Strawberry Modulates LDL Oxidation and Postprandial Lipemia in Response to High-Fat Meal in Overweight Hyperlipidemic Men and Women

2010 ◽  
Vol 29 (1) ◽  
pp. 46-54 ◽  
Author(s):  
Britt Burton-Freeman ◽  
Amanda Linares ◽  
Dianne Hyson ◽  
Tissa Kappagoda
2008 ◽  
Vol 33 (2) ◽  
pp. 315-325 ◽  
Author(s):  
Nicolas D. Knuth ◽  
David B. Remias ◽  
Jeffrey F. Horowitz

The lipemic response to a meal is an important independent risk factor for the development of cardiovascular disease. The purpose of this study was to determine the effect of adding carbohydrate (CHO) to a fat meal on the bioavailability of ingested fat in different blood lipid fractions in men and women. On two separate occasions, 18 healthy adults (9 women, 9 men) ate either a high-fat meal (0.7 grams fat per kilogram) (FAT), or the same meal with added CHO (1 gram CHO per kilogram) (FAT+CHO) in the morning after a 12 h fast. Both meals were supplemented with [13C]-palmitate (25 mg·kg–1). Plasma concentrations of triglyceride (TG), fatty acids, insulin, and glucose were measured in blood samples taken hourly from 0 to 8 h after the meal. In addition, we measured TG concentrations in chylomicron (CHYLO-TG) and in very-low-density lipoprotein (VLDL-TG) fractions. The addition of CHO to the fat meal increased plasma glucose and insulin concentrations identically in men and women. In contrast, adding CHO to the fat meal reduced the plasma TG concentration in the 5 h after the meal in women (average 5 h [TG]: 1.27 ± 0.11 and 1.01 ± 0.09 mmol·L–1; p <0.05), but not in men (1.25 ± 0.23 and 1.24 ± 0.20 mmol·L–1). Despite differences in the lipemic response to the meals between men and women, we found that adding carbohydrate to a fat meal decreased the bioavailability of meal-derived [13C]-palmitate in the systemic fatty acid pool, and decreased the incorporation of [13C]-palmitate into VLDL-TG in both men and women. In summary, adding CHO to a fat meal markedly blunted the plasma TG response in women, but not in men, which may augment the atherogenic potential after each meal in men.


2008 ◽  
Vol 22 (S1) ◽  
Author(s):  
Amanda Linares ◽  
Dianne Hyson ◽  
Tissa Kappagoda ◽  
Britt Burton‐Freeman

Author(s):  
Steve K. Teo ◽  
Michael R. Scheffler ◽  
Karin A. Kook ◽  
William G. Tracewell ◽  
Wayne A. Colburn ◽  
...  

2020 ◽  
Vol 52 (7S) ◽  
pp. 233-233
Author(s):  
Justin J. Duong ◽  
Breanne S. Collison ◽  
S.M. Majedul Karim ◽  
Darren S. DeLorey
Keyword(s):  
High Fat ◽  

2007 ◽  
Vol 85 (1) ◽  
pp. 102-108 ◽  
Author(s):  
Edward P Weiss ◽  
Josef Brandauer ◽  
Onanong Kulaputana ◽  
Ioana A Ghiu ◽  
Christopher R Wohn ◽  
...  

2016 ◽  
Vol 48 ◽  
pp. 818-819
Author(s):  
Renata L. Krüger ◽  
Bruno C. Teixeira ◽  
Juliano B. Farinha ◽  
Rodrigo C. O. Macedo ◽  
Gabriel A. Fonseca ◽  
...  

2015 ◽  
Vol 8 ◽  
pp. NMI.S32106 ◽  
Author(s):  
Jessie R. Wilburn ◽  
Jeffrey Bourquin ◽  
Andrea Wysong ◽  
Christopher L. Melby

Introduction Meals rich in both fructose and fat are commonly consumed by many Americans, especially young men, which can produce a significant postprandial lipemic response. Increasing evidence suggests that aerobic exercise can attenuate the postprandial increase in plasma triacylglycerols (TAGs) in response to a high-fat or a high-fructose meal. However, it is unknown if resistance exercise can dampen the postprandial lipemic response to a meal rich in both fructose and fat. Methods Eight apparently healthy men (Mean ± SEM; age = 27 ± 2 years) participated in a crossover study to examine the effects of acute resistance exercise on next-day postprandial lipemia resulting from a high-fructose, high-fat meal. Participants completed three separate two-day conditions in a random order: (1) EX-COMP: a full-body weightlifting workout with the provision of additional kilocalories to compensate for the estimated net energy cost of exercise on day 1, followed by the consumption of a high-fructose, high-fat liquid test meal the next morning (day 2) (~600 kcal) and the determination of the plasma glucose, lactate, insulin, and TAG responses during a six-hour postprandial period; (2) EX-DEF: same condition as EX-COMP but without exercise energy compensation on day 1; and (3) CON: no exercise control. Results The six-hour postprandial plasma insulin and lactate responses did not differ between conditions. However, the postprandial plasma TAG concentrations were 16.5% and 24.4% lower for EX-COMP (551.0 ± 80.5 mg/dL x 360 minutes) and EX-DEF (499.4 ± 73.5 mg/dL x 360 minutes), respectively, compared to CON (660.2 ± 95.0 mg/dL x 360 minutes) ( P < 0.05). Conclusions A single resistance exercise bout, performed ~15 hours prior to a high-fructose, high-fat meal, attenuated the postprandial TAG response, as compared to a no-exercise control condition, in healthy, resistance-trained men.


2019 ◽  
Vol 18 (1) ◽  
Author(s):  
Chih-Hui Chiu ◽  
Tsung-Jen Yang ◽  
Che-Hsiu Chen ◽  
Ming-Jing Zeng

Abstract Background This study investigated the effects of ingesting meals with the same calorie intake but distinct nutritional contents after exercise on postprandial lipemia the next day. Methods Eight healthy male participants completed two 2-day trials in a random order. On day 1, the participants underwent five 12 min bouts of cycling exercise with a bout of higher intensity exercise (4 min) after each and then a bout of lower intensity cycling (2 min). The total exercise time was 90 min. After the exercise, the participants ingested three high-fat or low-fat meals. On Day 2, the participants were asked to rest in the laboratory and ingest a high-fat meal. Their postprandial reaction after a high-fat meal was observed. Results Postprandial triglyceride concentrations in the high-fat diet trial and low-fat diet trial exhibited nonsignificant differences. Total TG AUC were no significantly different on HF trial and LF trial (HF: 6.63 ± 3.2; LF: 7.20 ± 3.4 mmol/L*4 h. p = 0.586). However, the postprandial fat oxidation rate total AUC (HF: 0.58 ± 0.1; LF: 0.39 ± 0.2 g/min*4 h. p = 0.045), plasma glucose, and insulin concentration of the high-fat trial were significantly higher than those of the low-fat trial. Conclusions This study revealed that meals with distinct nutritional contents after a 90-min exercise increased the postprandial fat oxidation rate but did not influence the postprandial lipemia after a high-fat meal the next day.


2008 ◽  
Vol 22 (S1) ◽  
Author(s):  
Collin Ellis ◽  
Mandeep Cheema ◽  
Amanda Linares ◽  
Dianne Hyson ◽  
Tissa Kappagoda ◽  
...  

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