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Clinical Trials/NCT00690781
NCT00690781CompletedNot Applicable

Effect of Milk Proteins and Protein Feeding Pattern on Body Composition and Protein Metabolism in Energy Restricted Obese Subjects

Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement1 site in 1 country48 target enrollmentStarted: May 1, 2008Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
48
Locations
1
Primary Endpoint
Lean body mass

Study Overview

Brief Summary

The purpose of this study is to minimize the loss of lean body mass that occurs during a weight-loss program in obese people by changing the nature of ingested protein and the pattern of protein feeding

Detailed Description

In most physiological situations, the adequate amount of protein necessary to promote health is more and more well known. However, for an adequate protein intake, it was shown that the kinetic of amino acid delivery to the organism has an influence on the efficiency of protein utilization. In particular, caseins, slowly digested milk proteins, promote a better protein balance than rapidly digested milk soluble proteins in young subjects (Boirie et al., 1997). In addition, changing protein feeding pattern (80% of daily protein consumed at noon vs 25%) significantly affect protein balance (Arnal et al., 2000). In young healthy individuals, the best protein efficiency is obtained by spreading protein absorption over time (casein, and/or 4 isoproteic meal per day). On the contrary, in older individuals, due to alteration in the sensitivity of protein metabolism to feeding, it is better to use rapidly digested proteins (Dangin et al., 2003), and / or to have a protein-rich meal once a day (Arnal et al., 1999).

Another physiological situation that was not studied in this regard is obesity. Obesity incidence is rapidly increasing around the world. When body mass index (weight / height2) becomes too high (>30), it is often suggested to restrict energy intake. However, severe energy restriction leads to fat mass loss, but also to lean body mass loss, which should be prevented. Our aim is to test whether for an adequate amount of total protein, it is possible to preserve lean body mass by using either casein, or milk soluble proteins, or by changing protein feeding pattern.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Parallel
Primary Purpose
Supportive Care
Masking
None

Eligibility Criteria

Ages
18 Years to 40 Years (Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •sedentary
  • •normal TSH

Exclusion Criteria

  • •any serious health problem

Arms & Interventions

Casein Pulse

Experimental

casein is the main protein consumed, it is given during 6 weeks with a "pulse" protein feeding pattern : 8% for breakfast, 80% for lunch, 4% around 1600h, and 8% for dinner.

Intervention: Pulse casein feeding during energy restriction (Dietary Supplement)

Casein Spread

Experimental

casein is the main protein consumed, it is given during 6 weeks with a "spread" protein feeding pattern : 25% for breakfast, 25% for lunch, 25% around 1600h, and 25% for dinner.

Intervention: Spread casein feeding during energy restriction (Dietary Supplement)

MSP Pulse

Experimental

Milk soluble proteins (MSP) are the main protein consumed, it is given during 6 weeks with a "pulse" protein feeding pattern : 8% for breakfast, 80% for lunch, 4% around 1600h, and 8% for dinner.

Intervention: Pulse milk soluble protein feeding during energy restriction (Dietary Supplement)

MSP Spread

Experimental

Milk soluble proteins (MSP) are the main protein consumed, it is given during 6 weeks with a "spread" protein feeding pattern : 25% for breakfast, 25% for lunch, 25% around 1600h, and 25% for dinner.

Intervention: Spread milk soluble protein feeding during energy restriction (Dietary Supplement)

Outcomes

Primary Outcomes

Lean body mass

Time Frame: 6 weeks

Secondary Outcomes

  • Nitrogen balance(6 weeks)
  • whole body leucine turnover(6 weeks)

Investigators

Study Sites (1)

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