Department of Pharmacology, University of Nevada, Reno School of Medicine, Reno, NV, USA.
Methods Mol Biol. 2022;2497:349-362. doi: 10.1007/978-1-0716-2309-1_26.
The measurement of mitochondrial function has become imperative to understand and characterize diseases characterized by bioenergetic alterations. The advancement of automation and application of high-throughput technologies has propelled our understanding of biological complexity and facilitated drug discovery. Seahorse extracellular flux (XF) technology measures changes in dissolved oxygen and proton concentration in cell culture media, providing kinetic measurements of oxidative phosphorylation and glycolytic metabolism. ImageXpress Nano is an automated fluorescent microscope with the ability to perform high-content, fast, and robust imaging in multi-well formats. In this chapter, we present a comprehensive protocol to multiplex the Seahorse XF24 analyzer with the ImageXpress Nano high content imaging microscope to provide a comprehensive yet rigorous profile of bioenergetics and its correlation to neuronal function and morphology.
线粒体功能的测量对于理解和表征以能量代谢改变为特征的疾病变得至关重要。自动化的进步和高通量技术的应用推动了我们对生物复杂性的理解,并促进了药物发现。 Seahorse 细胞外通量(XF)技术测量细胞培养介质中溶解氧和质子浓度的变化,提供氧化磷酸化和糖酵解代谢的动力学测量。ImageXpress Nano 是一种自动化荧光显微镜,能够以多孔格式进行高通量、快速和稳健的成像。在本章中,我们提出了一个综合方案,将 Seahorse XF24 分析仪与 ImageXpress Nano 高内涵成像显微镜相结合,以提供生物能量学的全面而严格的概况及其与神经元功能和形态的相关性。