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Property:MiPNet keyword

From Bioblast

This is a property of type String.

Showing 50 pages using this property.
H
Hydrogen peroxide, Synaptosomes, Guinea pigs, Mitochondrion, Reactive oxygen species, Oxidative stress  +
I
Neuropathology, Oxidative stress  +
Aging, Cenorhabditis elegans  +
diabetes, heart, alzheimer's disease, autophagy  +
Mitochondria, cells, oxygen consumption, membrane potential, proton efflux  +
mitochondrial carriers, metabolism, yeast, boenergetics, neuromuscular disorders  +
Cancer Cells, Bioenergetics, Metabolic reprogramming, mitochondria  +
Cancer cells and mitochondria  +
[https://chokoage.eu/ Chokoage European project] and [https://clinicaltrials.gov/ct2/results?cond=Frailty&term=SAFE&cntry=IT&state=&city=Verona&dist= SAFE clinical trial]  +
K
Mitochondria Physiology, Heart Disease, Metabolic Syndrome  +
L
Neuropharmacology, Alzheimer's' and Parkinson's disease research, stroke research  +
N
Bio-energetics, heart failure, cardiac muscle, skeletal muscle, oxidative stress  +
Insulin resistance, obesity, fatty acids  +
Bio-energetics, skeletal muscle, cardiac muscle, metabolomics  +
Inborn errors of metabolism  +
Cellular and molecular cardiology, ischemic heart disease, Exercise medicine  +
Hypoxia, Thermal limits on life, Heart disease, Ocean acidification, Spectroscopy, Reactive oxygen species, Oxidative stress  +
Our research group is the world expert in cardiac energetics, where we build experimental devices for measuring energy cardiac energy utilisation in performing mechanical work at whole heart and tissue levels. We also investigate the efficiency of energy production by mitochondria to provide a more comprehensive understanding of fundamental physiology and pathophysiology at multiple spatial scales.  +
P
Mitochondria, ROS, Cholesterol, mitochondrial contact sites, exercise, nutrition, dystrophy  +
R
PDH-deficiency, Alpers syndrome, Leigh syndrome, mitochondrial DNA depletion syndromes  +
S
Brain injury and regeneration - experimental studies and mechanisms  +
Mitochondrial permeability transition, complex I disorders, diagnostics (blood cell and muscle fibers) and pharmacological intervention  +
mitochondrial epigenetics  +
Diabetes, kidney  +
T
mitochondrial myopathy, reactive oxygen species, mitochondrial stress signaling  +
U
Stress, Parkinson's Disease, Apoptosis, Mitochondrial Signalling  +
Hypoxia, high altitude, heart failure, skeletal muscle, placenta  +
metabolism, placenta, fetus, obesity, nutrition, hypoxia  +
obesity, diabetes, metabolism  +
huntington’s disease, parkinson’s disease  +
Nitric oxide, skeletal muscle, exercise physiology, human nutrition  +
ageing, exercise and neurodegeneration  +
Skeletal muscle metabolism in health, ageing and disease  +
Cardio-oncology, namely in the side effects of chemotherapy on the heart. Particularly interested in how different classes of chemotherapeutics affect cardiac metabolism and energetics, and how cardioprotective agents may interfere with, or potentiate, anti-cancer action of chemotherapeutics.Use the O2k for HRR of cardiac muscle fibres, isolated cardiac mitochondria, tumour homogenates and cardiomyocytes and cancer cells. Have collaborations in neuropharmacology and are happy to discuss potential collaborations across disciplines  +
mitigation of metabolic stress in clinical conditions: obesity, diabetes, sarcopenia and alcohol abuse  +
Mitochondrial function in cold-bodied fishes  +
Diabetes, Obesity, Mitochondrial Physiology, Nutritional Bioenergetics, Redox Biology  +
Mitochondrial diseases, Stem Cells, Respiration  +
mitochondrial function in CNS and PNS during diabetes, chemotherapy and HIV-induced neuropathy  +
mt-Medicine, Breast cancer  +
Muscle physiology, Hypoxia  +
Exercise physiology, obesity  +
exercise, insulin resistance, diabetes, mitochondrial function and biogenesis  +
Sleep and circadian rhythms, metabolism, impact of sleep and circadian disruption on mitochondrial function  +
Human bioenergetics in health and disease; Human Performance; Environmental effects on biological thermodynamics (emphasis on hypoxia/high altitude); and Aging  +
Cardiometabolic disease, environmental stresss, cardiolipin, comparative biochemistry  +
aging, mitochondrial biogenesis, proteostasis, oxidative stress, energetic stress, comparative models, rapamycin, metformin, skeletal and cardiac muscle  +
aging, mitochondrial biogenesis, proteostasis, oxidative stress, energetic stress, comparative models, rapamycin, metformin, skeletal and cardiac muscle  +
Aging, Free Radicals, Oxidative Stress, Vascular function, Mitochondrial-targeted antioxidant (MitoQ), Mitochondrial quality control  +
Aging, permeabilized muscle fibers, isolated mitochondria  +