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Die CALERIE™ Legacy-Studie

5. Juni 2026 aktualisiert von: Sai Krupa Das, Tufts University

Vermächtniseffekte von CALERIE™, einer 2-Jahres-Kalorieneinschränkungsintervention, auf Merkmale der Gesundheitsspanne und des Alterns

Der Zweck der CALERIE Legacy-Studie besteht darin, die Gesundheit und das Wohlbefinden der Teilnehmer aus Phase 2 der CALERIE-Studie (Comprehensive Assessment of Long-Term Effects of Reducing Intake of Energy), die von 2007 bis 2011 durchgeführt wurde, weiterzuverfolgen.

Studienübersicht

Status

Aktiv, nicht rekrutierend

Bedingungen

Detaillierte Beschreibung

Die CALERIE Legacy-Studie ist eine beobachtende Folgestudie mit Teilnehmern aus Phase 2 der CALERIE-Studie, der ersten randomisierten kontrollierten Studie zur Kalorienrestriktion (CR) bei Menschen ohne Adipositas. Das übergeordnete Ziel der CALERIE Legacy Study ist es zu untersuchen, ob zwei Jahre CR zu nachhaltigen Verbesserungen der biologischen, phänotypischen und funktionellen Merkmale des menschlichen Alterns 10 bis 15 Jahre nach der strukturierten Intervention führen. Die Teilnehmer werden klinische Bewertungen, Ernährungsrückrufe und Fragebögen ausfüllen, und Laborauswertungen werden an Blut- und Urinproben durchgeführt. Die Studie umfasst auch eine optionale Bioproben-Banking-Komponente.

Studientyp

Beobachtungs

Einschreibung (Geschätzt)

216

Kontakte und Standorte

Dieser Abschnitt enthält die Kontaktdaten derjenigen, die die Studie durchführen, und Informationen darüber, wo diese Studie durchgeführt wird.

Studienorte

    • Louisiana
      • Baton Rouge, Louisiana, Vereinigte Staaten, 70808
        • Pennington Biomedical Research Center
    • Massachusetts
      • Boston, Massachusetts, Vereinigte Staaten, 02111
        • Jean Mayer USDA Human Nutrition Research Center on Aging at Tufts University
    • Missouri
      • St Louis, Missouri, Vereinigte Staaten, 63110-1010
        • Washington University School of Medicine

Teilnahmekriterien

Forscher suchen nach Personen, die einer bestimmten Beschreibung entsprechen, die als Auswahlkriterien bezeichnet werden. Einige Beispiele für diese Kriterien sind der allgemeine Gesundheitszustand einer Person oder frühere Behandlungen.

Zulassungskriterien

Studienberechtigtes Alter

33 Jahre bis 70 Jahre (Erwachsene, Älterer Erwachsener)

Akzeptiert gesunde Freiwillige

Ja

Probenahmeverfahren

Nicht-Wahrscheinlichkeitsprobe

Studienpopulation

Alle CALERIE-Teilnehmer, außer denen, die verstorben sind, von denen bekannt ist, dass sie sich nicht qualifizieren oder ihre zugewiesene Gruppe (CR-Intervention oder Ad-libitum-Kontrolle) (n = 4) nicht begonnen haben, wurden als potenzielle Probanden (n = 216) in der identifiziert CALERIE Legacy-Studie. Das demografische Profil dieser Studie wird voraussichtlich ähnlich dem der CALERIE-Studie sein, die zu 70,4 % aus Frauen bestand. Gesunde Personen ohne Adipositas beiderlei Geschlechts und aller Rassen und ethnischen Gruppen waren zur Teilnahme an der CALERIE-Studie berechtigt. Aus Sicherheitsgründen wurden schwangere Frauen jedoch ausgeschlossen, und um eine Verwechslung durch den peri- und postmenopausalen Status zu vermeiden, lag die obere Altersgrenze für Frauen bei 47 Jahren. Bei der Registrierung waren die CALERIE-Teilnehmer zwischen 20 und 50 Jahre alt, 77,3 % Weiße, 12 % Schwarze und 10,7 % andere; Die ethnische Zugehörigkeit war zu 97 % nicht-hispanisch.

Beschreibung

Einschlusskriterien:

  • Eingeschrieben in die CALERIE-Studie und Beginn ihrer zugewiesenen Gruppe (CR-Intervention oder Ad-libitum-Kontrollbedingung)
  • Bereit und in der Lage, einen der klinischen Standorte für einen persönlichen Besuch zu besuchen und eine Einverständniserklärung abzugeben

Ausschlusskriterien:

  • Schwangere Frau
  • Frauen weniger als 12 Monate nach der Geburt
  • Dokumentierte Notiz aus der CALERIE-Studie, die darauf hinweist, dass der Proband nicht kontaktiert werden sollte oder darum gebeten wurde, für zukünftige Forschungsarbeiten nicht kontaktiert zu werden
  • Diagnostizierter aktiver Krebs oder unheilbare Krankheit

Studienplan

Dieser Abschnitt enthält Einzelheiten zum Studienplan, einschließlich des Studiendesigns und der Messung der Studieninhalte.

Wie ist die Studie aufgebaut?

Designdetails

  • Beobachtungsmodelle: Fallkontrolle
  • Zeitperspektiven: Sonstiges

Kohorten und Interventionen

Gruppe / Kohorte
Kalorienrestriktion (CR)
Personen in der CR-Gruppe wurde während der zweijährigen CALERIE-Studie eine 25-prozentige Reduzierung ihrer Energieaufnahme zu Beginn verschrieben.
Nach Belieben (AL)
Personen in der AL-Gruppe wurden gebeten, ihre übliche Nahrungsaufnahme während der zweijährigen CALERIE-Studie fortzusetzen.

Was misst die Studie?

Primäre Ergebnismessungen

Ergebnis Maßnahme
Maßnahmenbeschreibung
Zeitfenster
Biological age - Klemera-Doubal Method
Zeitfenster: 11-16 years post CALERIE trial
Biological age will be quantified by the Klemera-Doubal Method (KDM), an algorithm-based measure. Biological age is expressed in years.
11-16 years post CALERIE trial
Healthspan
Zeitfenster: 11-16 years post CALERIE trial

Healthspan will be assessed by sex-specific metabolic syndrome z-score (MS z-score). MS z-score was developed using high density lipoprotein cholesterol (HDL), triglycerides (TG), waist circumference (WC), fasting blood glucose (FBG), and mean arterial pressure (MAP = [systolic blood pressure + 2 x diastolic blood pressure]/3). SDs for HDL and WC in the equations are sex specific.

Women: MS z-score = [45-HDL]/SDHDLW+ [TG-150]/SDTG + [WC-88]/SDWCW + [FBG-100]/SDFBG + [MAP -100]/SDMAP

Men: MS z-score = [40-HDL]/SDHDLM+ [TG-150]/SDTG + [WC-102]/SDWCM + [FBG-100]/SDFBG + [MAP -100]/SDMAP

W = women M = men

This score does not have a unit.

11-16 years post CALERIE trial

Sekundäre Ergebnismessungen

Ergebnis Maßnahme
Maßnahmenbeschreibung
Zeitfenster
Biological age - Homeostatic Dysregulation
Zeitfenster: 11-16 years post CALERIE trial
Biological age will be quantified by homeostatic dysregulation, an algorithm-based measure. Biological age is expressed in years.
11-16 years post CALERIE trial
Biological age - Levine Phenotypic Age
Zeitfenster: 11-16 years post CALERIE trial
Biological age will be quantified by Levine Phenotypic Age, an algorithm-based measure. Biological age is expressed in years.
11-16 years post CALERIE trial
Height
Zeitfenster: 11-16 years post CALERIE trial
Height will be measured in cm.
11-16 years post CALERIE trial
Weight
Zeitfenster: 11-16 years post CALERIE trial
Weight will be measured in kg.
11-16 years post CALERIE trial
Waist circumference
Zeitfenster: 11-16 years post CALERIE trial
Weight circumference will be measured in cm.
11-16 years post CALERIE trial
Hip circumference
Zeitfenster: 11-16 years post CALERIE trial
Hip circumference will be measured in cm.
11-16 years post CALERIE trial
Body mass index (BMI)
Zeitfenster: 11-16 years post CALERIE trial
BMI (kg/m2) will be calculated using height and weight measurements.
11-16 years post CALERIE trial
Blood pressure
Zeitfenster: 11-16 years post CALERIE trial
Systolic and diastolic blood pressure will be measured in mmHg.
11-16 years post CALERIE trial
Pulse rate at rest
Zeitfenster: 11-16 years post CALERIE trial
Pulse rate will be measured in beats/min.
11-16 years post CALERIE trial
Respiration rate at rest
Zeitfenster: 11-16 years post CALERIE trial
Respiration rate will be measured in breaths/min.
11-16 years post CALERIE trial
Fat mass
Zeitfenster: 11-16 years post CALERIE trial
Whole-body fat mass (kg, %) as measured by dual-energy X-ray absorptiometry.
11-16 years post CALERIE trial
Fat-free mass
Zeitfenster: 11-16 years post CALERIE trial
Whole-body fat-free mass (kg, %) as measured by dual-energy X-ray absorptiometry.
11-16 years post CALERIE trial
Bone mineral content
Zeitfenster: 11-16 years post CALERIE trial
Whole-body bone mineral content (g) as measured by dual-energy X-ray absorptiometry.
11-16 years post CALERIE trial
Resting metabolic rate (RMR)
Zeitfenster: 11-16 years post CALERIE trial
RMR will be measured in kcal/d by indirect calorimetry using a ventilated hood system.
11-16 years post CALERIE trial
Respiratory quotient (RQ)
Zeitfenster: 11-16 years post CALERIE trial
RQ will be measured by indirect calorimetry using a ventilated hood system. This is a ratio (V̇CO2/V̇O2) and does not have a unit.
11-16 years post CALERIE trial
Maximal aerobic capacity (V̇O2max)
Zeitfenster: 11-16 years post CALERIE trial
Maximal aerobic capacity (V̇O2max) will be measured in mL/kg/min using the Cornell incremental treadmill test.
11-16 years post CALERIE trial
Interleukin-6 (IL-6)
Zeitfenster: 11-16 years post CALERIE trial
IL-6, a blood-based biomarker of aging proposed by the Targeting Aging with MEtformin (TAME) Biomarkers Workgroup, will be measured in pg/mL.
11-16 years post CALERIE trial
Insulin - TAME panel
Zeitfenster: 11-16 years post CALERIE trial
Insulin, a blood-based biomarker of aging proposed by the TAME Biomarkers Workgroup, will be measured in μIU/mL.
11-16 years post CALERIE trial
Insulin - 0 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Insulin (μIU/mL) will be measured at 0 minutes (pre-dose) during an oral glucose tolerance test (OGTT) to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Insulin - 30 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Insulin (μIU/mL) will be measured at 30 minutes post dose during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Insulin - 60 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Insulin (μIU/mL) will be measured at 60 minutes post dose during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Insulin - 90 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Insulin (μIU/mL) will be measured at 90 minutes post dose during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Insulin - 120 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Insulin (μIU/mL) will be measured at 120 minutes post dose during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Insulin-like growth factor 1 (IGF-1)
Zeitfenster: 11-16 years post CALERIE trial
IGF-1, a blood-based biomarker of aging proposed by the TAME Biomarkers Workgroup, will be measured in ng/mL.
11-16 years post CALERIE trial
Hemoglobin A1c (HbA1c)
Zeitfenster: 11-16 years post CALERIE trial
HbA1c, a blood-based biomarker of aging proposed by the TAME Biomarkers Workgroup, will be measured in mmol/mol.
11-16 years post CALERIE trial
Tumor necrosis factor α receptor II (TNFRII)
Zeitfenster: 11-16 years post CALERIE trial
TNFRII, a blood-based biomarker of aging proposed by the TAME Biomarkers Workgroup, will be measured in ng/mL.
11-16 years post CALERIE trial
High-sensitivity C-reactive protein (hsCRP)
Zeitfenster: 11-16 years post CALERIE trial
hsCRP, a blood-based biomarker of inflammation, will be measured in μg/mL.
11-16 years post CALERIE trial
Growth/differentiation factor 15 (GDF15)
Zeitfenster: 11-16 years post CALERIE trial
GDF15, a blood-based biomarker of aging proposed by the TAME Biomarkers Workgroup, will be measured in pg/mL.
11-16 years post CALERIE trial
Cystatin C
Zeitfenster: 11-16 years post CALERIE trial
Cystatin C, a blood-based biomarker of aging proposed by the TAME Biomarkers Workgroup, will be measured in mg/L.
11-16 years post CALERIE trial
N-terminal B-type natriuretic peptide (NT-proBNP)
Zeitfenster: 11-16 years post CALERIE trial
NT-proBNP, a blood-based biomarker of aging proposed by the TAME Biomarkers Workgroup, will be measured in pg/mL.
11-16 years post CALERIE trial
Senescence-associated secretory phenotype (SASP) proteins
Zeitfenster: 11-16 years post CALERIE trial
SASP proteins, blood-based biomarkers of cellular senescence, will be measured using a SASP panel.
11-16 years post CALERIE trial
Urinary Isoprostanes - iPF(2α)-III
Zeitfenster: 11-16 years post CALERIE trial
Urinary iPF(2α)-III, a biomarker of systemic oxidative stress, will be measured in ng/mL.
11-16 years post CALERIE trial
Urinary Isoprostanes - 2,3-dinor-iPF(2α)-III
Zeitfenster: 11-16 years post CALERIE trial
Urinary 2,3-dinor-iPF(2α)-III, a biomarker of systemic oxidative stress, will be measured in ng/mL.
11-16 years post CALERIE trial
Urinary Isoprostanes - iPF(2α)-VI
Zeitfenster: 11-16 years post CALERIE trial
Urinary iPF(2α)-VI, a biomarker of systemic oxidative stress, will be measured in ng/mL.
11-16 years post CALERIE trial
Urinary Isoprostanes - 8,12-iso-iPF(2α)-VI
Zeitfenster: 11-16 years post CALERIE trial
Urinary 8,12-iso-iPF(2α)-VI, a biomarker of systemic oxidative stress, will be measured in ng/mL.
11-16 years post CALERIE trial
Creatinine
Zeitfenster: 11-16 years post CALERIE trial
Creatinine, a byproduct of routine activity in the muscle, will be measured in urine in mg/mL.
11-16 years post CALERIE trial
Dehydroepiandrosterone (DHEA)
Zeitfenster: 11-16 years post CALERIE trial
DHEA, a blood-based steroid hormone, will be measured in μg/dL.
11-16 years post CALERIE trial
Interleukin 1 beta (IL-1b)
Zeitfenster: 11-16 years post CALERIE trial
IL-1b, a blood-based marker of inflammation, will be measured in pg/mL.
11-16 years post CALERIE trial
Interleukin 8 (IL-8)
Zeitfenster: 11-16 years post CALERIE trial
IL-8, a blood-based marker of inflammation, will be measured in pg/mL.
11-16 years post CALERIE trial
Tumor necrosis factor α (TNF-α)
Zeitfenster: 11-16 years post CALERIE trial
TNF-α, a blood-based marker of inflammation, will be measured in pg/mL.
11-16 years post CALERIE trial
Insulin-like growth factor-binding protein 1 (IGFBP-1)
Zeitfenster: 11-16 years post CALERIE trial
IGFBP-1, a blood-based transport protein, will be measured in ng/mL.
11-16 years post CALERIE trial
Transforming growth factor beta 1 (TGFB1)
Zeitfenster: 11-16 years post CALERIE trial
TGFB1, a blood-based marker of immune function, will be measured in ng/mL.
11-16 years post CALERIE trial
Insulin-like growth factor-binding protein 3 (IGFBP-3)
Zeitfenster: 11-16 years post CALERIE trial
IGFBP-3, a blood-based transport protein, will be measured in ng/mL.
11-16 years post CALERIE trial
Platelet-derived growth factor-AB (PDGF-AB)
Zeitfenster: 11-16 years post CALERIE trial
PDGF-AB, a blood-based marker of cellular function, will be measured in ng/mL.
11-16 years post CALERIE trial
Intercellular Adhesion Molecule 1 (ICAM-1)
Zeitfenster: 11-16 years post CALERIE trial
ICAM-1, a blood-based marker of inflammation, will be measured in ng/mL.
11-16 years post CALERIE trial
Growth hormone
Zeitfenster: 11-16 years post CALERIE trial
Growth hormone, a blood-based bio-marker of cellular function, will be measured in ng/mL.
11-16 years post CALERIE trial
Monocyte Chemoattractant Protein 1 (MCP1)
Zeitfenster: 11-16 years post CALERIE trial
MCP1, a blood-based marker of inflammation, will be measured in pg/mL.
11-16 years post CALERIE trial
Leptin
Zeitfenster: 11-16 years post CALERIE trial
Leptin, a hormonal regulator of energy balance, will be measured in pg/mL.
11-16 years post CALERIE trial
Total adiponectin
Zeitfenster: 11-16 years post CALERIE trial
Total adiponectin, a protein hormone that regulates several metabolic processes, including glucose regulation and fatty acid oxidation, will be measured in μg/mL.
11-16 years post CALERIE trial
High molecular weight adiponectin
Zeitfenster: 11-16 years post CALERIE trial
High molecular weight adiponectin, a protein hormone that regulates several metabolic processes, including glucose regulation and fatty acid oxidation, will be measured in μg/mL.
11-16 years post CALERIE trial
Muscle strength - Knee extension (60°)
Zeitfenster: 11-16 years post CALERIE trial
Knee extension at 60 degrees per second will be measured by isokinetic dynamometry and expressed in Nm.
11-16 years post CALERIE trial
Muscle strength - Knee extension (180°)
Zeitfenster: 11-16 years post CALERIE trial
Knee extension at 180 degrees per second will be measured by isokinetic dynamometry and expressed in Nm.
11-16 years post CALERIE trial
Muscle strength - Knee flexion (60°)
Zeitfenster: 11-16 years post CALERIE trial
Knee flexion at 60 degrees per second will be measured by isokinetic dynamometry and expressed in Nm.
11-16 years post CALERIE trial
Muscle strength - Knee flexion (180°)
Zeitfenster: 11-16 years post CALERIE trial
Knee flexion at 180 degrees per second will be measured by isokinetic dynamometry and expressed in Nm.
11-16 years post CALERIE trial
Handgrip Strength
Zeitfenster: 11-16 years post CALERIE trial
Handgrip strength will be measured via a hand dynamometer and expressed in kg.
11-16 years post CALERIE trial
Physical functioning
Zeitfenster: 11-16 years post CALERIE trial
Physical functioning as measured by a physical performance battery. This physical performance battery provides a composite score ranging from 0 to 12 and includes results from the balance, gait and chair stand tests.
11-16 years post CALERIE trial
Cognition
Zeitfenster: 11-16 years post CALERIE trial
Cognition as measured by the Cambridge Neuropsychological Test Automated Battery (CANTAB). The CANTAB evaluates six main areas of cognitive function: reaction time; verbal recognition memory; intra-extra dimensional set shift; rapid visual information processing; delayed matching to sample; and spatial working memory.
11-16 years post CALERIE trial
Dietary intake - calories
Zeitfenster: 11-16 years post CALERIE trial
Dietary intake in calories (kcals/day), as measured by multiple-pass 24-hour dietary recalls and Nutrition Data System for Research (NDSR) software.
11-16 years post CALERIE trial
Dietary intake - carbohydrates
Zeitfenster: 11-16 years post CALERIE trial
Dietary carbohydrates (grams and % of energy intake) will be measured by multiple-pass 24-hour dietary recalls and Nutrition Data System for Research (NDSR) software.
11-16 years post CALERIE trial
Dietary intake - proteins
Zeitfenster: 11-16 years post CALERIE trial
Dietary proteins (grams and % of energy intake) will be measured by multiple-pass 24-hour dietary recalls and Nutrition Data System for Research (NDSR) software.
11-16 years post CALERIE trial
Health-related quality of life
Zeitfenster: 11-16 years post CALERIE trial
Quality of life as measured by the RAND 36-Item Short Form Survey (SF-36). The RAND SF-36 measures eight aspects of health: physical functioning, role limitations due to physical health problems, role limitations due to personal or emotional problems, energy/fatigue, emotional well-being, social functioning, bodily pain, and general health perceptions. It also includes a single item that provides an indication of perceived change in health. Each item is on a 3- or 5-point Likert scale (1-3 or 1-5). Each response is transformed to a recoded value of 0-100, and the transformed scores of the 9 subscales are averaged to derive a composite score. Higher scores indicate more favorable health states.
11-16 years post CALERIE trial
Depression status
Zeitfenster: 11-16 years post CALERIE trial
Depression status as measured by the Beck Depression Inventory II (BDI-II). The 21-item BDI-II measures depression severity. The score range is 0-63, with higher scores indicating greater depression severity. Nineteen items are on a 4-point Likert scale (0-3). Two items are on a 7-point Likert scale, and responses are scaled to 0-3. The values are summed to calculate the total score.
11-16 years post CALERIE trial
Mood
Zeitfenster: 11-16 years post CALERIE trial
Mood as measured by the Profile of Mood States Second Edition (POMS 2). The POMS 2 assesses six mood subscales using 65 items, each on a 5-point Likert scale (0-4): tension-anxiety (9 items, score range 0-36), depression-dejection (15 items, range 0-60), anger-hostility (12 items, range 0-48), vigor-activity (8 items, range 0-32), fatigue-inertia (7 items, range 0-28), and confusion-bewilderment (7 items, range 0-28). High vigor-activity scores reflect a good mood or emotion, and low scores in the other subscales reflect a good mood or emotion. Total mood disturbance, which is calculated by subtracting the vigor subscale score from the total subscale score (range 0-200), also will be assessed.
11-16 years post CALERIE trial
Sleep
Zeitfenster: 11-16 years post CALERIE trial
Sleep as measured by the Pittsburgh Sleep Quality Index (PSQI). The PSQI measures sleep quality and disturbance over the course of one month using seven subscales: subjective sleep quality; sleep latency; sleep duration; habitual sleep efficiency; sleep disturbances; use of sleeping medication; and daytime dysfunction. The scoring range of each subscale is 0-3. The scoring range of the Global PSQI (the composite score of the seven subscales) is 0-21. For both the subscales and Global PSQI, higher scores indicate greater difficulties with sleeping.
11-16 years post CALERIE trial
Sexual function
Zeitfenster: 11-16 years post CALERIE trial
Sexual function as measured by the Derogatis Interview for Sexual Functioning - Self Report (DISF-SR). Both versions of the DISF-SR (male and female) are scored from 20 to 75, with higher scores indicating higher sexual functioning.
11-16 years post CALERIE trial
Food cravings
Zeitfenster: 11-16 years post CALERIE trial
Food cravings as measured by the Food Cravings Questionnaire-Trait (FCQ-T). The FCQ-T measures frequency and intensity of food cravings. It has 39 items on a 6-point Likert scale (1-6) and a score range of 39-234. Higher scores indicate more frequent and intense food cravings. Scores on all items are summed for a total score.
11-16 years post CALERIE trial
Dietary restraint, disinhibition, and hunger
Zeitfenster: 11-16 years post CALERIE trial
Dietary restraint, disinhibition, and hunger as measured by the Three-Factor Eating Questionnaire (TFEQ). The 51-item TFEQ will be used to measure dietary restraint (21 items), disinhibition (16 items), and hunger (14 items). Item responses are scored as 0 or 1 and summed. Higher scores indicate higher levels of restrained eating (range 0-21), disinhibited eating (range 0-16), and predisposition to hunger (range 0-14).
11-16 years post CALERIE trial
Disordered eating
Zeitfenster: 11-16 years post CALERIE trial
Disordered eating as measured by the Multiaxial Assessment of Eating Disorder Symptoms (MAEDS). MAEDS will be used to assess six domains of disordered eating: binge eating (range 8-56), restrictive eating (range 9-63), purgative behavior (range 7-49), fear of fatness (range 11-77), avoidance of forbidden foods (range 10-70), and depression (range 11-77).
11-16 years post CALERIE trial
Body shape perceptions
Zeitfenster: 11-16 years post CALERIE trial
Body shape perceptions as measured by the Body Shape Questionnaire (BSQ). Items on the BSQ are rated on a 6-point Likert-type scale. The score ranges from 34-204 points. Higher scores indicate increased concern regarding body shape.
11-16 years post CALERIE trial
Physical activity
Zeitfenster: 11-16 years post CALERIE trial
Physical activity as measured by the 7-Day Stanford Physical Activity Recall (PAR). The PAR estimates an individual's time spent in sleep and physical activity for the 7 days prior to the interview. Energy expenditure based on time spent in sleep and physical activities can be estimated. Sub-scores of energy expenditure for each of the following activities are calculated, summed, and averaged to estimate energy expenditure as kilocalories per day: sleep, moderate physical activity, hard physical activity, and very hard physical activity. Higher scores indicate greater physical activity per day. Metabolic equivalent (MET) value for each activity is provided: 1 MET for sleep, 4 METs for moderate activity, 6 METs for hard activity, and 10 METs for very hard activity. Time spent in each activity over 7 days is multiplied by the appropriate MET value. The minimum value for each activity is zero; there is no maximum value.
11-16 years post CALERIE trial
Resilience
Zeitfenster: 11-16 years post CALERIE trial
Resilience as measured by the 25-item Connor-Davidson Resilience Scale (CD-RISC-25). CD-RISC-25 is scored from 0 to 100, with higher scores indicating higher resilience.
11-16 years post CALERIE trial
Total cholesterol
Zeitfenster: 11-16 years post CALERIE trial
Total cholesterol will be measured in mg/dL using a standard lipid panel.
11-16 years post CALERIE trial
High-density lipoprotein cholesterol (HDL-C)
Zeitfenster: 11-16 years post CALERIE trial
HDL-C will be measured in mg/dL using a standard lipid panel.
11-16 years post CALERIE trial
Triglycerides
Zeitfenster: 11-16 years post CALERIE trial
Triglycerides will be measured in mg/dL using a standard lipid panel.
11-16 years post CALERIE trial
Low-density lipoprotein cholesterol (LDL-C)
Zeitfenster: 11-16 years post CALERIE trial
LDL-C will be calculated in mg/dL using measured values of total cholesterol, HDL-C, and triglycerides.
11-16 years post CALERIE trial
Glucose - 0 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Glucose (mg/dL) will be measured at 0 minutes (pre-dose) during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Glucose - 30 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Glucose (mg/dL) will be measured at 30 minutes post dose during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Glucose - 60 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Glucose (mg/dL) will be measured at 60 minutes post dose during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Glucose - 90 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Glucose (mg/dL) will be measured at 90 minutes post dose during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Glucose - 120 min (OGTT)
Zeitfenster: 11-16 years post CALERIE trial
Glucose (mg/dL) will be measured at 120 minutes post dose during an OGTT to evaluate glucoregulatory response.
11-16 years post CALERIE trial
Insulin resistance
Zeitfenster: 11-16 years post CALERIE trial
Insulin resistance will be calculated using the Homeostatic Model Assessment (HOMA) and measured values of fasting glucose (mmol/L) and fasting insulin (μ/L): (fasting glucose × fasting insulin) ∕ 22.5
11-16 years post CALERIE trial
Beta-cell function
Zeitfenster: 11-16 years post CALERIE trial
Beta-cell function will be calculated using HOMA-β and measures of fasting insulin (μ/L) and fasting glucose (mg/dL): HOMA-β (%) = (360 × fasting insulin) ∕ (fasting glucose - 63)
11-16 years post CALERIE trial
Insulinogenic Index
Zeitfenster: 11-16 years post CALERIE trial
Insulinogenic index will be calculated as the ratio of change in plasma insulin (I) from 0 to 30 min of the OGTT to the change in plasma glucose (G) over the same period (∆I0-30 min ∕ ∆G0-30 min).
11-16 years post CALERIE trial
Insulin Sensitivity Index (ISI)
Zeitfenster: 11-16 years post CALERIE trial
Insulin sensitivity index will be calculated as 1 ∕ fasting insulin (μ/L).
11-16 years post CALERIE trial
Oral Disposition Index
Zeitfenster: 11-16 years post CALERIE trial
The Oral Disposition Index will be calculated as the product of insulinogenic index and insulin sensitivity index.
11-16 years post CALERIE trial
Triiodothyronine (T3)
Zeitfenster: 11-16 years post CALERIE trial
T3, a blood-based marker of thyroid function, will be measured in ng/dL.
11-16 years post CALERIE trial
Thyroxine (T4)
Zeitfenster: 11-16 years post CALERIE trial
T4, a blood-based marker of thyroid function, will be measured in ng/dL.
11-16 years post CALERIE trial
Thyroid stimulating hormone (TSH)
Zeitfenster: 11-16 years post CALERIE trial
TSH, a blood-based marker of thyroid function, will be measured in μIU/mL.
11-16 years post CALERIE trial
Alkaline phosphatase (ALKP)
Zeitfenster: 11-16 years post CALERIE trial
ALKP, a blood-based marker of liver function, will be measured in IU/L.
11-16 years post CALERIE trial
Alanine transaminase (ALT)
Zeitfenster: 11-16 years post CALERIE trial
ALT, a blood-based marker of liver function, will be measured in U/L.
11-16 years post CALERIE trial
Aspartate aminotransferase (AST)
Zeitfenster: 11-16 years post CALERIE trial
AST, a blood-based marker of liver function, will be measured in U/L.
11-16 years post CALERIE trial
Albumin
Zeitfenster: 11-16 years post CALERIE trial
Albumin, a blood-based marker of liver and kidney function, will be measured in g/dL.
11-16 years post CALERIE trial
Blood Urea Nitrogen (BUN)
Zeitfenster: 11-16 years post CALERIE trial
BUN, a blood-based marker of kidney function, will be measured in mg/dL.
11-16 years post CALERIE trial
Total Proteins
Zeitfenster: 11-16 years post CALERIE trial
Total proteins are computed as a sum of albumin and globulin. Total proteins are indicative of blood vessel and immune system function and will be measured in g/dL.
11-16 years post CALERIE trial
Bilirubin
Zeitfenster: 11-16 years post CALERIE trial
Bilirubin, a blood-based marker of liver function, will be measured in mg/dL.
11-16 years post CALERIE trial
Creatine Phosphokinase (CPK)
Zeitfenster: 11-16 years post CALERIE trial
CPK, an enzyme marker of energy homeostasis, will be measured in U/L.
11-16 years post CALERIE trial
Lactate Dehydrogenase (LDH)
Zeitfenster: 11-16 years post CALERIE trial
LDH, an enzyme marker of liver function, will be measured in U/L.
11-16 years post CALERIE trial
Globulin
Zeitfenster: 11-16 years post CALERIE trial
Globulin, a blood-based marker of liver function, will be measured in g/dL.
11-16 years post CALERIE trial
Albumin/Globulin (A/G) ratio
Zeitfenster: 11-16 years post CALERIE trial
A/G ratio is a blood-based marker used to monitor nutritional status and immune system, kidney, and liver function. This marker is a ratio, and therefore does not have units.
11-16 years post CALERIE trial
Uric Acid
Zeitfenster: 11-16 years post CALERIE trial
Uric acid, a blood-based marker of purine metabolism, will be measured in mg/dL.
11-16 years post CALERIE trial
Calcium (Ca)
Zeitfenster: 11-16 years post CALERIE trial
Calcium, a blood-based mineral, will be measured in mg/dL.
11-16 years post CALERIE trial
Phosphorus (P)
Zeitfenster: 11-16 years post CALERIE trial
Phosphorus, a blood-based mineral, will be measured in mg/dL.
11-16 years post CALERIE trial
Magnesium (Mg)
Zeitfenster: 11-16 years post CALERIE trial
Magnesium, a blood-based mineral, will be measured in meq/L.
11-16 years post CALERIE trial
Sodium (Na+)
Zeitfenster: 11-16 years post CALERIE trial
Sodium, an electrolyte that reflects the body's fluid balance, will be measured in meq/L.
11-16 years post CALERIE trial
Potassium (K+)
Zeitfenster: 11-16 years post CALERIE trial
Potassium, an electrolyte that reflects the body's fluid balance, will be measured in meq/L.
11-16 years post CALERIE trial
Chloride (Cl-)
Zeitfenster: 11-16 years post CALERIE trial
Chloride, an electrolyte that reflects the body's fluid balance, will be measured in meq/L.
11-16 years post CALERIE trial
Apoprotein A1
Zeitfenster: 11-16 years post CALERIE trial
Apoprotein A1, a blood-based marker of lipid metabolism, will be measured in mg/dL.
11-16 years post CALERIE trial
Apoprotein B
Zeitfenster: 11-16 years post CALERIE trial
Apoprotein B, a blood-based marker of lipid metabolism, will be measured in mg/dL.
11-16 years post CALERIE trial

Andere Ergebnismessungen

Ergebnis Maßnahme
Maßnahmenbeschreibung
Zeitfenster
NAD Metabolites (NAD⁺ and NADH)
Zeitfenster: 11-16 years post CALERIE trial
The oxidized (NAD⁺) and reduced form (NADH) of nicotinamide adenine dinucleotide will be measured in plasma using liquid chromatography-tandem mass spectrometry (LC-MS/MS) and/or fluorometric enzymatic cycling assays for NAD⁺/NADH. Concentrations will be reported as nmol per mg protein or micromolar (µM) in plasma.
11-16 years post CALERIE trial

Mitarbeiter und Ermittler

Hier finden Sie Personen und Organisationen, die an dieser Studie beteiligt sind.

Studienaufzeichnungsdaten

Diese Daten verfolgen den Fortschritt der Übermittlung von Studienaufzeichnungen und zusammenfassenden Ergebnissen an ClinicalTrials.gov. Studienaufzeichnungen und gemeldete Ergebnisse werden von der National Library of Medicine (NLM) überprüft, um sicherzustellen, dass sie bestimmten Qualitätskontrollstandards entsprechen, bevor sie auf der öffentlichen Website veröffentlicht werden.

Haupttermine studieren

Studienbeginn (Tatsächlich)

6. April 2023

Primärer Abschluss (Geschätzt)

31. Januar 2027

Studienabschluss (Geschätzt)

31. Januar 2028

Studienanmeldedaten

Zuerst eingereicht

1. September 2022

Zuerst eingereicht, das die QC-Kriterien erfüllt hat

6. Dezember 2022

Zuerst gepostet (Tatsächlich)

15. Dezember 2022

Studienaufzeichnungsaktualisierungen

Letztes Update gepostet (Tatsächlich)

9. Juni 2026

Letztes eingereichtes Update, das die QC-Kriterien erfüllt

5. Juni 2026

Zuletzt verifiziert

1. Juni 2026

Mehr Informationen

Begriffe im Zusammenhang mit dieser Studie

Andere Studien-ID-Nummern

  • STUDY00002577
  • 1R01AG071717-01A1 (US NIH Stipendium/Vertrag)

Plan für individuelle Teilnehmerdaten (IPD)

Planen Sie, individuelle Teilnehmerdaten (IPD) zu teilen?

JA

Beschreibung des IPD-Plans

Gemäß der NIH-Richtlinie zum öffentlichen Zugang zu Daten wird das Datenkoordinierungszentrum der Duke University nach Abschluss der Studie die elektronische Datenbank sperren und die Daten vor der öffentlichen Veröffentlichung bereinigen und anonymisieren. Für Bankgeschäfte gesammelte Bioproben werden anonymisiert und an die NIA AgingResearchBiobank übertragen, die ein hochmodernes Bestandssystem für die Lagerung und Verteilung von Studienproben für zukünftige wissenschaftliche Forschungen verwendet.

Das Studienprotokoll und die Einverständniserklärung werden ebenfalls zur Verfügung gestellt.

IPD-Sharing-Zeitrahmen

Die Daten werden zum Zeitpunkt der Veröffentlichung des primären Manuskripts für die Open-Access-Nutzung bereitgestellt. Bioproben werden in der NIA Biobank gelagert und stehen nach Abschluss der Studie und bis alle Proben aufgebraucht oder als nicht lebensfähig erachtet werden, zur Verfügung.

IPD-Sharing-Zugriffskriterien

Die Erlaubnis zur Nutzung von Daten wird nicht eingeschränkt. Für den Zugriff auf die Daten, die per Download zur Verfügung gestellt werden, müssen sich interessierte Forscher jedoch auf der jeweiligen Website registrieren. Die in dieser Studie gesammelten Daten eignen sich für eine Regression, die an Längsschnittdaten und multivariate-multivariable Analysen oder Chi-Quadrat-Anpassungsmaße für nichtparametrische Assoziationen angepasst ist.

Forscher, die am Zugang zu Bioproben interessiert sind, müssen den Zugang beantragen, indem sie eine Anfrage über die Website der NIA AgingResearchBiobank stellen (https://agingresearchbiobank.nia.nih.gov/how-to-make-a-request/). Um diese Anfrage zu stellen, muss sich ein bestimmtes Mitglied des Untersuchungsteams als Benutzer auf der Website von AgeingResearchBiobank registrieren. Jeder Forscher kann einen Antrag auf Zugang zu den Bioproben für zukünftige Forschungen stellen, muss jedoch von der AgingResearchBiobank genehmigt werden, um Zugang zu erhalten. Bioproben werden als Proben bereitgestellt, die an zugelassene Prüfärzte versandt werden.

Art der unterstützenden IPD-Freigabeinformationen

  • STUDIENPROTOKOLL
  • ICF

Arzneimittel- und Geräteinformationen, Studienunterlagen

Studiert ein von der US-amerikanischen FDA reguliertes Arzneimittelprodukt

Nein

Studiert ein von der US-amerikanischen FDA reguliertes Geräteprodukt

Nein

Diese Informationen wurden ohne Änderungen direkt von der Website clinicaltrials.gov abgerufen. Wenn Sie Ihre Studiendaten ändern, entfernen oder aktualisieren möchten, wenden Sie sich bitte an register@clinicaltrials.gov. Sobald eine Änderung auf clinicaltrials.gov implementiert wird, wird diese automatisch auch auf unserer Website aktualisiert .

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