No impact of acute hyperglycaemia on arterial stiffness in the early and late follicular phases of the menstrual cycle in young females.


Journal

Experimental physiology
ISSN: 1469-445X
Titre abrégé: Exp Physiol
Pays: England
ID NLM: 9002940

Informations de publication

Date de publication:
01 2020
Historique:
received: 27 05 2019
accepted: 04 10 2019
pubmed: 20 10 2019
medline: 27 5 2021
entrez: 20 10 2019
Statut: ppublish

Résumé

• What is the central question of this study? This is the first study to examine the impact of acute hyperglycaemia on arterial stiffness across the early and late follicular phases of the menstrual cycle. • What is the main finding and its importance? Central and peripheral arterial stiffness were not impacted by acute hyperglycaemia. This indicates that premenopausal women might experience protection against deleterious effects of acute hyperglycaemia, regardless of menstrual cycle phase. This research furthers our understanding of the interaction between nutrient intake, hormonal fluctuation and vascular function in premenopausal women. Acute hyperglycaemia may result in transient increases in arterial stiffness. However, research in healthy premenopausal women is lacking, and the impact of menstrual phase [early follicular (EF; low oestrogen) and late follicular (LF; high oestrogen)] on vulnerability to acute hyperglycaemia-induced changes in arterial stiffness is unknown. We hypothesized that an acute hyperglycaemia-induced increase in arterial stiffness in the EF phase would be attenuated in the LF phase. Seventeen healthy, naturally menstruating women [21 ± 1 years of age (mean ± SD)] participated in three experimental visits. During two visits, in the EF and LF phase, arterial stiffness was assessed via central and peripheral (arm and leg) pulse wave velocity (PWV) before and 15, 45, 75 and 105 min after consuming an oral glucose challenge (75 g glucose in 300 ml of solution). Blood samples were taken to assess glucose, insulin, oestrogen and progesterone concentrations. During a third visit in the EF phase, participants ingested 300 ml of water as a time control for PWV. Despite significant increases in blood glucose and insulin (P < 0.001), both central and peripheral arm PWV remained unchanged across time and phase, indicating that neither acute hyperglycaemia nor menstrual phase had an impact on central or peripheral arm arterial stiffness. There was a small effect of phase for peripheral leg PWV, where PWV was lower in the LF phase (P = 0.04, Cohen's d = 0.39); however, and in contrast to recent results in young men, peripheral leg PWV was unaffected by hyperglycaemia. These results suggest that premenopausal women might experience protection from acute hyperglycaemia-induced increases in arterial stiffness.

Identifiants

pubmed: 31628691
doi: 10.1113/EP087899
doi:

Substances chimiques

Blood Glucose 0
Estrogens 0
Insulin 0
Progesterone 4G7DS2Q64Y

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

174-183

Subventions

Organisme : Natural Sciences and Engineering Research Council of Canada
ID : 05270-2014
Pays : International

Informations de copyright

© 2019 The Authors. Experimental Physiology © 2019 The Physiological Society.

Références

Adkisson, E. J., Casey, D. P., Beck, D. T., Gurovich, A. N., Martin, J. S., & Braith, R. W. (2010). Central, peripheral and resistance arterial reactivity: Fluctuates during the phases of the menstrual cycle. Experimental Biology and Medicine, 235, 111-118.
Baynard, T., Carhart, R. L., Weinstock, R. S., Ploutz-Snyder, L. L., & Kanaley, J. A. (2009). Short-term exercise training improves aerobic capacity with no change in arterial function in obesity. European Journal of Applied Physiology, 107, 299-308.
Boreham, C. A., Ferreira, I., Twisk, J. W., Gallagher, A. M., Savage, M. J., & Murray, L. J. (2004). Cardiorespiratory fitness, physical activity, and arterial stiffness: The Northern Ireland Young Hearts Project. Hypertension, 44, 721-726.
Borrás, C., Gambini, J., López-Grueso, R., Pallardó, F. V., & Viña, J. (2010). Direct antioxidant and protective effect of estradiol on isolated mitochondria. Biochimica et Biophysica Acta, 1802, 205-211.
Credeur, D. P., Reynolds, L. J., Holwerda, S. W., Vranish, J. R., Young, B. E., Wang, J., … Fadel, P. J. (2018). Influence of physical inactivity on arterial compliance during a glucose challenge. Experimental Physiology, 103, 483-494.
Currie, K. D., Thomas, S. G., & Goodman, J. M. (2009). Effects of short-term endurance exercise training on vascular function in young males. European Journal of Applied Physiology, 107, 211-218.
Domingues, C. C., Dore, F. J., Cho, A., Ahmadi, N., Kropotova, Y., Kundu, N., … Sen, S. (2019). Reassessing the effects of continuous positive airway pressure (CPAP) on arterial stiffness and peripheral blood derived CD34+ progenitor cells in subjects with sleep apnea. Stem Cell Research & Therapy, 10, 147.
Gordin, D., Rönnback, M., Forsblom, C., Heikkilä, O., Saraheimo, M., & Groop, P.-H. (2007). Acute hyperglycaemia rapidly increases arterial stiffness in young patients with type 1 diabetes. Diabetologia, 50, 1808-1814.
Grassi, D., Desideri, G., Necozione, S., Ruggieri, F., Blumberg, J. B., Stornello, M., & Ferri, C. (2012). Protective effects of flavanol-rich dark chocolate on endothelial function and wave reflection during acute hyperglycemia. Hypertension, 60, 827-832.
Hayashi, K., Miyachi, M., Seno, N., Takahashi, K., Yamazaki, K., Sugawara, J., … Mesaki, N. (2006). Variations in carotid arterial compliance during the menstrual cycle in young women. Experimental Physiology, 91, 465-472.
Huang, C. L., Chen, M. F., Jeng, J. S., Lin, L. Y., Wang, W. L., Feng, M. H., … Su, T. C. (2007). Postchallenge hyperglycaemic spike associate with arterial stiffness. International Journal of Clinical Practice, 61, 397-402.
Kahlberg, N., Qin, C. X., Anthonisz, J., Jap, E., Ng, H. H., Jelinic, M., … Leo, C. H. (2016). Adverse vascular remodelling is more sensitive than endothelial dysfunction to hyperglycaemia in diabetic rat mesenteric arteries. Pharmacological Research, 111, 325-335.
Kawano, H., Motoyama, T., Hirashima, O., Hirai, N., Miyao, Y., Sakamoto, T., … Yasue, H. (1999). Hyperglycemia rapidly suppresses flow-mediated endothelium-dependent vasodilation of brachial artery. Journal of the American College of Cardiology, 34, 146-154.
Kobayashi, R., Hashimoto, Y., Hatakeyama, H., & Okamoto, T. (2018). Acute effects of aerobic exercise intensity on arterial stiffness after glucose ingestion in young men. Clinical Physiology and Functional Imaging, 38, 138-144.
Kobayashi, R., Hashimoto, Y., Hatakeyama, H., & Okamoto, T. (2019). Acute effects of repeated bouts of aerobic exercise on arterial stiffness after glucose ingestion. Clinical and Experimental Hypertension, 41, 123-129.
Kobayashi, R., Yoshida, S., & Okamoto, T. (2015). Arterial stiffness after glucose ingestion in exercise-trained versus untrained men. Applied physiology, nutrition, and metabolism = Physiologie appliquee, nutrition et metabolisme, 40, 1151-1156.
Loader, J., Montero, D., Lorenzen, C., Watts, R., Méziat, C., Reboul, C., … Walther, G. (2015). Acute hyperglycemia impairs vascular function in healthy and cardiometabolic diseased subjects: Systematic review and meta-analysis. Arteriosclerosis, Thrombosis, and Vascular Biology, 35, 2060-2072.
Lucitti, J. L., Visconti, R., Novak, J., & Keller, B. B. (2006). Increased arterial load alters aortic structural and functional properties during embryogenesis. American Journal of Physiology-Heart and Circulatory Physiology, 291, H1919-H1926.
Madhura, M., & Sandhya, T. (2014). Effect of different phases of menstrual cycle on reflection index, stiffness index and pulse wave velocity in healthy subjects. Journal of Clinical and Diagnostic Research, 8, BC01-04.
McEniery, C. M., Wallace, S., Mackenzie, I. S., McDonnell, B., Yasmin, Newby, D. E., … Wilkinson, I. B. (2006). Endothelial function is associated with pulse pressure, pulse wave velocity, and augmentation index in healthy humans. Hypertension, 48, 602-608.
McGrath, B. P., Liang, Y. L., Teede, H., Shiel, L. M., Cameron, J. D., & Dart, A. (1998). Age-related deterioration in arterial structure and function in postmenopausal women: Impact of hormone replacement therapy. Arteriosclerosis, Thrombosis, and Vascular Biology, 18, 1149-1156.
Mendelsohn, M. E. (2002). Genomic and nongenomic effects of estrogen in the vasculature. American Journal of Cardiology, 90, 3F-6F.
Mendelsohn, M. E., & Karas, R. H. (1999). The protective effects of estrogen on the cardiovascular system. New England Journal of Medicine, 340, 1801-1811.
Mullan, B. A., Ennis, C. N., Fee, H. J. P., Young, I. S., & McCance, D. R. (2004). Protective effects of ascorbic acid on arterial hemodynamics during acute hyperglycemia. American Journal of Physiology-Heart and Circulatory Physiology, 287, H1262-H1268.
Nakagomi, A., Sunami, Y., Okada, S., Ohno, Y., Shoji, T., Fujisawa, T., & Kobayashi, Y. (2018). Association between 1-h post-load plasma glucose levels and arterial stiffness in normotensive subjects with normal glucose tolerance. Diabetes & Vascular Disease Research, 15, 39-45.
Nilsson, S., Makela, S., Treuter, E., Tujague, M., Thomsen, J., Andersson, G., … Gustafsson, J. A. (2001). Mechanisms of estrogen action. Physiological Reviews, 81, 1535-1565.
Papaioannou, T. G., Stamatelopoulos, K. S., Georgiopoulos, G., Vlachopoulos, C., Georgiou, S., Lykka, M., … Stefanadis, C. I. (2009). Arterial wave reflections during the menstrual cycle of healthy women: A reproducibility study. Hypertension, 54, 1021-1027.
Priest, S. E., Shenouda, N., & MacDonald, M. J. (2018). Effect of sex, menstrual cycle phase, and monophasic oral contraceptive pill use on local and central arterial stiffness in young adults. American Journal of Physiology-Heart and Circulatory Physiology, 315, H357-H365.
Ribeiro Júnior, R. F., Marques, V. B., Nunes, D. O., de Sousa Ronconi, K., de Araújo, J. F. P, Rodrigues, P. L., … Stefanon, I. (2016). Tributyltin chloride increases phenylephrine-induced contraction and vascular stiffness in mesenteric resistance arteries from female rats. Toxicology and Applied Pharmacology, 295, 26-36.
Robb, A. O., Mills, N. L., Smith, I. B., Short, A., Tura-Ceide, O., Barclay, G. R., … Denison, F. C. (2009). Influence of menstrual cycle on circulating endothelial progenitor cells. Human Reproduction, 24, 619-625.
Ryden, L., Standl, E., Bartnik, M., Van den Berghe, G., Betteridge, J., de Boer, M. J., … Wood, D. (2007). Guidelines on diabetes, pre-diabetes, and cardiovascular diseases: Executive summary. The Task Force on Diabetes and Cardiovascular Diseases of the European Society of Cardiology (ESC) and of the European Association for the Study of Diabetes (EASD). European Heart Journal, 28, 88-136.
Sallisi, F. J., Haskell, W. L., Wood, P. D., Fortmann, S. P., Rogers, T., Blair, S. N., & Paffenbarger, R. S. (1985). Physical activity assessment methodology in the five-city project. American Journal of Epidemiology, 121, 91-106.
Saydah, S. H., Miret, M., Sung, J., Varas, C., Gause, D., & Brancati, F. L. (2001). Postchallenge hyperglycemia and mortality in a national sample of U.S. adults. Diabetes Care, 24, 1397-1402.
Schram, M. T., Henry, R. M., van Dijk, R. A., Kostense, P. J., Dekker, J. M., Nijpels, G., … Stehouwer, C. D. (2004). Increased central artery stiffness in impaired glucose metabolism and type 2 diabetes: The Hoorn Study. Hypertension, 43, 176-181.
Shuto, Y., Asai, A., Nagao, M., Sugihara, H., & Oikawa, S. (2015). Repetitive glucose spikes accelerate atherosclerotic lesion formation in C57BL/6 mice. PLoS One, 10, e0136840.
Slattery, D. J., Stuckless, T. J., King, T. J., & Pyke, K. E. (2016). Impaired handgrip exercise-induced brachial artery flow-mediated dilation in young obese males. Applied physiology, nutrition, and metabolism = Physiologie appliquee, nutrition et metabolisme, 41, 528-537.
Takahashi, K., Miura, S., Mori-Abe, A., Kawagoe, J., Takata, K., Ohmichi, M., & Kurachi, H. (2005). Impact of menopause on the augmentation of arterial stiffness with aging. Gynecologic and Obstetric Investigation, 60, 162-166.
Tanaka, H., DeSouza, C. A., & Seals, D. R. (1998). Absence of age-related increase in central arterial stiffness in physically active women. Arteriosclerosis, Thrombosis, and Vascular Biology, 18, 127-132.
Tominaga, M., Eguchi, H., Manaka, H., Igarashi, K., Kato, T., & Sekikawa, A. (1999). Impaired glucose tolerance is a risk factor for cardiovascular disease, but not impaired fasting glucose. The Funagata Diabetes Study. Diabetes Care, 22, 920-924.
Tsuboi, A., Ito, C., Fujikawa, R., Yamamoto, H., & Kihara, Y. (2015). Association between the postprandial glucose levels and arterial stiffness measured according to the cardio-ankle vascular index in non-diabetic subjects. Internal Medicine, 54, 1961-1969.
Van Bortel, L. M., Laurent, S., Boutouyrie, P., Chowienczyk, P., Cruickshank, J. K., De Backer, T., … Weber, T. (2012). Expert consensus document on the measurement of aortic stiffness in daily practice using carotid-femoral pulse wave velocity. Journal of Hypertension, 30, 445-448.
van Sloten, T. T., Schram, M. T., van den Hurk, K., Dekker, J. M., Nijpels, G., Henry, R. M., & Stehouwer, C. D. (2014). Local stiffness of the carotid and femoral artery is associated with incident cardiovascular events and all-cause mortality: The Hoorn study. Journal of the American College of Cardiology, 63, 1739-1747.
Vlachopoulos, C., Aznaouridis, K., & Stefanadis, C. (2010). Prediction of cardiovascular events and all-cause mortality with arterial stiffness: A systematic review and meta-analysis. Journal of the American College of Cardiology, 55, 1318-1327.
Wilkinson, I. B., & McEniery, C. M. (2004). Arterial stiffness, endothelial function and novel pharmacological approaches. Clinical and Experimental Pharmacology & Physiology, 31, 795-799.
Wilkinson, I. B., McEniery, C. M., Schillaci, G., Boutouyrie, P., Segers, P., Donald, A., & Chowienczyk, P. J. (2010). ARTERY Society guidelines for validation of non-invasive haemodynamic measurement devices: Part 1, arterial pulse wave velocity. Artery Research, 4, 34-40.
Williams, J. S., Stimpson, T. V., Tremblay, J. C., Fenuta, A. M., & Pyke, K. E. (2019). The influence of acute hyperglycemia on brachial artery flow-mediated dilatation in the early and late follicular phases of the menstrual cycle. Experimental Physiology, 104, 957-966.
Williams, M. R. I., Westerman, R. A., Kingwell, B. A., Paige, J., Blombery, P. A., Sudhir, K., & Komesaroff, P. A. (2001). Variations in endothelial function and arterial compliance during the menstrual cycle. Journal of Clinical Endocrinology & Metabolism, 86, 5389-5395.
Zaydun, G., Tomiyama, H., Hashimoto, H., Arai, T., Koji, Y., Yambe, M., … Yamashina, A. (2006). Menopause is an independent factor augmenting the age-related increase in arterial stiffness in the early postmenopausal phase. Atherosclerosis, 184, 137-142.
Zieman, S. J., Melenovsky, V., & Kass, D. A. (2005). Mechanisms, pathophysiology, and therapy of arterial stiffness. Arteriosclerosis, Thrombosis, and Vascular Biology, 25, 932-943.

Auteurs

Jennifer S Williams (JS)

Cardiovascular Stress Response Laboratory, School of Kinesiology and Health Studies, Queen's University, Kingston, Ontario, Canada.

Taylor V Stimpson (TV)

Cardiovascular Stress Response Laboratory, School of Kinesiology and Health Studies, Queen's University, Kingston, Ontario, Canada.

Joshua C Tremblay (JC)

Cardiovascular Stress Response Laboratory, School of Kinesiology and Health Studies, Queen's University, Kingston, Ontario, Canada.

Alyssa M Fenuta (AM)

Human Vascular Control Laboratory, School of Kinesiology and Health Studies, Queen's University, Kingston, Ontario, Canada.

Kyra E Pyke (KE)

Cardiovascular Stress Response Laboratory, School of Kinesiology and Health Studies, Queen's University, Kingston, Ontario, Canada.

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