Clinical trial
Effects of Physical Exercise and a Nutritional Supplement on Body Composition, Metabolic Function, and Overall Health in Adults With a Metabolically Challenging Profile
Recruiting now · Not applicable · 1 countries · Registry ID NCT07504068
What this study is about
Early-onset metabolic disturbances (such as mild hyperglycemia, subclinical dyslipidemia, excess body fat, and reduced functional capacity) represent one of the major public health challenges among middle-aged and older adults. Although body mass index (BMI) remains the primary clinical criterion for classifying excess weight, growing evidence indicates that BMI does not adequately discriminate cardiometabolic risk, particularly in individuals classified as overweight who present elevated body fat levels (Wu et al., 2024). Several studies have identified altered metabolic phenotypes that do not meet the criteria for obesity, including the so-called "metabolically unhealthy normal weight" (MUNW) or "metabolically unhealthy non-obese" phenotypes. These individuals are characterized by excess body fat, central adiposity, and alterations in glucose and lipid metabolism despite having a non-obese BMI (Stefan, 2020). This profile is associated with increased insulin resistance, low-grade systemic inflammation, and elevated cardiovascular risk, underscoring the need for targeted interventions in "metabolically challenged" individuals. Xiong et al. (2024) demonstrated that metabolic health status independently predicts cardiovascular risk, even when BMI is within non-obese ranges. This evidence supports the rationale of the present project: to intervene in a group of adults without clinical obesity (BMI \< 30 kg/m²) but presenting at least two indicators of mild metabolic dysfunction. Nutritional supplements with thermogenic properties that promote fat oxidation and satiety-such as phenylcapsaicin, an analog of capsaicin designed to improve bioavailability and reduce pungency, thereby enhancing tolerability in adults-may offer a promising complementary strategy. Recent studies have shown that low doses of phenylcapsaicin were sufficient to increase fat oxidation during exercise, reduce respiratory exchange ratio, and lower maximal heart rate during submaximal testing compared with placebo (Jiménez-Martínez et al., 2023a). Furthermore, additional research reported that phenylcapsaicin improved strength performance, reduced perceived exertion, and attenuated markers of muscle damage following resistance training (Jiménez-Martínez et al., 2023b). These findings suggest that thermogenic and fat-oxidation-enhancing supplementation may act as a safe and effective metabolic modulator, particularly when combined with exercise, positioning it as an innovative strategy for adults presenting mild metabolic risk. The present study would integrate: (1) a multicomponent functional exercise program designed to improve strength, balance, and aerobic capacity in older adults; (2) a thermogenic and fat-oxidation-enhancing nutritional supplement as a safe metabolic activation strategy; (3) a standardized dietary control protocol to isolate the specific effects of the supplementation; (4) dual-energy X-ray absorptiometry (DXA) for precise body composition assessment; (5) hormonal and lipid biomarkers to evaluate underlying physiological mechanisms; and (6) validated questionnaires addressing quality of life, sleep, and appetite to capture the holistic dimension of this stage of adulthood. This multidimensional approach would provide an innovative intervention for a growing yet underexplored population: non-obese but metabolically challenged adults at increasing cardiometabolic risk. References: * Jiménez-Martínez P, Sánchez-Valdepeñas J, Cornejo-Daza PJ, Cano-Cas…
Basic eligibility
Full registry criteria
Treatments and study arms
Group 1: Exercise + thermogenic supplement (EX-TS)
Participants in this group will receive an oral daily dose of the nutritional supplement with thermogenic and appetite-modulating effects in combination with a supervised multicomponent functional program (3 sessions per week, 60 minutes each) for 12 weeks, composed by three exercise blocks: 1) joint mobility and postural control exercises block, 2) functional strength block with three sets of two strength exercises using elastic bands at 70%-85 of 1RM (RPE 6-7 at the beginning and 9 at the end of the set) and, 3) coordination and agility exercises block. Participants will undergo a standardized dietary control plan based on Individualized energy deficit equivalent to 0.7% of body weight per week, adjusted using the Harris-Benedict equation, and macronutrient distribution: protein: 2 g/kg; fat: 0.8 g/kg; remaining energy intake allocated to carbohydrates.
Group 2: Exercise + placebo supplement (EX-PL)
Participants in this group will receive a placebo supplement identical in appearance, color and taste to the active supplement, together with the same multicomponent functional exercise program and dietary control for 12 weeks.
Primary outcomes
Whole body and segmental composition will be assessed through Dual-Energy X-ray Absorptiometry (DXA). Parameters analyzed will be: total and regional fat mass and lean mass
Android/gynoid fat distribution will be analyzed through Dual-Energy X-ray Absorptiometry (DXA).
glucagon-like peptide-1 (GLP-1) will be collected through a blood sample in the morning in a fasted state to assess hormonal state
Acylated ghrelin levels will be collected through a blood sample in the morning in a fasted state to assess hormonal state
Leptin levels will be collected through a blood sample in the morning in a fasted state to assess hormonal state
Glucose levels will be collected through a blood sample in the morning in a fasted state to assess metabolic state.
Total cholesterol levels will be collected through a blood sample in the morning in a fasted state to assess metabolic state.
HDL cholesterol levels will be collected through a blood sample in the morning in a fasted state to assess metabolic state.