Acute effects of daily step count on postprandial metabolism and resting fat oxidation: a randomized controlled trial

5Citations
Citations of this article
27Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

To examine the effects of daily step count on same-day fat oxidation and postprandial metabolic responses to an evening high-fat mixed meal (HFMM). Ten healthy participants (5 females, 30 ± 7 yr) completed four different daily step counts—2,000 (2 K), 5,000 (5 K), 10,000 (10 K), and 15,000 (15 K) steps—on separate days in randomized order. On experimental days, participants ate the same meals and walked all steps on an indoor track at a pace of 100 steps/min in three roughly equal bouts throughout the day. After the final walking bout, participants’ resting energy expenditure (REE), respiratory exchange ratio (RER), and fat oxidation rate (FATOX) were measured. Blood samples were obtained before (BL) and 30-, 60-, 90-, 120-, and 240-min following consumption of an HFMM (960 kcal; 48% fat) to measure triglycerides (i.e., postprandial lipemia; PPL), nonesterified fatty acids (NEFAs), insulin, and glucose. Two-way ANOVAs indicated condition effects where PPL was significantly higher after 2 K versus 10 K (þ 23 ± 8 mg/dL, P ¼ 0.027), and NEFAs were significantly higher after 15 K versus 2 K (þ 86 ± 23 lmol/L; P ¼ 0.006). No differences were found for insulin, glucose, or REE among conditions (all P > 0.124). Similarly, RER (P ¼ 0.054; gp2 ¼ 0.24) and FATOX (P ¼ 0.071; gp2 ¼ 0.23) were not significantly different among conditions. In young adults, 10 K steps elicited the greatest decrease in PPL, an established cardiovascular disease risk factor. NEFA levels were highest after the 15 K condition, likely due to alterations in adipose tissue lipolysis or lipoprotein lipase activity with increased activity.

Cite

CITATION STYLE

APA

Rogers, E. M., Banks, N. F., & Jenkins, N. D. M. (2023). Acute effects of daily step count on postprandial metabolism and resting fat oxidation: a randomized controlled trial. Journal of Applied Physiology, 135(4), 812–822. https://doi.org/10.1152/japplphysiol.00052.2023

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free