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Endocrine, Metabolic & Immune Disorders - Drug Targets

Editor-in-Chief

ISSN (Print): 1871-5303
ISSN (Online): 2212-3873

Perspective

High-intensity Interval Training in Patients with Type 2 Diabetes: A Perspective from Previous Systematic Reviews

Author(s): Hidetaka Hamasaki*

Volume 23, Issue 10, 2023

Published on: 05 May, 2023

Page: [1248 - 1253] Pages: 6

DOI: 10.2174/1871530323666230330124105

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Graphical Abstract
[1]
Sallis, R.E. Exercise is medicine and physicians need to prescribe it! Br. J. Sports Med., 2008, 43(1), 3-4.
[http://dx.doi.org/10.1136/bjsm.2008.054825] [PMID: 18971243]
[2]
Hamasaki, H. Interval exercise therapy for type 2 diabetes. Curr. Diabetes Rev., 2018, 14(2), 129-137.
[http://dx.doi.org/10.2174/1573399812666161101103655] [PMID: 27804850]
[3]
Wewege, M.A.; Ahn, D.; Yu, J.; Liou, K.; Keech, A. High-intensity interval training for patients with cardiovascular disease-is it safe? A systematic review. J. Am. Heart Assoc., 2018, 7(21), e009305.
[http://dx.doi.org/10.1161/JAHA.118.009305] [PMID: 30376749]
[4]
Beetham, K.S.; Howden, E.J.; Fassett, R.G.; Petersen, A.; Trewin, A.J.; Isbel, N.M.; Coombes, J.S. High-intensity interval training in chronic kidney disease: A randomized pilot study. Scand. J. Med. Sci. Sports, 2019, 29(8), 1197-1204.
[http://dx.doi.org/10.1111/sms.13436] [PMID: 31025412]
[5]
Han, C.; Lu, P.; Yan, S. Effects of high-intensity interval training on mitochondrial supercomplex assembly and biogenesis, mitophagy, and the AMP-activated protein kinase pathway in the soleus muscle of aged female rats. Exp. Gerontol., 2022, 158, 111648.
[http://dx.doi.org/10.1016/j.exger.2021.111648] [PMID: 34861356]
[6]
Ramez, M.; Ramezani, F.; Nasirinezhad, F.; Rajabi, H. High-intensity interval training increases myocardial levels of Klotho and protects the heart against ischaemia–reperfusion injury. Exp. Physiol., 2020, 105(4), 652-665.
[http://dx.doi.org/10.1113/EP087994] [PMID: 32052504]
[7]
De Nardi, A.T.; Tolves, T.; Lenzi, T.L.; Signori, L.U.; Silva, A.M.V. High-intensity interval training versus continuous training on physiological and metabolic variables in prediabetes and type 2 diabetes: A meta-analysis. Diabetes Res. Clin. Pract., 2018, 137, 149-159.
[http://dx.doi.org/10.1016/j.diabres.2017.12.017] [PMID: 29329778]
[8]
Liu, J.; Zhu, L.; Li, P.; Li, N.; Xu, Y. Effectiveness of high-intensity interval training on glycemic control and cardiorespiratory fitness in patients with type 2 diabetes: A systematic review and meta-analysis. Aging Clin. Exp. Res., 2019, 31(5), 575-593.
[http://dx.doi.org/10.1007/s40520-018-1012-z] [PMID: 30097811]
[9]
Lora-Pozo, I.; Lucena-Anton, D.; Salazar, A.; Galán-Mercant, A.; Moral-Munoz, J.A. Anthropometric, cardiopulmonary and metabolic benefits of the high-intensity interval training versus moderate, low-intensity or control for type 2 diabetes: Systematic review and meta-analysis. Int. J. Environ. Res. Public Health, 2019, 16(22), 4524.
[http://dx.doi.org/10.3390/ijerph16224524] [PMID: 31731764]
[10]
de Mello, M.B.; Righi, N.C.; Schuch, F.B.; Signori, L.U.; da Silva, A.M.V. Effect of high-intensity interval training protocols on VO2max and HbA1c level in people with type 2 diabetes: A systematic review and meta-analysis. Ann. Phys. Rehabil. Med., 2022, 65(5), 101586.
[http://dx.doi.org/10.1016/j.rehab.2021.101586] [PMID: 34648979]
[11]
da Silva, D.E.; Grande, A.J.; Roever, L.; Tse, G.; Liu, T.; Biondi-Zoccai, G.; de Farias, J.M. High-intensity interval training in patients with type 2 diabetes mellitus: A systematic review. Curr. Atheroscler. Rep., 2019, 21(2), 8.
[http://dx.doi.org/10.1007/s11883-019-0767-9] [PMID: 30712240]
[12]
Leiva-Valderrama, J.M.; Montes-de-Oca-Garcia, A.; Opazo-Diaz, E.; Ponce-Gonzalez, J.G.; Molina-Torres, G.; Velázquez-Díaz, D.; Galán-Mercant, A. Effects of high-intensity interval training on inflammatory biomarkers in patients with type 2 diabetes. A systematic review. Int. J. Environ. Res. Public Health, 2021, 18(23), 12644.
[http://dx.doi.org/10.3390/ijerph182312644] [PMID: 34886369]
[13]
de Oliveira Teles, G.; da Silva, C.S.; Rezende, V.R.; Rebelo, A.C.S.G.; da Silva, C.S.; Rezende, V.R.; Rebelo, A.C.S. Acute effects of high-intensity interval training on diabetes mellitus: A systematic review. Int. J. Environ. Res. Public Health, 2022, 19(12), 7049.
[http://dx.doi.org/10.3390/ijerph19127049] [PMID: 35742298]
[14]
Hollekim-Strand, S.M.; Bjørgaas, M.R.; Albrektsen, G.; Tjønna, A.E.; Wisløff, U.; Ingul, C.B. High-intensity interval exercise effectively improves cardiac function in patients with type 2 diabetes mellitus and diastolic dysfunction: A randomized controlled trial. J. Am. Coll. Cardiol., 2014, 64(16), 1758-1760.
[http://dx.doi.org/10.1016/j.jacc.2014.07.971] [PMID: 25323267]
[15]
Karstoft, K.; Winding, K.; Knudsen, S.H.; Nielsen, J.S.; Thomsen, C.; Pedersen, B.K.; Solomon, T.P.J. The effects of free-living interval-walking training on glycemic control, body composition, and physical fitness in type 2 diabetic patients: A randomized, controlled trial. Diabetes Care, 2013, 36(2), 228-236.
[http://dx.doi.org/10.2337/dc12-0658] [PMID: 23002086]
[16]
Maillard, F.; Rousset, S.; Pereira, B.; Traore, A.; de Pradel Del Amaze, P.; Boirie, Y.; Duclos, M.; Boisseau, N. High-intensity interval training reduces abdominal fat mass in postmenopausal women with type 2 diabetes. Diabetes Metab., 2016, 42(6), 433-441.
[http://dx.doi.org/10.1016/j.diabet.2016.07.031] [PMID: 27567125]
[17]
Mitranun, W.; Deerochanawong, C.; Tanaka, H.; Suksom, D. Continuous vs interval training on glycemic control and macro- and microvascular reactivity in type 2 diabetic patients. Scand. J. Med. Sci. Sports, 2014, 24(2), e69-e76.
[http://dx.doi.org/10.1111/sms.12112] [PMID: 24102912]
[18]
Terada, T.; Friesen, A.; Chahal, B.S.; Bell, G.J.; McCargar, L.J.; Boulé, N.G. Feasibility and preliminary efficacy of high intensity interval training in type 2 diabetes. Diabetes Res. Clin. Pract., 2013, 99(2), 120-129.
[http://dx.doi.org/10.1016/j.diabres.2012.10.019] [PMID: 23183390]
[19]
Jung, M.E.; Bourne, J.E.; Beauchamp, M.R.; Robinson, E.; Little, J.P. High-intensity interval training as an efficacious alternative to moderate-intensity continuous training for adults with prediabetes. J. Diabetes Res., 2015, 2015, 1-9.
[http://dx.doi.org/10.1155/2015/191595] [PMID: 25918728]
[20]
Robinson, E.; Durrer, C.; Simtchouk, S.; Jung, M.E.; Bourne, J.E.; Voth, E.; Little, J.P. Short-term high-intensity interval and moderate-intensity continuous training reduce leukocyte TLR4 in inactive adults at elevated risk of type 2 diabetes. J. Appl. Physiol., 2015, 119(5), 508-516.
[http://dx.doi.org/10.1152/japplphysiol.00334.2015]
[21]
Alvarez, C.; Ramirez-Campillo, R.; Martinez-Salazar, C.; Mancilla, R.; Flores-Opazo, M.; Cano-Montoya, J.; Ciolac, E. Low-volume high-intensity interval training as a therapy for type 2 diabetes. Int. J. Sports Med., 2016, 37(9), 723-729.
[http://dx.doi.org/10.1055/s-0042-104935] [PMID: 27259099]
[22]
Lee, S.S.; Yoo, J.H.; So, Y.S. Effect of the low- versus high-intensity exercise training on endoplasmic reticulum stress and GLP-1 in adolescents with type 2 diabetes mellitus. J. Phys. Ther. Sci., 2015, 27(10), 3063-3068.
[http://dx.doi.org/10.1589/jpts.27.3063] [PMID: 26644644]
[23]
Ramos, J.S.; Dalleck, L.C.; Borrani, F.; Mallard, A.R.; Clark, B.; Keating, S.E.; Fassett, R.G.; Coombes, J.S. The effect of different volumes of high-intensity interval training on proinsulin in participants with the metabolic syndrome: A randomised trial. Diabetologia, 2016, 59(11), 2308-2320.
[http://dx.doi.org/10.1007/s00125-016-4064-7] [PMID: 27480182]
[24]
Støa, E.M.; Meling, S.; Nyhus, L.K. Glenn Strømstad; Mangerud, K.M.; Helgerud, J.; Bratland-Sanda, S.; Støren, Ø. High-intensity aerobic interval training improves aerobic fitness and HbA1c among persons diagnosed with type 2 diabetes. Eur. J. Appl. Physiol., 2017, 117(3), 455-467.
[http://dx.doi.org/10.1007/s00421-017-3540-1] [PMID: 28160083]
[25]
Backx, K.; McCann, A.; Wasley, D.; Dunseath, G.; Luzio, S.; Owens, D. The effect of a supported exercise programme in patients with newly diagnosed Type 2 diabetes: A pilot study. J. Sports Sci., 2011, 29(6), 579-586.
[http://dx.doi.org/10.1080/02640414.2010.544666] [PMID: 21347968]
[26]
Cassidy, S.; Thoma, C.; Hallsworth, K.; Parikh, J.; Hollingsworth, K.G.; Taylor, R.; Jakovljevic, D.G.; Trenell, M.I. High intensity intermittent exercise improves cardiac structure and function and reduces liver fat in patients with type 2 diabetes: A randomised controlled trial. Diabetologia, 2016, 59(1), 56-66.
[http://dx.doi.org/10.1007/s00125-015-3741-2] [PMID: 26350611]
[27]
Bellia, A.; Iellamo, F.; De Carli, E.; Andreadi, A.; Padua, E.; Lombardo, M.; Annino, G.; Campoli, F.; Tartaglione, S.; D’Ottavio, S.; Della-Morte, D.; Lauro, D. Exercise individualized by TRIMPi method reduces arterial stiffness in early onset type 2 diabetic patients: A randomized controlled trial with aerobic interval training. Int. J. Cardiol., 2017, 248, 314-319.
[http://dx.doi.org/10.1016/j.ijcard.2017.06.065] [PMID: 28716522]
[28]
Winding, K.M.; Munch, G.W.; Iepsen, U.W.; Van Hall, G.; Pedersen, B.K.; Mortensen, S.P. The effect on glycaemic control of low-volume high-intensity interval training versus endurance training in individuals with type 2 diabetes. Diabetes Obes. Metab., 2018, 20(5), 1131-1139.
[http://dx.doi.org/10.1111/dom.13198] [PMID: 29272072]
[29]
Ruffino, J.S.; Songsorn, P.; Haggett, M.; Edmonds, D.; Robinson, A.M.; Thompson, D.; Vollaard, N.B.J. A comparison of the health benefits of reduced-exertion high-intensity interval training (REHIT) and moderate-intensity walking in type 2 diabetes patients. Appl. Physiol. Nutr. Metab., 2017, 42(2), 202-208.
[http://dx.doi.org/10.1139/apnm-2016-0497] [PMID: 28121184]
[30]
Balducci, S.; Zanuso, S.; Cardelli, P.; Salvi, L.; Bazuro, A.; Pugliese, L.; Maccora, C.; Iacobini, C.; Conti, F.G.; Nicolucci, A.; Pugliese, G. Effect of high- versus low-intensity supervised aerobic and resistance training on modifiable cardiovascular risk factors in type 2 diabetes; the Italian Diabetes and Exercise Study (IDES). PLoS One, 2012, 7(11), e49297.
[http://dx.doi.org/10.1371/journal.pone.0049297] [PMID: 23185314]
[31]
Mangiamarchi, P.; Caniuqueo, A.; Ramírez-Campillo, R.; Cárdenas, P.; Morales, S.; Cano-Montoya, J.; Bresciani, G.; Álvarez, C. Effects of high-intensity interval training and nutritional education in patients with type 2 diabetes. Rev. Med. Chil., 2017, 145(7), 845-853.
[http://dx.doi.org/10.4067/s0034-98872017000700845]
[32]
Ghardashi Afousi, A.; Izadi, M.R.; Rakhshan, K.; Mafi, F.; Biglari, S.; Gandomkar Bagheri, H. Improved brachial artery shear patterns and increased flow-mediated dilatation after low-volume high-intensity interval training in type 2 diabetes. Exp. Physiol., 2018, 103(9), 1264-1276.
[http://dx.doi.org/10.1113/EP087005] [PMID: 29932275]
[33]
Mortensen, S.P.; Winding, K.M.; Iepsen, U.W.; Munch, G.W.; Marcussen, N.; Hellsten, Y.; Pedersen, B.K.; Baum, O. The effect of two exercise modalities on skeletal muscle capillary ultrastructure in individuals with type 2 diabetes. Scand. J. Med. Sci. Sports, 2019, 29(3), 360-368.
[http://dx.doi.org/10.1111/sms.13348] [PMID: 30480353]
[34]
Wormgoor, S.G.; Dalleck, L.C.; Zinn, C.; Borotkanics, R.; Harris, N.K. High-intensity interval training is equivalent to moderate-intensity continuous training for short- and medium-term outcomes of glucose control, cardiometabolic risk, and microvascular complication markers in men with type 2 diabetes. Front. Endocrinol. (Lausanne), 2018, 9, 475.
[http://dx.doi.org/10.3389/fendo.2018.00475] [PMID: 30210450]
[35]
Ahmad, A.M. Moderate-intensity continuous training: Is it as good as high-intensity interval training for glycemic control in type 2 diabetes? J. Exerc. Rehabil., 2019, 15(2), 327-333.
[http://dx.doi.org/10.12965/jer.1836648.324] [PMID: 31111021]
[36]
Cassidy, S.; Vaidya, V.; Houghton, D.; Zalewski, P.; Seferovic, J.P.; Hallsworth, K.; MacGowan, G.A.; Trenell, M.I.; Jakovljevic, D.G. Unsupervised high-intensity interval training improves glycaemic control but not cardiovascular autonomic function in type 2 diabetes patients: A randomised controlled trial. Diab. Vasc. Dis. Res., 2019, 16(1), 69-76.
[http://dx.doi.org/10.1177/1479164118816223] [PMID: 30541346]
[37]
Hwang, C.L.; Lim, J.; Yoo, J.K.; Kim, H.K.; Hwang, M.H.; Handberg, E.M.; Petersen, J.W.; Holmer, B.J.; Leey Casella, J.A.; Cusi, K.; Christou, D.D. Effect of all-extremity high-intensity interval training vs. moderate-intensity continuous training on aerobic fitness in middle-aged and older adults with type 2 diabetes: A randomized controlled trial. Exp. Gerontol., 2019, 116, 46-53.
[http://dx.doi.org/10.1016/j.exger.2018.12.013] [PMID: 30576716]
[38]
Suryanegara, J.; Cassidy, S.; Ninkovic, V.; Popovic, D.; Grbovic, M.; Okwose, N.; Trenell, M.I.; MacGowan, G.G.; Jakovljevic, D.G. High intensity interval training protects the heart during increased metabolic demand in patients with type 2 diabetes: A randomised controlled trial. Acta Diabetol., 2019, 56(3), 321-329.
[http://dx.doi.org/10.1007/s00592-018-1245-5] [PMID: 30387015]
[39]
Wilson, G.A.; Wilkins, G.T.; Cotter, J.D.; Lamberts, R.R.; Lal, S.; Baldi, J.C. HIIT improves left ventricular exercise response in adults with type 2 diabetes. Med. Sci. Sports Exerc., 2019, 51(6), 1099-1105.
[http://dx.doi.org/10.1249/MSS.0000000000001897] [PMID: 30640284]
[40]
Ghardashi-Afousi, A.; Davoodi, M.; Hesamabadi, B.K.; Asvadi-Fard, M.; Bigi, M.A.B.; Izadi, M.R.; Gaeini, A.A. Improved carotid intima-media thickness-induced high-intensity interval training associated with decreased serum levels of Dkk-1 and sclerostin in type 2 diabetes. J. Diabetes Complicat., 2020, 34(1), 107469.
[http://dx.doi.org/10.1016/j.jdiacomp.2019.107469] [PMID: 31706805]
[41]
Dünnwald, T.; Melmer, A.; Gatterer, H.; Salzmann, K.; Ebenbichler, C.; Burtscher, M.; Schobersberger, W.; Grander, W. Supervised short-term high-intensity training on plasma irisin concentrations in type 2 diabetic patients. Int. J. Sports Med., 2019, 40(3), 158-164.
[http://dx.doi.org/10.1055/a-0828-8047] [PMID: 30703846]
[42]
Liu, X.; Wang, G. The effect of high-intensity interval training on physical parameters, metabolomic indexes and serum Ficolin-3 levels in patients with prediabetes and type 2 diabetes. Exp. Clin. Endocrinol. Diabetes, 2021, 129(10), 740-749.
[http://dx.doi.org/10.1055/a-1027-6511] [PMID: 31931532]
[43]
Way, K.L.; Sabag, A.; Sultana, R.N.; Baker, M.K.; Keating, S.E.; Lanting, S.; Gerofi, J.; Chuter, V.H.; Caterson, I.D.; Twigg, S.M.; Johnson, N.A. The effect of low-volume high-intensity interval training on cardiovascular health outcomes in type 2 diabetes: A randomised controlled trial. Int. J. Cardiol., 2020, 320, 148-154.
[http://dx.doi.org/10.1016/j.ijcard.2020.06.019] [PMID: 32598997]
[44]
Rohm, T.V.; Meier, D.T.; Olefsky, J.M.; Donath, M.Y. Inflammation in obesity, diabetes, and related disorders. Immunity, 2022, 55(1), 31-55.
[http://dx.doi.org/10.1016/j.immuni.2021.12.013] [PMID: 35021057]
[45]
Papachristoforou, E.; Lambadiari, V.; Maratou, E.; Makrilakis, K. Association of glycemic indices (hyperglycemia, glucose variability, and hypoglycemia) with oxidative stress and diabetic complications. J. Diabetes Res., 2020, 2020, 7489795.
[http://dx.doi.org/10.1155/2020/7489795] [PMID: 33123598]
[46]
Hamasaki, H. Effects of exercise on circulating muscle-related cytokines in adults with type 2 diabetes and/or obesity. Curr. Diabetes Rev., 2022. Available from: http://dx.doi.org/10.2174/1573399819666221212145712
[PMID: 36515029]
[47]
Malczynska-Sims, P.; Chalimoniuk, M.; Wronski, Z.; Marusiak, J.; Sulek, A. High-intensity interval training modulates inflammatory response in Parkinson’s disease. Aging Clin. Exp. Res., 2022, 34(9), 2165-2176.
[http://dx.doi.org/10.1007/s40520-022-02153-5] [PMID: 35699838]
[48]
Bartlett, D.B.; Willis, L.H.; Slentz, C.A.; Hoselton, A.; Kelly, L.; Huebner, J.L.; Kraus, V.B.; Moss, J.; Muehlbauer, M.J.; Spielmann, G.; Kraus, W.E.; Lord, J.M.; Huffman, K.M. Ten weeks of high-intensity interval walk training is associated with reduced disease activity and improved innate immune function in older adults with rheumatoid arthritis: A pilot study. Arthritis Res. Ther., 2018, 20(1), 127.
[http://dx.doi.org/10.1186/s13075-018-1624-x] [PMID: 29898765]
[49]
Holmen Olofsson, G.; Mikkelsen, M.K.; Ragle, A.M.; Christiansen, A.B.; Olsen, A.P.; Heide-Ottosen, L.; Horsted, C.B.; Pedersen, C.M.S.; Engell-Noerregaard, L.; Lorentzen, T.; Persson, G.F.; Vinther, A.; Nielsen, D.L. thor Straten, P. High Intensity Aerobic exercise training and Immune cell Mobilization in patients with lung cancer (HI AIM)—a randomized controlled trial. BMC Cancer, 2022, 22(1), 246.
[http://dx.doi.org/10.1186/s12885-022-09349-y] [PMID: 35247994]

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