Emerging role of exosomes in cancer therapy: progress and challenges

Новая роль экзосом в терапии рака: достижения и проблемы
Jiale Li, Jiachong Wang, Zigui Chen
2025-01-13

cancer therapyexosome-based drug deliveryextracellular vesiclesgene therapyimmunomodulation
This review highlights recent progress in exosome-based drug delivery for cancer therapy, covering exosome biogenesis, cargo selection mechanisms, and their application across multiple cancer types. As small extracellular vesicles, exosomes exhibit high biocompatibility and low immunogenicity, making them ideal drug delivery vehicles capable of efficiently targeting cancer cells, minimizing off-target damage and side effects. This review aims to explore the potential of exosomes in cancer therapy, with a focus on applications in chemotherapy, gene therapy, and immunomodulation. Additionally, challenges related to exosome production and standardization are analyzed, highlighting the importance of addressing these issues for their clinical application. In conclusion, exosome-based drug delivery systems offer promising potential for future cancer therapies. Further research should aim to enhance production efficiency and facilitate clinical translation, paving the way for innovative cancer treatment strategies.
1
Exosome-based delivery depends on understanding exosome biogenesis and cargo-selection mechanisms to support therapeutic development.
2
Exosomes are presented as biocompatible, low-immunogenic drug delivery vehicles with potential for selective cancer-cell targeting and reduced off-target toxicity.
3
Further optimization of production efficiency and standardization is needed to realize exosome-based cancer therapies clinically.
4
Major barriers to clinical translation include inefficient exosome production and insufficient standardization of exosome-based systems.
5
The review covers exosome applications in cancer chemotherapy, gene therapy, and immunomodulation across multiple cancer types.

exosome-based drug delivery systems for cancer therapy

their biogenesis, cargo selection, cancer-cell targeting, therapeutic applications, and production and standardization challenges

Publication Details
Publication Date
2025-01-13
Journal
Publisher
ISSN
Cited by
246
Access Type
Author Information
Authors
Jiale Li
Jiachong Wang
Zigui Chen
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%