Scientists Create Lab-Grown Adrenal Glands That Could Replace Hormone Therapy
Researchers developed functional adrenal tissue from stem cells, opening new paths for treating hormone disorders and aging.
20 articles
Researchers developed functional adrenal tissue from stem cells, opening new paths for treating hormone disorders and aging.
Dihydrotestosterone treatment restored heart function in aging mice by activating DNA repair mechanisms and reducing inflammation.
Systematic review reveals hyperbaric oxygen therapy improved bone density and strength through multiple biological pathways in rats.
Breakthrough prodrug technology enables oral delivery of allopregnanolone, showing promise for treating anxiety and mood disorders.
Researchers at MIT outline strategies to precisely control the type and strength of immune responses triggered by mRNA vaccines.
New review explores how lab-grown organ models are revolutionizing personalized medicine and drug development.
New ESHRE guidelines define best practices for testicular tissue cryopreservation in children facing gonadotoxic therapies, covering eligibility, counselling, and biopsy protocols.
Comprehensive review examines peptides like BPC-157 and TB-500 for wound healing, muscle repair, and recovery optimization in orthopedic medicine.
A sweeping review maps every known strategy for delivering therapies directly to mitochondria, from lifestyle habits to nanocarriers and gene editing.
New minimally invasive techniques for thyroid cancer surgery offer better cosmetic outcomes and faster healing compared to traditional open surgery.
Blocking zinc transport in stem cell-derived pancreatic islets improves their survival and function after transplantation for diabetes treatment.
Breakthrough review reveals how modern diabetes treatments protect multiple organs and may extend healthy lifespan through novel mechanisms.
Master the cutting-edge molecular targets, clinical trial data, and emerging therapeutic strategies aimed at reversing ECM aging โ from senolytic combinations to biomaterial scaffolds and epigenetic reprogramming.
Mitochondria-targeted antioxidant polymer shows superior protection against liver transplant injury compared to standard treatments.
Scientists modified E. coli to produce nitric oxide inside tumors, dramatically improving immune system response to cancer treatment.
New spatial mapping reveals how gene therapy vectors differently affect male and female liver function and metabolism.
New research reveals that targeting a specific toxic protein variant may be more effective than current Huntington's treatments.
Researchers used prime editing to introduce and then correct a de novo GDF11 nonsense mutation, revealing Golgi stress and broad transcriptomic dysregulation.
A new class of drugs called proximity degraders can destroy disease-causing proteins once considered untreatable. Here's what's coming next.
Scientists created 60 patient-derived models that mirror real breast cancers, revealing which drug combinations work best.