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Redefining Evaluation of Adiposity and Leanness: Broadening Objective Diagnostics for Obesity (REAL-BODY)

Redefining Evaluation of Adiposity and Leanness: Broadening Objective Diagnostics for Obesity (REAL-BODY)

The purpose of this study is to evaluate body composition across a variety of medical, professional, and commercial devices, including: bioelectrical impedance analysis (BIA) devices, 3-dimensional optical imaging (3DO), manual anthropometry measurements, dual-energy X-ray absorptiometry (DXA), magnetic resonance imaging (MRI), and blood tests. The secondary study purpose is to compare body composition measurements from BIA devices, 3DO, and manual anthropometry measurements within a 1-week period for a subset of the study population.

The study plans to enroll 300 healthy (having no life-threatening conditions or diseases; male and female) participants, 18 years of age or older.

Panoramica dello studio

Stato

Reclutamento

Condizioni

Descrizione dettagliata

Obesity is a disease of excess and abnormal distribution of adipose tissue. Even though negative metabolic outcomes of obesity are driven by adipose tissue, investigators still use body weight (comprised of both fat and fat-free mass) in the calculation of body mass index (weight in kg divided by height in meters squared) to define, subclassify and monitor treatment in people with obesity. Despite this traditional focus on body weight, body composition is an important consideration in the management of people with obesity.

Clinical trials and clinical research often use DXA and MRI to quantify changes in body composition; however these methods are expensive and not easily implemented. It is desirable to monitor fat mass and other body composition outcomes in individuals with obesity taking weight loss medications as well as when new weight management therapeutic drugs are developed.

Most weight loss medications are associated with loss of both fat mass and fat-free mass with the "quality of weight loss" defined as the proportion of weight lost as fat mass, equal to 60-75%. Recognizing that loss of fat-free mass during weight loss is undesirable, several companies are developing lean mass preserving weight loss agents. For these agents, stepping on a weight scale will no longer be an accurate measure of benefit; loss in fat is offset by gains in lean, rendering body weight changes as an inaccurate measure of weight loss quality. Therefore, the application of body composition measurements will be required for patients, physicians, and payors to monitor treatment in people with obesity. In order for this to occur, investigators need scalable body composition measurements for fat mass.

Bioelectrical impedance analysis (BIA) offers a more scalable approach as the time, cost and footprint of BIA devices make them appropriate for a physician's office and for clinical research trials. Traditionally, BIA devices have been deemed to possess insufficient accuracy for body composition quantification. While this decreased accuracy was an obstacle for first generation weight loss medications with less weight loss, it is possible that with the newer generation of weight loss medications that confer greater weight loss, BIA may be adequate to measure changes in body composition occurring over time in individuals losing weight. Additionally, notable technological innovation has occurred in the field of bioimpedance, with several new devices possessing improved hardware and software as compared to previously evaluated analyzers. As such, these devices are expected to outperform traditional BIA systems.

Other accessible technologies that are practical to apply in clinical research and practice have appeared in recent publications. These include three-dimensional optical systems (3DO) housed in smartphones and multi-omics blood tests capable of estimating various body compartments. To the extent that BIA and these newer technologies can serve as useful sufficiently reproducible phenotypic measures of a person's body composition remains largely unknown. In addition to the dichotomy of fat mass vs fat-free mass, not all fat mass is created equal. Superficial or subcutaneous fat mass is thought to be metabolically healthy whereas visceral central fat is thought to be metabolically unhealthy. Furthermore, visceral fat is associated with long-term morbidity and mortality. Therefore, another dimension of body composition is the proportion of fat in the visceral vs subcutaneous compartments.

Currently, MRI is the gold standard method to measure visceral fat. Some BIA analyzers provide estimations of visceral fat, and digital anthropometry derived from 3D scanning can also be used in visceral fat estimation equations. As such, an additional goal of this project is to determine if visceral fat can be accurately estimated in the real-world using BIA or 3DO. Currently there are two major manufacturers of DXA devices, Hologic and General Electric (GE). Accuracy and precision data for body composition measures using DXA have been published. For BIA, there are several different manufacturers including InBody, Tanita, Seca, and Impedimed. Likewise, several companies produce 3DO smartphone systems, and one company provides multi omics blood evaluations for body composition. It is not known which of these devices and measurement platforms (if any) have adequate accuracy to measure body composition. The overall goal of this project is to bring measurement of body composition to the real world to improve the diagnosis, classification, and monitoring of treatment in people with obesity, both in clinical research trials and medical practice. Adipose or fat mass needs to become a new "vital sign." This project could have a large impact on the treatment of people with obesity. Accurate implementation of body composition analysis in the real world could lead to the development of treatment goals for obesity based on either total fat mass and/or visceral fat mass.

Tipo di studio

Osservativo

Iscrizione (Stimato)

300

Contatti e Sedi

Questa sezione fornisce i recapiti di coloro che conducono lo studio e informazioni su dove viene condotto lo studio.

Contatto studio

Backup dei contatti dello studio

Luoghi di studio

    • Arizona
      • Phoenix, Arizona, Stati Uniti, 85027
    • California
      • Menlo Park, California, Stati Uniti, 94025
        • Non ancora reclutamento
        • Exponent Menlo Park
    • Massachusetts
      • Boston, Massachusetts, Stati Uniti, 01760

Criteri di partecipazione

I ricercatori cercano persone che corrispondano a una certa descrizione, chiamata criteri di ammissibilità. Alcuni esempi di questi criteri sono le condizioni generali di salute di una persona o trattamenti precedenti.

Criteri di ammissibilità

Età idonea allo studio

  • Adulto
  • Adulto più anziano

Accetta volontari sani

N/A

Metodo di campionamento

Campione non probabilistico

Popolazione di studio

A diverse sample of adults will be recruited for participation in the US. Stratification will occur based on sex and BMI, with additional targets to promote recruitment of a variety of ages and adequate representation of racial and ethnic categories. For race and ethnicity, the goal will be to obtain a distribution approximately equal to the demographics of the United States, with selective oversampling employed as needed. For BMI, the following percentages will be used as approximate goals for the sample (18.50-19.99, None; 20.00-24.99, 20%; 25.00-29.99, 35%; 30.00-34.99, 25%; 35.00-39.99, 13.30%; 40.00-44.99, 6.70%; ≥45, None). However, the distribution of BMI and other demographic characteristics will be monitored as the study progresses in case adjustment is needed.

Descrizione

Inclusion Criteria:

  • Being willing to provide written informed consent prior to participation Being willing to complete the study visits and comply with the study procedures
  • Being willing to travel to the various study locations for On-site, DXA, MRI, and Phlebotomy visits
  • Being willing to change into appropriate form-fitting clothing for 3DO assessments and/or appropriate gowns for DXA and MRI imaging
  • Must have a BMI within the range of 18.5 - 45 kg/m2
  • Being willing to refrain from all food, drink, and substances for 8 hours prior to the On-site visit(s) and phlebotomy visit
  • Being willing to refrain from all food, drink, and substances for 4 hours prior to the DXA and MRI scan visits
  • Being willing to refrain from any exercise or vigorous physical activity for 24 hours prior to all visits
  • Stable weight (no more than 5 kg change) for 3 months prior to screening
  • If recruited in the Phoenix, AZ area, participants must be willing to drive yourself to the Phoenix Office location for the On-site Visits 1 and 2 (if applicable) located at the Exponent Phoenix Office.

Exclusion Criteria:

  • Being pregnant or attempting to become pregnant
  • Having medical implants, such as a pacemaker or metal joint replacements, or other metal implants contraindicated for MRI
  • Cosmetic implants, such as breast implants
  • Having a height greater than DXA scanning limit (77 inches)
  • Having a body weight greater than indicated for the equipment (400 lbs)
  • Prior amputation or major body-altering surgery that could invalidate body composition estimates
  • Having claustrophobia or a history of claustrophobia
  • Known HIV infection
  • Known Lipodystrophy
  • Known hydration abnormality (e.g., significant edema, end-stage renal disease, end-stage liver disease)
  • Severe illness or life-threatening conditions such as end-stage kidney, liver, lung disease, NYHA III-IV heart failure, or active malignancy

Piano di studio

Questa sezione fornisce i dettagli del piano di studio, compreso il modo in cui lo studio è progettato e ciò che lo studio sta misurando.

Come è strutturato lo studio?

Dettagli di progettazione

Cosa sta misurando lo studio?

Misure di risultato primarie

Misura del risultato
Misura Descrizione
Lasso di tempo
Modality-reference agreement for total fat mass (kg)
Lasso di tempo: 4 Weeks
Agreement between bioimpedance and 3-dimensional optical imaging derived estimates of total fat mass and DXA-derived reference measurements.
4 Weeks
Modality-reference agreement for fat-free mass (kg)
Lasso di tempo: 4 Weeks
Agreement between bioimpedance and 3-dimensional optical imaging derived estimates of fat-free mass and DXA-derived reference measurements.
4 Weeks
Modality-reference agreement for percent body fat (%)
Lasso di tempo: 4 Weeks
Agreement between bioimpedance and 3-dimensional optical imaging derived estimates of percent body fat and DXA-derived reference measurements.
4 Weeks
Modality-reference agreement for visceral adipose tissue (VAT; kg or volume)
Lasso di tempo: 4 Weeks
Agreement between bioimpedance and 3-dimensional optical imaging derived estimates of visceral adipose tissue and MRI-derived reference measurements.
4 Weeks

Misure di risultato secondarie

Misura del risultato
Misura Descrizione
Lasso di tempo
Agreement of blood-based proteomics-derived fat-free mass with DXA-derived fat-free mass (kg)
Lasso di tempo: 4 Weeks
Agreement between blood-based proteomics-derived fat-free mass and DXA-derived fat-free mass, assessed using the prespecified agreement analyses.
4 Weeks
Agreement of blood-based proteomics-derived total fat mass with DXA-derived total fat mass (kg)
Lasso di tempo: 4 Weeks
Description: Agreement between blood-based proteomics-derived total fat mass and DXA-derived total fat mass, assessed using the prespecified agreement analyses.
4 Weeks
Agreement of blood-based proteomics-derived percent body fat with DXA-derived percent body fat (%)
Lasso di tempo: 4 Weeks
Agreement between blood-based proteomics-derived percent body fat and DXA-derived percent body fat, assessed using the prespecified agreement analyses.
4 Weeks
Agreement of blood-based proteomics-derived visceral adipose tissue with MRI-derived visceral adipose tissue
Lasso di tempo: 4 Weeks
Agreement between blood-based proteomics-derived visceral adipose tissue and MRI-derived visceral adipose tissue, assessed using the prespecified agreement analyses
4 Weeks
Obesity and elevated visceral adipose tissue classification
Lasso di tempo: 4 Weeks
Classification performance of bioimpedance (BIA), 3-dimenisonal optics imaging (3DO), and blood-based methods for obesity and elevated visceral adipose tissue (VAT) status, assessed using area under the receiver operating characteristic curve (AUC) based on prespecified thresholds.
4 Weeks
Regression-based assessment of demographic and anthropometric effects on modality-reference measurement error
Lasso di tempo: 4 Weeks
Regression models will be used to evaluate the effects of prespecified demographic and anthropometric covariates, including age, sex, and BMI, on measurement error between candidate body composition methods and the corresponding DXA or MRI reference method.
4 Weeks
Between-day reliability of BIA measurements assessed by intraclass correlation coefficient (ICC)
Lasso di tempo: 1 Week
Intraclass correlation coefficients with 95% confidence intervals will be calculated for repeated BIA measurements obtained during the protocol-specified repeat-visit window of 2-7 days.
1 Week
Between-day reliability of 3DO measurements assessed by intraclass correlation coefficient (ICC)
Lasso di tempo: 1 Week
Intraclass correlation coefficients with 95% confidence intervals will be calculated for repeated 3DO measurements obtained during the protocol-specified visit window of 2-7 days.
1 Week
Between-day reliability of BIA measurements assessed by technical error of measurement (TEM)
Lasso di tempo: 1 Week
Technical error of measurement will be calculated for repeated BIA measurements obtained during the protocol-specified repeat-visit window of 2-7 days.
1 Week
Between-day reliability of 3DO measurements assessed by technical error of measurement (TEM)
Lasso di tempo: 1 Week
Technical error of measurement will be calculated for repeated 3DO measurements obtained during the protocol-specified repeat-visit window of 2-7 days
1 Week
Exploratory predictive performance of novel 3DO-derived geometric and anthropometric features for visceral adipose tissue
Lasso di tempo: 4 Weeks
Exploratory models incorporating 3DO-derived geometric and anthropometric features will be evaluated for estimation of visceral adipose tissue relative to MRI-derived reference measurements using regression-based predictive performance measures.
4 Weeks

Collaboratori e investigatori

Qui è dove troverai le persone e le organizzazioni coinvolte in questo studio.

Sponsor

Collaboratori

Studiare le date dei record

Queste date tengono traccia dell'avanzamento della registrazione dello studio e dell'invio dei risultati di sintesi a ClinicalTrials.gov. I record degli studi e i risultati riportati vengono esaminati dalla National Library of Medicine (NLM) per assicurarsi che soddisfino specifici standard di controllo della qualità prima di essere pubblicati sul sito Web pubblico.

Studia le date principali

Inizio studio (Effettivo)

29 giugno 2026

Completamento primario (Stimato)

30 novembre 2026

Completamento dello studio (Stimato)

30 marzo 2027

Date di iscrizione allo studio

Primo inviato

14 luglio 2026

Primo inviato che soddisfa i criteri di controllo qualità

17 agosto 2026

Primo Inserito (Effettivo)

20 agosto 2026

Aggiornamenti dei record di studio

Ultimo aggiornamento pubblicato (Effettivo)

20 agosto 2026

Ultimo aggiornamento inviato che soddisfa i criteri QC

17 agosto 2026

Ultimo verificato

1 agosto 2026

Maggiori informazioni

Termini relativi a questo studio

Parole chiave

Altri numeri di identificazione dello studio

  • 00329050

Informazioni su farmaci e dispositivi, documenti di studio

Studia un prodotto farmaceutico regolamentato dalla FDA degli Stati Uniti

No

Studia un dispositivo regolamentato dalla FDA degli Stati Uniti

No

Queste informazioni sono state recuperate direttamente dal sito web clinicaltrials.gov senza alcuna modifica. In caso di richieste di modifica, rimozione o aggiornamento dei dettagli dello studio, contattare register@clinicaltrials.gov. Non appena verrà implementata una modifica su clinicaltrials.gov, questa verrà aggiornata automaticamente anche sul nostro sito web .