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Updated: Jun 19, 2025

In Vivo Immunogenicity Screening of Tumor-Derived Extracellular Vesicles by Flow Cytometry of Splenic T Cells
Published on: September 23, 2021
Exosomes-based immunotherapy for cancer: Effective components in the naïve and engineered forms
Huan Bao1, Yun Chen2, Youni Zhang3
1Department of Neurosurgery, Jiashan First People's Hospital, Jiashan First People's Hospital Luoxing Branch, Jiashan, Zhejiang 314100, China.
Abstract:
Today, cancer treatment is one of the main challenges for researchers. The main cause of tumor cell formation is mutations that lead to uncontrolled proliferation and inhibition of apoptosis in malignant cells. Tumor cells also create a microenvironment that can suppress the immune system cells' responses through various methods, including producing soluble factors and cell-to-cell communication. After being produced from tumor cells, exosomes can also affect the functions of other cells in this microenvironment. Various studies have shown that exosomes from different sources, including tumor cells and immune cells, can be used to treat cancers due to their characteristics. Since tumor cells are rich sources of various types of tumor peptides, they can induce anti-tumor responses. Immune cells also produce exosomes that mimic the functions of their cells of origin, such that exosomes derived from NK cells and CTLs can directly lead to their apoptosis after merging with tumor cells. However, many researchers have pointed out that naïve exosomes have a limited therapeutic function, and their therapeutic potential can be increased by manipulating and engineering them. There are various methods to modify exosomes and improve their therapeutic potential. In general, these methods are divided into two parts, which include changing the cell of origin of the exosome and encapsulating the exosome to carry different drugs. In this review, we will discuss the studies on the therapeutic use of naive and engineered exosomes and provide an update on new studies in this field.
Insights
Exosomes show promise for cancer treatment. Engineering exosomes can enhance their therapeutic potential against tumors by modifying their origin or drug delivery capabilities.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Cancer is a major challenge, driven by mutations causing uncontrolled cell proliferation and immune evasion.
- Tumor cells create a suppressive microenvironment, and exosomes play a role in intercellular communication.
- Exosomes derived from tumor or immune cells have therapeutic potential due to their characteristics.
Purpose of the Study:
- To review the therapeutic applications of naive and engineered exosomes in cancer treatment.
- To discuss methods for enhancing exosome therapeutic efficacy.
- To provide an update on recent advancements in exosome-based cancer therapy.
Main Methods:
- Review of existing literature on exosome-based cancer therapy.
- Analysis of exosome modification strategies, including cell of origin manipulation and drug encapsulation.
- Examination of therapeutic effects of exosomes from various cell types (e.g., tumor cells, NK cells, CTLs).
Main Results:
- Exosomes from tumor cells can induce anti-tumor responses via tumor peptides.
- Exosomes from immune cells (NK cells, CTLs) can induce tumor cell apoptosis.
- Naive exosomes have limited therapeutic function, but engineering significantly enhances their potential.
Conclusions:
- Engineered exosomes offer a promising strategy to overcome limitations of naive exosomes in cancer therapy.
- Exosome modification through cell of origin changes or drug encapsulation can improve anti-cancer efficacy.
- Further research into engineered exosomes is crucial for advancing cancer treatment.
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