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Background: Post weaning diarrhoea (PWD) causes piglet morbidity and mortality at weaning and is a major driver for antimicrobial use worldwide. New regulations in the EU limit the use of in-feed antibiotics (Ab) and therapeutic zinc oxide (ZnO) to prevent PWD. New approaches to control PWD are needed, and understanding the role of the microbiota in this context is key. In this study, shotgun metagenome sequencing was used to describe the taxonomic and functional evolution of the faecal microbiota of the piglet during the first two weeks post weaning within three experimental groups, Ab, ZnO and no medication, on commercial farms using antimicrobials regularly in the post weaning period.
Results: Diversity was affected by day post weaning (dpw), treatment used and diarrhoea but not by the farm. Microbiota composition evolved towards the dominance of groups of species such as Prevotella spp. at day 14dpw. ZnO inhibited E. coli overgrowth, promoted higher abundance of the family Bacteroidaceae and decreased Megasphaera spp. Animals treated with Ab exhibited inconsistent taxonomic changes across time points, with an overall increase of Limosilactobacillus reuteri and Megasphaera elsdenii. Samples from non-medicated pigs showed virulence-related functions at 7dpw, and specific ETEC-related virulence factors were detected in all samples presenting diarrhoea. Differential microbiota functions of pigs treated with ZnO were related to sulphur and DNA metabolism, as well as mechanisms of antimicrobial and heavy metal resistance, whereas Ab treated animals exhibited functions related to antimicrobial resistance and virulence.
Conclusion: Ab and particularly ZnO maintained a stable microbiota composition and functionality during the two weeks post weaning, by limiting E. coli overgrowth, and ultimately preventing microbiota dysbiosis. Future approaches to support piglet health should be able to reproduce this stable gut microbiota transition during the post weaning period, in order to maintain optimal gut physiological and productive conditions.
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http://dx.doi.org/10.1186/s42523-024-00306-7 | DOI Listing |
J Anim Sci
September 2025
Department of Animal Sciences, Laval University, Québec, QC G1V 0A6, Canada.
In pig production, weaning is a critical period where piglets face several environmental stressors. This transition leads to a significant growth reduction and can result in digestive disorders, including diarrhea. To formulate a feed that meets zinc (Zn) and copper (Cu) requirements during the weaning period while minimizing their release into the environment, it became evident that a more bioavailable micro-mineral supplement is necessary.
View Article and Find Full Text PDFTransl Anim Sci
July 2025
Department of Animal Sciences, Purdue University, West Lafayette, IN 47906, USA.
Transportation at weaning is an integral component of the American swine industry. However, the long-term effects on growth performance have not been well characterized. Previous research suggests transportation causes weight loss immediately following weaning, but few studies have followed this effect further than 7 d post-weaning, with transport causing decreased body weight in those that have.
View Article and Find Full Text PDFHeart Lung
September 2025
The First School of Clinical Medicine, Southern Medical University, Guangzhou 510515, China; Department of Critical Care Medicine, General Hospital of Southern Theatre Command of Chinese PLA, Guangzhou 510010, China; Guangdong Branch Center, National Clinical Research Center for Geriatric Diseases,
Background: Standardized spontaneous breathing trial (SBT) techniques for patients with heart failure (HF) are lacking.
Objectives: To compare the efficacy of low-level pressure-supported ventilation (PSV) and T-piece SBT techniques in patients with HF.
Methods: This single-center, prospective, open-label, randomized controlled study enrolled mechanically ventilated adults with stage B HF (Nov 2022-Apr 2024).
Perfusion
September 2025
Department of Adult Critical Care, Guy's and St Thomas' NHS Foundation Trust, London, UK.
IntroductionWe report the successful use of erector spinae (ESP) plane block in the management of a patient with severe respiratory failure secondary to chest trauma requiring invasive ventilation and Veno-venous extracorporeal membrane oxygenation (V-V ECMO).Case reportA 64-year-old man with flail chest and severe respiratory failure required V-V ECMO. An ESP plane block on day 3 enabled extubation, mobilisation, and secretion clearance, leading to ECMO weaning after six days and discharge 18 days post-injury.
View Article and Find Full Text PDFInnovations (Phila)
September 2025
Section of Cardiac Surgery, Department of Surgery, University of Chicago, IL, USA.
Objective: Port sites are a common source of perioperative bleeding in robotic cardiac surgery, which can be exacerbated by patient anatomy and anticoagulation. We present results from the liberal usage of a balloon-tipped coudé catheter for tamponade of robotic port sites during robotic mitral surgery.
Methods: All patients who underwent robotic mitral valve surgery at our institution from August 2016 to July 2022 were studied ( = 320).