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For more information read the application note Seahorse XF Metabolic Pathway Determination Assay.
On-Demand Webinars
Seahorse Bioscience provides access to all previously recorded webinars in our Cellular Bioenergetics Webinars Series. These on-demand webinars enable you to connect with key thought leaders discussing their areas of expertise and the Seahorse XF technology. You are required to register for our Cellular Bioenergetics Webinars Series, which will allow you access to all On-Demand Webinars, as well as future webinars.
Register for the Seahorse Bioscience Cellular Bioenergetics Webinar Series.
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Webinars by Research Area
- Aging & Cellular Physiology
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Turbocharging your mitochondrial analysis: A tutorial that goes beyond the obvious.
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
Min Wu, PhD, Assay Development Manager, Seahorse Boscience, Inc. -
Cardiovascular oxidative stress: Importance of the mitochondrial reserve capacity.
Bradford G. Hill, PhD, Center for Diabetes and Obesity Research, University of Louisville
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Spare respiratory capacity and the bioenergetics of the nerve terminal.
David Nicholls PhD, FRSE, Buck Institute for Age Research and Lund University
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The Bioenergetics of Obesity: New Approaches to Characterize Genes Affecting Energy Balance in Mouse Models
Karen Reue, PhD, David Geffen School of Medicine at UCLA
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Fluorescent Reporters of Mitochondrial Function in the Life and Death of Cells
John J. LeMasters, MD, PhD, Center for Cell Death, Injury and Regeneration, Medical University of South Carolina
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The Rate and Coupling Efficiency of Oxidative Phosphorylation in Mitochondria and Cells
Dr. Martin Brand, Buck Institute & MRC Dunn Nutrition Unit
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The Response of the Mitochondrion to Oxidative Stress in Cardiovascular Cells
Victor Darley-Usmar, PhD, Center for Free Radical Biology, University of Alabama at Birmingham
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Thyroid Hormone Deiodination is a Key Switch for Energy Expenditure
Antonio C. Bianco, MD, PhD, Brigham and Women's Hospital, Harvard Medical School
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Bioenergetic Consequences of Mitochondrial Fusion and Fission
Orian Shirihai, MD, PhD, Tufts University School of Medicine-Boston
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- Cancer
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Molecular scaffolds KSR1/2: Implications for obesity and cancer
Robert Lewis, PhD, Eppley Institute for Research in Cancer & Allied Diseases, University of Nebraska Medical Center
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Oxidative Stress, Mitochondrial DNA Damage and Human Disease: Learn how mitochondria repair their genome and how to measure mtDNA repair using quantitative PCR
Ben Van Houten, PhD, University of Pittsburgh Cancer Institute, Hillman Cancer Center
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Tutorial 2: Measuring Bioenergetics in Primary Cell Types
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
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Analysis of glutaminolysis and fumarate respiration in Bcl-xL-expressing cells.
David M. Hockenbery, MD, Fred Hutchinson Cancer Research Center, University of Washington
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- Cardiovascular
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Modulating Mitochondrial Metabolism as a Protective Strategy in Cardiac Ischemic Injury
Paul Brookes, PhD, University of Rochester Medical Center
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Cardiovascular oxidative stress: Importance of the mitochondrial reserve capacity.
Bradford G. Hill, PhD, Center for Diabetes and Obesity Research, University of Louisville
-
The Response of the Mitochondrion to Oxidative Stress in Cardiovascular Cells
Victor Darley-Usmar, PhD, Center for Free Radical Biology, University of Alabama at Birmingham
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Tutorial 2: Measuring Bioenergetics in Primary Cell Types
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
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Protective Bioenergetic Responses of Cardiomyocytes to Hypoxic Stress
Gary L Wright, PhD, Medical University of South Carolina
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Fueling Physiology: How Bioenergetics Drive Biological Function
Craig Beeson, PhD, Medical University of South Carolina
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- Hepatobiology & in vitro Toxicity
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Primary Renal Proximal Tubules as a Platform for Mitochondrial Biogenesis and Toxicity Assays
Craig Beeson, PhD, Medical University of South Carolina
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Fluorescent Reporters of Mitochondrial Function in the Life and Death of Cells
John J. LeMasters, MD, PhD, Center for Cell Death, Injury and Regeneration, Medical University of South Carolina
-
Achieving higher throughput and greater content when measuring mitochondrial function
David Ferrick, PhD, CSO, Seahorse Bioscience
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Mitochondrial Toxicity: Designing Novel Screening Methods to Reduce NCE Attrition
Yvonne Will, PhD, Cell Based Assays, Pfizer
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Tutorial 1: Measuring Bioenergetics in a Variety of Cell Types
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
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Bioenergetic and Metabolic Profiling in Drug Discovery and Safety
James Dykens, PhD, Drug Safety Research & Development, Pfizer, Inc.
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- Mitochondrial Diseases
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Mitochondrial Bioenergetics in Disease: Toward a Mitochondrial Therapy of Muscular Dystrophies and beyond
Paolo Bernardi, MD, Department of Biomedical Sciences, University of Padova
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Human Disorders of Bioenergetics
Vamsi Mootha, MD, Harvard Medical School Center for Human Genetics, Massachusetts General Hospital
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- Neurodegeneration
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Spare respiratory capacity and the bioenergetics of the nerve terminal.
David Nicholls PhD, FRSE, Buck Institute for Age Research and Lund University
-
Acute Brain Injury: Assessing mitochondrial dysfunction and the role of calpain proteases in vitro
Brian Polster, PhD, University of Maryland School of Medicine
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Oxidative Stress, Mitochondrial DNA Damage and Human Disease: Learn how mitochondria repair their genome and how to measure mtDNA repair using quantitative PCR
Ben Van Houten, PhD, University of Pittsburgh Cancer Institute, Hillman Cancer Center
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Cybrid Modeling of Sporadic Neurodegenerative Disorders
Russell H. Swerdlow, MD, University of Kansas School of Medicine
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Tutorial 1: Measuring Bioenergetics in a Variety of Cell Types
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
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Bioenergetic Profiling in Translational Neuroscience
Jon Nilsen PhD, University of Southern California
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Quantifying the Mitochondrial Proton Circuit in Intact Cells - Volts and Amps
David G. Nicholls, Ph.D., FRSE, Buck Institute for Age Research
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- Obesity, Diabetes, & Metabolic Disorders
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Molecular scaffolds KSR1/2: Implications for obesity and cancer
Robert Lewis, PhD, Eppley Institute for Research in Cancer & Allied Diseases, University of Nebraska Medical Center
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How to Measure Mitochondrial Function in Whole Islets
Orian Shirihai, MD, PhD, Boston University Medical Center
Jakob Wikstrom, MD, Boston University Medical Center -
The Bioenergetics of Obesity: New Approaches to Characterize Genes Affecting Energy Balance in Mouse Models
Karen Reue, PhD, David Geffen School of Medicine at UCLA
-
Tutorial 1: Measuring Bioenergetics in a Variety of Cell Types
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
-
Bioenergetic Consequences of Mitochondrial Fusion and Fission
Orian Shirihai, MD, PhD, Tufts University School of Medicine-Boston
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- Technology
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Turbocharging your mitochondrial analysis: A tutorial that goes beyond the obvious.
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
Min Wu, PhD, Assay Development Manager, Seahorse Boscience, Inc. -
Assaying Isolated Mitochondria in the Seahorse XF24: Learning More while Requiring Less
Anne Murphy, PhD, Department of Pharmacology, University of California at San Diego
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Fluorescent Reporters of Mitochondrial Function in the Life and Death of Cells
John J. LeMasters, MD, PhD, Center for Cell Death, Injury and Regeneration, Medical University of South Carolina
-
Achieving higher throughput and greater content when measuring mitochondrial function
David Ferrick, PhD, CSO, Seahorse Bioscience
-
The Rate and Coupling Efficiency of Oxidative Phosphorylation in Mitochondria and Cells
Dr. Martin Brand, Buck Institute & MRC Dunn Nutrition Unit
-
Mitochondrial Toxicity: Designing Novel Screening Methods to Reduce NCE Attrition
Yvonne Will, PhD, Cell Based Assays, Pfizer
-
Tutorial 2: Measuring Bioenergetics in Primary Cell Types
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
-
Tutorial 1: Measuring Bioenergetics in a Variety of Cell Types
David Ferrick, PhD, VP, Biology & Applications, Seahorse Bioscience, Inc.
-
Quantifying the Mitochondrial Proton Circuit in Intact Cells - Volts and Amps
David G. Nicholls, Ph.D., FRSE, Buck Institute for Age Research
-
Fueling Physiology: How Bioenergetics Drive Biological Function
Craig Beeson, PhD, Medical University of South Carolina
-
Measuring Real-Time Cellular Bioenergetics
David Ferrick, PhD, VP of Biology and Applications, Seahorse Bioscience
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- Translational Medicine
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Mitochondrial Bioenergetics in Disease: Toward a Mitochondrial Therapy of Muscular Dystrophies and beyond
Paolo Bernardi, MD, Department of Biomedical Sciences, University of Padova
-
Acute Brain Injury: Assessing mitochondrial dysfunction and the role of calpain proteases in vitro
Brian Polster, PhD, University of Maryland School of Medicine
-
How to Measure Mitochondrial Function in Whole Islets
Orian Shirihai, MD, PhD, Boston University Medical Center
Jakob Wikstrom, MD, Boston University Medical Center -
Primary Renal Proximal Tubules as a Platform for Mitochondrial Biogenesis and Toxicity Assays
Craig Beeson, PhD, Medical University of South Carolina
-
Cybrid Modeling of Sporadic Neurodegenerative Disorders
Russell H. Swerdlow, MD, University of Kansas School of Medicine
-
Bioenergetic Profiling in Translational Neuroscience
Jon Nilsen PhD, University of Southern California
-
Human Disorders of Bioenergetics
Vamsi Mootha, MD, Harvard Medical School Center for Human Genetics, Massachusetts General Hospital
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Webinars by Speaker
- Craig Beeson, PhD
- Paolo Bernardi, MD
- Antonio C. Bianco, MD, PhD
- Martin Brand, PhD
- Paul Brookes, PhD
- Victor Darley-Usmar, PhD
- James Dykens, PhD
- David Ferrick, PhD
-
Turbocharging your mitochondrial analysis: A tutorial that goes beyond the obvious.
-
Achieving higher throughput and greater content when measuring mitochondrial function
-
Tutorial 2: Measuring Bioenergetics in Primary Cell Types
-
Tutorial 1: Measuring Bioenergetics in a Variety of Cell Types
-
Measuring Real-Time Cellular Bioenergetics
-
- Bradford G. Hill, PhD
- David M. Hockenbery, MD
- John J. LeMasters, MD, PhD
- Robert Lewis, PhD
- Vamsi Mootha, MD
- Anne Murphy, PhD
- David Nicholls, PhD, FRSE
- John Nilsen, PhD
- Brian Polster, PhD
- Karen Reue, PhD
- Orian Shirihai, MD, PhD
- Russell H. Swerdlow, MD
- Ben Van Houten, PhD
- Jacob Wikstrom, MD
- Yvonne Will, PhD
- Gary L. Wright, PhD
- Min Wu, PhD
