Elmore Susan A, Kavari Sanam L, Hoenerhoff Mark J, Mahler Beth, Scott Brittany E, Yabe Koichi, Seely John C
Cellular and Molecular Pathology Branch, National Toxicology Program, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, Durham, NC, USA.
In Vivo Animal Core, Unit for Laboratory Animal Medicine, University of Michigan Medical School, Ann Arbor, MI, USA.
Toxicol Pathol. 2019 Oct;47(7):865-886. doi: 10.1177/0192623319873871. Epub 2019 Oct 10.
Congenital abnormalities of the urinary tract are some of the most common human developmental abnormalities. Several genetically engineered mouse models have been developed to mimic these abnormalities and aim to better understand the molecular mechanisms of disease. This atlas has been developed as an aid to pathologists and other biomedical scientists for identification of abnormalities in the developing murine urinary tract by cataloguing normal structures at each stage of development. Hematoxylin and eosin- and immunohistochemical-stained sections are provided, with a focus on E10.5-E18.5, as well as a brief discussion of postnatal events in urinary tract development. A section on abnormalities in the development of the urinary tract is also provided, and molecular mechanisms are presented as supplementary material. Additionally, overviews of the 2 key processes of kidney development, branching morphogenesis and nephrogenesis, are provided to aid in the understanding of the complex organogenesis of the kidney. One of the key findings of this atlas is the histological identification of the ureteric bud at E10.5, as previous literature has provided conflicting reports on the initial point of budding. Furthermore, attention is paid to points where murine development is significantly distinct from human development, namely, in the cessation of nephrogenesis.
泌尿系统先天性异常是人类最常见的发育异常之一。已经开发了几种基因工程小鼠模型来模拟这些异常,旨在更好地理解疾病的分子机制。这本图谱的编写目的是帮助病理学家和其他生物医学科学家通过编目发育各阶段的正常结构来识别发育中小鼠泌尿系统的异常情况。提供了苏木精-伊红染色和免疫组织化学染色的切片,重点关注胚胎第10.5天至第18.5天的情况,并对泌尿系统发育中的出生后事件进行了简要讨论。还提供了一个关于泌尿系统发育异常的章节,并将分子机制作为补充材料呈现。此外,还提供了肾脏发育的两个关键过程——分支形态发生和肾发生的概述,以帮助理解肾脏复杂的器官发生过程。这本图谱的一个关键发现是在胚胎第10.5天对输尿管芽进行了组织学鉴定,因为先前的文献对芽生的起始点给出了相互矛盾的报道。此外,还关注了小鼠发育与人类发育显著不同的点,即肾发生的停止。