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Small Molecule-Mediated Reprogramming of Xenopus Blastula Stem Cells to a Neural Crest State

[Developmental Biology] Researchers reported a protocol for small molecule-mediated induction of the neural crest state from blastula stem cells and validated it using transcriptome analysis and grafting experiments.

Generation, Characterization, and Differentiation of Induced Pluripotent Stem-Like Cells in the Domestic Cat

[Journal Of Reproduction And Development] Investigators derived iPS cells from cat embryonic fibroblasts retrovirally transfected with mouse Oct3/4, Klf4, Sox2, and c-Myc. After transfection, embryonic fibroblasts were reseeded onto inactivated SNL 76/7 and cultured in a medium supplemented with basic fibroblast growth factor.

Human Umbilical Cord Mesenchymal Stem Cells Inhibit Liver Fibrosis via the microRNA-148a-5p/SLIT3 Axis

[International Immunopharmacology] The authors elucidated the intrinsic mechanisms underlying the therapeutic effects of human UC-MSCs in liver fibrosis patients.

NOTCH3 Signaling Controls Human Trophoblast Stem Cell Expansion and Differentiation

[Development] Using trophoblast stem cells, trophoblast organoids and primary cytotrophoblasts of early pregnancy, researchers showed that autocrine NOTCH3 signaling controlled human placental expansion and differentiation.

Efficacy and Safety of Allogeneic Umbilical Cord-Derived Mesenchymal Stem Cells for the Treatment of Complex Perianal Fistula in Crohn’s Disease: A Pilot Study

[Current Stem Cell Research & Therapy] Researchers evaluated the efficacy and safety of allogeneic umbilical cord-derived MSCs for complex perianal fistula in patients with Crohn’s disease.

PLGA Nanoparticles Engineering Extracellular Vesicles from Human Umbilical Cord Mesenchymal Stem Cells Ameliorates Polyethylene Particles Induced Periprosthetic Osteolysis

[Journal Of Nanobiotechnology] Scientists demonstrated that human UCMSCs-Exos-encapsulated poly lactic-co-glycolic acid nanoparticles stimulated osteogenic differentiation while inhibiting the generation of reactive oxygen species and subsequent osteoclast differentiation in vitro.

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