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Published on: September 23, 2021
Tiny Actors in the Big Cellular World: Extracellular Vesicles Playing Critical Roles in Cancer
Ancuta Jurj1, Cecilia Pop-Bica1, Ondrej Slaby2,3
1Research Center for Functional Genomics, Biomedicine and Translational Medicine, "Iuliu Hațieganu" University of Medicine and Pharmacy, 400337 Cluj-Napoca, Romania.
Abstract:
Communications among cells can be achieved either via direct interactions or via secretion of soluble factors. The emergence of extracellular vesicles (EVs) as entities that play key roles in cell-to-cell communication offer opportunities in exploring their features for use in therapeutics; i.e., management and treatment of various pathologies, such as those used for cancer. The potential use of EVs as therapeutic agents is attributed not only for their cell membrane-bound components, but also for their cargos, mostly bioactive molecules, wherein the former regulate interactions with a recipient cell while the latter trigger cellular functions/molecular mechanisms of a recipient cell. In this article, we highlight the involvement of EVs in hallmarks of a cancer cell, particularly focusing on those molecular processes that are influenced by EV cargos. Moreover, we explored the roles of RNA species and proteins carried by EVs in eliciting drug resistance phenotypes. Interestingly, engineered EVs have been investigated and proposed as therapeutic agents in various in vivo and in vitro studies, as well as in several clinical trials.
Insights
Extracellular vesicles (EVs) are crucial for cell communication and hold therapeutic potential, especially in cancer treatment. Their cargos influence cancer hallmarks and drug resistance, driving research into engineered EVs for clinical applications.
Area of Science:
- Cell Biology
- Molecular Oncology
- Biotechnology
Background:
- Cell-to-cell communication occurs through direct contact or secreted factors.
- Extracellular vesicles (EVs) are key mediators of intercellular signaling.
- EVs are emerging as promising therapeutic agents, particularly for cancer management.
Purpose of the Study:
- To highlight the role of EVs in cancer hallmarks.
- To investigate the influence of EV cargos on cancer cell molecular processes.
- To explore the role of EV-carried RNA and proteins in drug resistance.
Main Methods:
- Review of literature on EVs in cancer.
- Analysis of EV cargos (RNA and proteins) and their functions.
- Examination of engineered EVs in preclinical and clinical studies.
Main Results:
- EVs influence key molecular processes in cancer cells.
- EV cargos, including RNA and proteins, contribute to cancer drug resistance.
- Engineered EVs show therapeutic potential in various studies and trials.
Conclusions:
- EVs are significant players in cancer progression and drug resistance.
- Targeting EV cargos offers a novel therapeutic strategy for cancer.
- Engineered EVs represent a promising frontier in cancer therapy development.
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