Engineered exosomes as drug and RNA co-delivery system: new hope for enhanced therapeutics?

Front Bioeng Biotechnol. 2023 Sep 26:11:1254356. doi: 10.3389/fbioe.2023.1254356. eCollection 2023.

Abstract

Chemotherapy often faces some obstacles such as low targeting effects and drug resistance, which introduce the low therapeutic efficiency and strong side effects. Recent advances in nanotechnology allows the use of novel nanosystems for targeted drug delivery, although the chemically synthesized nanomaterials always show unexpected low biocompability. The emergence of exosome research has offered a better understanding of disease treatment and created novel opportunities for developing effective drug delivery systems with high biocompability. Moreover, RNA interference has emerged as a promising strategy for disease treatments by selectively knocking down or over-expressing specific genes, which allows new possibilities to directly control cell signaling events or drug resistance. Recently, more and more interests have been paid to develop optimal delivery nanosystems with high efficiency and high biocompability for drug and functional RNA co-delivery to achieve enhanced chemotherapy. In light of the challenges for developing drug and RNA co-delivery system, exosomes have been found to show very attractive prospects. This review aims to explore current technologies and challenges in the use of exosomes as drug and RNA co-delivery system with a focus on the emerging trends and issues associated with their further applications, which may contribute to the accelerated developments of exosome-based theraputics.

Keywords: RNA; co-delivery system; combination therapies; drug; engineered exosomese.

Publication types

  • Review

Grants and funding

This work was supported by the National Natural Science Foundation of China (82272348, 82270013, 81870016 and 82300016), High Talent Project of Guangdong Province (2021QN02Y720), Natural Science Foundation of Guangdong Province (2023A1515030195, 2022A1515011223, and 2022A1515010525), Characteristic Innovation Project of Universities in Guangdong Province (2021KTSCX038), Key Project of Universities in Guangdong Province (2022ZDZX 2021), Innovation Team Project of Universities in Guangdong Province (2022KCXTD010), Science and Technology Project of Dongguan (20211800904782 and 20211800905542), Doctoral Initial Funding of Guangdong Medical University (4SG22209G), Discipline Construction Project of Guangdong Medical University (4SG23290G and 4SG21229GDGFY01), Open Research Fund of Songshan Lake Materials Laboratory (2021SLABFN10), Open Research Fund for Key Laboratory of Tropical Disease Control Sun Yat-sen University, Ministry of Enducation (2022kfkt01), and Youth Research Projects of Guangdong Medical University (GDMUD2022001).