Faculty, Staff and Student Publications

Publication Date

8-1-2023

Journal

Journal of the American College of Surgeons

Abstract

BACKGROUND: Ventral incisional hernias are the most common complication after abdominal operation. Randomized trials have shown efficacy of prophylactic synthetic mesh and small bites. Adoption of these practices has been limited due to concerns with placement of synthetic mesh in contaminated cases and small bites in an overweight population. We sought to assess the efficacy of prophylactic biologic mesh and small bites to prevent postoperative major complications: ventral incisional hernias, surgical site infection, reoperation, and death.

STUDY DESIGN: High-risk patients (overweight/obese, current smoker) undergoing abdominal operation with a midline incision (5 cm or greater) were randomized (2 × 2 factorial trial) to receive either sublay biologic mesh or no mesh and either small bites (0.5 × 0. 5cm) or large bites (1 × 1 cm) fascial closure. The primary outcome measure was major complications at 1 year postoperative. CONSORT guidelines were followed, and this study was registered on clinicaltrials.gov (NCT03148496). Assuming α = 0.05, β = 0.20, and Δ = 20%, it was estimated that 105 patients were needed. Primary outcome was assessed using Fisher's exact test.

RESULTS: A total of 107 patients were randomized: 52 (49%) to mesh, 55 (51%) to no mesh, 55 (51%) to small bites, and 52 (49%) to large bites. Of the patients, 16% were smokers, 31% were overweight, and 55% were obese. At 1 year postoperative, there were no differences in major complications between groups (mesh vs no mesh 21% vs 16%, p = 0.62; small vs large bites 18% vs 19%, p = 1.00).

CONCLUSIONS: In this trial, biologic mesh and small bites appear to have no benefit. Further randomized trials are needed among high-risk patients before widespread adoption of prophylactic biologic mesh or small bites.

Keywords

Humans, Incisional Hernia, Overweight, Abdominal Wound Closure Techniques, Hernia, Ventral, Obesity, Surgical Mesh, Biological Products

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