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Mount Sinai study uncovers how loss of the critical tumor suppressor p53 enables mutant cells to expand through normal tissue

A Mount Sinai study reveals that loss of p53 can reorganize Wnt signaling into a radial gradient, allowing mutant cells to expand through normal tissue. The researchers found that the spatial organization of Wnt signaling, rather than its overall activity, plays a critical role in this process.

New method creates human trophoblast stem cells from late-gestation placentas

Researchers at Kumamoto University and collaborators developed a method to produce human trophoblast stem cells from late-gestation placentas, opening a new avenue for studying pregnancy complications. The resulting patient-derived models reproduce key features associated with preeclampsia, enabling the uncovering of molecular mechanis...

SourceKumamoto University·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateAug 25, 2026

University of Colorado Anschutz researchers identify an “energy addiction” in high-risk blood cancer stem cells

Researchers at the University of Colorado Anschutz Cancer Center have identified a previously unknown metabolic weakness in high-risk myelodysplastic syndromes (MDS), a discovery that could lead to more targeted treatments for this aggressive blood cancer. The study found that high-risk MDS stem cells are unusually dependent on nicotin...

SourceUniversity of Colorado Anschutz·JournalBlood Cancer Discovery·DateAug 10, 2026

Seeing with fresh eyes: Snails as a system for studying sight restoration

Researchers have established apple snails as a system to study eye regeneration, which may hold the key for restoring vision due to damage and disease. The team discovered that the snail eye is anatomically similar to humans and can regrow itself, with genes such as pax6 playing a crucial role in development.

SourceStowers Institute for Medical Research·JournalNature Communications·TypeExperimental study·DateAug 6, 2025

Precision oncology Organ Chip platform accurately and actionably predicts chemotherapy responses of patients suffering from esophageal adenocarcinoma

Researchers developed patient-specific Cancer Chips to model esophageal tumor microenvironments, enabling accurate prediction of chemotherapy responses. The approach can rapidly stratify patients into responders and non-responders, paving the way for personalized medicine.

SourceWyss Institute for Biologically Inspired Engineering at Harvard·JournalJournal of Translational Medicine·TypeExperimental study·DateJun 27, 2025

Researchers create ‘super stem cells’, seeing potential for improved fertility treatment

Scientists at the University of Copenhagen have created 'super stem cells' that outperform regular stem cells by developing into multiple cell types. These 'super stem cells' show promise in improving fertility treatment, particularly IVF success rates, by producing essential tissue for early embryonic development.

Mesenchymal stem cell-derived extracellular vesicles improve survival in mice exposed to high-dose irradiation

A new study found that mesenchymal stem cell-derived extracellular vesicles significantly enhance survival and facilitate substantial peripheral blood recovery in mice exposed to high-dose irradiation. The treatment promoted hematopoietic recovery, with increases in red blood cell, platelet, white blood cell, and hemoglobin levels.

SourceMary Ann Liebert, Inc./Genetic Engineering News·JournalStem Cells and Development·TypeExperimental study·DateApr 9, 2025

Groundbreaking study reveals changes in brain cell composition and gene activity in Tourette syndrome

Researchers analyzed brain tissue from individuals with severe Tourette syndrome and identified three key changes: altered gene activity, regulatory element modifications, and interneuron loss. These findings provide unprecedented insights into the disorder's biology and may explain why individuals experience involuntary movements and ...

SourceElsevier·JournalBiological Psychiatry·TypeExperimental study·DateApr 8, 2025

Yonatan Stelzer earns the 2025 ISSCR Outstanding Young Investigator Award for his breakthrough approaches to addressing fundamental problems in mammalian development

Dr. Yonatan Stelzer has made significant contributions to understanding epigenetic mechanisms and embryonic development, challenging conventional knowledge with innovative approaches. His research aims to establish fully data-driven quantitative models of spatiotemporal processes in mammals.

Paola Arlotta receives the 2025 ISSCR Momentum Award for her innovative work using stem cell-derived brain organoids to study human brain development and disease

Dr. Paola Arlotta's groundbreaking research on stem cell-derived brain organoids has redefined human brain development and neurological disease understanding. Her work provides access to the complexities of developing human brains, making her a deserving recipient of the ISSCR Momentum Award.

First mouse with two male parents to reach adulthood

Researchers successfully created a bi-paternal mouse by modifying genes involved in reproduction. The mice that reached adulthood exhibited altered growth and shortened lifespan, but could potentially lead to new therapeutic strategies for imprinting-related diseases.

SourceCell Press·JournalCell Stem Cell·TypeExperimental study·DateJan 28, 2025

The Terasaki Institute for Biomedical Innovation partners with the Technology Innovation Institute to further drug discovery and disease modeling in neurology

The collaboration aims to develop advanced 3D mini-brain models for replicating human brain architecture, enabling researchers to explore neurological diseases and screen drug candidates. The platform offers a high-throughput screening method for rapid testing of potential drug candidates.

AI transforms label-free photoacoustic microscopy into confocal microscopy: A new frontiers in cell imaging technology

Researchers developed an AI-powered technology that transforms low-resolution, label-free images into high-resolution, virtually stained ones without fluorescent dyes. This innovation delivers stable and accurate cell visualization, overcoming limitations of traditional imaging methods.

SourcePohang University of Science & Technology (POSTECH)·JournalNature Communications·DateJan 16, 2025

New insights into genes' role in craniofacial development and genetic disorder

A team of experts has discovered that the ARID1A gene regulates a critical genetic program for cell migration, with ZIC2 identified as a crucial regulator in this process. This study expands our understanding of craniofacial development and provides valuable insights into the genetic causes of congenital diseases.

SourceUniversidad Miguel Hernandez de Elche·JournalAmerican Journal of Human Genetics·TypeExperimental study·DateDec 13, 2024

Low gravity in space travel found to weaken and disrupt normal rhythm in heart muscle cells

Researchers found that low gravity conditions in space weaken and disrupt the normal rhythmic beats of human bioengineered heart tissue samples. The tissues on the International Space Station beat about half as strong as those on Earth, and developed irregular beating patterns that can cause a human heart to fail.

SourceJohns Hopkins Medicine·JournalProceedings of the National Academy of Sciences·DateSep 23, 2024

Unlocking the potential of patient-derived organoids for personalized sarcoma treatment

Researchers at UCLA Health Jonsson Comprehensive Cancer Center developed a biobank of 294 samples from 126 patients with 25 different subtypes of bone and soft tissue sarcoma. The team created tumor organoids that retained key characteristics of the original tumors, which were then subjected to high-throughput drug screening. They iden...