It is possible that the lower protein intake in vegetarians and vegans may relate to a decrease in grip strength. Furthermore, there is limited research examining the effects of plant-based protein intake on strength and LBM independent of an exercise training component. The present study was designed to examine relationships between strength, protein intake, and LBM in underactive vegetarian and vegan adults, as well as the impact of protein supplementation (18 g mung bean protein daily) on these indices.
The American Dietetic Association states that based off of evidence, it is possible for a vegetarian to obtain the recommended amount of nutrients with a properly planned diet. By mixing various sources of plant proteins throughout the day, a person can obtain all the amino acids needed for growth and tissue maintenance and repair. Yet, many vegetarians struggle to eat a substantial diet, especially when it comes to protein. This is because plant protein has protein bioavailability that is 10-30% lower than animal protein. As a result, current research suggests that there needs to be a separate protein dietary reference intake (DRI) for vegetarians and it needs to be larger than the protein DRI for omnivores. Whenever considering protein bioavailability, the quality must be assessed by analyzing the digestibility, chemical integrity, and freedom from interference in metabolism of the amino acid. This is a major concern because inadequate protein intake can affect bone health and alter muscle mass. Importantly, research has shown as a result of inadequate protein intake, vegetarians tend to have less lean body mass and less muscle strength than omnivores. Currently, all research available on this topic included strength training as a variable for increasing lean muscle mass, and no research has been reported that analyzed the impact of increased dietary protein on lean body mass without a training component. This parallel arm study will examine the effect of supplemental plant protein on strength and lean body mass in adult, non-athletic vegetarians in the Phoenix area.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
OTHER
Masking
Participants were instructed to consume the test foods in the morning hours and to keep a record of the days the foods were consumed on a study calendar which was returned to investigators at the final visit and used to track protocol adherence.
Participants were instructed to consume the test foods in the morning hours and to keep a record of the days the foods were consumed on a study calendar which was returned to investigators at the final visit and used to track protocol adherence.
Arizona State University
Phoenix, Arizona, United States
grip strength
Dominant handgrip strength was measured in triplicate in a seated position with the elbow flexed to 90 degrees and a neutral wrist position in triplicate using a handheld dynamometer
Time frame: change in strength from baseline to week 8
leg strength
Lower body strength was measured in the dominant leg using a multi-joint system dynamometer. Isokinetic knee flexion and extension were measured from a seated position at a resistance of 90°/sec.
Time frame: change in strength from baseline to week 8
lean body mass
LBM was measured via dual energy X-ray absorptiometry (DEXA) and was conducted by a trained X-ray technician.
Time frame: change in LBM from baseline to week 8
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SINGLE
Enrollment
37