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SPORT & EXERCISE MEDICINE & HEALTH

Effects of exercise training on glycaemic control in youths with type 1 diabetes: A systematic review and meta-analysis of randomised controlled trials

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References

  • Adolfsson, P., Riddell, M. C., Taplin, C. E., Davis, E. A., Fournier, P. A., Annan, F., … Hofer, S. E. (2018). ISPAD Clinical Practice Consensus Guidelines 2018: Exercise in children and adolescents with diabetes. Pediatric Diabetes, 19, 205–226. doi:10.1111/pedi.12755
  • Association, A. D. (2019). 5. Lifestyle management: Standards of medical care in diabetesd2019. Diabetes Care, 42, S46–S60. doi:10.2337/dc19-S005
  • Association, A. D. (2020). Children and adolescents: Standards of medical care in diabetes- 2020. Diabetes Care, 43, S163–S182. doi:10.2337/dc20-S013
  • Association, A. D. (2021). Glycemic targets: Standards of medical care in diabetes−2021. Diabetes Care, 44, S73–S84. doi:10.2337/dc21-S006
  • Atkinson, M. A., & Eisenbarth, G. S. (2001). Type 1 diabetes: New perspectives on disease pathogenesis and treatment. Lancet, 358, 221–229. doi:10.1016/S0140-6736(01)05415-0
  • Battelino, T., Danne, T., Bergenstal, R. M., Amiel, S. A., Beck, R., Biester, T., … Phillip, M. (2019). Clinical targets for continuous glucose monitoring data interpretation: Recommendations from the international consensus on time in range. Diabetes Care, 42, 1593–1603. doi:10.2337/dci19-0028
  • Campaigne, B. N., Gilliam, T. B., Spencer, M. L., Lampman, R. M., & Schork, M. A. (1984). Effects of a physical activity program on metabolic control and cardiovascular fitness in children with insulin-dependent diabetes mellitus. Diabetes Care, 7, 57–62. doi:10.2337/diacare.7.1.57
  • Campaigne, B. N., Landt, K. W., & Mellies, M. J. (1985). The effects of physical training on blood lipid profiles in adolescents with insulin-dependent diabetes mellitus. Physician and Sportsmedicine, 13, 83–89. doi:10.1080/00913847.1985.11708949
  • Chetty, T., Shetty, V., Fournier, P. A., Adolfsson, P., Jones, T. W., & Davis, E. A. (2019). Exercise management for young people with type 1 diabetes: A structured approach to the exercise consultation. Frontiers in Endocrinology, 10, doi:10.3389/fendo.2019.00326
  • Chimen, M., Kennedy, A., Nirantharakumar, K., Pang, T. T., Andrews, R., & Narendran, P. (2012). What are the health benefits of physical activity in type 1 diabetes mellitus? A literature review. Diabetologia, 55, 542–551. doi:10.1007/s00125-011-2403-2
  • Colberg, S. R., Sigal, R. J., Yardley, J. E., Riddell, M. C., Dunstan, D. W., Dempsey, P. C., … Tate, D. F. (2016). Physical activity/exercise and diabetes: A position statement of the American Diabetes Association. Diabetes Care, 39, 2065–2079. doi:10.2337/dc16-1728
  • D’hooge, R., Hellinckx, T., Van, L. C., Stegen, S., De, S. J., Van, A. S., … Calders, P. (2011). Influence of combined aerobic and resistance training on metabolic control, cardiovascular fitness and quality of life in adolescents with type 1 diabetes: A randomized controlled trial. Clinical Rehabilitation, 25, 349–359. doi:10.1177/0269215510386254
  • DiMeglio, L. A., Acerini, C. L., Codner, E., Craig, M. E., Hofer, S. E., Pillay, K., & Maahs, D. M. (2018). ISPAD Clinical Practice Consensus Guidelines 2018: Glycemic control targets and glucose monitoring for children, adolescents, and young adults with diabetes. Pediatric Diabetes, 19, 105–114. doi:10.1111/pedi.12737
  • Ditzel, J., & Standl, E. (1975). THE PROBLEM OF TISSUE OXYGENATION IN DIABETES MELLITUS: Evidence of disordered oxygen release from the erythrocytes of diabetics in various conditions of metabolic control. Acta Medica Scandinavica, 197, 59–68. doi:10.1111/j.0954-6820.1975.tb06503.x
  • Doi, S. A. R., Furuya-Kanamori, L., Thalib, L., & Barendregt, J. J. (2017). Meta-analysis in evidence-based healthcare: A paradigm shift away from random effects is overdue. International Journal of Evidence-Based Healthcare, 15, 152–160. doi:10.1097/XEB.0000000000000125
  • Evans, M. (1998). The UK Prospective Diabetes Study. Lancet, 352, 1932–1933. doi:10.1016/s0140-6736(05)60422-9
  • Farinha, J. B., Ramis, T. R., Vieira, A. F., Macedo, R. C. O., Rodrigues-Krause, J., Boeno, F. P., … Reischak-Oliveira, A. (2018). Glycemic, inflammatory and oxidative stress responses to different high-intensity training protocols in type 1 diabetes: A randomized clinical trial. Journal of Diabetes and its Complications, 32, 1124–1132. doi:10.1016/j.jdiacomp.2018.09.008
  • Follmann, D., Elliott, P., Suh, I., & Cutler, J. (1992). Variance imputation for overviews of clinical trials with continuous response. Journal of Clinical Epidemiology, 45, 769–773. doi:10.1016/0895-4356(92)90054-Q
  • Furuya-Kanamori, L., Barendregt, J. J., & Doi, S. A. R. (2018). A new improved graphical and quantitative method for detecting bias in meta-analysis. International Journal of Evidence-Based Healthcare, 16, 195–203. doi:10.1097/XEB.0000000000000141
  • Galler, A., Lindau, M., Ernert, A., Thalemann, R., & Raile, K. (2011). Associations between media consumption habits, physical activity, socioeconomic status, and glycemic control in children, adolescents, and young adults with type 1 diabetes. Diabetes Care, 34, 2356–2359. doi:10.2337/dc11-0838
  • García-Hermoso, A., Ramírez-Vélez, R., Garciá-Alonso, Y., Alonso-Martínez, A. M., & Izquierdo, M. (2020). Association of Cardiorespiratory Fitness Levels during Youth with Health Risk Later in Life: A Systematic Review and Meta-analysis. JAMA Pediatrics, 174, 952–960. doi:10.1001/jamapediatrics.2020.2400
  • García-Hermoso, A., Ezzatvar, Y., Ramírez-Vélez, R., Olloquequi, J., & Izquierdo, M. (2021). Is device-measured vigorous-intensity physical activity associated with health-related outcomes in children and adolescents? A systematic review and meta-analysis. Journal of Sport and Health Science, 10(3), 296–307. doi:10.1016/j.jshs.2020.12.001
  • García-Hermoso, A., Ramírez-Vélez, R., Ramírez-Campillo, R., Peterson, M. D., & Martínez-Vizcaíno, V. (2018). Concurrent aerobic plus resistance exercise versus aerobic exercise alone to improve health outcomes in paediatric obesity: A systematic review and meta-Analysis. British Journal of Sports Medicine, 52, 161–166. doi:10.1136/bjsports-2016-096605
  • Gusso, S., Pinto, T., Baldi, J. C., Derraik, J. G. B., Cutfield, W. S., Hornung, T., & Hofman, P. L. (2017). Exercise training improves but does not normalize left ventricular systolic and diastolic function in adolescents with type 1 diabetes. Diabetes Care, 40, 1264–1272. doi:10.2337/dc16-2347
  • Heyman, E., Toutain, C., Delamarche, P., Berthon, P., Briard, D., Youssef, H., … Gratas-Delamarche, A. (2007). Exercise training and cardiovascular risk factors in Type 1 diabetic adolescent girls. Pediatric Exercise Science, 19, 408–419. doi:10.1123/pes.19.4.408
  • Higgins, J., Thompson, S., & Deeks, J. (2003). Measuring inconsistency in meta–analyses. BMJ, 327(7414), 557–560.
  • Higgins, J. P. T. (2008). Cochrane handbook for systematic reviews of interventions version 5.0. 1. The Cochrane
  • Huttunen, N. P., Käär, M. L., Knip, M., Mustonen, A., Puukka, R., & Akerblom, H. K. (1984). Physical fitness of children and adolescents with insulin-dependent diabetes mellitus. Annals of clinical research, 16(1), 1–5.
  • Huttunen, N. P., Lankela, S. L., Knip, M., Lautala, P., Kaar, M. L., Laasonen, K., & Puukka, R. (1989). Effect of once-a-week training program on physical fitness and metabolic control in children with IDDM. Diabetes Care, 12, 737–740. doi:10.2337/diacare.12.10.737
  • Inthout, J., Ioannidis, J. P., & Borm, G. F. (2014). The Hartung-Knapp-Sidik-Jonkman method for random effects meta-analysis is straightforward and considerably outperforms the standard DerSimonian-Laird method. BMC Medical Research Methodology, 14, doi:10.1186/1471-2288-14-25
  • Kennedy, A., Nirantharakumar, K., Chimen, M., Pang, T. T., Hemming, K., Andrews, R. C., & Narendran, P. (2013). Does Exercise Improve Glycaemic Control in Type 1 Diabetes? A Systematic Review and Meta-Analysis. PLoS ONE, doi:10.1371/journal.pone.0058861
  • Kivelä, R., Silvennoinen, M., Touvra, A. M., Maarit Lehti, T., Kainulainen, H., Vihko, V., … Vihko, V. (2006). Effects of experimental type 1 diabetes and exercise training on angiogenic gene expression and capillarization in skeletal muscle. The FASEB Journal, 20, 1570–1572. doi:10.1096/fj.05-4780fje
  • Kristiansen, S., Gade, J., Wojtaszewski, J. F. P., Kiens, B., & Richter, E. A. (2000). Glucose uptake is increased in trained vs. untrained muscle during heavy exercise. Journal of Applied Physiology, 89, 1151–1158. doi:10.1152/jappl.2000.89.3.1151
  • Landt, K. W., Campaigne, B. N., James, F. W., & Sperling, M. A. (1985). Effects of exercise training on insulin sensitivity in adolescents with type I diabetes. Diabetes Care, 8, 461–465. doi:10.2337/diacare.8.5.461
  • Liberati, A., Altman, D. G., Tetzlaff, J., Mulrow, C., Gøtzsche, P. C., Ioannidis, J. P. A., … Moher, D. (2009). The PRISMA Statement for Reporting Systematic Reviews and Meta-Analyses of Studies That Evaluate Health Care Interventions: Explanation and Elaboration. PLoS Medicine, 6, e1000100. doi:10.1371/journal.pmed.1000100
  • Liese, A. D., Ma, X., Maahs, D. M., & Trilk, J. L. (2013). Physical activity, sedentary behaviors, physical fitness, and their relation to health outcomes in youth with type 1 and type 2 diabetes: A review of the epidemiologic literature. Journal of Sport and Health Science, 2, 21–38. doi:10.1016/j.jshs.2012.10.005
  • Maahs, D. M., Daniels, S. R., De, F. S., Dichek, H. L., Flynn, J., Goldstein, B. I., … Urbina, E. (2014). Cardiovascular disease risk factors in youth with diabetes mellitus: A scientific statement from the American heart association. Circulation, 130, 1532–1558. doi:10.1161/CIR.0000000000000094
  • Maher, C. G., Sherrington, C., Herbert, R. D., Moseley, A. M., & Elkins, M. (2003). Reliability of the PEDro scale for rating quality of randomized controlled trials. Physical therapy, 83(8), 713–721.
  • McCarthy, M. M., Funk, M., & Grey, M. (2016). Cardiovascular health in adults with type 1 diabetes. Preventive Medicine, 91, 138–143. doi:10.1016/j.ypmed.2016.08.019
  • Mccarthy, O., West, D. J., Yardley, J. E., Bally, L., Zueger, T., Stettler, C., … Reischak-oliveira, A. (2020). Differences in Physiological Responses to Cardiopulmonary Exercise Testing in Adults With and Without Type 1 Diabetes : A Pooled Analysis. Diabetes Care, 44, 240–247. doi:10.2337/dc20-1496
  • Nazari, M., Shabani, R., & Dalili, S. (2020). The effect of concurrent resistance-aerobic training on serum cortisol level, anxiety, and quality of life in pediatric type 1 diabetes. Journal of Pediatric Endocrinology and Metabolism, 33, 599–604. doi:10.1515/jpem-2019-0526
  • Ostman, C., Jewiss, D., King, N., & Smart, N. A. (2018). Clinical outcomes to exercise training in type 1 diabetes: A systematic review and meta-analysis. Diabetes Research and Clinical Practice, 139, 380–391. doi:10.1016/j.diabres.2017.11.036
  • Petschnig, R., Wagner, T., Robubi, A., & Baron, R. (2020). Effect of Strength Training on Glycemic Control and Adiponectin in Diabetic Children. Medicine and science in sports and exercise, 52, 2172–2178. doi:10.1249/MSS.0000000000002356
  • Piercy, K. L., Troiano, R. P., Ballard, R. M., Carlson, S. A., Fulton, J. E., Galuska, D. A., … Olson, R. D. (2018). The Physical Activity Guidelines for Americans. JAMA, 320, 2020–2028. doi:10.1001/jama.2018.14854
  • Poortmans, J. R., Saerens, P., Edelman, R., Vertongen, F., & Dorchy, H. (1986). Influence of the degree of metabolic control on physical fitness in type 1 diabetic adolescents. International Journal of Sports Medicine, 7, 232–235. doi:10.1055/s-2008-1025765
  • Quirk, H., Blake, H., Tennyson, R., Randell, T. L., & Glazebrook, C. (2014). Physical activity interventions in children and young people with Type 1 diabetes mellitus: A systematic review with meta-analysis. Diabetic Medicine, 31, 1163–1173. doi:10.1111/dme.12531
  • Riddell, M. C., Gallen, I. W., Smart, C. E., Taplin, C. E., Adolfsson, P., Lumb, A. N., … Laffel, L. M. (2017). Exercise management in type 1 diabetes: a consensus statement. The Lancet Diabetes and Endocrinology, 5, 377–390. doi:10.1016/S2213-8587(17)30014-1
  • Riebe, D., Ehrman, J. K., Liguori, G., Magal, M., & Medicine, A. o. S. (2018) ACSM’s guidelines for exercise testing and prescription. Wolters Kl.
  • Roberts, L., Jones, T. W., & Fournier, P. A. (2002). Exercise training and glycemic control in adolescents with poorly controlled type 1 diabetes mellitus. Journal of Pediatric Endocrinology and Metabolism, 15, 621–627. doi:10.1515/JPEM.2002.15.5.621
  • Robertson, K., Riddell, M. C., Guinhouya, B. C., Adolfsson, P., & Hanas, R. (2014). Exercise in children and adolescents with diabetes. Pediatric Diabetes, 15, 203–223. doi:10.1111/pedi.12176
  • Rosenbauer, J., Dost, A., Karges, B., Hungele, A., Stahl, A., Bächle, C., … Holl, R. W. (2012). Improved metabolic control in children and adolescents with type 1 diabetes: A trend analysis using prospective multicenter data from Germany and Austria. Diabetes Care, 35, 80–86. doi:10.2337/dc11-0993
  • Salem, M. A., Aboelasrar, M. A., Elbarbary, N. S., Elhilaly, R. A., & Refaat, Y. M. (2010). Is exercise a therapeutic tool for improvement of cardiovascular risk factors in adolescents with type 1 diabetes mellitus? A randomised controlled trial. Diabetology and Metabolic Syndrome, 2, doi:10.1186/1758-5996-2-47
  • Shemin, D., & Rittenberg, D. (1946). The life span of the human red blood cell - PubMed. Journal of Biological Chemistry, 166, 627–636.
  • Soedamah-Muthu, S. S., Fuller, J. H., Mulnier, H. E., Raleigh, V. S., Lawrenson, R. A., & Colhoun, H. M. (2006). High risk of cardiovascular disease in patients with type 1 diabetes in the U.K.: A cohort study using the General Practice Research Database. Diabetes Care, 29, 798–804. doi:10.2337/diacare.29.04.06.dc05-1433
  • Stratton, R., Wilson, D. P., Endres, R. K., & Goldstein, D. E. (1987). Improved glycemic control after supervised 8-wk exercise program in insulin-dependent diabetic adolescents. Diabetes Care, 10, 589–593. doi:10.2337/diacare.10.5.589
  • Svensson, M. K., & Eriksson, J. W. (2011). Change in the amount of body fat and IL-6 levels is related to altered insulin sensitivity in type 1 diabetes patients with or without diabetic nephropathy. Hormone and Metabolic Research, 43, 209–215. doi:10.1055/s-0031-1271622
  • Tomar, R., Hamdan, M., & Al-Qahtani, M. H. (2014). Effect of low to moderate intensity walking and cycling on glycaemic and metabolic control in type 1 diabetes mellitus adolescent males: A randomized controlled trial. Isokinetics and Exercise Science, 22, 237–243. doi:10.3233/IES-140544
  • Tonoli, C., Heyman, E., Roelands, B., Buyse, L., Cheung, S. S., Berthoin, S., & Meeusen, R. (2012). Effects of Different Types of Acute and Chronic (Training) Exercise on Glycaemic Control in Type 1 Diabetes Mellitus. Sports Medicine, 42, 1059–1080. doi:10.1007/bf03262312
  • Tunar, M., Ozen, S., Goksen, D., Asar, G., Bediz, C. S., & Darcan, S. (2012). The effects of pilates on metabolic control and physical performance in adolescents with type 1 diabetes mellitus. Journal of Diabetes and its Complications, 26, 348–351. doi:10.1016/j.jdiacomp.2012.04.006
  • Wu, N., Bredin, S. S. D., Jamnik, V. K., Koehle, M. S., Guan, Y., Shellington, E. M., … Warburton, D. E. R. (2021). Association between physical activity level and cardiovascular risk factors in adolescents living with type 1 diabetes mellitus: a cross-sectional study. Cardiovascular Diabetology, 20, doi:10.1186/s12933-021-01255-0