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Updated: Aug 13, 2025

Preparation of Exosomes for siRNA Delivery to Cancer Cells
Published on: December 5, 2018
Engineered Exosomes for Tumor-Targeted Drug Delivery: A Focus on Genetic and Chemical Functionalization
Ali Akbari1, Fereshteh Nazari-Khanamiri2, Mahdi Ahmadi3
1Solid Tumor Research Center, Cellular and Molecular Medicine Research Institute, Urmia University of Medical Sciences, Urmia 5714783734, Iran.
Abstract:
Cancer is the main cause of death worldwide. The limitations in traditional cancer therapies provoked the advance and use of several nanotechnologies for more effective and nontoxic cancer treatment. Along with synthetic nanocarriers, extracellular vesicles (EVs)-mediated drug delivery systems have aroused substantial interest. The term EVs refers to cell-derived nanovesicles, such as exosomes, with phospholipid-bound structures, participating in cell-to-cell communication. Exosomes are 30-150 nm vesicles that can transfer many biological molecules between cells. From a drug delivery standpoint, exosomes can be loaded with various therapeutic cargo, with the several advantages of low immunogenicity, high biocompatibility, transformative, and effective tumor targeting aptitude. The exosomal surface can be functionalized to improve tumor targeting ability of them. Researchers have genetically expressed or chemically linked various molecules on the surface of exosomes. Despite extensive investigation, clinical translation of exosome-based drug delivery remains challenging. In this review, we discuss various methods used to loading exosomes with therapeutic cargo. We describe examples of functionalized exosomes surface using genetic and chemical modification methods. Finally, this review attempts to provide future outlooks for exosome-based targeted drug delivery.
Insights
Extracellular vesicles (EVs), like exosomes, offer promising cancer drug delivery due to their biocompatibility and targeting. Functionalizing exosome surfaces enhances tumor targeting, though clinical translation faces challenges.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Cancer remains a leading global cause of mortality.
- Traditional therapies have limitations, driving research into nanomedicine for improved cancer treatment.
- Extracellular vesicles (EVs), including exosomes, are emerging as advanced drug delivery systems.
Purpose of the Study:
- To review methods for loading exosomes with therapeutic cargo.
- To discuss exosome surface functionalization techniques for enhanced tumor targeting.
- To explore future prospects for exosome-based targeted drug delivery.
Main Methods:
- Literature review of exosome loading techniques.
- Analysis of genetic and chemical methods for exosome surface modification.
- Discussion of exosome-mediated drug delivery strategies.
Main Results:
- Exosomes offer advantages like low immunogenicity, high biocompatibility, and tumor targeting.
- Surface functionalization can significantly improve the tumor-targeting capabilities of exosomes.
- Various methods exist for loading therapeutic agents into exosomes.
Conclusions:
- Exosome-based drug delivery shows significant potential for cancer therapy.
- Overcoming challenges in clinical translation is crucial for realizing the full potential of exosome therapeutics.
- Further research into exosome engineering and delivery is warranted.
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