Metabolically Healthy Obesity, Metabolically Unhealthy Obesity, Obesity
Conditions
Keywords
MC4R, rs17782313, Single Nucleotide Polymorphism, Metabolic Phenotype, Exercise Intervention, Dietary Intervention, Lifestyle Intervention, Gene-Lifestyle Interaction, Body Composition, Adult Men
Brief summary
This study evaluated whether differences in the MC4R rs17782313 gene variant and metabolic health status were associated with different responses to a 12-week exercise and dietary intervention in adult men with obesity. A total of 40 men aged 18 to 59 years with obesity participated in the study. At baseline, participants were classified as having metabolically healthy obesity or metabolically unhealthy obesity according to metabolic risk factors. All participants received the same supervised lifestyle intervention, which included aerobic exercise, resistance training, and an individualized energy-controlled diet. Body weight, body composition, physical fitness, blood pressure, blood glucose, blood lipids, glycated hemoglobin, and fasting insulin were measured before and after the 12-week intervention. Blood samples were also collected for MC4R rs17782313 genotyping. The study examined whether changes after the intervention differed according to baseline metabolic phenotype and MC4R genotype.
Detailed description
This was a completed, single-center lifestyle intervention study involving adult men with obesity in Harbin, China. Eligible participants were men aged 18 to 59 years with a body mass index of at least 28 kg/m2 and a waist circumference of at least 90 cm. At baseline, participants were classified as having metabolically healthy obesity or metabolically unhealthy obesity using criteria based on the National Cholesterol Education Program Adult Treatment Panel III. Metabolically unhealthy obesity was defined as obesity accompanied by at least two of the following metabolic abnormalities: elevated blood pressure, elevated fasting blood glucose, elevated triglycerides, or reduced high-density lipoprotein cholesterol. Metabolically healthy obesity was defined as obesity accompanied by no more than one of these abnormalities. All participants received the same 12-week supervised exercise and dietary intervention. The exercise program was conducted 5 days per week and consisted of aerobic exercise performed at approximately 60% to 70% of maximum heart rate and resistance exercise performed at approximately 40% to 60% of one-repetition maximum. Daily energy intake was individualized according to standard body weight. The planned macronutrient distribution was approximately 50% to 60% of energy from carbohydrates, 15% to 20% from protein, and 20% to 30% from fat. Anthropometric and body-composition assessments included body weight, body mass index, fat mass, body fat percentage, muscle mass, waist circumference, hip circumference, and waist-to-hip ratio. Physical fitness assessments included vital capacity, handgrip strength, vertical jump, push-ups, sit-ups, sit-and-reach flexibility, one-leg standing with eyes closed, choice reaction time, and back strength. Physiological and biochemical assessments included resting heart rate, systolic and diastolic blood pressure, fasting blood glucose, triglycerides, total cholesterol, high-density lipoprotein cholesterol, low-density lipoprotein cholesterol, glycated hemoglobin, and fasting insulin. Measurements were conducted at baseline and after 12 weeks. MC4R rs17782313 genotype and baseline metabolic phenotype were analytical stratification variables. They were not used to assign different interventions. The study evaluated changes from baseline to week 12 and examined whether intervention responses were associated with metabolic phenotype, MC4R genotype, or their interaction.
Interventions
Participants completed a 12-week supervised exercise program conducted 5 days per week. The aerobic exercise component consisted of 10 sessions per week, approximately 90 minutes per session, performed at 60% to 70% of maximum heart rate. Activities included aerobic exercise classes, boxing-style aerobic exercise, step exercise, cycling, interval-based exercise, and other structured aerobic activities. Heart rate was monitored during training. The resistance exercise component consisted of 5 sessions per week, approximately 90 minutes per session, performed at approximately 40% to 60% of one-repetition maximum. Exercises included machine-based circuit training, core training, and strength and body-shaping exercises. Training was supervised by qualified instructors.
Sponsors
Study design
Intervention model description
All participants received the same 12-week combined exercise and dietary intervention. Participants were classified at baseline according to metabolic phenotype and MC4R rs17782313 genotype for subgroup and interaction analyses. Metabolic phenotype and genotype did not determine intervention assignment.
Eligibility
Inclusion criteria
* Male sex * Age 18 to 59 years * Body mass index of at least 28 kg/m2 * Waist circumference of at least 90 cm * Able and willing to provide written informed consent * Able and willing to participate in the 12-week supervised exercise and dietary intervention and complete the scheduled assessments
Exclusion criteria
* Severe hepatic insufficiency * Severe renal insufficiency * Cardiovascular disease * Other clinically significant vascular disease * Current use of glucose-lowering medication * Current use of antihypertensive medication * Current use of lipid-lowering medication * Unable or unwilling to comply with the intervention and assessment schedule
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Change From Baseline in Body Weight at Week 12 | Baseline and Week 12 | Body weight was measured in kilograms using a calibrated electronic scale, with participants wearing light clothing and no shoes. Change in body weight was calculated as the body weight measured at Week 12 minus the baseline body weight. |
Countries
China
Contacts
Harbin Sport University
Harbin Sport University