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Human Umbilical Cord Mesenchymal Stem Cells Protect against Ferroptosis in Acute Liver Failure through the IGF1-Hepcidin-FPN1 Axis and Inhibiting Iron Loading

[Acta Biochimica Et Biophysica Sinica] Researchers investigated the positive effects of MSCs against ferroptosis in an acute liver failure model and explore the underlying molecular mechanisms of their therapeutic function.

Platelet-Rich Plasma-Derived Exosomes Boost Mesenchymal Stem Cells to Promote Peripheral Nerve Regeneration

[Journal Of Controlled Release] Scientists isolated platelet-rich plasma-derived exosomes, which contained abundant bioactive molecules, and investigated their potential to increase the regenerative capacity of MSCs.

Human Umbilical Cord Mesenchymal Stem Cells Improve Lung Function in Chronic Obstructive Pulmonary Disease Rat Model through Regulating Lung Microbiota

[Stem Cells] The administration of umbilical cord-MSCs in rats led to a progressive amelioration of chronic obstructive pulmonary disease, as demonstrated by enhanced lung function and reduced inflammatory response.

Protective Effect of Secretory APE1/Ref-1 on Doxorubicin-Induced Cardiotoxicity via Suppression of ROS and p53 Pathway

[ESC Heart Failure] Designated adenoviral preprotrypsin-leading sequence apurinic/apyrimidinic endonuclease 1/redox factor-1 (APE1/Ref-1) was used to overexpress secretory APE1/Ref-1 and assess its role in preventing doxorubicin-induced cardiomyopathy in vitro.

VEXAS Syndrome Is Characterized by Inflammasome Activation and Monocyte Dysregulation

[Nature Communications] Investigators studied a unique prospective cohort of vacuoles, E1 enzyme, X-linked, autoinflammatory, somatic (VEXAS) patients. They showed that monocytes from VEXAS are quantitatively and qualitatively impaired and display features of exhaustion with aberrant expression of chemokine receptors.

The Immune Suppressor IGSF1 as a Potential Target for Cancer Immunotherapy

[Cancer Immunology Research] Scientists identified a novel immunotherapeutic target, immunoglobulin superfamily member 1 (IGSF1), by proteome analysis, a membrane glycoprotein proposed to regulate thyroid function.

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