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A new paper from the Heather and Tyler groups has uncovered the mechanism responsible for reduced energy in the hearts of patients with type 2 diabetes and revealed a new therapeutic strategy to reverse the energy deficit.

Graphical abstract showing increased energy levels in the heart when mitochondrial deacetylase SIRT3 activator "honokiol" is administered to the diabetic heart, compared to lower levels in the research control group.

Overcoming the challenges of genome-editing essential genes

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Teboul L. and Davies B., (2026), STAR Protocols, 7

A high-flux source of cold strontium with a loading rate of 4×1010 atoms/s for open release

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Walker T. et al, (2026), Avs Quantum Science, 8

Cardiac energetics in health and disease: a meta-analysis.

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Bray JJH. et al, (2026), Eur Heart J Imaging Methods Pract, 4

The need for a balanced perspective on tobacco cessation and taxation

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LEWINGTON S. et al, (2026), Addiction

Predictors and Prognostic Significance of Cardiac Damage Progression in Non-Severe Aortic Stenosis.

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Bussmann BM. et al, (2026), Eur Heart J Cardiovasc Imaging

Endosomal TPC1-mediated Ca2+ nanodomains regulate transferrin receptor trafficking and iron homeostasis.

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Burton WJ. et al, (2026), Proc Natl Acad Sci U S A, 123

Varicose projection astrocytes: Conserved reactive cells in brain pathology.

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Ciani C. et al, (2026), Sci Adv, 12

Trientine for hypertrophic cardiomyopathy: a phase 2 trial.

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Farrant JP. et al, (2026), Eur Heart J

A core transcriptional signature of human trained immunity.

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Boden KA. et al, (2026), Cell Rep, 45

ProLM: a plasma proteomics pretrained model for the general population.

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Qiu S. et al, (2026), Nat Commun

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