Blakemore SJ, Aledo JC, James J, Campbell FC, Lucocq JM, Hundal HS. The GLUT5 hexose transporter is also localized to the basolateral membrane of the human jejunum. Biochem J. 1995;309(1):7–12.
CAS
Article
Google Scholar
Jones HF, Butler RN, Brooks DA. Intestinal fructose transport and malabsorption in humans. Am J Physiol Gastro Liver Physiol. 2011;300(2):202–6.
Article
Google Scholar
Fujisawa T, Mulligan K, Wada L, Schumacher L, Riby J, Kretchmer N. The effect of exercise on fructose absorption. Am J Clin Nutr. 1993;58:75–9.
CAS
Article
Google Scholar
Rowlands DS, Swift M, Ros M, Green JG. Composite versus single transportable carbohydrate solution enhances race and laboratory cycling performance. Appl Physiol Nutr Metab. 2012;37(3):425–36.
CAS
Article
Google Scholar
Barrett JS. Extending our knowledge of fermentable, short-chain carbohydrates for managing gastrointestinal symptoms. Nutr in Clin Prac. 2013;28(3):300–6.
Article
Google Scholar
Staudacher HM, Irving PM, Lomer MCE, Whelan K. Mechanisms and efficacy of dietary FODMAP restriction in IBS. Nat Rev Gastroenterol Hepatol. 2014;11:256–66.
CAS
Article
Google Scholar
Khan MA, Nusrat S, Khan MI, Nawras A, Bielefeldt K. Low-FODMAP diet for irritable bowel syndrome: is it ready for prime time? Digest Dis Sci. 2014;60(5):1169–77.
Article
Google Scholar
Gibson PR, Shepherd SJ. Evidence-based dietary management of functional gastrointestinal symptoms: the FODMAP approach. J Gastroenterol Hepatol. 2010;25(2):252–8.
Article
Google Scholar
Barrett JS, Gibson PR. Fermentable oligosaccharides, disaccharides, monosaccharides and polyols [FODMAPs] and nonallergic food intolerance: FODMAPs or food chemicals? Ther Adv Gastroenterol. 2012;5(4):261–8.
Article
Google Scholar
Ong DK, Mitchell SB, Barrett JS, Shepherd SJ, Irving PM, Biesiekierski JR, et al. Manipulation of dietary short chain carbohydrates alerts the pattern of gas production and genesis of symptoms in irritable bowel syndrome. J Gastroenterol Hepatol. 2010;25:1366–73.
CAS
Article
Google Scholar
Gibson PR, Shepherd SJ. Fructose Malabsorption and symptoms of irritable bowel syndrome: guidelines for effective dietary management. J Am Diet Assoc. 2005;106:1631–9.
Google Scholar
Yao CK, Tan HL, van Langenberg DR, Barrett JS, Rose R, Liels K, et al. Dietary sorbitol and mannitol: food content and distinct absorption patterns between healthy individuals and patients with irritable bowel syndrome. J Human Nutr Diet. 2014;27(S2):263–75. https://doi.org/10.1111/jhn.12144.
Article
Google Scholar
Pearce J, Gaskell S. Athletes with gastrointestinal disorders, food allergies and food intolerance. In: Burke L, Deakin V, editors. Clinical sports nutrition. 5th ed. Australia: McGraw-Hill Education; 2015. Ch. 20.
Google Scholar
Peters HPF, Akkermans LMA, Bol E, Mosterd WL. Gastrointestinal symptoms during exercise. Sports Med. 1995;20(2):65–76.
CAS
Article
Google Scholar
de Oliveira EP, Burini RC, Jeukendrup A. Gastrointestinal complaints during exercise: prevalence, etiology, and nutritional recommendations. Sports Med. 2014;44(1):79–85.
Article
Google Scholar
Marsh A, Eslick EM, Eslick GD. Does a diet low in FODMAPs reduce symptoms associated with functional gastrointestinal disorders? A comprehensive review and meta-analysis. Euro J Nutr. 2015;55(3):897–906.
Article
Google Scholar
Lacy BE. Diagnostic strategies in irritable bowel syndrome. Gastroenterol Hepatol. 2015;11(4):6–9.
Google Scholar
Ahmad OF, Akbar A. Dietary treatment of irritable bowel syndrome. Br Med Bull. 2015;113:83–90.
CAS
Article
Google Scholar
El-Salhy M, Gundersen D. Diet in irritable bowel syndrome. Nutr J. 2015;14(36). https://doi.org/10.1186/s12937-015-0022-3.
de Oliveira EP, Burini RC. The impact of physical exercise on the gastrointestinal tract. Curr Opin Clin Nutr Metab Care. 2009;12(5):553–38.
Article
Google Scholar
Peters HPF, De Vries WR, Vanberge-Henegouwen GP, Akkermans LMA. Potential benefits and hazards of physical activity and exercise on the gastrointestinal tract. Gut. 2001;48:435–9.
CAS
Article
Google Scholar
Van Wijck K, Lenaerts K, Van Loon LJC, Peters WHM, Buurman WA, Dejong CHC. Exercise-induced Splanchnic Hypoperfusion Results in Gut Dysfunction in Healthy Men. Plos One. 2011;6:e22366 1–9.
Article
Google Scholar
Zuhl M, Schneider S, Lanphere K, Conn C, Dokladny K. Exercise regulation of intestinal tight junction proteins. Br J Sports Med. 2014;48(12):980–6.
Article
Google Scholar
Costa RJS, Snipe RMJ, Kitic CM, Gibson PR. Systematic review: exercise-induced gastrointestinal syndrome – implications for health and intestinal disease. Aliment Pharmacol Therap. 2017;1:1–20.
Google Scholar
Applegate EA, Grivetti LE. Search for the competitive edge: a history of dietary fads and supplements. J Nutr. 1997;127:869–73.
Article
Google Scholar
de Oliveira EP and Burini RC. Food-dependent, exercise-induced gastrointestinal distress. J. Int. Soc. Sports Nutr. 2011;8(12):1-7. https://doi.org/10.1186/1550-2783-8-12.
Lis DM, Stellingwerff T, Shing CM, Ahuja KDK, Fell J. Exploring the popularity, experiences, and beliefs surrounding gluten-free diets in nonceliac athletes. Int J Sports Nutr Exerc Metab. 2015;25:37–45.
Article
Google Scholar
McKenzie YA, Bowyer RK, Leach H, Gulia P, Horobin J, O’Sullivan NA, et al. British dietetic association systematic review and evidence-based practice guidelines for the dietary management of irritable bowel syndrome. J Human Nutr Diet. 2016;29:549–75.
CAS
Article
Google Scholar
Lis D, Stellingwerff T, Kitic CM, Ahuja KDK, Fell J. No effects of a short-term gluten-free diet on performance in nonceliac athletes. Med Sci Sport Exerc. 2015;47(12):2563–70.
CAS
Article
Google Scholar
Muir JG, Shepherd SJ, Rosella O, Rose R, Barrett JS, Gibson PR. Fructan and free fructose content of coon australian vegetables and fruit. J Agri Food Chem. 2007;55:6619–27.
CAS
Article
Google Scholar
Monash University. Low FODMAP diet for irritable bowel syndrome. 2010. https://www.monash.edu/medicine/ccs/gastroenterology/fodmap.
Biesiekierski JL, Rosella O, Rose R, Liels K, Barrett JS, Shepherd SJ, et al. Quantification of fructans, galacto-oligosaccharides and other short-chain carbohydrates in processed grains and cereals. J Hum Nutr Diet. 2011;24:154–76.
CAS
Article
Google Scholar
Whelan K, Abrahmsohn O, David GJP, Staudacher H, Irving P, Lomer MCE, et al. Fructan content of commonly consumed wheat, rye and gluten-free breads. Int J Food Sci Nutr. 2011;62(5):498–503.
CAS
Article
Google Scholar
Halmos EP, Power VA, Shepherd SJ, Gibson PR, Muir JG. A diet low in FODMAPs reduces symptoms of irritable bowel syndrome. Gastroenterol. 2014;146:67–75.
CAS
Article
Google Scholar
Biesiekierski JL, Peters SL, Newnham ED, Rosella O, Muir JG, Gibson PR. No effects of gluten in patients with self-reported non-celiac gluten sensitivity after dietary reduction of fermentable, poorly absorbed, short-chain carbohydrates. Gastroenterol. 2013;145:320–8.
CAS
Article
Google Scholar
Lis DM, Stelllingwerff T, Kitic CM, Fell JW, Ahuja KDK. Low FODMAP: A preliminary strategy to reduce gastrointestinal distress in athletes. Med Sci Sports Exerc. 2018;50(1):116–23.
Article
Google Scholar
Lis D, Ahuja KDK, Stellingwerff T, Kitic CM, Fell J. Case study: utilizing a low FODMAP diet to combat exercise-induced gastrointestinal symptoms. Int J Sports Nutr Exerc Metab. 2016;26(5):481–7.
Article
Google Scholar
Gaskell SK, Costa RJS. Applying a low-FODMAP dietary intervention to a female Ultraendurance runner with irritable bowel syndrome during a multistage Ultramarathon. Int J Sport Nutr Exerc Metabol. 2018;26:1–7.
Google Scholar
Gunnarsson J, Simren M. Peripheral factors in the pathophysiology of irritable bowel syndrome. Digest Liver Dis. 2009;41(11):788–93.
CAS
Article
Google Scholar
Stuempfle K, Hoffman M. Gastrointestinal distress is common during a 161-km ultramarathon. J Sports Sci. 2015;33:1814–21.
Article
Google Scholar
Pfeiffer B, Stellingwerff T, Hodgson A, Randell R, Pottgen K, Res P, et al. Nutritional intake and gastrointestinal problems during competitive endurance events. Med Sci Sports Exerc. 2012;44(2):344–51.
CAS
Article
Google Scholar
Pals KL, Ray-Tai C, Ryan AJ, Gisolfi CV. Effect of running intensity on intestinal permeability. J Appl Physiol. 1997;82:571–6.
CAS
Article
Google Scholar
Barrett JS, Gearry RB, Muir JG, Irving PM, Rose R, Rosella O, et al. Dietary poorly absorbed, short-chain carbohydrates increase delivery of water and fermentable substrates to the proximal colon. Aliment Pharmacol Ther. 2010;31(8):874–82.
CAS
PubMed
Google Scholar
Maagard L, Ankersen DV, Vegh Z, Burisch J, Jensen L, Pedersen N, et al. Follow-up of patients with functional bowel symptoms treated with a low FODMAP diet. World J Gastroenterol. 2016;22(15):4009–19.
Article
Google Scholar
Staudacher HM, Lomer MCE, Anderson JL, Barrett JS, Muir JG, Irving PM, et al. Fermentable carbohydrate restriction reduces luminal bifidobacteria and gastrointestinal symptoms in patients with irritable bowel syndrome. J Nutr. 2012;142(8):1510–8.
CAS
Article
Google Scholar
McIntosh K, Reed DE, Schneider T, Dang F, Keshteli AH, de Palma G, et al. FODMAPS alter symptoms and the metabolome of patients with IBS; a randomised control trial. Gut 2016; 0: 1–11.
Halmos EP, Christophersen CT, Bird AR, Shepherd SJ, Gibson PR, Muir JG. Diets that differ in their FODMAP content alter the colonic luminal microenvironment. Gut. 2016;64:93–100.
Article
Google Scholar