Evidence map›Paper›PMID 42579277›Full record

ArticleJAMA network open2026

New Obesity Definition and Clinical Obesity Prevalence for Global Metabolic Bariatric Surgery.

Simone Cremona, Ricardo V Cohen, Francois Pattou, Anna Casajoana, Guilherme Sampaio Souza, Violeta Raverdy, Helene Verkindt, Beatriz T L Blasio, Pia Roser, Robert Caiazzo and 3 more

Abstract readMulticenter Study
In one paragraph

Article in JAMA network open, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

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3 · Its place in the literature

Who cites it

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No citing paper in PubMed yet.

4 · The record

Corrections and comments

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5 · Who and what money

Authors and funding

13 authors.

Simone CremonaSchool of Cardiovascular and Metabolic Medicine and Sciences, King's College London, London, United Kingdom.
Ricardo V CohenCenter for Obesity and Diabetes, Hospital Alemão Oswaldo Cruz, São Paulo, Brazil.
Francois PattouDepartment of General and Endocrine Surgery, Lille University Hospital, University of Lille, INSERM, Institut Pasteur Lille, Lille, France.
Anna CasajoanaEsophagogastric and Metabolic Bariatric Surgery Unit, Department of Surgery, Hospital del Mar, Barcelona, Spain.
Guilherme Sampaio SouzaCenter for Obesity and Diabetes, Hospital Alemão Oswaldo Cruz, São Paulo, Brazil.
Violeta RaverdyDepartment of General and Endocrine Surgery, Lille University Hospital, University of Lille, INSERM, Institut Pasteur Lille, Lille, France.
Helene VerkindtDepartment of General and Endocrine Surgery, Lille University Hospital, University of Lille, INSERM, Institut Pasteur Lille, Lille, France.
Beatriz T L BlasioDepartment of Surgery, Cascais Hospital, Cascais, Portugal.
Pia RoserSchool of Cardiovascular and Metabolic Medicine and Sciences, King's College London, London, United Kingdom.
Robert CaiazzoDepartment of General and Endocrine Surgery, Lille University Hospital, University of Lille, INSERM, Institut Pasteur Lille, Lille, France.
David BenaigesDepartment of Endocrinology and Nutrition, Hospital del Mar, Barcelona, Spain.
Tarissa B Zanata PetryCenter for Obesity and Diabetes, Hospital Alemão Oswaldo Cruz, São Paulo, Brazil.
Francesco RubinoSchool of Cardiovascular and Metabolic Medicine and Sciences, King's College London, London, United Kingdom.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

Importance: Metabolic bariatric surgery (MBS) is the most effective treatment for severe obesity, yet patient selection and prioritization remain largely based on body mass index (BMI; calculated as weight in kilograms divided by height in meters squared) thresholds rather than clinical conditions. The Lancet Diabetes and Endocrinology Commission recently proposed distinguishing clinical obesity (adiposity with obesity-related organ dysfunction) from preclinical obesity (excess adiposity with preserved function). The implications of this framework for MBS practice have not been evaluated. Objective: To assess the prevalence of clinical and preclinical obesity among MBS candidates and examine their demographic and clinical profiles, perioperative risk, and long-term prognosis. Design, Setting, and Participants: This retrospective, multicenter, cross-sectional study audited data of adults (aged ≥18 years) undergoing primary MBS (laparoscopic gastric bypass or sleeve gastrectomy) between January 1, 2014, and December 31, 2025, at 4 high-volume tertiary centers in the UK, Spain, France, and Brazil. Patients who underwent revisional procedures or multiple bariatric operations within the same year were excluded. Exposures: Classification of obesity as clinical or preclinical using a pragmatic operationalization. Main Outcomes and Measures: The primary outcome was the prevalence of clinical obesity. Secondary outcomes were patterns of organ dysfunction, BMI levels, baseline American Society of Anesthesiologists classification and Charlson Comorbidity Index, estimated 10-year cardiovascular risk (Framingham risk score), and 30-day major postoperative complications (Clavien-Dindo grade ≥3). Comparative analyses between patients with clinical obesity vs those with preclinical obesity were performed only within each individual cohort. No direct statistical comparisons were performed between centers as patient-level data were not shared across cohorts. Results: Among the 2316 patients included, 1709 (73.8%) had clinical obesity (mean [SD] age across cohorts, 45.6 [11.0] to 48.9 [11.7] years; 1149 women [67.2%]) and 607 (26.2%) had preclinical obesity (mean [SD] age across cohorts, 34.7 [10.4] to 40.0 [9.8] years; 486 women [80.1%]). Clinical obesity was the most prevalent category across all centers (from 62.7% in the Brazilian cohort to 79.3% in the UK cohort). Mean (SD) BMI ranged from 40.2 (4.9) (preclinical obesity in the Brazilian cohort) to 48.5 (9.0) (preclinical obesity in the UK cohort), and BMI levels and BMI category distributions (<40, 40-49, ≥50) were similar between clinical and preclinical obesity. Patients with clinical obesity were significantly older compared with those with preclinical obesity (UK cohort: mean [SD], 48.9 [11.7] vs 39.5 [9.7] years; French cohort: mean [SD], 45.6 [11.0] vs 34.7 [10.4] years; Spanish cohort: mean [SD], 47.1 [9.3] vs 40.0 [9.8] years; Brazilian cohort: mean [SD], 48.3 [11.7] vs 40.0 [9.4] years (all P < .001) and had a higher American Society of Anesthesiologists classification (UK cohort: median [IQR], 3 [2-3] vs 2 [2-3]; P < .001; French cohort: median [IQR], 3 [3-3] vs 2 [2-3]; P < .001; Spanish cohort: median [IQR], 2 [2-3] vs 2 [1-2]; P < .001; Brazilian cohort: median [IQR], 2 [2-2] vs 2 [2-2]; P = .02), as well as higher estimated cardiovascular Framingham risk score (Spanish cohort: median [IQR], 1.31 [0.20-4.34] vs 0.20 [0.20-1.68]; Brazilian cohort: median [IQR], 1.57 [0.20-5.28] vs 0.20 [0.20-0.20]; French cohort: median [IQR], 8.00 [3.00-13.00] vs 2.00 [1.00-4.00]) (all P < .001) and all-cause mortality risk (Charlson Comorbidity Index score) (UK cohort: median [IQR], 1 [0-2] vs 0 [0-0]; Spanish cohort: median [IQR], 1 [0-1] vs 0; Brazilian cohort: median [IQR], 1 [1-3] vs 1 [0-1]) (all P < .001). Clinical obesity was associated with increased 30-day major postoperative complications (Clavien-Dindo grade ≥3) compared with preclinical obesity in the French cohort (4.0% vs 1.1%; P = .04). Conclusions and Relevance: This international, multicenter cross-sectional study found that the majority of MBS candidates met criteria for clinical obesity, while a substantial minority were classified as having preclinical obesity. Despite similar BMI distributions, patients with clinical obesity may have a greater disease burden, higher operative risk, and higher estimated cardiovascular risk, supporting its potential value as a clinically meaningful framework for surgical practice.

Indexed as

Bariatric SurgeryObesityObesity, MorbidAdultBody Mass IndexBrazilCross-Sectional StudiesFemaleFranceHumansMaleMiddle AgedPrevalenceRetrospective StudiesSpainUnited Kingdom

Identifiers

PMID42579277
PMCPMC13463169

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.