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Exosomal Micro‐RNA‐96 Derived From Bone Marrow Mesenchymal Stem Cells Inhibits Doxorubicin‐Induced Myocardial Toxicity by Inhibiting the Rac1/Nuclear Factor‐κB Signaling Pathway

[Journal of the American Heart Association] Researchers investigated the functional mechanism of exosomal microRNA‐96 derived from bone marrow mesenchymal stem cells in myocardial toxicity induced by doxorubicin.

Melatonin Restores Osteoporosis-Impaired Osteogenic Potential of Bone Marrow Mesenchymal Stem Cells and Alleviates Bone Loss through the HGF/PTEN/Wnt/β-Catenin Axis

[Therapeutic Advances in Chronic Disease] Real-time qualitative PCR and Western blot analysis were conducted to determine expression of HGF, PTEN, and osteoblast differentiation-related genes in ovariectomy-induced osteoporosis mice and the isolated bone marrow MSCs.

Paeoniflorin Inhibits Proliferation and Migration of Psoriatic Keratinocytes via the lncRNA NEAT1/miR-3194-5p/Galectin-7 Axis

[Anti-Cancer Drugs] Psoriatic HaCat cells were used to investigate the function of NEAT1 and Galectin-7 as well as the effect and mechanism of paeoniflorin in psoriasis.

Inhibition of miR-144-3p Exacerbates Non-small Cell Lung Cancer Progression by Targeting CEP55

[Acta Biochimica et Biophysica Sinica] Researchers investigated the relationship between miR-144-3p and CEP55 expression. They evaluated the association between miR-144-3p and CEP55 expression and proliferation, invasion and apoptosis of non-small cell lung cancer cells.

Circ_FBLN1 Promotes the Proliferation and Osteogenic Differentiation of Human Bone Marrow-Derived Mesenchymal Stem Cells by Regulating Let-7i-5p/FZD4 Axis and Wnt/β-Catenin Pathway

[Journal of Bioenergetics and Biomembranes] The protein levels of osteogenesis-related genes, let-7i-5p, frizzled class receptor 4, Ki67, Wnt6 and β-catenin were measured by western blot assay. The levels of circ_FBLN1, FBLN1 mRNA and FZD4 mRNA were determined by quantitative real-time PCR assay.

Human Umbilical Cord Mesenchymal Stem Cells Deliver Exogenous miR-26a-5p via Exosomes to Inhibit Nucleus Pulposus Cell Pyroptosis through METTL14/NLRP3

[Molecular Medicine] The human umbilical cord MSC exosomes were found to effectively improve the viability of nucleus pulposus cells and protect them from pyroptosis through targeting METTL14, with a methyltransferase catalyzing m6A modification.

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