Metformin directly suppresses atherosclerosis in normoglycaemic mice via haematopoietic adenosine monophosphate-activated protein kinase
Cardiovascular Research

Abstract
Atherosclerotic vascular disease has an inflammatory pathogenesis. Heme from intraplaque haemorrhage may drive a protective and pro-resolving macrophage M2-like phenotype, Mhem, via AMPK and activating transcription factor 1 (ATF1). The antidiabetic drug metformin may also activate AMPK-dependent signalling.
Normoglycaemic
Metformin activates a conserved AMPK-ATF1-M2-like pathway in mouse and human macrophages, and results in highly suppressed atherogenesis in hyperlipidaemic mice via haematopoietic AMPK.
Contributors

Anusha Seneviratne
Author

Luke Cave
Author

Gareth Hyde
Author

Soren Kragh Moestrup
Author

David Carling
Author

Justin C Mason
Author

Dorian O Haskard
Author

Joseph James Boyle
Author
Imperial College London London , United Kingdom of Great Britain & Northern Ireland
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