Faculty profile
Jean-Marc Renaud
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Read how they describe their research on their University of Ottawa profile.
Latest papers
Glucose and glycogen affects Ca2+ transient during fatigue to a greater extent in the least than in the most fatigue resistant mouse FDB fibers.
Physiological reports · 2024 · senior author
Pannexin 1 dysregulation in Duchenne muscular dystrophy and its exacerbation of dystrophic features in mdx mice.
Skeletal muscle · 2024
A century of exercise physiology: effects of muscle contraction and exercise on skeletal muscle Na+,K+-ATPase, Na+ and K+ ions, and on plasma K+ concentration-historical developments.
European journal of applied physiology · 2024
Latest funding
- $168,000
Mechanisms of fatigue pre-conditionning (FPC)
NSERC · 2020 · Principal investigator
- $673,200
Novel therapy for Hyperkalemic Periodic Paralysis (HyperKPP)
CIHR · 2016 · Nominated PI
- $200,000
Regulation of KATP and Cl channel activity by AMPK, ATP and adenosine receptors: impact on membrane excitability during muscle activity and fatigue
NSERC · 2015 · Principal investigator
42 publications.
Glucose and glycogen affects Ca2+ transient during fatigue to a greater extent in the least than in the most fatigue resistant mouse FDB fibers.
Hesse E, Ammar T, Renaud JM
Pannexin 1 dysregulation in Duchenne muscular dystrophy and its exacerbation of dystrophic features in mdx mice.
Freeman E, Langlois S, Leyba MF, Ammar T, Léger Z, McMillan HJ, Renaud JM, Jasmin BJ, Cowan KN
A century of exercise physiology: effects of muscle contraction and exercise on skeletal muscle Na+,K+-ATPase, Na+ and K+ ions, and on plasma K+ concentration-historical developments.
McKenna MJ, Renaud JM, Ørtenblad N, Overgaard K
Exercise and fatigue: integrating the role of K+, Na+ and Cl- in the regulation of sarcolemmal excitability of skeletal muscle.
Renaud JM, Ørtenblad N, McKenna MJ, Overgaard K
The potassium-glycogen interaction on force and excitability in mouse skeletal muscle: implications for fatigue.
Cairns SP, Renaud JM
Angiotensin 1-7 increases fiber cross-sectional area and force in juvenile mouse skeletal muscle.
Albadrani H, Ammar T, Rajgara R, Bader M, Wiper-Bergeron N, Renaud JM
The peak force-resting membrane potential relationships of mouse fast- and slow-twitch muscle.
Cairns SP, Leader JP, Higgins A, Renaud JM
GCN5 maintains muscle integrity by acetylating YY1 to promote dystrophin expression.
Addicks GC, Zhang H, Ryu D, Vasam G, Green AE, Marshall PL, Patel S, Kang BE, Kim D, Katsyuba E, Williams EG, Renaud JM, Auwerx J, Menzies KJ
Angiotensin 1-7 prevents the excessive force loss resulting from 14- and 28-day denervation in mouse EDL and soleus muscle.
Albadrani H, Ammar T, Bader M, Renaud JM
Studying t-tubular functionality in mechanically skinned fibres to understand the mechanism of muscle fatigue.
Renaud JM
Mechanisms of fatigue pre-conditionning (FPC)
Principal investigators: Renaud, Jean-Marc
Novel therapy for Hyperkalemic Periodic Paralysis (HyperKPP)
Principal investigators: Renaud, Jean-Marc E
Keywords: Adenylate Cyclase; Channelopathy; Clc-1 Cl Channel; Hyperkalemic Periodic Paralysis; Katp Channel; Phosphodiesterase; Pka; Pkc; Skeletal Muscle; Sodium Potassium Atpase Pump
Regulation of KATP and Cl channel activity by AMPK, ATP and adenosine receptors: impact on membrane excitability during muscle activity and fatigue
Principal investigators: Renaud, JeanMarc
Contribution of intracellular sodium to paralytic attack in HyperKPP muscle
Principal investigators: Nishi, Cameron
Keywords: Action Potential; Electrophysiology; Hyperkalemic Periodic Paralysis; Intracellular Sodium; Membrane Potential; Muscle Contraction; Sodium Channel
Mechanism by which calcium alleviates symptoms of hyperkalemic periodic paralysis.
Principal investigators: Nishi, Cameron
Keywords: Electrophysiology; Hyperkalemic Periodic Paralysis; Muscle Contraction; Sodium Channel
Development of better and more effective treatments for patients suffering of hyperkalemic periodic paralysis (HyperKPP)
Principal investigators: Renaud, Jean-Marc E
Keywords: Channelopathy; Chloride Channel; Membrane Excitability; Potassium Channel; Skeletal Muscle; Sodium Channel
Role of potassium and chloride channel during non-fatiguing and fatiguing muscular activity in skeletal muscles
Principal investigators: Renaud, JeanMarc
Dual excitation-emission fluorescence/contractility system
Principal investigators: Renaud, JeanMarc
Prevention of muscle dysfunction by the cell membrane Katp channel in skeletal muscle
Principal investigators: Renaud, JeanMarc
The regulation and physiological role of Katp channel in skeletal muscle
Principal investigators: Renaud, JeanMarc
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Cellular and Molecular Medicine
- Kinesiology
- Biochemistry, Microbiology and Immunology
- Regenerative Medicine
- School of Pharmaceutical Sciences
- Anesthesia
- Orthopedic Surgery
- Other
Co-authors at University of Ottawa, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
Vladimir Ljubicic
Kinesiology
4 shared papers, latest 2016
Rashmi Kothary
Cellular and Molecular Medicine
3 shared papers, latest 2020
Mary-Ellen Harper
Biochemistry, Microbiology and Immunology
2 shared papers, latest 2016
Allan Liew
Regenerative Medicine
1 shared papers, latest 2014
Geoffrey Wilkin
Orthopedic Surgery
1 shared papers, latest 2014
Aymeric Ravel-Chapuis
School of Pharmaceutical Sciences
1 shared papers, latest 2017
Jean Michaud
Pathology and Laboratory Medicine
1 shared papers, latest 2020
Jerry Radziuk
Department of Medicine
1 shared papers, latest 2008
Martin Holcik
Pediatrics
1 shared papers, latest 2020
Gianni Parise
Office of the Vice-President, Research
1 shared papers, latest 2012
Cameron Nishi
Anesthesia
1 shared papers, latest 2014
Nadine Wiper Bergeron
Cellular and Molecular Medicine
1 shared papers, latest 2022
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Profile data last refreshed on September 25, 2026 from the university directory, publication records and CIHR, NSERC and SSHRC funding.