Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, IN, United States.
Department of Pediatrics, Indiana University School of Medicine, Indianapolis, IN, United States.
Front Endocrinol (Lausanne). 2022 Oct 5;13:992540. doi: 10.3389/fendo.2022.992540. eCollection 2022.
Human islet transplantations into rodent models are an essential tool to aid in the development and testing of islet and cellular-based therapies for diabetes prevention and treatment. Through the ability to evaluate human islets in an setting, these studies allow for experimental approaches to answer questions surrounding normal and disease pathophysiology that cannot be answered using other and techniques alone. Intravital microscopy enables imaging of tissues in living organisms with dynamic temporal resolution and can be employed to measure biological processes in transplanted human islets revealing how experimental variables can influence engraftment, and transplant survival and function. A key consideration in experimental design for transplant imaging is the surgical placement site, which is guided by the presence of vasculature to aid in functional engraftment of the islets and promote their survival. Here, we review transplantation sites and mouse models used to study beta cell biology using intravital microscopy and we highlight fundamental observations made possible using this methodology.
将人类胰岛移植到啮齿动物模型中是一种重要的工具,可用于辅助开发和测试胰岛和基于细胞的疗法,以预防和治疗糖尿病。通过在 环境中评估人类胰岛的能力,这些研究允许采用实验方法来回答围绕正常和疾病病理生理学的问题,而这些问题无法仅使用其他 和 技术来回答。活体显微镜能够以动态时间分辨率对活生物体中的组织进行成像,并且可以用于测量移植的人类胰岛中的生物过程,从而揭示实验变量如何影响植入、移植的存活和功能。移植成像实验设计中的一个关键考虑因素是手术放置部位,该部位由血管的存在来指导,以帮助胰岛的功能植入并促进其存活。在这里,我们综述了使用活体显微镜研究β细胞生物学的移植部位和小鼠模型,并强调了使用这种方法可以实现的基本观察结果。