STEM CELLS Journal (@stemcellsjournl) 's Twitter Profile
STEM CELLS Journal

@stemcellsjournl

STEM CELLS, a peer reviewed journal published monthly, provides a forum for prompt publication of original investigative papers and concise reviews.

ID: 2903702021

linkhttps://academic.oup.com/stmcls calendar_today03-12-2014 12:43:25

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This study dissects the requirement for the miR-290 and miR-302 clusters during the reprogramming of mouse fibroblasts into induced pluripotent stem cells. academic.oup.com/stmcls/article


This study dissects the requirement for the miR-290 and miR-302 clusters during the reprogramming of mouse fibroblasts into induced pluripotent stem cells.
academic.oup.com/stmcls/article

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Congratulations to Dr. Michael Mullen, winner of the 2024 STEM CELLS Early Career Investigator Award academic.oup.com/stmcls/pages/2


Congratulations to Dr. Michael Mullen, winner of the 2024 STEM CELLS Early Career Investigator Award
academic.oup.com/stmcls/pages/2

STEM CELLS Journal (@stemcellsjournl) 's Twitter Profile Photo

This study investigated the molecular mechanisms that allow natural killer cells to respond to human pluripotent stem cells. doi.org/10.1093/stmcls


STEM CELLS Journal (@stemcellsjournl) 's Twitter Profile Photo

This work highlights the potential therapeutic value of targeting cellular senescence pathways in the treatment of premature osteoporosis and age-related bone loss. doi.org/10.1093/stmcls


This work highlights the potential therapeutic value of targeting cellular senescence pathways in the treatment of premature osteoporosis and age-related bone loss. doi.org/10.1093/stmcls

STEM CELLS Journal (@stemcellsjournl) 's Twitter Profile Photo

Study investigating the role of bone marrow mononuclear cells in activating angiogenesis provides new understanding of fracture healing mechanisms. doi.org/10.1093/stmcls


Study investigating the role of bone marrow mononuclear cells in activating angiogenesis provides new understanding of fracture healing mechanisms.
doi.org/10.1093/stmcls

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A serum- and feeder-free differentiation process, suitable for large-scale production of iPSC-derived CD4sp and regulatory T cells, is reported here. doi.org/10.1093/stmcls


A serum- and feeder-free differentiation process, suitable for large-scale production of iPSC-derived CD4sp and regulatory T cells, is reported here.
doi.org/10.1093/stmcls

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Interesting work aimed at using marsupial models for next-generation conservation and de-extinction efforts. doi.org/10.1093/stmcls


Interesting work aimed at using marsupial models for next-generation conservation and de-extinction efforts.
doi.org/10.1093/stmcls

Dr. Jan Nolta (@jan_nolta) 's Twitter Profile Photo

Congratulations to our amazing colleagues UC Davis Health for this excellent review in STEM CELLS Journal! Harnessing the diversity and potential of endogenous skeletal stem cells for musculoskeletal tissue regeneration academic.oup.com/stmcls/article


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Optimizing approaches for targeted integration of transgenic cassettes by integrase-mediated cassette exchange in mouse and human stem cells doi.org/10.1093/stmcls


Optimizing approaches for targeted integration of transgenic cassettes by integrase-mediated cassette exchange in mouse and human stem cells
doi.org/10.1093/stmcls

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Senescence accelerated mouse-prone 8: a model of neuroinflammation and aging with features of sporadic Alzheimer’s disease doi.org/10.1093/stmcls


Senescence accelerated mouse-prone 8: a model of neuroinflammation and aging with features of sporadic Alzheimer’s disease
doi.org/10.1093/stmcls

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This study demonstrated an unprecedented role of RUNX1 in regulating hematopoietic and mesenchymal fate decisions in human pluripotent stem cells-derived hematopoiesis. doi.org/10.1093/stmcls


This study demonstrated an unprecedented role of RUNX1 in regulating hematopoietic and mesenchymal fate decisions in human pluripotent stem cells-derived hematopoiesis. doi.org/10.1093/stmcls

STEM CELLS Journal (@stemcellsjournl) 's Twitter Profile Photo

First study to investigate the mechanism by which METTL3-mediated pri-miRNA m6A modification regulates human adipose-derived stem cell osteogenesis, presenting a novel therapeutic approach for bone defect repair and regeneration. doi.org/10.1093/stmcls


First study to investigate the mechanism by which METTL3-mediated pri-miRNA m6A modification regulates human adipose-derived stem cell osteogenesis, presenting a novel therapeutic approach for bone defect repair and regeneration.
doi.org/10.1093/stmcls

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A small molecule K-3 promotes PDX1 expression and potentiates the differentiation of pluripotent stem cells into insulin-producing pancreatic ÎČ cells doi.org/10.1093/stmcls


A small molecule K-3 promotes PDX1 expression and potentiates the differentiation of pluripotent stem cells into insulin-producing pancreatic ÎČ cells
doi.org/10.1093/stmcls

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Extracellular microvesicles/exosomes—magic bullets in horizontal transfer between cells of mitochondria and molecules regulating mitochondria activity doi.org/10.1093/stmcls


Extracellular microvesicles/exosomes—magic bullets in horizontal transfer between cells of mitochondria and molecules regulating mitochondria activity
doi.org/10.1093/stmcls

Dr. Jan Nolta (@jan_nolta) 's Twitter Profile Photo

Consistent self-organized emergence of hyaline cartilage in hiPSC-derived multi-tissue organoids academic.oup.com/stmcls/article


STEM CELLS Journal (@stemcellsjournl) 's Twitter Profile Photo

Patterning effects of FGF17 and cAMP on generation of dopaminergic progenitors for cell replacement therapy in Parkinson’s disease doi.org/10.1093/stmcls


Patterning effects of FGF17 and cAMP on generation of dopaminergic progenitors for cell replacement therapy in Parkinson’s disease
doi.org/10.1093/stmcls

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This study makes a contribution to the understanding of the pathophysiology of Huntington's disease. The results reveal the disruptive impact of mHTT on the development of medium spiny neurons that likely contributes to neurodegeneration. doi.org/10.1093/stmcls


This study makes a contribution to the understanding of the pathophysiology of Huntington's disease. The results reveal the disruptive impact of mHTT  on the development of medium spiny neurons that likely contributes to neurodegeneration.
doi.org/10.1093/stmcls