Poznan University of Life Sciences
Poznan, Wielkopolska, 60-637, Poland
NCT Number: NCT07802548
Obesity is a chronic, multifactorial disease associated with a high burden of metabolic, cardiovascular, and psychosocial complications. Despite extensive research, the long-term effectiveness of lifestyle-based weight-management strategies remains limited, and there is a growing interest in molecular pathways that may enhance metabolic flexibility and improve treatment outcomes. Among these pathways, the sirtuin (SIRT) family-particularly SIRT1 and SIRT3-has emerged as a promising target due to its involvement in mitochondrial biogenesis, energy expenditure, oxidative metabolism, and the regulation of insulin sensitivity. Bioactive compounds that activate sirtuins, including nicotinamide riboside (NR), nicotinamide mononucleotide (NMN), resveratrol, and selected polyphenols, have shown metabolic benefits in preclinical models; however, high-quality human trials remain scarce and inconsistent.
This project aims to investigate the efficacy of a standardized sirtuin-activator supplement on body-weight reduction, metabolic health, and energy-balance regulation in adults with overweight and obesity. The trial will be a randomized, double-blind, placebo-controlled intervention lasting 24 days. Participants will be assigned to either the sirtuin-activator group or placebo, with both groups receiving standardized dietary plan to ensure consistent caloric intake. The primary outcome will be absolute and relative weight loss, while secondary outcomes will include changes in waist circumference, body-composition parameters, resting metabolic rate, glycemic markers, lipid profiles and physical functioning.
A key novelty of this project lies in testing a multi-ingredient formulation designed to synergistically enhance sirtuin signaling, addressing limitations observed in studies using single-compound approaches. By integrating nutritional guidance, rigorous clinical monitoring, and advanced biomarker profiling, this research aims to generate high-quality evidence on whether sirtuin activators can meaningfully augment weight-loss interventions in humans.
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Notify Me18 year–65 year
All sexes
Interventional
Not applicable
Poznan, Wielkopolska, 60-637, Poland
Sirtuins (SIRT1-SIRT7) are a family of NAD⁺-dependent enzymes involved in metabolic regulation, mitochondrial biogenesis, oxidative stress response, and inflammation control. Evidence from model organisms demonstrates that sirtuin overexpression can extend lifespan. In mammals, caloric restriction enhances sirtuin synthesis, leading to improved mitochondrial function, reduced oxidative stress, and attenuated inflammation. Collectively, these mechanisms underpin the potential role of sirtuins in promoting metabolic health and preventing non-communicable diseases.
Numerous non-nutritive bioactive compounds naturally present in foods activate sirtuin pathways. The most extensively studied is resveratrol, found in grapes and red wine, which has been shown to stimulate SIRT1 and downstream metabolic pathways. Additional sirtuin activators include epigallocatechin gallate (EGCG) from green tea, curcuminoids from turmeric, and quercetin, present in apples, grapes, and onions. Despite their presence in commonly consumed foods, typical dietary intake is low, suggesting that targeted supplementation may be necessary to achieve meaningful physiological effects-particularly in populations at metabolic risk.
Overweight and obesity remain major public health challenges worldwide. Excess adiposity is strongly associated with chronic, low-grade inflammation and increased risk of cardiometabolic diseases. While caloric restriction remains a cornerstone of weight reduction, adjunct interventions may enhance metabolic adaptations to energy deficit. SIRT1, for example, has been shown to increase energy expenditure and shift substrate utilization toward enhanced fatty-acid oxidation. Thus, supplementation with sirtuin activators may support weight loss and metabolic improvements when combined with a hypocaloric diet.
The primary objective of this study is to evaluate the effects of supplementation with sirtuin activators (resveratrol, curcuminoids, EGCG, quercetin) combined with a short-term low-energy diet on:
This research will employ a randomized, placebo-controlled, parallel-group design. Participants will be randomly allocated to:
Both groups will follow a structured 24-day low-energy dietary intervention. Study activities will take place between January 2026 and January 2027 at the Department of Human Nutrition and Dietetics, Poznań University of Life Sciences.
Assessments will be conducted twice: baseline (Day 0) and post-intervention (Day 25).
Participants in the SIRT group will receive shakes containing microencapsulated sirtuin activators. The daily dose of active sirtuin activators will be approximately 1280 mg. Placebo shakes will be identical in appearance, taste, and packaging.
All components used in the supplements have established safety profiles, including FDA GRAS status where applicable. Adverse effects documented in the literature occur only at doses significantly higher than those used in the present protocol.
The low-energy diet will consist of three sequential phases:
Recipes for home-prepared meals (DASH-based) will be provided in a dedicated e-book.
7.2. Blood Pressure
Resting blood pressure will be taken using the Omron SpotArm i-Q142 device, following 2024 ESH guidelines. Three measurements will be taken; the average of the final two will be recorded.
7.3. Blood Sampling and Biochemistry
Venous blood (5 mL) will be drawn twice (Day 0 and Day 25) by licensed medical staff. Serum will be processed, aliquoted, and stored at -80°C.
7.4. Physical Performance Testing
Conducted twice (Day 0 and Day 25) by experienced staff. Tests include:
Handgrip strength: measured using a Kern MAP 130K1 dynamometer, three trials per hand, averaged.
Short Physical Performance Battery (SPPB): assessing lower-limb strength (chair-stand test), static balance, and gait speed over 4 meters.
Tests are low-risk; precautionary measures will be taken to minimize falls or discomfort.
7.5. Dietary Assessment
Participants will complete 3-day dietary records before intervention. Intake will be analyzed using Dieta 6 software.
All supplements used have established safety thresholds well above the doses administered in the study. Risks related to blood sampling and physical tests are minimal and standard procedures will be followed to prevent adverse events.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Sirtuin activators: EGCG, resveratrol, quercetin, niacin, curcuminoids with weight loss diet
Identical placebo with weight loss diet
Time frame: Change from day 0 to day 25 and follow up (3-4 months)
Body weight changes due to the intervention in kilograms measured with BodPod attached scale (Cosmed, Italy)
Time frame: day 0 and day 25 and follow up (3-4 months)
Fat mass (kg and %) and fat-free mass (kg) measurements changes due to intervention with air displacement plethysmography (Bod Pod, Cosmed, Italy)
Time frame: Day 0 and day 25
Waist and hips circumferences (cm) change due to intervention measured with elastic strap
Time frame: day 0 and day 25
Blood pressure changes due to the intervention (systolic and diastolic in mmHg) measured with an automated SpotArm i-Q142 device (Omron, Kyoto, Japan)
Time frame: day 0 and day 25
changes in physical capacity in sit-to-stand (number of repetitions), hand grip (in N measured with a hydraulic hand dynamometer (Kern MAP 130K1 Series, KERN & SOHN GmbH, Balingen, Germany)) and 6-minute walking test (total distance in m)
Time frame: day 0 and day 25
Changes in total cholesterol (mg/dL), LDL-cholesterol (mg/dL), HDL-cholesterol (mg/dL), triacylglycerides (mg/dL) measured using automated biochemical analyzer Konelab 20 biochemical analyzer (Thermo Fisher Scientific, Finland).
Time frame: Day 0 and 25
Fasting glucose concentration changes (mg/dL) measured using Konelab 20 biochemical analyzer (Thermo Fisher Scientific, Finland).
Time frame: Day 0 and 25
Liver enzymes (ALAT, ASPAT, GGTP in U/I) changes due to intervention measured using Konelab 20 biochemical analyzer (Thermo Fisher Scientific, Finland).
Poznan University of Life Sciences
Other
The Effect of Sirtuin Supplementation During Weight Loss Diet on Body Mass and Composition and Physical Functions in Overweight and Obese Adults
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