Teruhisa Sakamoto, Futoshi Okada, Mitsuhiko Osaki, Yuji Nakayama, Toshimichi Hasegawa, Shota Shimizu, Yu Sakano, Yoshiaki Matsumi, Masahiro Makinoya, Yoshiyuki Fujiwara, Hiroaki Saito, Shuichi Takano, Naruo Tokuyasu, Tomoyuki Matsunaga, Kyoichi Kihara, Takehiko Hanaki, Kozo Miyatani, Yuji Shishido, Manabu Yamamoto
Journal: Scientific reports 2024;14(1):10075
PMID: 38698201
Intraperitoneal (IP) chemotherapy with paclitaxel (PTX) for gastric cancer (GC) with peritoneal metastasis (PM) is considered a promising treatment approach, however, there are no useful biomarkers to predict the efficacy of IP therapy. We examined the association between intra-peritoneal exosomes, particularly exosomal micro-RNAs (exo-miRNAs), and IP-chemo sensitivity. MKN45 cells that were cultured with intra-peritoneal exosomes from patients who did not respond to IP therapy with PTX (IP group) exhibited resistance to PTX compared with exosomes from responding patients (IP group) (p = 0.002). A comprehensive search for exo-miRNAs indicated that miR-493 was significantly up-regulated in exosomes from the IP group compared with those collected from the IP group. The expression of miR-493 in PTX-resistant MKN45 cells (MKN45) was higher compared with that in MKN45. In addition, MKN45 cells exhibited lower MAD2L1 gene and protein expression compared with MKN45. Finally, miR-493 enhancement by transfection of miR-493 mimics significantly down-regulated MAD2L1 expression in MKN45 cells and reduced PTX sensitivity. Our results suggest that intra-peritoneal exo-miR-493 is involved in chemoresistance to PTX by downregulating MAD2L1 in GC with PM. Exo-miR-493 may be a biomarker for chemoresistance and prognosis of GC patients with PM and may also be a promising therapeutic target.
© 2024. The Author(s).
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