Inotiv-RTP, Morrisville, North Carolina, USA.
Experimental Pathology Laboratories, Inc., Research Triangle Park, North Carolina, USA.
Toxicol Pathol. 2024 Jun;52(4):153-227. doi: 10.1177/01926233241252114. Epub 2024 Aug 3.
Respiratory diseases are one of the leading causes of death and disability around the world. Mice are commonly used as models of human respiratory disease. Phenotypic analysis of mice with spontaneous, congenital, inherited, or treatment-related respiratory tract abnormalities requires investigators to discriminate normal anatomic features of the respiratory system from those that have been altered by disease. Many publications describe individual aspects of normal respiratory tract development, primarily focusing on morphogenesis of the trachea and lung. However, a single reference providing detailed low- and high-magnification, high-resolution images of routine hematoxylin and eosin (H&E)-stained sections depicting all major structures of the entire developing murine respiratory system does not exist. The purpose of this atlas is to correct this deficiency by establishing one concise reference of high-resolution color photomicrographs from whole-slide scans of H&E-stained tissue sections. The atlas has detailed descriptions and well-annotated images of the developing mouse upper and lower respiratory tracts emphasizing embryonic days (E) 9.0 to 18.5 and major early postnatal events. The selected images illustrate the main structures and events at key developmental stages and thus should help investigators both confirm the chronological age of mouse embryos and distinguish normal morphology as well as structural (cellular and organ) abnormalities.
呼吸系统疾病是全球范围内导致死亡和残疾的主要原因之一。小鼠通常被用作人类呼吸系统疾病的模型。对于具有自发性、先天性、遗传性或治疗相关呼吸道异常的小鼠进行表型分析时,研究人员需要区分呼吸系统的正常解剖特征与因疾病而改变的特征。许多出版物描述了正常呼吸道发育的各个方面,主要侧重于气管和肺的形态发生。然而,目前尚无一份单一的参考文献能够提供详细的低倍和高倍、高分辨率图像,描绘整个发育中的小鼠呼吸系统的所有主要结构,这些图像均经常规苏木精和伊红(H&E)染色切片。本图谱的目的是通过建立一个包含 H&E 染色组织切片全幻灯片扫描的高分辨率彩色显微照片的简明参考资料来纠正这一缺陷。该图谱详细描述并注释了发育中小鼠上、下呼吸道的图像,重点强调了胚胎第 9.0 天至 18.5 天以及主要的早期新生事件。所选图像说明了关键发育阶段的主要结构和事件,因此应该有助于研究人员确认小鼠胚胎的时间年龄,并区分正常形态以及结构(细胞和器官)异常。