Zebrafish Reveal How the Brain Can Regenerate After Injury
Scientists decode how zebrafish regrow damaged brain tissue, offering new pathways for treating human neurological diseases.
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Scientists decode how zebrafish regrow damaged brain tissue, offering new pathways for treating human neurological diseases.
Delphi study establishes 32 core competencies for hospice physicians treating psychological aspects of serious illness.
Head-to-head comparison shows bioMΓ©rieux's latest MALDI-TOF system delivers comparable accuracy with workflow advantages for high-volume labs.
New AI approach combines large language models with verified medical data to reduce errors and improve radiology workflows.
Systems analysis of Kenya's diabetes care exposes interconnected failures across governance, workforce, and financing that block quality treatment.
New manifesto outlines how digital twin technology could revolutionize pathology workflows, reducing diagnostic errors by up to 90% and cutting turnaround times.
New research reveals how protein S-glutathionylation acts as a cellular defense mechanism against ferroptosis when glutathione levels drop.
New study reveals how blocking ribosome production makes cancer cells vulnerable to ferroptosis, an iron-dependent cell death pathway.
Ketone body Ξ²-OHB prevents sepsis-induced liver damage by modifying antioxidant enzyme SOD2, offering new therapeutic approach.
Scientists discover GSK3Ξ²-mediated pathway that could treat kidney disease more safely than current Nrf2 therapies.
Researchers discover unique molecular patterns in lipedema patients and develop predictive models for this poorly understood condition affecting women.
Researchers identify transthyretin (TTR) as a potential biomarker for postoperative cognitive dysfunction, offering new diagnostic hope.