Literature DB >> 25466723

Incidence of type 2 diabetes after bariatric surgery: population-based matched cohort study.

Helen Booth1, Omar Khan, Toby Prevost, Marcus Reddy, Alex Dregan, Judith Charlton, Mark Ashworth, Caroline Rudisill, Peter Littlejohns, Martin C Gulliford.   

Abstract

BACKGROUND: The effect of currently used bariatric surgical procedures on the development of diabetes in obese people is not well defined. We aimed to assess the effect of bariatric surgery on development of type 2 diabetes in a large population of obese individuals.
METHODS: We did a matched cohort study of adults (age 20–100 years) identified from a UK-wide database of family practices, who were obese (BMI ≥30 kg/m2) and did not have diabetes. We enrolled 2167 patients who had undergone bariatric surgery between Jan 1, 2002, and April 30, 2014, and matched them--according to BMI, age, sex, index year, and HbA1c--with 2167 controls who had not had surgery. Procedures included laparoscopic gastric banding (n=1053), gastric bypass (795), and sleeve gastrectomy (317), with two procedures undefined. The primary outcome was development of clinical diabetes, which we extracted from electronic health records. Analyses were adjusted for matching variables, comorbidity, cardiovascular risk factors, and use of antihypertensive and lipid-lowering drugs.
FINDINGS: During a maximum of 7 years of follow-up (median 2·8 years [IQR 1·3–4·5]), 38 new diagnoses of diabetes were made in bariatric surgery patients and 177 were made in controls. By the end of 7 years of follow-up, 4·3% (95% CI 2·9–6·5) of bariatric surgery patients and 16·2% (13·3–19·6) of matched controls had developed diabetes. The incidence of diabetes diagnosis was 28·2 (95% CI 24·4–32·7) per 1000 person-years in controls and 5·7 (4·2–7·8) per 1000 person-years in bariatric surgery patients; the adjusted hazard ratio was 0·20 (95% CI 0·13–0·30, p<0·0001). This estimate was robust after varying the comparison group in sensitivity analyses, excluding gestational diabetes, or allowing for competing mortality risk.
INTERPRETATION: Bariatric surgery is associated with reduced incidence of clinical diabetes in obese participants without diabetes at baseline for up to 7 years after the procedure. FUNDING: UK National Institute for Health Research.

Entities:  

Mesh:

Year:  2014        PMID: 25466723     DOI: 10.1016/S2213-8587(14)70214-1

Source DB:  PubMed          Journal:  Lancet Diabetes Endocrinol        ISSN: 2213-8587            Impact factor:   32.069


  29 in total

1.  Complications and Surveillance After Bariatric Surgery.

Authors:  Seth J Concors; Brett L Ecker; Richard Maduka; Alyssa Furukawa; Steven E Raper; Daniel D Dempsey; Noel N Williams; Kristoffel R Dumon
Journal:  Curr Treat Options Neurol       Date:  2016-01       Impact factor: 3.598

Review 2.  [Metabolic surgery or conservative measures as therapy of obese type 2 diabetics?]

Authors:  Udo Jahn; Thomas Schubert; Sibylle Schlepp; Heinz Jürgen Deuber
Journal:  Wien Med Wochenschr       Date:  2016-12-05

Review 3.  Japanese Clinical Practice Guideline for Diabetes 2019.

Authors:  Eiichi Araki; Atsushi Goto; Tatsuya Kondo; Mitsuhiko Noda; Hiroshi Noto; Hideki Origasa; Haruhiko Osawa; Akihiko Taguchi; Yukio Tanizawa; Kazuyuki Tobe; Narihito Yoshioka
Journal:  Diabetol Int       Date:  2020-07-24

4.  [Quality indicators for metabolic and bariatric surgery in Germany : Evidence-based development of an indicator panel for the quality of results, indications and structure].

Authors:  F Seyfried; H-J Buhr; C Klinger; T P Huettel; B Herbig; S Weiner; C Jurowich; A Dietrich
Journal:  Chirurg       Date:  2018-01       Impact factor: 0.955

Review 5.  Clinical Practice Guidelines for Childbearing Female Candidates for Bariatric Surgery, Pregnancy, and Post-partum Management After Bariatric Surgery.

Authors:  Cécile Ciangura; Muriel Coupaye; Philippe Deruelle; Géraldine Gascoin; Daniela Calabrese; Emmanuel Cosson; Guillaume Ducarme; Bénédicte Gaborit; Bénédicte Lelièvre; Laurent Mandelbrot; Niccolo Petrucciani; Didier Quilliot; Patrick Ritz; Geoffroy Robin; Agnès Sallé; Jean Gugenheim; Jacky Nizard
Journal:  Obes Surg       Date:  2019-11       Impact factor: 4.129

6.  Development of De Novo Diabetes in Long-Term Follow-up After Bariatric Surgery.

Authors:  Zubaidah Nor Hanipah; Suriya Punchai; Stacy A Brethauer; Philip R Schauer; Ali Aminian
Journal:  Obes Surg       Date:  2018-08       Impact factor: 4.129

Review 7.  Weight Loss and the Prevention and Treatment of Type 2 Diabetes Using Lifestyle Therapy, Pharmacotherapy, and Bariatric Surgery: Mechanisms of Action.

Authors:  J Grams; W Timothy Garvey
Journal:  Curr Obes Rep       Date:  2015-06

8.  Japanese Clinical Practice Guideline for Diabetes 2019.

Authors:  Eiichi Araki; Atsushi Goto; Tatsuya Kondo; Mitsuhiko Noda; Hiroshi Noto; Hideki Origasa; Haruhiko Osawa; Akihiko Taguchi; Yukio Tanizawa; Kazuyuki Tobe; Narihito Yoshioka
Journal:  J Diabetes Investig       Date:  2020-07       Impact factor: 4.232

9.  Association Between Bariatric Surgery and Rates of Continuation, Discontinuation, or Initiation of Antidiabetes Treatment 6 Years Later.

Authors:  Jérémie Thereaux; Thomas Lesuffleur; Sébastien Czernichow; Arnaud Basdevant; Simon Msika; David Nocca; Bertrand Millat; Anne Fagot-Campagna
Journal:  JAMA Surg       Date:  2018-06-01       Impact factor: 14.766

10.  Prevalence and Trends in Lifetime Obesity in the U.S., 1988-2014.

Authors:  Andrew Stokes; Yu Ni; Samuel H Preston
Journal:  Am J Prev Med       Date:  2017-09-05       Impact factor: 5.043

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