A Review of Physical Activity and Circulating miRNA Expression: Implications in Cancer Risk and Progression

被引:54
作者
Dufresne, Suzanne [1 ,2 ]
Rebillard, Amelie [1 ,2 ]
Muti, Paola [3 ]
Friedenreich, Christine M. [4 ,5 ,6 ]
Brenner, Darren R. [4 ,5 ,6 ]
机构
[1] Univ Rennes 2, Movement Sport & Hlth Sci Lab, ENS, Rennes, Bruz, France
[2] Univ Rennes 1, Rennes, France
[3] McMaster Univ, Dept Oncol, Hamilton, ON, Canada
[4] Alberta Hlth Serv, CancerControl Alberta, Dept Canc Epidemiol & Prevent Res, Calgary, AB, Canada
[5] Univ Calgary, Cumming Sch Med, Dept Oncol, Calgary, AB, Canada
[6] Univ Calgary, Cumming Sch Med, Dept Community Hlth Sci, Calgary, AB, Canada
关键词
GROWTH-FACTOR RECEPTOR; SKELETAL-MUSCLE; C-KIT; POTENTIAL BIOMARKER; MICRORNA EXPRESSION; ENDURANCE EXERCISE; GENE-EXPRESSION; DOWN-REGULATION; INFLAMMATORY MONOCYTES; TUMOR SUPPRESSORS;
D O I
10.1158/1055-9965.EPI-16-0969
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The role of circulating miRNAs (c-miRNAs) in carcinogenesis has garnered considerable scientific interest. miRNAs may contribute actively to cancer development and progression, making them potential targets for cancer prevention and therapy. Lifestyle factors such as physical activity (PA) have been shown to alter c-miRNA expression, but the subsequent impact on cancer risk and prognosis is unknown. To provide a better understanding of how PA reduces the risk of cancer incidence and improves patient outcomes, we conducted a review of the impact of PA on c-miRNA expression, which includes a comprehensive synthesis of studies examining the impacts of acute and chronic exercise on expression of c-miRNAs. While the variability in methods used to assess miRNA expression creates challenges in comparing and/or synthesizing the literature, results to date suggest that the circulating form of several miRNAs known for playing a role in cancer (c-miR-133, c-miR-221/222, c-miR-126, and c-let-7) are altered by both acute and chronic PA. Additional research should develop standardized procedures for assessing both c-miRNA and PA measurement to improve the comparability of research results regarding the direction and amplitude of changes in c-miRNAs in response to PA. (C) 2017 AACR.
引用
收藏
页码:11 / 24
页数:14
相关论文
共 150 条
[51]  
Schoof CRG, 2012, AM J CANCER RES, V2, P414
[52]   MiR-17-92 and miR-221/222 cluster members target KIT and ETV1 in human gastrointestinal stromal tumours [J].
Gits, C. M. M. ;
van Kuijk, P. F. ;
Jonkers, M. B. E. ;
Boersma, A. W. M. ;
van IJcken, W. F. ;
Wozniak, A. ;
Sciot, R. ;
Rutkowski, P. ;
Schoffski, P. ;
Taguchi, T. ;
Mathijssen, R. H. J. ;
Verweij, J. ;
Sleijfer, S. ;
Debiec-Rychter, M. ;
Wiemer, E. A. C. .
BRITISH JOURNAL OF CANCER, 2013, 109 (06) :1625-1635
[53]   Circulating miR-1, miR-133a, and miR-206 levels are increased after a half-marathon run [J].
Gomes, Clarissa P. C. ;
Oliveira-, Getulio P., Jr. ;
Madrid, Bibiano ;
Almeida, Jeeser A. ;
Franco, Octavio L. ;
Pereira, Rinaldo W. .
BIOMARKERS, 2014, 19 (07) :585-589
[54]   Tumor suppressor role of miR-133a in gastric cancer by repressing IGF1R [J].
Gong, Yu ;
Ren, Jun ;
Liu, Kun ;
Tang, Li-Ming .
WORLD JOURNAL OF GASTROENTEROLOGY, 2015, 21 (10) :2949-2958
[55]   miR-133a suppresses ovarian cancer cell proliferation by directly targeting insulin-like growth factor 1 receptor [J].
Guo, Jinling ;
Xia, Bairong ;
Meng, Fanling ;
Lou, Ge .
TUMOR BIOLOGY, 2014, 35 (02) :1557-1564
[56]  
Ha Tai-You, 2011, Immune Netw, V11, P135, DOI [10.4110/in.2011.11.1.11, 10.4110/in.2011.11.3.135]
[57]   A robust methodology to study urine microRNA as tumor marker: microRNA-126 and microRNA-182 are related to urinary bladder cancer [J].
Hanke, Merle ;
Hoefig, Kai ;
Merz, Hartmut ;
Feller, Alfred C. ;
Kausch, Ingo ;
Jocham, Dieter ;
Warnecke, Jens M. ;
Sczakiel, Georg .
UROLOGIC ONCOLOGY-SEMINARS AND ORIGINAL INVESTIGATIONS, 2010, 28 (06) :655-661
[58]   Micrornas: Small RNAs with a big role in gene regulation [J].
He, L ;
Hannon, GJ .
NATURE REVIEWS GENETICS, 2004, 5 (07) :522-531
[59]   MAP kinase links the transcription factor Microphthalmia to c-Kit signalling in melanocytes [J].
Hemesath, TJ ;
Price, ER ;
Takemoto, C ;
Badalian, T ;
Fisher, DE .
NATURE, 1998, 391 (6664) :298-301
[60]   Insulin-Like Growth Factor-1 Receptor Is Regulated by microRNA-133 during Skeletal Myogenesis [J].
Huang, Mian-Bo ;
Xu, Hui ;
Xie, Shu-Juan ;
Zhou, Hui ;
Qu, Liang-Hu .
PLOS ONE, 2011, 6 (12)