12.5 前已被沉默。与对照组相比,Sox9-Cre;Nr5a1 小鼠的肾上腺皮质细胞数量明显减少,而在 E11.5-E12.5 时(即肾上腺原基即将扩张时),cleaved caspase 3 阳性细胞的数量增加。这表明由于 Nr5a1 的缺失,E12.5 时胎儿肾上腺皮质细胞通过凋亡而丢失。在胚胎发育过程中,Sox9-Cre;Nr5a1 小鼠的髓质形成和包裹受到干扰,同时肾上腺原基较小。Sox9-Cre;Nr5a1 小鼠的成年肾上腺发育不良,髓质组织不规则,X 区性别分化异常。此外,在 Sox9-Cre;Nr5a1 肾上腺的最内层皮质中存在组织学上嗜酸性阴性空泡细胞,这些细胞既对 X 区标志物 20αHSD 又对类固醇生成标志物 3βHSD 均为阴性。尽管 Nr5a1 肾上腺发育不良,但仍有少量嗜铬细胞正确定位于中央,X 区具有正常的性别差异。这些结果共同提供了体内证据,表明 Nr5a1 在肾上腺原基扩张和随后的肾上腺发育中发挥关键作用。