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Published on: August 16, 2024
Exosomes Derived From Natural Killer Cells Exert Therapeutic Effect in Melanoma
Liya Zhu1, Senthilkumar Kalimuthu1, Prakash Gangadaran1
1Department of Nuclear Medicine, Kyungpook National University School of Medicine and Hospital, Daegu 700-721, Republic of Korea.
Abstract:
Objective: Exosomes are nanovesicles that are released from normal and tumor cells and are detectable in cell culture supernatant and human biological fluids. Although previous studies have explored exosomes released from cancer cells, little is understood regarding the functions of exosomes released by normal cells. Natural killer (NK) cells display rapid immunity to metastatic or hematological malignancies, and efforts have been undertaken to clinically exploit the antitumor properties of NK cells. However, the characteristics and functions of exosomes derived from NK cells remain unknown. In this study, we explored NK cell-derived exosome-mediated antitumor effects against aggressive melanoma in vitro and in vivo. Methods: B16F10 cells were transfected with enhanced firefly luciferase (effluc) and thy1.1 genes, and thy1.1-positive cells were immunoselected using microbeads. The resulting B16F10/effluc cells were characterized using reverse transcriptase polymerase chain reaction (RT-PCR), western blotting, and luciferase activity assays. Exosomes derived from NK-92MI cells (NK-92 Exo) were isolated by ultracentrifugation and density gradient ultracentrifugation. NK-92 Exo were characterized by transmission electron microscopy and western blotting. We also performed an enzyme-linked immunosorbent assay to measure cytokines retained in NK-92 Exo cells. The in vitro cytotoxicity of NK-92 Exo against the cancer cells was determined using a bioluminescence imaging system (BLI) and CCK-8 assays. To investigate the possible side effects of NK-92 Exo on healthy cells, we also performed the BLI and CCK-8 assays using the human kidney Phoenix™-Ampho cell line. Flow cytometry and western blotting confirmed that NK-92 Exo induced apoptosis in the B16F10/effluc cells. In vivo, we used a B16F10/effluc cell xenograft model to detect the immunotherapeutic effect of NK-92 Exo. We injected NK-92 Exo into tumors, and tumor growth progression was monitored using the IVIS Lumina imaging system and ultrasound imaging. Tumor mass was monitored after in vivo experiments. Results: RT-PCR and western blotting confirmed effluc gene expression and protein levels in B16F10/effluc cells. B16F10/effluc activity was found to increase with increasing cell numbers, using BLI assay. For NK-92 Exo characterization, western blotting was performed on both ultracentrifuged and density gradient-isolated exosomes. The results confirmed that NK cell-derived exosomes express two typical exosome proteins, namely CD63 and ALIX. We demonstrated by western blot analysis that NK-92 Exo presented two functional NK proteins, namely perforin and FasL. Moreover, we confirmed the membrane expression of FasL. The enzyme-linked immunosorbent assay results indicated that NK-92 Exo can secrete tumor necrosis factor (TNF)-α, which affected the cell proliferation signaling pathway. The antitumor effect of NK-92 Exo against B16F10/effluc cells in vitro was confirmed by BLI (p < 0.001) and CCK-8 assays (p < 0.001). Furthermore, in normal healthy cells, even after 24 h of co-culture, NK-92 Exo did not exhibit significant side effects. In the in vivo experiments, tumors in the vehicle control group were significantly increased, compared with those in the NK-92 Exo-treated group (p < 0.05). Conclusion: The results of the current study suggest that exosomes derived from NK cells exert cytotoxic effects on melanoma cells and thus warrant further development as a potential immunotherapeutic strategy for cancer.
Insights
Natural killer (NK) cell-derived exosomes show potent antitumor effects against aggressive melanoma. These exosomes effectively reduced tumor growth in vitro and in vivo with no significant side effects on healthy cells, suggesting their therapeutic potential.
Area of Science:
- Immunology
- Cell Biology
- Nanotechnology
Background:
- Exosomes, nanovesicles released by cells, are implicated in intercellular communication.
- While cancer cell exosomes are studied, functions of normal cell-derived exosomes, especially from Natural Killer (NK) cells, are largely unknown.
- NK cells possess inherent antitumor properties, but their exosome cargo and therapeutic potential remain unexplored.
Purpose of the Study:
- To investigate the antitumor effects of NK cell-derived exosomes against aggressive melanoma.
- To characterize the functional components of NK cell-derived exosomes.
- To evaluate the safety and efficacy of NK cell-derived exosomes in vitro and in vivo models.
Main Methods:
- B16F10 melanoma cells were engineered for bioluminescence imaging (BLI).
- Exosomes were isolated from NK-92MI cells (NK-92 Exo) via ultracentrifugation and characterized using electron microscopy and western blotting.
- In vitro cytotoxicity was assessed using BLI and CCK-8 assays; in vivo efficacy was evaluated in a B16F10 xenograft mouse model.
Main Results:
- NK-92 Exo confirmed to contain exosomal markers (CD63, ALIX) and functional NK proteins (perforin, FasL).
- NK-92 Exo demonstrated significant in vitro cytotoxicity against melanoma cells (p < 0.001) and reduced tumor growth in vivo (p < 0.05).
- No significant toxicity observed in normal human kidney cells after exposure to NK-92 Exo.
Conclusions:
- NK cell-derived exosomes exhibit direct cytotoxic effects on melanoma cells.
- These exosomes possess potential as an immunotherapeutic strategy for cancer treatment.
- Further development of NK cell-derived exosomes for cancer therapy is warranted.
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