TY - JOUR
T1 - Anticancer agent α-sulfoquinovosyl-acylpropanediol enhances the radiosensitivity of human malignant mesothelioma in nude mouse models
AU - Inamasu, Eiko
AU - Tsuchiya, Tomoshi
AU - Yamauchi, Motohiro
AU - Nishi, Kodai
AU - Matsuda, Katsuya
AU - Sugawara, Fumio
AU - Sakaguchi, Kengo
AU - Mori, Ryoichi
AU - Matsumoto, Keitaro
AU - Miyazaki, Takuro
AU - Hatachi, Go
AU - Doi, Ryoichiro
AU - Watanabe, Hironosuke
AU - Tomoshige, Koichi
AU - Matsuda, Naoki
AU - Higami, Yoshikazu
AU - Shimokawa, Isao
AU - Nakashima, Masahiro
AU - Nagayasu, Takeshi
N1 - Publisher Copyright:
© 2021 The Author(s).
PY - 2022/1/1
Y1 - 2022/1/1
N2 - Malignant pleural mesothelioma (MPM) is a highly malignant disease that develops after asbestos exposure. Although the number of MPM cases is predicted to increase, no effective standard therapies have been established. The novel radiosensitizer α-sulfoquinovosyl-acylpropanediol (SQAP) enhances the effects of γ-radiation in human lung and prostate cancer cell lines and in animal models. In this study, we explored the radiosensitizing effect of SQAP and its mechanisms in MPM. The human MPM cell lines MSTO-211H and MESO-4 were implanted subcutaneously into the backs and thoracic cavities of immunodeficient KSN/Slc mice, then 2 mg/kg SQAP was intravenously administered with or without irradiation with a total body dose of 8 Gy. In both the orthotopic and ectopic xenograft murine models, the combination of irradiation plus SQAP delayed the implanted human MSTO-211H tumor growth. The analysis of the changes in the relative tumor volume of the MSTO-211H indicated a statistically significant difference after 8 Gy total body combined with 2 mg/kg SQAP, compared to both the untreated control (P = 0.0127) and the radiation treatment alone (P = 0.0171). After the treatment in each case, immunostaining of the harvested tumors revealed decreased cell proliferation, increased apoptosis and normalization of tumor blood vessels in the SQAP- and irradiation-treated group. Furthermore, hypoxia-inducible factor (HIF) 1 mRNA and protein expression were decreased, indicating reoxygenation in this group. In conclusion, SQAP improved hypoxic conditions in tumor tissue and may elicit a radiosensitizing effect in malignant mesothelioma models.
AB - Malignant pleural mesothelioma (MPM) is a highly malignant disease that develops after asbestos exposure. Although the number of MPM cases is predicted to increase, no effective standard therapies have been established. The novel radiosensitizer α-sulfoquinovosyl-acylpropanediol (SQAP) enhances the effects of γ-radiation in human lung and prostate cancer cell lines and in animal models. In this study, we explored the radiosensitizing effect of SQAP and its mechanisms in MPM. The human MPM cell lines MSTO-211H and MESO-4 were implanted subcutaneously into the backs and thoracic cavities of immunodeficient KSN/Slc mice, then 2 mg/kg SQAP was intravenously administered with or without irradiation with a total body dose of 8 Gy. In both the orthotopic and ectopic xenograft murine models, the combination of irradiation plus SQAP delayed the implanted human MSTO-211H tumor growth. The analysis of the changes in the relative tumor volume of the MSTO-211H indicated a statistically significant difference after 8 Gy total body combined with 2 mg/kg SQAP, compared to both the untreated control (P = 0.0127) and the radiation treatment alone (P = 0.0171). After the treatment in each case, immunostaining of the harvested tumors revealed decreased cell proliferation, increased apoptosis and normalization of tumor blood vessels in the SQAP- and irradiation-treated group. Furthermore, hypoxia-inducible factor (HIF) 1 mRNA and protein expression were decreased, indicating reoxygenation in this group. In conclusion, SQAP improved hypoxic conditions in tumor tissue and may elicit a radiosensitizing effect in malignant mesothelioma models.
KW - hypoxia-inducible factor (HIF)
KW - malignant pleural mesothelioma (MPM)
KW - radiosensitizer
KW - sulfoquinovosyl-acylpropanediol (SQAP)
UR - http://www.scopus.com/inward/record.url?scp=85123814319&partnerID=8YFLogxK
U2 - 10.1093/jrr/rrab090
DO - 10.1093/jrr/rrab090
M3 - 学術論文
C2 - 34738103
AN - SCOPUS:85123814319
SN - 0449-3060
VL - 63
SP - 19
EP - 29
JO - Journal of Radiation Research
JF - Journal of Radiation Research
IS - 1
ER -