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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

FLIpping the Switch: Boosting stem cell numbers for therapies

Researchers discovered a molecular switch, FLI-1, essential for blood stem cells to enter an activated state. Transiently producing FLI-1 in quiescent adult mobilized bone marrow stem cells activates them, improving their ability to expand and restore the blood cell supply in a new host.

SourceWeill Cornell Medicine·JournalNature Immunology·DateMar 10, 2025

uOttawa study unveils new insights into how neural stem cells are activated in the adult human brain

A University of Ottawa neuroscientist has led a Canadian research team to discover how neural stem cells integrate signals from different cell types and decode them. The study found that low daughter cell numbers trigger activation, while high numbers keep them in quiescence, offering new insights into cellular relationships and potent...

SourceUniversity of Ottawa·JournalCell Stem Cell·DateFeb 6, 2025
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The origin of stem cells

Researchers identified critical proteins involved in animal stem cell regulation, including SOX and POU transcription factors, which existed in single-celled organisms over 700 million years ago. These ancient proteins retained functional properties that enabled them to induce stem cell reprogramming in mouse cells.

SourceMax-Planck-Gesellschaft·JournalNature Communications·DateNov 21, 2024

Keeping close watch on stem cells

Researchers at Osaka University have created an innovative device called INSPCTOR that enables real-time remote monitoring of cell growth in incubators. This technology allows for effective quality control and precise measurement of cellular transformation, which is crucial for advancements in regenerative medicine and drug discovery.

SourceOsaka University·JournalLab on a Chip·TypeImaging analysis·DateOct 30, 2024
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Decoding cell fate: Key mechanism in stem cell switch identified

Researchers at IMBA Institute of Molecular Biotechnology have identified a new gene, Daam1, that plays an essential role in switching on the development of secretory cells in the intestine. The finding opens new perspectives in cancer research.

SourceIMBA- Institute of Molecular Biotechnology of the Austrian Academy of Sciences·JournalScience Advances·TypeExperimental study·DateNov 24, 2023

Researchers identify stem cells in the thymus for the first time

For the first time, researchers have identified self-renewing stem cells in the human thymus, which could lead to new treatments for immune diseases and cancer. The thymus, a gland located in the chest, was previously thought not to contain epithelial stem cells.

SourceThe Francis Crick Institute·JournalDevelopmental Cell·TypeExperimental study·DateAug 30, 2023
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Researchers overcome stem cell delivery barrier, paving the way for regenerative medicine

Scientists have developed a new method to deliver genetic information to stem cells using nanoparticles coated with a specific polymer, enabling more efficient control over cellular differentiation. This innovation has the potential to improve the efficiency and effectiveness of regenerative medicine treatments.

SourceXi'an Jiaotong-Liverpool University·JournalNano Letters·TypeExperimental study·DateMay 8, 2023

"Sticky" stem cells make for better transplants

A KAUST-led research team identified two drug treatments that boost the activity of molecules involved in cell adhesion, enhancing the ability of blood-forming stem cells to enter the bloodstream and produce new blood. This breakthrough could lead to improved bone marrow transplant success for leukemia patients.

SourceKing Abdullah University of Science & Technology (KAUST)·JournalBlood Advances·DateAug 25, 2022

Cell mapping close to the bone

A new study reveals a previously unrecognized level of heterogeneity and specialization of endothelial and mesenchymal cells in the bone marrow. By integrating single-cell gene expression data, researchers identified 14 endothelial and 11 mesenchymal subclusters, providing insights into blood stem cell self-renewal and differentiation

SourceKing Abdullah University of Science & Technology (KAUST)·JournaliScience·DateAug 16, 2022
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A newly identified stem cell regulator enables lifelong sperm production

Research by Jeremy Wang at the University of Pennsylvania has discovered that DOT1L, a stem cell self-renewal factor, is essential for mice to produce sperm throughout their adult lives. The team found that mice lacking DOT1L fail to maintain spermatogonial stem cells and lose the ability to continuously produce sperm.

SourceUniversity of Pennsylvania·JournalGenes & Development·TypeExperimental study·DateJul 14, 2022

The beginning of life: The early embryo is in the driver's seat

Researchers using 'blastoids' - in vitro models of the blastocyst - discovered that early embryonic signals induce placental development and prepare the uterus. The findings may contribute to a better understanding of human fertility and potentially improve IVF procedures, fertility drugs, and contraceptives.

SourceIMBA- Institute of Molecular Biotechnology of the Austrian Academy of Sciences·JournalCell Stem Cell·TypeExperimental study·DateJul 7, 2022

Exploiting a vulnerability in an aggressive leukemia affecting babies

Researchers discovered that leukemia-initiating cells in MLL-rearranged B-ALL can switch between two metabolic states, which makes them difficult to target. Targeting the quiet, stem cell-like state curbs the leukemia by forcing the cells back to an active proliferation state.

SourceBoston Children's Hospital·JournalCell Reports·DateJun 1, 2022

Key protein identified for brain stem cell longevity

A receptor protein called insulin receptor is pivotal for brain stem cell longevity, according to a Rutgers study. The researchers also found that the same protein plays a crucial role in sustaining brain cancer cells.

SourceRutgers University·JournalStem Cell Reports·TypeExperimental study·DateMay 11, 2022

How genome organization influences cell fate

A team of researchers at UC Riverside has discovered that a protein complex called CAF-1 controls genome organization to maintain lineage fidelity in blood stem cells. The study found that CAF-1 keeps specific genomic sites compacted and inaccessible to transcription factors, ensuring the expression of lineage-specific genes.

SourceUniversity of California - Riverside·JournalNature Communications·TypeExperimental study·DateApr 29, 2022
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Lab grown, self-sustainable muscle cells repair muscle injury and disease, mouse study shows

Scientists at Johns Hopkins Medicine have successfully cultivated human muscle stem cells capable of renewing themselves and repairing muscle tissue damage in mice. The self-renewing stem cells were created by reprogramming laboratory-grown human skin cells, which then differentiated into specific cell types using a nutrient-rich broth.

SourceJohns Hopkins Medicine·JournalCell Stem Cell·DateApr 20, 2022

Researchers identify key regulator of blood stem cell development

A new study reveals that histone H3.3 plays a crucial role in maintaining the balance between self-renewal and differentiation of blood stem cells, leading to abnormalities when deleted. The protein anchors key epigenetic marks at developmental genes and endogenous retroviruses, contributing to an inflammatory response and skewed produ...

SourceWeill Cornell Medicine·JournalNature Cell Biology·DateJan 28, 2022
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Stem cell study paves way for manufacturing cultured meat

Researchers have successfully derived stem cells from pigs, sheep, and cattle embryos grown under chemically defined conditions, paving the way for the mass production of cell-cultured meat. This breakthrough enables the creation of lab-grown food products with improved consistency and safety.

SourceUniversity of Nottingham·JournalDevelopment·TypeExperimental study·DateDec 7, 2021

Building the ovarian environment from stem cells

Researchers at Kyushu University successfully reconstitute the ovarian follicle from mouse stem cells, generating functional egg cells and growing viable mice. This breakthrough could lead to new treatments for infertility and help conserve endangered animals through egg cell production.

SourceKyushu University·JournalScience·TypeExperimental study·DateSep 14, 2021

How blood stem cells maintain their lifelong potential for self-renewal

In mice, blood vessel cells produce factor that stimulates blood stem cells, maintaining their self-renewal capacity. However, production of this factor ceases with aging, leading to loss of self-renewal ability and weakening of the immune system.

SourceGerman Cancer Research Center (Deutsches Krebsforschungszentrum, DKFZ)·JournalNature Communications·DateJan 27, 2021
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Researchers identify protein that governs human blood stem cell self-renewal

Scientists at UCLA have discovered a key protein that enables human blood stem cells to self-renew in laboratory conditions. Activating this protein, MLLT3, increases the number of blood stem cells by at least twelvefold, opening up new possibilities for treating blood disorders.

SourceUniversity of California - Los Angeles Health Sciences·JournalNature·DateNov 27, 2019

How sperm stem cells maintain their number

Researchers discovered a novel mechanism for sperm stem cell number control, where cells migrate and compete for fibroblast growth factors (FGFs). This self-organized process regulates stem cell density in the testis, maintaining uniformity despite the absence of a canonical niche.

SourceNational Institutes of Natural Sciences·JournalCell Stem Cell·DateDec 20, 2018

Culturing cheaper stem cells

Kyoto University scientists have created a more cost-effective culture system for human pluripotent stem cells (hPSCs), which can support their long-term renewal without expensive growth factors. The new 'AKIT' culture, using three chemical compounds, is five to ten times cheaper than existing methods.

SourceKyoto University·JournalNature Biomedical Engineering·DateMar 5, 2018

Epigenetic signaling axis regulates proliferation and self-renewal of neural stem/progenitor cells

Researchers discovered a novel epigenetic signaling axis involving PRC1, microRNA, and PRC2 that regulates the self-renewal and proliferation of neural stem/progenitor cells. The study found that Ezh2 represses miR-203 expression, which negatively regulates self-renewal and proliferation but promotes neuronal differentiation.

SourceChinese Academy of Sciences Headquarters·JournalStem Cell Reports·DateJun 12, 2017

Gene deletion allows cancer cells to thrive when migrating within the brain

A study at the University of Texas MD Anderson Cancer Center found that the tumor suppressor gene quaking (QKI) plays a major regulator role in cancer stem cells of glioblastoma, the deadliest type of brain tumor. QKI impacts cellular activity called endocytosis, allowing glioma stem cells to thrive in inhospitable sites.

SourceUniversity of Texas M. D. Anderson Cancer Center·JournalNature Genetics·DateNov 14, 2016
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Researchers describe bone marrow stem cell population with potential for repeat transplantation

A new study reveals that non-blood cell forming stem cells in human bone marrow play a crucial role in maintaining the hematopoietic microenvironment and retain self-renewal potential after primary and secondary transplantations. The findings suggest an alternative to traditional hematopoietic stem cell transplantation.

SourceMary Ann Liebert, Inc./Genetic Engineering News·JournalStem Cells and Development·DateNov 9, 2016

New stem cell model valuable tool for studying Andersen's syndrome

Researchers successfully reprogrammed muscle cells from patients with Andersen's syndrome to create induced pluripotent stem (iPS) cells, which can serve as a model for understanding the cause of the rare disorder. The iPS cells demonstrated self-renewal and pluripotency capabilities without affecting the gene mutation known to cause AS.

SourceMary Ann Liebert, Inc./Genetic Engineering News·JournalStem Cells and Development·DateFeb 1, 2016

Blood stem cell self-renewal dependent on surroundings

Researchers at TUM discovered that blood stem cells renew themselves through interaction with surrounding tissue cells, which influences the microenvironment. This feedback loop is essential for maintaining stem cell pool replenishment and has implications for treating leukemia.

SourceTechnical University of Munich (TUM)·JournalStem Cell Reports·DateNov 3, 2015

Factor found to balance medically useful stem cell qualities

A study led by Mount Sinai researchers identifies zinc finger protein 217 (ZFP217) as a factor that regulates stem cell self-renewal and differentiation, potentially balancing medically useful qualities for therapeutic applications. The discovery builds on understanding epigenetic mechanisms controlling gene expression.

SourceThe Mount Sinai Hospital / Mount Sinai School of Medicine·JournalCell Stem Cell·DateOct 29, 2015
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Stem cells in the brain: Limited self-renewal

The generation of neurons in humans is limited to development, and this process declines with age due to the limited self-renewal of neural stem cells. Therapeutic approaches must focus on maintaining stem cell supply by promoting their self-renewal rate.

SourceHelmholtz Munich (Helmholtz Zentrum München Deutsches Forschungszentrum für Gesundheit und Umwelt (GmbH))·JournalNature Neuroscience·DateMar 11, 2015

Approved breast cancer drug offers hope for the treatment of blood disorders

Researchers discovered that tamoxifen, a breast cancer drug, can target and control the survival and proliferation of stem cells responsible for blood cancers. The study found that activation of estrogen receptors with tamoxifen could block the excessive production of abnormal white blood cells in mice with blood neoplasms.

SourceCell Press·JournalCell Stem Cell·DateDec 4, 2014

Morgridge scientists find way to 'keep the lights on' for cell self-renewal

Researchers at Morgridge Institute for Research discovered a method to impose an immortal-like state on mouse progenitor cells responsible for producing blood and vascular tissue. The breakthrough enables the creation of functional endothelial, blood, and smooth muscle cells, paving the way for cell-based therapies and drug screening.

SourceMorgridge Institute for Research·JournalStem Cell Reports·DateNov 13, 2014

Fasting triggers stem cell regeneration of damaged, old immune system

A study published in Cell Stem Cell shows that prolonged fasting cycles can induce immune system regeneration by shifting stem cells into a state of self-renewal. This process involves the depletion of white blood cells, which are then replaced by new ones, leading to improved immune function.

SourceUniversity of Southern California·JournalCell Stem Cell·DateJun 5, 2014
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USC researcher reveals how to better master stem cells' fate

Researchers at USC have identified a novel way of culturing human ESCs by focusing on the Wnt/beta-catenin signaling pathway. This discovery reveals the important role of Tfcp2l1 in communicating to ESCs that they should self-renew, offering promise for developing stem cell-based therapies for diseases such as Parkinson's and spinal co...

SourceUniversity of Southern California - Health Sciences·JournalNature Communications·DateOct 23, 2013

Researchers find molecular switch turning on self-renewal of liver damage

A protein complex has been identified that acts as a molecular switch turning on the self-regeneration program in the liver, allowing ordinary liver cells to divide and repair tissue damage. This finding challenges the current focus on stem cells and may lead to easier therapeutic treatments.

SourceUniversity of Copenhagen·JournalGenome Research·DateMar 7, 2013

Research could help people with declining sense of smell

Researchers have identified a genetic trigger that promotes the differentiation of olfactory stem cells into sensory neurons in the nose epithelia. This discovery provides potential therapeutic strategies for treating anosmia and other age-related declines in sense of smell.

SourceUniversity of California - Berkeley·JournalNeuron·DateDec 7, 2011

How long do stem cells live?

Researchers created a computer program that predicts the lifespan of hematopoietic stem cells, finding that each cell has a set amount of time for self-renewal. This understanding can improve the safety and efficacy of bone marrow transplants and potentially lead to breakthroughs in regenerative medicine.

SourceSanford Burnham Prebys·JournalProceedings of the National Academy of Sciences·DateMar 1, 2011
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Erg gene key to blood stem cell 'self-renewal'

Researchers from the Walter and Eliza Hall Institute have identified the Erg gene as crucial for blood stem cells' ability to self-renew. This discovery holds promise for developing new therapies using blood stem cells for tissue repair, transplantation, and other applications.

SourceWalter and Eliza Hall Institute·JournalGenes & Development·DateFeb 16, 2011

Mechanism that may trigger degenerative disease identified

Researchers discovered a key regulator of spermatogonial stem cell self-renewal by manipulating the STAT3 protein. This process may be linked to degenerative diseases in humans, highlighting the importance of understanding stem-cell activity in disease prevention and treatment.

SourcePenn State·JournalBiology of Reproduction·DateJun 25, 2010
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Predicting the fate of stem cells

Researchers at Rensselaer Polytechnic Institute have developed a new method to predict the fate of stem cells using advanced computer vision technology. With up to 99 percent accuracy, this method can forecast how cells will divide and what characteristics their daughter cells will exhibit.

SourceRensselaer Polytechnic Institute·JournalNature Methods·DateMar 1, 2010

Neural stem cell differentiation factor discovered

Researchers at Goethe University Frankfurt identified a soluble Notch inhibitor, EGFL7, which blocks neural stem cell self-renewal and promotes differentiation into neurons. The findings offer potential medical applications in tissue development and neurodegenerative diseases.

SourceGoethe University Frankfurt·JournalNature Cell Biology·DateJun 30, 2009
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An unexpected way to cause leukemia

A new mouse model has granted insight into the genetic and molecular mechanisms underlying acute myeloid leukemia. The study reveals that a specific mutation triggers innate genetic programmes allowing white blood cells to proliferate uncontrollably.

SourceEuropean Molecular Biology Laboratory·JournalCancer Cell·DateApr 7, 2008

Scientists discover tiny RNAs play a big role in controlling genes

Researchers at Yale University's Stem Cell Center discovered piRNAs, a recently identified class of tiny RNAs, play a crucial role in regulating gene function and stem cell fate. The study found over 13,000 piRNAs in fruit flies, revealing their importance in controlling chromatin and gene expression.

SourceYale University·JournalNature·DateOct 25, 2007
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