🫧 Extracellular Vesicles - Feb 2026

• NE+ EVs drive chronic inflammation and emphysema in COPD
• LipoFB-derived EVs restore lung cell function in COPD
• TIGIT in myeloid cells linked to immunosuppression in glioblastoma
• Mitochondrial transfer via EVs boosts glioblastoma resistance
• RORγ-enriched exosomes alleviate diabetic kidney injury
• EVs play key roles in metabolic regulation and disease

https://pir.sh/xMNdAr2a6e

#ExtracellularVesicles #CellBiology #Exosomes #Biology

Extracellular Vesicles Research Summary February 2026 - Summarized Science

Summary of key Extracellular Vesicles publications highlighting major findings, clinical relevance, and emerging research trends.

Extracellular Vesicles - Dec 2025 🧪

• Vesicle signaling linked to cancer progression and therapy resistance
• Exosome liquid biopsies show high accuracy for early cancer detection
• EVs mediate mitochondrial quality control and tissue protection
• Hybrid vesicles enhance oral antibiotic absorption and mitigate gut dysbiosis
• Engineered vesicles improve drug delivery

https://pir.sh/QMZgmwGdL5

#ExtracellularVesicles #Exosomes #LiquidBiopsy #Biology

Extracellular Vesicles Research Summary December 2025 - Summarized Science

Summary of key Extracellular Vesicles publications highlighting major findings, clinical relevance, and emerging research trends.

Study Links Genetic Control of Exosomes to Obesity and Insulin Resistance

@aibot How might targeting the genetic regulation of exosome biogenesis offer new treatments for obesity and insulin resistance, and what are the potential challenges in developing therapies that modulate exosome acti...

[View original comment]

Study Links Genetic Control of Exosomes to Obesity and Insulin Resistance

A recent study has uncovered a significant link between the genetic regulation of exosome biogenesis and metabolic disorders such as obesity and insulin resistance. Exosomes, tiny vesicles released by cells, play a crucial role in intercellular communication by transporting proteins, lipids, and nuc... [More info]

Creative Biolabs advances exosome research with cutting-edge platform upgrade, enabling precise RNA sequencing and advanced intercellular communication analysis across multiple disease domains #Exosomes #Biotech

See more testimonials like this, please visit our website: https://advancexo.com/dermatologist/.

#Exosomes #Health #SkinCare #HairCare

Advancexo Exosomes for Dermatologists | Dermatologically Tested Exosome

Dermatologists can utilize the powerful cell-free bioactivating exosomes to provide effective skin and hair treatment solutions with immediate and long-lasting results

Advancexo: A Premier Cell Manufacturing Organization
Inhalable NanoBubbles Treat Lung Cancer: Exosomes can carry mRNA into a cancer cell and goad it into manufacturing suicidal chemotherapy or immunotherapy. #exosomes #cancer #chemotherapy #immunotherapy #il12
https://www.instagram.com/p/C5WshKLr39o/

Just Published

Extracellular Vesicles as the Dynamic Structural and Functional Network in Aging-Related Diseases and Cancer Treatment

https://link.springer.com/chapter/10.1007/16833_2024_219

#Cancer #CancerResearch #CancerTherapy #Exosomes

Extracellular Vesicles as the Dynamic Structural and Functional Network in Aging-Related Diseases and Cancer Treatment

Extracellular vesicles (EVs) are membrane-encapsulated vesicles carrying various signal molecules, including metabolites, proteins, enzymes, genetic material, nucleic acids, mRNAs, noncoding RNAs, intact RNAs, lipids, organelles, ions, pathogenic microorganisms, and...

SpringerLink
Didier Serteyn on LinkedIn: There's no doubt that 2024 will bring many fascinating and astonishing…

There's no doubt that 2024 will bring many fascinating and astonishing discoveries in veterinary and human health!

Potential of miRNAs in Plasma Extracellular Vesicle for the Stratification of Prostate Cancer in a South African Population. https://doi.org/10.3390/cancers15153968 #ProstateCancer #ExtracellularVesicles #Exosomes #Mirna #Mir1945p
Potential of miRNAs in Plasma Extracellular Vesicle for the Stratification of Prostate Cancer in a South African Population

Prostate cancer (PCa) is the most common cause of cancer death among African men. The analysis of microRNAs (miRNAs) in plasma extracellular vesicles (EVs) can be utilized as a non-invasive tool for the diagnosis of PCa. In this study, we used small RNA sequencing to profile miRNAs cargo in plasma EVs from South African PCa patients. We evaluated the differential expression of miRNAs between low and high Gleason scores in the plasma EVs of South African patients and in the prostatic tissue from data available in the Cancer Genome Atlas (TCGA) Data Portal. We identified 7 miRNAs differently expressed in both EVs and prostatic tissues. We evaluated their expression using qPCR in a larger cohort of 10 patients with benign prostatic hyperplasia (BPH) and 24 patients with PCa. Here, we reported that the ratio between two of these miRNAs (i.e., miR-194-5p/miR-16-5p) showed a higher concentration in PCa compared to BPH and in metastatic PCa compared to localized PCa. We explored for the first time the profiling of miRNAs cargo in plasma EVs as a tool for the identification of putative markers in the South African population. Our finding indicated the ratio miR-194-5p/miR-16-5p as a non-invasive marker for the evaluation of PCa aggressiveness in this population.

MDPI