Active Cells, Biochemistry & Physiology Diabetes, Hormones & Metabolism

Mitochondrial dysfunction: Understanding how dysfunctional mitochondrial redox metabolism underpins pathology

In plain English

AI plain-English summary

Mitochondria—the tiny power plants inside nearly every human cell—are failing in ways scientists do not fully understand, and this group is building the tools to find out why. The problem is that when mitochondria malfunction, they disrupt the cell’s redox balance: the careful chemical dance of reactive oxygen species and other molecules that can either signal the cell to behave normally or push it toward disease. Researchers know this breakdown contributes to conditions such as diabetes, neurodegeneration, and muscle disorders, but they lack the precise instruments to watch it happen in living tissue. This group aims to close that gap. To do so, they are designing new chemical probes that can report on mitochondrial redox activity inside living organisms, and developing bioactive molecules that can manipulate that activity on demand. If successful, these tools will let scientists see exactly when and how mitochondrial dysfunction drives pathology—and identify new drug targets to stop it. This is fundamental science. It will not produce a therapy next year. But without this kind of mechanistic understanding, efforts to treat mitochondrial disease remain shots in the dark.

View original technical description
Mitochondrial redox metabolism is central to the life and death of the cell. Consequently, a better understanding of its nature during health and disease will lead to new insights into how mitochondrial dysfunction underlies pathology and facilitate the development of novel therapies. The Mitochondrial Dysfunction group focusses on understanding how mitochondrial metabolism and function combine in physiological and pathological contexts to alter redox responses such as reactive oxygen species (ROS) and metabolite levels. These changes are then sensed and interpreted by the rest of the cell, in some cases as signals and in others as drivers of pathology. An important facet of our work is the development of novel chemical biology probes and bioactive molecules to report on and manipulate mitochondrial function in living organisms. We also leverage our knowledge of mitochondrial dysfunction to develop new drug targets and therapies.

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Related Research

Grants with similar aims, by meaning.

Exploring mitochondrial metabolism in health and disease using targeted biological chemistry.
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Exploring mitochondrial metabolism in health and disease using targeted biological chemistry
Chemical Biology and Medicinal Chemistry of Redox Processes Outwith the Mitochondria
Mitochondrial ROS mapping and control with sub-organellar resolution

Original classification

Intramural

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