top of page

Resource Centre

Overview of Extracellular Vesicles, Their Origin, Composition, Purpose, and Methods for Exosome Isolation and Analysis

Doyle, L. M., & Wang, M. Z. (2019)

Exosomes as New Generation Vehicles for Drug Delivery: Biomedical Applications and Future Perspectives

Rajput, A., Varshney, A., Bajaj, R., & Pokharkar, V. (2022)

Exosome-based cell-cell communication in the tumor microenvironment

Maia, J., Caja, S., Strano Moraes, M. C., Couto, N., & Costa-Silva, B. (2018) 

Opportunities and challenges for nanotechnology in the agri-tech revolution

Lowry, G. V., Avellan, A., & Gilbertson, L. M. (2019)

Recent advances in exosome-based drug delivery for cancer therapy

Kim, H., Jang, H., Cho, H., Choi, J., Hwang, K. Y., Choi, Y., ... & Yang, Y. (2021)

Current and future prospects for nanotechnology in animal production

Hill, E. K., & Li, J. (2017)

Nanominerals: fabrication methods, benefits and hazards, and their applications in ruminants with special reference to selenium and zinc nanoparticles

Abdelnour, S. A., Alagawany, M., Hashem, N. M., Farag, M. R., Alghamdi, E. S., Hassan, F. U., ... & Attia, Y. A. (2021)

Apple Derived Exosomes Improve Collagen Type I Production and Decrease MMPs during Aging of the Skin through Downregulation of the NF-κB Pathway as Mode of Action

Trentini, M., Zanolla, I., Zanotti, F., Tiengo, E., Licastro, D., Dal Monego, S., ... & Zavan, B. (2022)

Overcome the barriers of the skin: exosome therapy

Yang, G. H., Lee, Y. B., Kang, D., Choi, E., Nam, Y., Lee, K. H., ... & Jeon, H. (2021)

The Potential of Bovine Colostrum-Derived Exosomes to Repair Aged and Damaged Skin Cells

Han, G., Kim, H., Kim, D. E., Ahn, Y., Kim, J., Jang, Y. J., ... & Kim, S. H. (2022)

Exosome loaded alginate hydrogel promotes tissue regeneration in full‐thickness skin wounds: An in vivo study

Shafei, S., Khanmohammadi, M., Heidari, R., Ghanbari, H., Taghdiri Nooshabadi, V., Farzamfar, S., ... & Tavoosidana, G. (2020)

Plant-derived nano and microvesicles for human health and therapeutic potential in nanomedicine

Alfieri, M., Leone, A., & Ambrosone, A. (2021)

Naturally occurring exosome vesicles as potential delivery vehicle for bioactive compounds

Akuma, P., Okagu, O. D., & Udenigwe, C. C. (2019)

Plant-derived exosome-like nanoparticles and their therapeutic activities

Kim, J., Li, S., Zhang, S., & Wang, J. (2022)

Isolation of cabbage exosome-like nanovesicles and investigation of their biological activities in human cells

You, J. Y., Kang, S. J., & Rhee, W. J. (2021)

bottom of page