Ami Nozomi, Sato Hideki, Hayakawa Yoshihiro
R&D Center, Terumo Corp., Nakai-machi, Kanagawa 259-0151, Japan.
Division of Pathogenic Biochemistry, Institute of Natural Medicine, University of Toyama, Toyama-shi, Toyama 930-0194, Japan.
Oncol Lett. 2018 Feb;15(2):2330-2334. doi: 10.3892/ol.2017.7621. Epub 2017 Dec 14.
Housing temperature has been shown to influence thermoregulation and behavior of preclinical cancer models; and anti-cancer drugs typically reduce peripheral blood flow and body temperature. In the present study, the effects of paclitaxel (PTX)-induced reduction of body temperature and peripheral blood flow on metastatic 4T1 breast cancer was investigated in a mouse model and the modification of these effects by thermoneutral temperature was also assessed. A single dose of PTX decreased the body temperature and peripheral blood flow in mice housed at a standard temperature (23°C). Furthermore, although lung metastasis and angiogenesis of inoculated 4T1 cells increased in mice pretreated with PTX, mice housed at a thermoneutral temperature (30°C) could compensate their body temperature and peripheral blood flow compared with control mice, and also suppressed 4T1 angiogenesis and metastasis to lung. The present results imply that maintenance of body temperature or efficient energy supply for thermogenesis may prevent tumor relapse or metastasis after chemotherapy.
研究表明,饲养环境温度会影响临床前癌症模型的体温调节和行为;而抗癌药物通常会减少外周血流和体温。在本研究中,在小鼠模型中研究了紫杉醇(PTX)诱导的体温降低和外周血流减少对转移性4T1乳腺癌的影响,并评估了热中性温度对这些影响的调节作用。单剂量PTX降低了饲养在标准温度(23°C)下小鼠的体温和外周血流。此外,尽管用PTX预处理的小鼠接种的4T1细胞的肺转移和血管生成增加,但与对照小鼠相比,饲养在热中性温度(30°C)下的小鼠可以补偿其体温和外周血流,并且还抑制了4T1血管生成和肺转移。目前的结果表明,维持体温或为产热提供有效的能量供应可能会预防化疗后肿瘤复发或转移。