The objective of this study is to test and determine whether a high protein diet is efficacious, safe and beneficial to curtail food intake and body weight in obese adult human patients and to establish whether neurohormonal mechanisms of a high protein diet induce an early signal of fullness or satiety in a relevant experimental model, focusing on activation of gastric vagal afferents.
Obesity is a major cause of morbidity and mortality within the VA medical system accounting for the majority of cases of diabetes mellitus, hypertension, coronary artery disease and cerebrovascular accidents. An improved understanding of the regulation of body weight in Veteran obese patients will improve the quality of life by avoidance of serious medical complications and by suggesting novel therapeutic approaches. The large proportion of the Veteran population that frequent the VA health care system and who suffer from obesity or have obesity-related illnesses can benefit from this research. Obesity is associated with early mortality in the United States. It has been estimated to result in about 280,000 deaths per year in U.S. adults and the expenses related to obesity are in excess of $80 billion. Obesity is a major cause of morbidity and mortality within the VA medical system accounting for the majority of cases of diabetes mellitus, hypertension, coronary artery disease and cerebrovascular accidents. The proposed studies will address important physiological questions regarding the mechanisms of gut peptides regulating satiety and food intake, as well as provide potentially important clinical treatment strategies. The release of GI hormones in response to meal stimuli plays an important role in the regulation of body weight homeostasis. The neural pathways interconnecting gut signaling of satiety to the brain in response to nutrient intake are regulated by neuropeptides and GI hormones. The investigators have a long history in the study of GI hormones. In the current application, the investigators plan to elucidate the impact of a high protein diet on the profile of gut hormones released postprandially in obese subjects and the underlying changes at the neuronal (vagal afferent) level that take place in response to a high protein diet in a relevant experimental model. Understanding the regulatory mechanisms involved in satiety will provide clues for existing and novel forms of therapies. Studies may also provide insight into underlying mechanisms responsible for weight loss induced by gastroplasty and bariatric procedure used for the treatment of obesity. The study design is a three-group randomized, controlled study. This randomized controlled study lasting 24-30 months will assign approximately 198 volunteer subjects (ages 30, BMI 27-40 kg/m2) (66 subjects each) to the following three groups who will adhere to diets with the same number of calories: 1. Very high protein diet group based on 1.4 gram of protein per pound of lean body mass, 2. High protein diet group based on 1 gram of protein per pound of lean body mass, and 3. Standard protein diet group as control based on 0.5 gram protein per pound of lean body mass with same calories. All participants will meet with a Registered Dietitian (who it is anticipated will join the research study team), to assist them with their diet efforts in all the arms. In the study, the percent energy from fat will be held constant at 30% and the differences in the diets relate only to the protein and carbohydrate contents (35% protein and 35% carbohydrate, 25% protein and 45% carbohydrate, and 12.5% protein and 57.5% carbohydrate respectively). The investigators will assess the efficacy of a high protein diet on satiety and pattern of postprandial gut hormone in obese patients. All the subjects will be followed by a dietitian and determination of circulating gut hormone and biochemical assays will be performed.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
OTHER
Masking
NONE
Enrollment
31
Standard protein diet as control, based on 0.5 gram protein per pound of lean body mass, isocaloric (same number of calories) and consisting of 15% protein and 55% carbohydrate.
High level of protein diet, based on 1 gram of protein per pound of subject's lean body mass, isocaloric (same number of calories) and consisting of 30% protein and 40% carbohydrate.
VA Greater Los Angeles Healthcare System, West Los Angeles, CA
West Los Angeles, California, United States
Change in Body Weight From Baseline to 12 Months
The primary objective is to compare weight loss between each of the two diets, a high-protein diet versus a standard diet.
Time frame: The primary outcome of weight loss is measured at the Baseline at Day 1, and at the end of the 12 months study period for each subject.
Efficacy Variables: Nutrition Assessments (FFQ, 3DFR, and Satiety Questionnaire), Anthropometric Profiles (e.g., Waist and Hip Circumferences), Lab and Biochemical Variables (e.g., Insulin, Lipid Levels, HbA1c), Body Composition (Body Fat), Hormone Level
High-protein diet promotes sensitivity to cholecystokinin and shifts the cecal microbiome without altering brain inflammation in diet-induced obesity
Time frame: The outcome of efficacy is measured at Day 1 Baseline and at monthly visits during the 12 month study period for each subject.
Safety Variables: Incidence, Severity and Duration of Adverse Events, Vital Signs, Concomitant Medications and Physical Examination Results.
High-protein diet promotes sensitivity to cholecystokinin and shifts the cecal microbiome without altering brain inflammation in diet-induced obesity
Time frame: Safety variables are measured at the time any adverse events occur, and vital signs, concomitant medications and physical examination results are measured at Baseline on Day 1 and monthly throughout the 12 month study period for each subject.
Improvement in NAFLD Fibrosis Score
Patients enrolled with a history of NAFLD will be assessed for improvement in NAFLD Fibrosis scoring index and other imaging parameters if performed as standard clinical care.
Time frame: 1 year
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