Comparison of intrinsic exercise capacity and response to acute exercise in ICR (Institute of Cancer Research) mice derived from three different lineages.

IF 2.7 Q3 MEDICINE, RESEARCH & EXPERIMENTAL Laboratory Animal Research Pub Date : 2021-08-04 DOI:10.1186/s42826-021-00094-0
Dong-Joo Hwang, Ki-Chun Kwon, Dong-Hun Choi, Hyun-Keun Song, Kil-Soo Kim, Young-Suk Jung, Dae-Youn Hwang, Joon-Yong Cho
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Abstract

Background: As a laboratory animal resource, the ICR mouse is commonly used in a variety of research fields. However, information on differences in exercise-related characteristics in ICR mice derived from different lineages and the underlying mechanisms remains to be elucidated. In this study, we investigated the intrinsic exercise capacity and a magnitude of response to acute exercise, and sought to identify mechanisms contributing to difference in Korl:ICR (a novel ICR lineage recently established by the National Institute of Food and Drug Safety Evaluation, Korea) and two commercialized ICR lineages derived from different origins (viz., A:ICR mouse from Orient Bio Com, the United States, and B:ICR mouse from Japan SLC Inc., Japan).

Results: Results showed that despite no significant difference in body weight and weight-proportioned tissue mass of heart and skeletal muscles among groups, the relatively low intrinsic exercise capacity and exaggerated response to acute exercise were identified in B:ICR comparted with Korl:ICR and A:ICR, as reflected by total work and lactate threshold (LT). Also, the mitochondrial efficiency expressed as the complex 1 and complex 1 + 2 respiratory control ratio (RCR) values for cardiac mitochondrial O2 consumption in B:ICR was significantly lower than that in Korl:ICR with higher level of state 2 respiration by glutamate/malate and UCP3 expression in cardiac muscle.

Conclusions: Taken together, these results indicate that the intrinsic exercise capacity of ICR mouse varies according to lineages, suggesting the role of cardiac mitochondrial coupling efficiency as a possible mechanism that might contribute to differences in the intrinsic exercise capacity and magnitude of response to exercise.

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来自三个不同谱系的ICR(癌症研究所)小鼠内在运动能力和对急性运动的反应的比较
背景:ICR小鼠作为一种实验动物资源,被广泛应用于各种研究领域。然而,关于来自不同谱系的ICR小鼠运动相关特征的差异及其潜在机制的信息仍有待阐明。在这项研究中,我们调查了内在运动能力和对急性运动的反应程度,并试图确定导致Korl:ICR(最近由韩国国家食品和药物安全评估研究所建立的新型ICR谱系)和来自不同来源的两个商业化ICR谱系差异的机制(即来自美国Orient biocom的a:ICR小鼠和来自日本SLC公司的B:ICR小鼠)。结果:结果显示,尽管各组之间的体重和心脏和骨骼肌的体重比例组织质量没有显著差异,但与Korl:ICR和A:ICR相比,B:ICR的内在运动能力相对较低,对急性运动的反应较大,反映在总功和乳酸阈值(LT)上。B:ICR组心肌线粒体O2消耗的复合体1和复合体1 + 2呼吸控制比(RCR)值的线粒体效率显著低于Korl:ICR组,且谷氨酸/苹果酸盐状态2呼吸和心肌UCP3表达水平较高。综上所述,这些结果表明,ICR小鼠的内在运动能力因世系而异,表明心脏线粒体偶联效率的作用可能是导致内在运动能力和运动反应程度差异的可能机制。
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来源期刊
CiteScore
4.40
自引率
0.00%
发文量
32
审稿时长
8 weeks
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