Original Article

Coffee-Derived Exosome-Like Nanoparticles: Are They the Secret Heroes?

Volume 34 · Issue 2 Publish Date: October 19, 2022
Full Text PDF
DOI
Murat Kantarcıoğlu
LÖSEV LÖSANTE Hospital Ankara Turkey
Gülşen Yıldırım
LÖSEV LÖSANTE Hospital Ankara Turkey
Pınar Akpınar Oktar
LÖSEV LÖSANTE Hospital Ankara Turkey
Serpil Yanbakan
LÖSEV LÖSANTE Hospital Ankara Turkey
Zeynep Büşra Özer
Ankara University Stem Cell Institute Ankara Turkey
Deniz Yurtsever Sarıca
LÖSEV LÖSANTE Hospital Ankara Turkey
Serpil Taşdelen
LÖSEV LÖSANTE Hospital Ankara Turkey
Emel Bayrak
LÖSEV LÖSANTE Hospital Ankara Turkey
Dilara Fatma Akın Balı
Department of Medical Biology Niğde Ömer Halis University Faculty of Medicine Niğde Turkey
Seçkin Öztürk
Middle East Technical University Ankara Turkey
Kamil Can Akçalı
Ankara University Stem Cell Institute Ankara Turkey
Üstün Ezer
LÖSEV LÖSANTE Hospital Ankara Turkey
Ahmet Emin Kürekçi
LÖSEV LÖSANTE Hospital Ankara Turkey
Kantarcıoğlu, M., Yıldırım, G., Akpınar Oktar, P., Yanbakan, S., Özer, Z. B., Yurtsever Sarıca, D., … Kürekçi, A. E. (2022). Coffee-Derived Exosome-Like Nanoparticles: Are They the Secret Heroes?. Turkish Journal of Gastroenterology, 34(2), 161–169. https://doi.org/10.5152/tjg.2022.21895
Full Text PDF

Abstract

Background: Regular coffee consumption has beneficial and preventative effects on liver and chronic neurodegenerative diseases. However, the studies performed with the ingredients found in coffee beverages have not clarified the responsible mechanisms. Exosomes are small, membrane-coated cargo packages secreted by prokaryote and eukaryote cells. Exosomes regulate intercellular communication and affect cellular metabolic activities even among different species. In this study, we aimed to isolate and characterize the edible plant-derived exosome-like nanoparticles from roasted hot coffee beverages, hypothesizing that the edible plant-derived exosome-like nanoparticles were responsible for the beneficial effects of coffee. Methods: Size exclusion chromatography and commercial kits were used for the isolation process. Efficient coffee edible plant-derived exosome-like nanoparticle fractions were determined by an ultraviolet-visible spectrophotometer. Harvested coffee edible plant-derived exosome-like nanoparticles were characterized by transmission electron microscopy. The quantification procedure was performed using a commercial kit. Coffee edible plant-derived exosome-like nanoparticles’ proliferative effects on human hepatic stellate cells and human hepatocellular carcinoma cells were studied using an MTT (3-(4,5-Dimethylthiazol-2-yl)-2,5-Diphenyltetrazolium Bromide) assay. Whole-exosome RNA sequencing was performed. Results: Transmission electron microscopy scanning analysis indicated round-shaped nanoparticles with sizes ranging from 40 to 100 nm. Both size exclusion chromatography and kit-isolated edible plant-derived exosome-like nanoparticle samples showed maximum absorbance at 227.5 nm in ultraviolet-visible spectrophotometer analysis. Regarding the quantitation results, kit isolation was more efficient than the size exclusion chromatography method when the harvested particle numbers were compared. An important MTT assay finding confirmed the observed beneficial effects of coffee beverages: coffee edible plant-derived exosome-like nanoparticles significantly suppressed hepatocellular carcinoma cell proliferation. As a result of sequencing, we identified 15 mature miRNAs. A MapReduce-based MicroRNA Target Prediction Method (The DIANA tools’ MR-microT algorithm) highlighted 2 genes specifically associated with the miRNAs that we obtained: KMT2C and ZNF773. Conclusion: For the first time in the literature, coffee edible plant-derived exosome-like nanoparticles were identified. These nanoparticles may have therapeutic effects on chronic liver diseases. Experimental studies, therefore, should be performed on disease models to demonstrate their efficacy. Cite this article as: Kantarcıoğlu M, Yıldırım G, Akpınar Oktar P, et al. Coffee-derived exosome-like nanoparticles: Are they the secret heroes? Turk J Gastroenterol. 2023;34(2):161-169.

Most read articles by the same author(s)

Article Info
Published In
Journal Turkish Journal of Gastroenterology
Volume / Issue Volume 34 · Issue 2
Pages 161-169
History
Published Online October 19, 2022
License
Copyright
Affiliations
Murat Kantarcıoğlu
LÖSEV LÖSANTE Hospital Ankara Turkey
Gülşen Yıldırım
LÖSEV LÖSANTE Hospital Ankara Turkey
Pınar Akpınar Oktar
LÖSEV LÖSANTE Hospital Ankara Turkey
Serpil Yanbakan
LÖSEV LÖSANTE Hospital Ankara Turkey
Zeynep Büşra Özer
Ankara University Stem Cell Institute Ankara Turkey
Deniz Yurtsever Sarıca
LÖSEV LÖSANTE Hospital Ankara Turkey
Serpil Taşdelen
LÖSEV LÖSANTE Hospital Ankara Turkey
Emel Bayrak
LÖSEV LÖSANTE Hospital Ankara Turkey
Dilara Fatma Akın Balı
Department of Medical Biology Niğde Ömer Halis University Faculty of Medicine Niğde Turkey
Seçkin Öztürk
Middle East Technical University Ankara Turkey
Kamil Can Akçalı
Ankara University Stem Cell Institute Ankara Turkey
Üstün Ezer
LÖSEV LÖSANTE Hospital Ankara Turkey
Ahmet Emin Kürekçi
LÖSEV LÖSANTE Hospital Ankara Turkey
Cite this Article
Kantarcıoğlu, M., Yıldırım, G., Akpınar Oktar, P., Yanbakan, S., Özer, Z. B., Yurtsever Sarıca, D., … Kürekçi, A. E. (2022). Coffee-Derived Exosome-Like Nanoparticles: Are They the Secret Heroes?. Turkish Journal of Gastroenterology, 34(2), 161–169. https://doi.org/10.5152/tjg.2022.21895
Outlines