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From Bioblast

This page provides a simple browsing interface for finding entities described by a property and a named value. Other available search interfaces include the page property search, and the ask query builder.

Search by property

A list of all pages that have property "MiPNet keyword" with value "Bio-energetics, skeletal muscle, cardiac muscle, metabolomics". Since there have been only a few results, also nearby values are displayed.

Showing below up to 11 results starting with #1.

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List of results

  • US LA New Orleans Katakam PV  + (Bioenergetics of neurons and cerebral microvasculature)
  • SE Gothenburg Hagberg H  + (Brain injury and regeneration - experimental studies and mechanisms)
  • CZ Prague Fisar Z  + (Brain mitochondrial bioenergetics, effect of psychotropic drugs on mitochondrial bioenergetics, mitochondrial dysfunctions in mood disorders and in Alzheimer’s disease)
  • IT Florence Morandi A  + (Cancer Cells, Bioenergetics, Metabolic reprogramming, mitochondria)
  • IT Rome Scatena R  + (Cancer cells and mitochondria)
  • UK Oxford Timm K  + (Cardio-oncology, namely in the side effect … 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 disciplinesotential collaborations across disciplines)
  • FR Montpellier Prouteau-Angebault C  + (Cardiolipin, cytochrome c oxidase, OPA 1)
  • US CO Fort Collins Chicco AJ  + (Cardiometabolic disease, environmental stresss, cardiolipin, comparative biochemistry)
  • NO Trondheim Hoydal MA  + (Cellular and molecular cardiology, ischemic heart disease, Exercise medicine)
  • CH Lausanne Place N  + (Cellular mechanisms underpinning skeletal muscle adaptations to exercise, Calcium handling, Neuromuscular plasticity)