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Research Progress of Grapefruit-derived Extracellular Vesicles in Anti-tumor Treatment
Yi Deng1, Wen Lin1, Jiayan Li1
1Clinical Medical College and The First Affiliated Hospital of Chengdu Medical College, Chengdu 610500, Sichuan Province, China.
Abstract:
To date, the application of chemotherapy and gene therapy has improved the effectiveness and survival period of cancer patients. However, cancer remains a leading cause of death worldwide. Researchers have recognized the internal limitations of chemotherapy and gene therapy in anti-tumor treatment. Therefore, developing safe and effective delivery vehicles is crucial for overcoming the limitations. A variety of lipidstructured nano-vesicles, ranging from synthetic liposomes to biomimetic vehicles and natural membrane vesicles derived from mammalian cells, have been utilized as drug delivery systems (DDS) in anti-tumor treatment. However, due to factors such as yield, cost, safety, and ethical considerations, researchers are actively seeking optimal delivery vehicles. In recent years, there has been a growing interest in the research and therapeutic applications of plant-derived vesicles in anti-tumor treatment. Some plant-derived vesicles are known to have anti-tumor properties due to their unique bioactive compounds, and they can also serve as delivery vehicles of anti-tumor agents (e.g., drugs, siRNA, and functional exogenous proteins). Grapefruits, in particular, contain several phytochemicals, such as bergamottin, hesperidin, and naringenin, which contribute to their anti-tumor properties. Grapefruit-derived extracellular vesicles (GEVs) and the vesicles reassembled from their total lipids have demonstrated promise as both anti-tumor agents and as delivery systems for chemotherapy drugs and therapeutic genes in cancer research. This review will introduce the characteristics and anti-tumor properties of GEVs and their reassembled vesicles, as well as the research progress in anti-tumor treatment. Finally, we will discuss the challenges and prospects of GEVs and their reassembled vesicles in anti-tumor treatment.
Insights
Grapefruit-derived vesicles show potential as novel anti-tumor agents and drug delivery systems, overcoming limitations of traditional cancer therapies. These plant-derived vesicles offer a promising alternative for cancer treatment and drug delivery research.
Area of Science:
- Oncology
- Nanomedicine
- Biotechnology
Background:
- Cancer remains a leading cause of death despite advances in chemotherapy and gene therapy.
- Existing drug delivery systems (DDS) face limitations in yield, cost, safety, and ethics.
- Plant-derived vesicles are emerging as promising alternatives for anti-tumor treatment and drug delivery.
Purpose of the Study:
- To review the characteristics and anti-tumor properties of grapefruit-derived extracellular vesicles (GEVs) and their reassembled vesicles.
- To summarize research progress on GEVs and their reassembled vesicles in anti-tumor applications.
- To discuss the challenges and future prospects of using GEVs in cancer therapy.
Main Methods:
- Literature review of studies on plant-derived vesicles, focusing on grapefruit.
- Analysis of the anti-tumor properties and delivery capabilities of GEVs and their reassembled lipid vesicles.
- Evaluation of research progress and potential therapeutic applications.
Main Results:
- Grapefruit contains phytochemicals with inherent anti-tumor properties.
- GEVs and their reassembled vesicles exhibit anti-tumor activity and can deliver anti-cancer agents.
- These vesicles show promise as both therapeutic agents and sophisticated drug delivery systems.
Conclusions:
- GEVs and their reassembled vesicles represent a novel class of anti-tumor agents and drug delivery vehicles.
- Further research into GEVs could overcome current limitations in cancer therapy.
- These plant-derived vesicles offer a safe, cost-effective, and ethically viable approach for future cancer treatments.
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