Department of Integrative Biology and Physiology, University of Minnesota Medical School, Minneapolis, Minnesota.
Department of Surgery, University of Minnesota Medical School, Minneapolis, Minnesota.
Curr Protoc. 2021 Mar;1(3):e81. doi: 10.1002/cpz1.81.
An intricate network of regulation between the brain and the pancreas modulates hormone secretion and organ function. Dysfunction of the brain-pancreas axis occurs in disease states such as diabetes and pancreatitis. Given the delicate nature of the mouse brain, procurement for tissue and cellular analysis is facilitated by fixation by perfusion with paraformaldehyde (PFA). The brain is hardened by PFA during the preservation process, but this hardening also occurs in the pancreas, as well as the remainder of the intra-abdominal organs. This hardening makes the pancreas friable and difficult to dissect without damaging and fragmenting the organ. Additionally, this fixation may preclude the ability to perform analytic techniques such as western blot and quantitative PCR (qPCR) simultaneously. Performing a simple cross-clamping of the thoracic aorta allows for differential perfusion of organs and maximal use of limited samples from a single animal. The brain can be perfused with PFA without compromising tissue collection of the pancreas and other intra-abdominal organs. This simple maneuver allows for greater tissue collection and analysis per mouse in studies evaluating the brain-pancreas or brain-gut axis. © 2021 Wiley Periodicals LLC. Basic Protocol: Differential fixation by perfusion using aortic cross-clamp.
大脑和胰腺之间复杂的调节网络调节激素分泌和器官功能。在糖尿病和胰腺炎等疾病状态下,脑-胰腺轴功能失调。鉴于小鼠大脑的精细性质,通过用多聚甲醛(PFA)灌注进行固定,便于获取组织和细胞进行分析。在保存过程中,PFA 使大脑变硬,但胰腺以及腹腔内其他器官也会变硬。这种硬化使胰腺易碎,在不损坏和使器官碎裂的情况下难以解剖。此外,这种固定可能会排除同时进行蛋白质印迹和定量 PCR(qPCR)等分析技术的能力。对胸主动脉进行简单的横夹可实现器官的差异灌注,并最大限度地利用来自单个动物的有限样本。可以用 PFA 灌注大脑,而不会影响胰腺和其他腹腔内器官的组织采集。在评估脑-胰腺或脑-肠轴的研究中,这种简单的操作可使每只小鼠进行更多的组织采集和分析。©2021 威立出版公司。基本方案:通过主动脉横夹进行差异灌注固定。