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Blood pressure responses in healthy older people to 50 g carbohydrate drinks with differing glycaemic effects

Published online by Cambridge University Press:  09 March 2007

Renuka Visvanathan*
Affiliation:
Department of Geriatric and Rehabilitation Medicine, Royal Adelaide Hospital, Adelaide, South Australia, Australia
Richard Chen
Affiliation:
Department of Medicine, University of Adelaide, South Australia, Australia
Michael Horowitz
Affiliation:
Department of Medicine, University of Adelaide, South Australia, Australia
Ian Chapman
Affiliation:
Department of Medicine, University of Adelaide, South Australia, Australia
*
*Corresponding author: Dr Renuka Visvanathan, fax +618 8223 6472, email r_visvanathan@hotmail.com
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Abstract

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The aim of the present study was to determine the effects on blood pressure response of 50 g carbohydrate drinks with differing glycaemic effects in ten healthy elderly subjects (age >65 years; randomized crossover design). Systolic (SBP), diastolic (DBP) and mean arterial (MAP) blood pressure, heart rate and plasma glucose levels were determined following ingestion of equal volumes (379 ml) of water and 50 g carbohydrate drinks with differing reported glycaemic indices (GI) (surrogate marker for glycaemic effect): (1) low-GI: Apple & Cherry Juice; (2) intermediate-GI: Fanta Orange; (3) high-glucose. Glucose (SBP and DBP P<0·001; MAP P=0·005) and Fanta Orange (SBP P=0·005; DBP and MAP P<0·001) ingestion caused a significant decrease in BP whilst blood pressure increased (SBP P=0·008; MAP P=0·005) from baseline following Apple & Cherry Juice ingestion. Water had no significant effect on postprandial blood pressure. Fanta Orange and Apple & Cherry Juice caused similar (P=0·679) glycaemic effects, which were significantly greater than water, but lower than glucose (P<0·001). There was no significant correlation between the glycaemic effect of the carbohydrate drinks and there was no change in blood pressure from baseline (SBP r −0·123, P=0·509; DBP r −0·051, P=0·784; MAP r −0·069, P=0·712). Apple & Cherry Juice and Fanta Orange had similar glycaemic effects, but differing effects on blood pressure. Therefore, it is unlikely that the glycaemic effect of a drink can be used to predict the subsequent cardiovascular response.

Type
Research Article
Copyright
Copyright © The Nutrition Society 2004

References

Aronow, WS&Ahn, CPostprandial hypotension in 499 elderly persons in a long-term health care facility J Am Geriatr Soc (1994) 42 930932CrossRefGoogle Scholar
Ewing, DJ&Clarke, BFDiagnosis and management of diabetic autonomic neuropathy Br Med J (Clin Res Ed) (1982) 285 916918CrossRefGoogle ScholarPubMed
Foster-Powell, K, Holt, SH&Brand-Miller, JCInternational table of glycemic index and glycemic load values: 2002 Am J Clin Nutr (2002) 76 556CrossRefGoogle ScholarPubMed
Heseltine, D, Dakkak, M, Macdonald, IA,Bloom, SR&Potter, JFEffects of carbohydrate type on postprandial blood pressure, neuroendocrine and gastrointestinal hormone changes in the elderly Clin Auton Res (1991) 1 219224CrossRefGoogle ScholarPubMed
Jansen, RW&Lipsitz, LAPostprandial hypotension: epidemiology, pathophysiology, and clinical management Ann Intern Med (1995) 122 286295CrossRefGoogle ScholarPubMed
Jansen, RW, Peeters, TL, Van Lier, HJ&Hoefnagels, WHThe effect of oral glucose, protein, fat and water loading on blood pressure and the gastrointestinal peptides VIP and somatostatin in hypertensive elderly subjects Eur J Clin Invest (1990) 20 192198CrossRefGoogle ScholarPubMed
Jansen, RW, Penterman, BJ, Van Lier, HJ&Hoefnagels, WHBlood pressure reduction after oral glucose loading and its relation to age, blood pressure and insulin Am J Cardiol (1987) 60 10871091CrossRefGoogle ScholarPubMed
Jones, KL, Macintosh, C, Su, YC,Wells, F, Chapman, IM, Tonkin, A&Horowitz, MGuar gum reduces postprandial hypotension in older people Am Geriatr Soc (1987) 60 10871091Google Scholar
Jones, KL, Tonkin, A, Horowitz, M,Wishart, JM, Carney, BI, Guha, S&Green, LRate of gastric emptying is a determinant of postprandial hypotension in non-insulin-dependent diabetes mellitus Clin Sci (Lond) (1998) 94 6570CrossRefGoogle ScholarPubMed
Kuipers, HM, Jansen, RW, Peeters, TL&Hoefnagels, WHThe influence of food temperature on postprandial blood pressure reduction and its relation to substance-P in healthy elderly subjects J Am Geriatr Soc (1991) 39 181184CrossRefGoogle ScholarPubMed
Mathias, CJ, Da Costa, DF, Mcintosh, CM, Fosbraey, P, Bannister, R, Wood, SM, Bloom, SR&Christensen, NJDifferential blood pressure and hormonal effects after glucose and xylose ingestion in chronic autonomic failure Clin Sci (Lond) (1989) 77 8592CrossRefGoogle ScholarPubMed
Miller, JB, Pang, E&Broomhead, LThe glycaemic index of foods containing sugars: comparison of foods with naturally-occurring v. added sugars Br J Nutr (1995) 73 613623CrossRefGoogle ScholarPubMed
O'Donovan, D, Feinle, C, Tonkin, A, Horowitz, M&Jones, KLPostprandial hypotension in response to duodenal glucose delivery in healthy older subjects J Physiol (2002) 540 673679CrossRefGoogle ScholarPubMed
O'Donovan, D, Feinle-Bisset, C, Chong, C,Cameron, A, Tonkin, A, Wishart, JM, Horowitz, M&Jones, KIntraduodenal guar attenuates the fall in blood pressure induced by glucose in healthy older subjects J Gerontol A Biol Sci Med Sci (2004) (In the Press)Google Scholar
Piha, SJCardiovascular autonomic reflex tests: normal responses and age-related reference values Clin Physiol (1991) 11 277290CrossRefGoogle ScholarPubMed
Ploutz-Snyder, L, Foley, J, Ploutz-Snyder, R, Kanaley, J, Sagendorf, K&Meyer, RGastric gas and fluid emptying assessed by magnetic resonance imaging Eur J Appl Physiol Occup Physiol (1999) 79 212220CrossRefGoogle ScholarPubMed
Pouderoux, P, Friedman, N, Shirazi, P, Ringelstein, JG&Keshavarzian, AEffect of carbonated water on gastric emptying and intragastric meal distribution Dig Dis Sci (1997) 42 3439CrossRefGoogle ScholarPubMed
Robinson, TG&Potter, PJPostprandial and orthostatic cardiovascular changes after acute stroke Stroke (1995) 26 18111816CrossRefGoogle ScholarPubMed
Ryan, AJ, Navarre, AE&Gisolfi, CVConsumption of carbonated and noncarbonated sports drinks during prolonged treadmill exercise in the heat Int J Sport Nutr (1991) 1 225239CrossRefGoogle ScholarPubMed
Smith, NL,Psaty, BM, Rutan, GH, Lumley, T, Yanez, D, Chaves, PH, &Kronmal, RA, The association between time since last meal and blood pressure in older adults: the cardiovascular health study J Am Geriatr Soc (2003) 51 824828CrossRefGoogle ScholarPubMed
Wolever, TM, Jenkins, DJ,Collier, GR, Ehrlich, RM,Josse, RG,Wong, GS&Lee, RThe glycaemic index: effect of age in insulin dependent diabetes mellitus Diabetes Res (1988) 7 7174Google ScholarPubMed
Wolever, TM, Vorster, HH&Bjorck, IDetermination of the glycaemic index of foods: interlaboratory study Eur J Clin Nutr (2003) 57 475482CrossRefGoogle ScholarPubMed