Cite

Akhtar P., Kazmi A., Sharma T., Sharma A. (2020) Effects of Ramadan fasting on serum lipid profile. J. Family Med. Prim. Care, 9(5): 2337-2341. DOI: 10.4103/jfmpc. jfmpc_550_19. Search in Google Scholar

American Thoracic Society, American College of Chest Physicians. (2003) AST/ACCP statement on cardiopulmonary exercise testing. Am. J. Respir. Crid. Care Med., 167(2): 211-277. DOI: 10.1164/rccm.167.2.211. Search in Google Scholar

Arnason T.G., Bowen M.W., Mansell K.D. (2017) Effects of intermittent fasting on health markers in those with type 2 diabetes: a pilot study. World J. Diabetes, 8(4): 154-164. DOI: 10.4239/wjd.v8.i4.154. Search in Google Scholar

Azevedo F.R., Ikeoka D., Caramelli B. (2013) Effects of intermittent fasting on metabolism in men. Rev. Assoc. Med. Bras., 59(2): 167-173. DOI: 10.1016/j. ramb.2012.09.003. Search in Google Scholar

Bhutani S., Klempel M.C., Kroeger C.M., Trepanowski J.F., Varady K.A. (2013) Alternate day fasting and endurance exercise combine to reduce body weight and favorably alter plasma lipids in obese humans. Obesity (Silver Spring), 21(7): 1370-1379. DOI: 10.1002/oby.20353. Search in Google Scholar

Cornier M.A., Donahoo W.T., Pereira R., Gurevich I., Westergren R., Enerback S., Eckel P.J., Goalstone M.L., Hill J.O., Eckel R.H., Draznin B. (2005) Insulin sensitivity determines the effectiveness of dietary macronutrient composition on weight loss in obese women. Obes. Res., 13(4): 703-709. DOI: 10.1038/oby.2005.79. Search in Google Scholar

Dobiásová M. (2014) Atherogenic index of plasma [log(triglycerides/HDL-cholesterol)]: theoretical and practical implications. Clin. Chem., 50(7): 1113-1115. DOI: 10.1373/clinchem.2004.033175. Search in Google Scholar

Dobiásová M., Frohlich J., Sedová M., Cheung M.C., Brown B.G. (2011) Cholesterol esterification and atherogenic index of plasma correlate with lipoprotein size and findings on coronary angiography. J. Lipid Res., 52(3): 566-571. DOI: 10.1194/jlr.P011668. Search in Google Scholar

Elliott B., Mina M., Ferrier C. (2016) Complete and Voluntary Starvation of 50 days. Clin. Med. Insights Case Rep., 9: 67-70. DOI: 10.4137/CCRep.S39776. Search in Google Scholar

Ferreira G.A., Felippe L.C., Silva R.L.S., Bertuzzi R., De Oliveira F.R., Pires F.O., Lima-Silva A.E. (2018) Effect of pre-exercise carbohydrate availability on fat oxidation and energy expenditure after a high-intensity exercise. Braz. J. Med. Biol. Res., 51(5): e6964. DOI: 10.1590/1414-431X20186964. Search in Google Scholar

Frank P., Katz A., Andersson E., Sahlin K. (2013) Acute exercise reverses starvation-mediated insulin resistance in humans. Am. J. Physiol. Endocrinol. Metab., 304(4): E436–E443. DOI: 10.1152/ajpendo.00416.2012. Search in Google Scholar

Friedewald W.T., Levy R.I., Fredrickson D.S. (1972) Estimation of the concentration of low-density lipoprotein cholesterol in plasma, without use of the preparative ultracentrifuge. Clin. Chem., 18(6): 499-502. Search in Google Scholar

Frøsig Ch., Richter E.A. (2009) Improved Insulin Sensitivity After Exercise: Focus on Insulin Signaling. Obesity (Silver Spring), 17(3): 15-20. DOI: 10.1038/oby.2009.383. Search in Google Scholar

Gabel K., Hoddy K.K., Haggerty N., Song J., Kroeger C.M., Trepanowski J.F., Panda S., Varady K.A. (2018) Effects of 8-hour time restricted feeding on body weight and metabolic disease risk factors in obese adults: a pilot study. J. Nutr. Health. Aging, 4(4): 345-353. DOI: 10.3233/NHA-170036. Search in Google Scholar

Goldberg A.C., Hopkins P.N., Toth P.P., Ballantyne C.M., Rader D.J., Robinson J.G., Daniels S.R., Gidding S.S., de Ferranti S.D., Ito M.K., McGowan M.P., Moriarty P.M., Cromwell W.C., Ross J.L., Ziajka P.E., National Lipid Association Expert Panel on Familial Hypercholesterolemia. (2011) Familial hypercholesterolemia: screening, diagnosis and management of pediatric and adult patients: clinical guidance from the National Lipid Association Expert Panel on familial hypercholesterolemia. J. Clin. Lipidol., 5(3): 1-8. DOI: 10.1016/j.jacl.2011.04.003. Search in Google Scholar

Harvie M., Wright C., Pegington M., McMullan D., Mitchell E., Martin B., Cutler R.G., Evans G., Whiteside S., Maudsley S., Camandola S., Wang R., Carlson O.D., Egan J.M., Mattson M.P., Howell A. (2013) The effect of intermittent energy and carbohydrate restriction v. daily energy restriction on weight loss and metabolic disease risk markers in overweight women. Br. J. Nutr., 110(8): 1534-1547. DOI: 10.1017/S0007114513000792. Search in Google Scholar

Harvie M.N., Pegington M., Mattson M.P., Frystyk J., Dillon B., Evans G., Cuzick J., Jebb S.A., Martin B., Cutler R.G., Son T.G., Maudsley S., Carlson O.D., Egan J.M., Flyvbjerg A., Howell A. (2011) The effects of intermittent or continuous energy restriction on weight loss and metabolic disease risk markers: a randomized trial in young overweight women. Int. J. Obes., 35(5): 714-727. DOI: 10.1038/ijo.2010.171. Search in Google Scholar

Hołowko J., Michalczyk M.M., Zając A., Czerwinska-Rogowska M., Ryterska K., Banaszczak M., Jakubczyk K., Stachowska E. (2019) Six weeks of calorie restriction improves body composition and lipid pro – file in obese and overweight former athletes. Nutrients, 11(7): 1461. DOI: 10.3390/nu11071461. Search in Google Scholar

Hori T., Nakamura S., Yamagami H., Yasui S., Hosoki M., Hara T., Mitsui Y., Masuda S., Kurahashi K., Yoshida S., Harada T., Kuroda A., Otoda T., Yuasa T., Endo I., Matsuhisa M., Abe M., Aihara K.I. (2023) Phase angle and extracellular water-to-total body water ratio estimated by bioelectrical impedance analysis are associated with levels of hemoglobin and hematocrit in patients with diabetes. Heliyon, 9(4): e14724. DOI: 10.1016/j.heliyon.2023. e14724. Search in Google Scholar

Ivy J.L., Holloszy J.O. (1981) Persistent increase in glucose uptake by rat skeletal muscle following exercise. Am. J. Physiol., 241(5): C200–C203. DOI: 10.1152/ajpcell.1981.241.5.C200. Search in Google Scholar

Jelleyman C., Yates T., O’Donovan G., Gray L., King J.A., Khunti K., Davies M.J. (2015) The effects of high-intensity interval training on glucose regulation and insulin resistance: A meta-analysis. Obes. Rev., 16(11): 942-961. DOI: 10.1111/obr.12317. Search in Google Scholar

Kamata N., Tanaka K., Morita S., Tagaya H., Kawashima M., SHichiri M., Miyaoka H. (2011) Relationship between Autonomic Nervous System Activity during Sleep and Fasting Glucose in Japanese Workers. Ind. Health, 49(4): 427-433. DOI: 10.2486/indhealth.ms1257. Search in Google Scholar

Kimm H., Lee S.W., Lee H.S., Shim K.W., Cho C.Y., Yun J.E., Jee S.H. (2010) Associations between lipid measures and metabolic syndrome, insulin resistance and adiponectin: usefulness of lipid ratios in Korean men and women. Circ. J., 74(5): 931-937. DOI: 10.1253/circj.CJ-09-0571. Search in Google Scholar

Kłapcińska B., Waśkiewicz Z., Chrapusta S.J., Sadowska-Krępa E., Czuba M., Langfort J. (2013) Metabolic responses to a 48-h ultra-marathon run in middle-aged male amateur runners. Eur. J. Appl. Physiol., 113(11): 2781-2793. DOI: 10.1007/s00421-013-2714-8. Search in Google Scholar

Letkiewicz S., Pilis K., Ślęzak A., Pilis A., Pilis W., Żychowska M., Langfort J. (2020) Eight days of water-only fasting promotes favorable changes in the functioning of the urogenital system of middle-aged healthy men. Nutrients, 13(1): 113. DOI: 10.3390/nu13010113. Search in Google Scholar

Lima-Silva A.E, Bertuzzi R.C., Fronchetti L., Gevaerd M.S., De-Oliveira F.R. (2010) A low carbohydrate diets affects autonomic modulation during heavy but not moderate exercise. Eur. J. Appl. Physiol., 108(6): 1133-1140. DOI: 10.1007/s00421-009-1329-6. Search in Google Scholar

McLaughlin T., Reaven G., Abbasi F., Lamendola C., Saad M., Waters D., Simon J., Krauss R.M. (2005) Is there a simple way to identify insulin-resistant individuals at increased risk of cardiovascular disease? Am. J. Cardiol., 96(3): 399-404. DOI: 10.1016/j.amjcard.2005.03.085. Search in Google Scholar

Mrakic-Sposta S., Gussoni M., Moretti S., Pratali L., Giardini G., Tacchini P., Dellanoce C., Tonacci A., Mastorci F., Borghini A., Montorsi M., Vezzoli A. (2015) Effects of Mountain Ultra-Marathon Running on ROS Production and Oxidative Damage by Micro-Invasive Analytic Techniques. PLoS One, 10(11): e0141780. DOI: 10.1371/journal.pone.0141780. Search in Google Scholar

Nielsen J.V., Joensson E. (2006) Low-carbohydrate diet in 2 type diabetes. Stable improvement of body weight and glicemic control during 22 months of follow-up. Nutr. Metab. (Lond.), 3: 22. DOI: 10.1186/1743-7075-3-22. Search in Google Scholar

Palmer B.F., Clegg D.J. (2021) Starvation Ketosis and the Kidney. Am. J. Nephrol., 52(6): 467-478. DOI: 10.1159/000517305. Search in Google Scholar

Parr E.B., Heilbronn L.K., Hawley J.A. (2020) A Time to Eat and a Time to Exercise. Exerc. Sport Sci. Rev. 48(1): 4-10. DOI: 10.1249/JES.0000000000000207. Search in Google Scholar

Pilis K., Pilis A., Stec K., Pilis W., Langfort J., Letkiewicz S., Michalski C., Czuba M., Zych M., Chalimoniuk M. (2018) Three-year chronic consumption low-carbohydrate diet impairs exercise performance and has a small unfavorable effect on lipid profile in middle-aged men. Nutrients, 10(12): 1914. DOI: 10.3390/nu10121914. Search in Google Scholar

Rajappa M., Sridhar M.G., Balachander J., Sethuraman K.R., Rajendiran K.S. (2014) Lipoprotein ratios as surrogate markers for insulin resistance in South Indians with normoglycemic nondiabetic acute coronary syndrome. ISRN Endocrinol., 2014: 981524. DOI: 10.1155/2014/981524. Search in Google Scholar

Richter E.A., Garetto L.P., Goodman M.N., Ruderman N.B. (1984) Enhanced muscle glucose metabolism after exercise: modulation by local factors. Am. J. Physiol., 246: E476–E482. DOI: 10.1152/ajpendo.1984.246.6.E476. Search in Google Scholar

Sadowska-Krępa E., Gdańska A., Pridalova M., Rozpara M., Grabara M. (2022) The effect of calorie restriction on the anthropometric parameters, HOMA-IR index, and lipid profile of female office workers with overweight and obesity: a preliminary study. Int. J. Occupat. Med. Environ. Health, 35(6): 1-14. DOI: 10.13075/ijomeh.1896.01963. Search in Google Scholar

Sales M.M., Sousa C.V., Aguiar S.S., Knechtle B., Nikolaidis P.T., Alves P.M., Simões H.G. (2019) An integrative perspective of the anaerobic threshold. Physiol. Behav., 205: 29-32. DOI: 10.1016/j.physbeh.2017.12.015. Search in Google Scholar

Santos O.H., Macedo R.C.O. (2018) Impact of intermittent fasting on the lipid profile: Assessment associated with diet and weight loss. Clin. Nutr. ESPEN, 24: 14-21. DOI: 10.1016/j.clnesp.2018.01.002. Search in Google Scholar

Stec K. (2012) Dynamic Suryanamaskar – Sun Salutations. Swami Vivekananda Yoga Prakashana, Bangalore. Search in Google Scholar

Steinhauser M.L., Olenchock B.A., O’Keefe J., Lun M., Pierce K.A., Lee H., Pantano L., Klibanski A., Shulman G.I., Clish C.B., Fazeli P.K. (2018) The circulating metabolome of human starvation. J. CI. Insight, 3(16): e121434. DOI: 10.1172/jci.insight.121434. Search in Google Scholar

Teng N.I.M.F., Shahar S., Manaf Z.A., Das S.K., Taha C.S.C., Ngah W.Z.W. (2011) Efficacy of fasting calorie restriction on quality of life among aging men. Physiol Behav., 104(5): 1059-1064. DOI: 10.1016/j. physbeh.2011.07.007. Search in Google Scholar

Trepanowski J.F., Kroeger C.M., Barnosky A., Klempel M., Bhutani S., Hoddy K.K., Rood J., Ravussin E., Varady K.A. (2018) Effects of alternate-day fasting or daily calorie restriction on body composition, fat distribution, and circulating adipokines: secondary analysis of a randomized controlled trial. Clin. Nutr. 37(6): 1871-1878. DOI: 10.1016/j.clnu.2017.11.018. Search in Google Scholar

Vaisberg M., Bachi A.L., Latrilha C., Dioguardi G.S., Bydlowski S.P., Maranhao R.C. (2012) Lipid transfer to HDL is higher in marathon runners than in sedentary subjects, but is acutely inhibited during the run. Lipids, 47(7): 679-686. DOI: 10.1007/s11745-012-3685-y. Search in Google Scholar

Välimäki I.A., Vuorimaa T., Ahotupa M., Vasankari T.J. (2016) Strenuous physical exercise accelerates the lipid peroxide clearing transport by HDL. Eur. J. Appl. Physiol., 116(9): 1683-1691. DOI: 10.1007/s00421-016-3422-y. Search in Google Scholar

Vink R.G., Roumans N.J., Čajlaković M., Cleutjens J.P.M., Boekschoten M.V., Fazelzadeh P., Vogel M.A.A., Blaak E.E., Mariman E.C., van Baak M.A., Goossens G.H. (2017) Diet-induced weight loss decreases adipose tissue oxygen tension with parallel changes in adipose tissue phenotype and insulin sensitivity in overweight humans. Int. J. Obes., 41(5): 722-728. DOI: 10.1038/ijo.2017.38. Search in Google Scholar

Volek J.S., Phinney S.D., Forsythe C.E., Quann E.E., Wood R.J., Puglisi M.J., Kraemer W.J., Bibus D.M., Fern-andez M.L., Feinman R.D. (2009) Carbohydrate restriction has a more favorable impact on the metabolic syndrome than a low fat diet. Lipids, 44(4): 297-309. DOI: 10.1007/s11745-008-3274-2. Search in Google Scholar

Wallace T.M., Matthews D.R. (2002) The assessment insulin resistance in man. Diabet. Med., 19(7): 527-534. DOI: 10.1046/j.1464-5491.2002.00745.x. Search in Google Scholar

Wilhelmi de Toledo F., Grundler F., Bergouignan A., Drinda S., Michalsen A. (2019) Safety, health improvement and well-being during a 4 to 21-day fasting period in an observational study including 1422 subjects. PLoS One, 14(1): e0209353. DOI: 10.1371/journal.pone.0209353. Search in Google Scholar

Wu H.J., Chen K.T., Shee B.W., Chang H.C., Huang Y.J., Yang R.S. (2004) Effects of 24 h ultra-marathon on biochemical and hematological parameters. World J. Gastroenterol., 10(18): 2711-2714. DOI: 10.3748/wjg.v10. i18.2711. Search in Google Scholar

You J., Wang Z., Lu G., Chen Z. (2020) Association between the non-high-density lipoprotein cholesterol to high-density lipoprotein cholesterol ratio and the risk of coronary artery disease. Biomed. Res. Int., 2020: 7146028. DOI: 10.1155/2020/7146028. Search in Google Scholar

Zouhal H., Saeidi A., Salhi A., Li H., Essop M.F., Laher I., Rhibi F., Amani-Shalamzari S., Ben Abderrahman A. (2020) Exercise Training and Fasting: Current Insights. Open Access J. Sports Med., 11: 1-28. DOI: 10.2147/OAJSM.S224919. Search in Google Scholar

eISSN:
2080-2234
Language:
English
Publication timeframe:
Volume Open
Journal Subjects:
Medicine, Basic Medical Science, other, Clinical Medicine, Public Health, Sports and Recreation, Physical Education