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成年牛源小肠和大肠类器官:发育与维持

Adult Bovine-Derived Small and Large Intestinal Organoids: Development and Maintenance.

作者信息

Kawasaki Minae, Dykstra Gerald D, McConnel Craig S, Burbick Claire R, Ambrosini Yoko M

机构信息

Department of Veterinary Clinical Sciences, College of Veterinary Medicine, Washington State University, Pullman, Washington, United States of America.

Department of Veterinary Microbiology and Pathology, College of Veterinary Medicine, Washington State University, Pullman, Washington, United States of America.

出版信息

J Tissue Eng Regen Med. 2023;2023. doi: 10.1155/2023/3095002. Epub 2023 Nov 27.

Abstract

Recent progress in bovine intestinal organoid research has expanded opportunities for creating improved models to study intestinal physiology and pathology. However, the establishment of a culture condition capable of generating organoids from all segments of the cattle intestine has remained elusive. Although previous research has described the development of bovine jejunal, ileal, and colonic organoids, this study marks the first report of successful bovine duodenal and rectal organoid development. Maintenance of these organoids through serial passages and cryopreservation was achieved, with higher success rates observed in large intestinal organoids compared to their small intestinal counterparts. A novel approach involving the use of biopsy forceps during initial tissue sampling streamlined the subsequent tissue processing, simplifying the procedure compared to previously established protocols in cattle. Additionally, our study introduced a more cost-effective culture medium based on Advanced DMEM/F12, diverging from frequently used commercially available organoid culture media. This enhancement improves accessibility to organoid technology by reducing culture costs. Crucially, the derived organoids from jejunum, ileum, colon and rectum faithfully preserved the structural, cellular, and genetic characteristics of intestinal tissue. This research underscores the significant potential of adult bovine intestinal organoids as a physiologically and morphologically relevant model. Such organoids provide a renewable and sustainable resource for a broad spectrum of studies, encompassing investigations into normal intestinal physiology in cattle and the intricate host-pathogen interactions of clinically and economically significant enteric pathogens.

摘要

牛肠道类器官研究的最新进展为创建更好的模型以研究肠道生理学和病理学提供了更多机会。然而,建立一种能够从牛肠道所有节段生成类器官的培养条件仍然难以实现。尽管先前的研究已经描述了牛空肠、回肠和结肠类器官的发育,但本研究首次报道了成功培养出牛十二指肠和直肠类器官。通过连续传代和冷冻保存实现了这些类器官的维持,与小肠类器官相比,大肠类器官的成功率更高。一种在初始组织采样过程中使用活检钳的新方法简化了后续的组织处理,与之前在牛身上建立的方案相比,简化了程序。此外,我们的研究引入了一种基于Advanced DMEM/F12的更具成本效益的培养基,与常用的市售类器官培养基不同。这种改进通过降低培养成本提高了类器官技术的可及性。至关重要的是,从空肠、回肠、结肠和直肠衍生的类器官忠实地保留了肠道组织的结构、细胞和遗传特征。这项研究强调了成年牛肠道类器官作为生理和形态相关模型的巨大潜力。此类类器官为广泛的研究提供了可再生和可持续的资源,包括对牛正常肠道生理学的研究以及对具有临床和经济意义的肠道病原体复杂的宿主-病原体相互作用的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1af/11918923/7de55a68c3e1/JTERM2023-3095002.001.jpg

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