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热中性、小鼠与癌症:一种激烈的观点。

Thermoneutrality, Mice, and Cancer: A Heated Opinion.

作者信息

Hylander Bonnie L, Repasky Elizabeth A

机构信息

Roswell Park Cancer Institute, Department of Immunology, Elm and Carlton Streets, Buffalo, NY 14263-0001, USA.

Roswell Park Cancer Institute, Department of Immunology, Elm and Carlton Streets, Buffalo, NY 14263-0001, USA.

出版信息

Trends Cancer. 2016 Apr;2(4):166-175. doi: 10.1016/j.trecan.2016.03.005. Epub 2016 Apr 22.

Abstract

The 'mild' cold stress caused by standard sub-thermoneutral housing temperatures used for laboratory mice in research institutes is sufficient to significantly bias conclusions drawn from murine models of several human diseases. We review the data leading to this conclusion, discuss the implications for research and suggest ways to reduce problems in reproducibility and experimental transparency caused by this housing variable. We have found that these cool temperatures suppress endogenous immune responses, skewing tumor growth data and the severity of graft versus host disease, and also increase the therapeutic resistance of tumors. Owing to the potential for ambient temperature to affect energy homeostasis as well as adrenergic stress, both of which could contribute to biased outcomes in murine cancer models, housing temperature should be reported in all publications and considered as a potential source of variability in results between laboratories. Researchers and regulatory agencies should work together to determine whether changes in housing parameters would enhance the use of mouse models in cancer research, as well as for other diseases. Finally, for many years agencies such as the National Cancer Institute (NCI) have encouraged the development of newer and more sophisticated mouse models for cancer research, but we believe that, without an appreciation of how basic murine physiology is affected by ambient temperature, even data from these models is likely to be compromised.

摘要

研究机构用于实验室小鼠的标准亚热中性饲养温度所导致的“轻度”冷应激足以显著影响从几种人类疾病的小鼠模型得出的结论。我们回顾了得出这一结论的数据,讨论了其对研究的影响,并提出了减少由这种饲养变量导致的可重复性问题和实验透明度问题的方法。我们发现,这些低温会抑制内源性免疫反应,扭曲肿瘤生长数据和移植物抗宿主病的严重程度,还会增加肿瘤的治疗抗性。由于环境温度有可能影响能量平衡以及肾上腺素能应激,这两者都可能导致小鼠癌症模型的结果出现偏差,因此所有出版物都应报告饲养温度,并将其视为实验室间结果差异的潜在来源。研究人员和监管机构应共同努力,确定饲养参数的变化是否会提高小鼠模型在癌症研究以及其他疾病研究中的应用。最后,多年来,美国国立癌症研究所(NCI)等机构一直鼓励开发更新、更复杂的癌症研究小鼠模型,但我们认为,如果不了解环境温度如何影响基本的小鼠生理学,即使是这些模型的数据也可能受到影响。

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