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Updated: Aug 5, 2026

Investigating Glycolysis in Primary Microglia Using Extracellular Flux Assay
Published on: April 10, 2026
Ex Vivo Assessment of Extracellular Acidification Rate in Murine Intestinal Tissue
Alexander F Lesser1,2, Mitchell L Drumm2
1Department of Pathology, Case Western Reserve University, Cleveland, OH, USA.
Abstract:
Seahorse metabolic assays are now widely utilized across numerous fields for performing functional assessments of glycolysis and mitochondrial function in adherent or suspension cell culture samples. Seahorse assays measure extracellular acidification rate (ECAR) and oxygen consumption rate (OCR) as a means of assessing glycolysis and mitochondrial function, respectively. Currently, the vast majority of Seahorse metabolic assays are performed using in vitro samples due to the current established standardized method. However, a uniform approach to assess real-time functional measurements of glycolysis and mitochondrial function in ex vivo tissue samples remains elusive. In particular, this protocol was designed to assess glycolysis in ex vivo murine intestinal samples through ECAR measurements using the Agilent Seahorse XFe24 platform with corresponding Islet Capture microplates and screens. This protocol was developed to provide functional measurements of glycolytic metabolism in murine intestinal tissue samples. This protocol details a method to assess glycolysis in tissue samples and represents the next stage of ex vivo metabolic methods to complement existing standardized in vitro approaches. While this protocol was developed to assess ECAR in ex vivo murine intestinal samples, the same approach can be applied to assessing mitochondrial respiration through measurements of OCR in other tissue types. Overall, this protocol expands the purview of Seahorse metabolic assays through the inclusion of tissue samples and provides the framework to interrogate organ-level metabolism in the context of systemic nutrient metabolism and physiology. Key features • Protocol for applying Seahorse metabolic assays to tissue samples. • Specifically designed to assess glycolysis through extracellular acidification rate (ECAR) in ex vivo murine intestinal samples. • Provides functional metabolism data to complement gene and protein expression data. • Protocol can be adapted to measure mitochondrial function through assessments of oxygen consumption rate (OCR) in other tissue types.
