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Clinical Trials/NCT03573687
NCT03573687CompletedNot Applicable

The Effect of Protein Timing and Resistance Exercise on Lipolysis and Fat Oxidation in Resistance-Trained Women

Florida State University1 site in 1 country13 target enrollmentStarted: March 20, 2017Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
13
Locations
1
Primary Endpoint
Lipolysis

Study Overview

Brief Summary

The extent to which resistance exercise training and protein timing effects localized (belly fat) and systemic (whole body) fat metabolism in resistance-trained women is unknown. Therefore, this study will assess subcutaneous abdominal adipose tissue lipolytic rate and whole body substrate utilization over the course of two trials: 1) consuming casein protein during the day, and 2) consuming casein protein at night, before bed.

Detailed Description

Nighttime eating, and specifically eating after dinner, has attracted significant attention in recent years, particularly for the onslaught of media claiming the negative implications on body weight and overall health. Some studies have indeed indicated that chronically eating high-energy, mixed-meals rich in carbohydrates (CHO) and fats at night contributes to weight gain and abdominal obesity. However, research to support these negative claims is scant. Conversely, the practice of nighttime eating of small protein (PRO) snacks has been widely utilized anecdotally in populations such as bodybuilders in an attempt to avoid catabolism of muscle mass during the sleeping hours.

It has been shown that nighttime consumption of small portions (<200 kcals) of PRO elicits beneficial effects on metabolism such as increased next-morning resting metabolic rate (RMR). Likewise, the combination of nighttime PRO consumption and RT improves factors that contribute to fat loss such as elevated muscle mass due to an increase in muscle protein synthesis and energy expenditure. Further, there is emerging research suggesting the benefits of nighttime PRO consumption on fat metabolism (specifically the subcutaneous abdominal adipose tissue [SCAAT]). The SCAAT is of particular interest in metabolism research, as the upper body subcutaneous tissue (i.e. SCAAT) supplies most of the circulating free fatty acids (FFA) during the overnight hours in lean individuals. Therefore, if one can optimize the timing of dietary PRO during a window at which SCAAT is elevated (nighttime), theoretically, mobilization and oxidation of fats could be optimized.

Research regarding nighttime eating, specifically regarding fat metabolism, is in its infancy, and thus, many gaps in the literature require elucidation. First, and certainly most importantly, the limited research studies examining the effects of nighttime PRO consumption have not methodologically matched for timing of PRO intake. Therefore, it is unclear whether any reported benefits of the published nighttime PRO studies were a consequence of the addition of PRO calories or specifically due to the consumption of PRO at night. Thus, in order to make optimal comparisons and conclusions, it is imperative to study the metabolic effects of dietary PRO consumed at night versus other times of day.

Therefore, the purpose of this project is to: 1) determine the effects of RT on post-exercise lipolytic rate in resistance-trained women; and 2) determine the effects of timing of acute protein PRO ingestion (nighttime PRO consumption [NP] and daytime PRO consumption [DP] trials) after a RT bout on SCAAT lipolytic rate, metabolic rate, and serum hormones (glucose, insulin, growth hormone, adiponectin, glycerol) throughout the day, overnight and into the next morning.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Crossover
Primary Purpose
Basic Science
Masking
Double (Participant, Investigator)

Masking Description

The supplements will be made by a third party person and premixed, taste-matched, and provided in opaque shaker bottles.

Eligibility Criteria

Ages
18 Years to 35 Years (Adult)
Sex
Female
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • •Resistance-trained (able to squat 1.0 times their body weight, and bench press 0.75 times body weight, adapted from ACSM Guidelines and piloted in our laboratory)
  • •Normal weight (BMI = 18.5-25 kg/m2; body fat <33%)
  • •Normally menstruating (on or off oral contraceptives)

Exclusion Criteria

  • •Uncontrolled thyroid dysfunction (not on medication)
  • •Musculoskeletal disorders
  • •Currently smoke
  • •Have milk allergies
  • •Currently take medications or supplements known to affect substrate metabolism.

Arms & Interventions

RT on Fat Metabolism

Experimental

Determine the extent to which a full-body acute RT protocol will affect intra-RT and post-RT SCAAT lipolytic rate, and post-RT whole-body substrate utilization in RT women compared to baseline measures (independent of Aims 2 and 3).

Intervention: Resistance Exercise Training (Other)

PRO Timing on Fat Metabolism

Experimental

Assess the differences in overnight and next morning SCAAT lipolytic rate and next-morning whole-body substrate utilization compared to baseline between acute NP and DP consumption trials after a RT bout in RT women.

Intervention: Micellar Casein Protein (Dietary Supplement)

PRO Timing on Fat Metabolism

Experimental

Assess the differences in overnight and next morning SCAAT lipolytic rate and next-morning whole-body substrate utilization compared to baseline between acute NP and DP consumption trials after a RT bout in RT women.

Intervention: Resistance Exercise Training (Other)

PRO Timing on Markers of Fat Metabolism

Experimental

Assess the differences in overnight and next morning metabolic biomarkers of fat metabolism compared to baseline between acute nighttime PRO (NP) consumption versus daytime PRO (DP) consumption trials after a RT bout in RT women.

Intervention: Micellar Casein Protein (Dietary Supplement)

PRO Timing on Markers of Fat Metabolism

Experimental

Assess the differences in overnight and next morning metabolic biomarkers of fat metabolism compared to baseline between acute nighttime PRO (NP) consumption versus daytime PRO (DP) consumption trials after a RT bout in RT women.

Intervention: Resistance Exercise Training (Other)

Outcomes

Primary Outcomes

Lipolysis

Time Frame: 18 hours

Lipolysis is the way that fat cells mobilize the stored fat to enter into blood circulation. Lipolysis can be measured using a technique called microdialysis. In short, a semi-permeable probe is inserted into the subcutaneous abdominal adipose tissue (SCAAT, or belly fat). Saline combined with a minute amount of ethanol is perfused into the SCAAT, and interstitial fluid is collected out. The concentration of ethanol in the interstitial fluid sample is an indicator of blood flow within the tissue. Glycerol and free fatty acid concentration is measured to indicated rate of fat metabolism (specifically glycerol). The area under the curve for glycerol concentration over time (AUCgly) will be calculated for each of time point. Microdialysis dialysate samples will be measured during the NP and DP trials at fifteen separate time points throughout each visit.

Secondary Outcomes

  • Fat oxidation(18 hours)
  • Hormone Concentrations(18 hours)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Michael J. Ormsbee

Assistant Professor

Florida State University

Study Sites (1)

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