Introduction Enteroatmospheric fistulas (EAF) present significant challenges in surgical management due to their complex nature and high mortality rate. Traditional approaches often rely on prolonged parenteral nutrition, but emerging evidence suggests the potential benefits of enteral nutrition via fistuloclysis, an underappreciated enteral nutrition route. This study aims to evaluate the effectiveness of nutritional therapy, specifically fistuloclysis, in patients with EAF managed at the Trauma Unit of Santo Tomás Hospital, Panama. Methods A retrospective analysis was conducted on nine male patients diagnosed with EAF between January 2016 and December 2020. Data on demographics, fistula characteristics, and nutritional management were collected through chart review. Descriptive statistics were used for analysis. Results We analyzed nine patients, all of whom received enteral nutrition (EN) via fistuloclysis in a median of 5.5 days from the diagnosis of EAF. Seven patients required parenteral nutrition (PN) at the beginning. The use of specialized enteral formulas, supplemented with hydrolyzed proteins and medium-chain triglycerides, facilitated discontinuation of PN once 80% of nutritional requirements were met via the enteral route, and EN was continued until definitive surgery. The median duration of PN was 34 days. No adverse effects related to EN were observed, whereas complications such as central venous catheter infections were reported in all cases requiring PN. Conclusion Fistuloclysis is a viable and effective alternative to traditional PN in patients with EAF. Specialized nutritional strategies, including the use of semi-elemental formulas, contribute to improved outcomes and reduced complications. Early initiation and gradual increase in enteral nutrition via fistuloclysis demonstrate safety and efficacy, underscoring the importance of tailored nutritional approaches in optimizing patient care for complex surgical conditions.
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http://dx.doi.org/10.7759/cureus.59403 | DOI Listing |
BMJ Nutr Prev Health
December 2024
Department of Medicine, University of Alberta, Edmonton, Alberta, Canada.
Background: Health policies promote optimal care, yet policies that address disease-related malnutrition (DRM) are lacking. The purpose of this study was to conduct a scoping review to identify literature on existing and planned policy to address DRM in children or adults and explore the settings, contexts and actors of DRM policy.
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Indian J Crit Care Med
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Department of Critical Care Medicine, Apollo Hospitals, Navi Mumbai, Maharashtra, India.
Chhallani AA. Optimal Nutrition in ICU! Less is More? Food for Thought or Feed for Survival! Indian J Crit Care Med 2024;28(11):999-1001.
View Article and Find Full Text PDFFront Nutr
January 2025
Department of Epidemiology and Health Statistics, Tianjin Medical University, Tianjin, China.
Background: Although more risk prediction models are available for feeding intolerance in enteral-nourishment patients, it is still unclear how well these models will work in clinical settings. Future research faces challenges in validating model accuracy across populations, enhancing interpretability for clinical use, and overcoming dataset limitations.
Objective: To thoroughly examine studies that have been published on feeding intolerance risk prediction models for enteral nutrition patients.
J Hum Nutr Diet
February 2025
Dietetics Department, Great Ormond Street Children's Hospital, London, UK.
Background: Enteral tube feeding is used for children who are unable to meet their nutritional requirements orally. Gastrointestinal symptoms are some complications that can occur in enteral tube-fed patients. Blended tube feeds (BTFs) for children who are gastrotomy tube-fed have significantly increased in the last decade.
View Article and Find Full Text PDFJPEN J Parenter Enteral Nutr
January 2025
The University of Queensland, Brisbane, Australia.
Background: Advanced glycation end-products (AGEs) can enter patients' circulation through exogenous sources, such as enteral nutrition formulae. Circulating AGEs, specifically carboxymethyllysine, can promote insulin resistance and activation of pro-inflammatory pathways leading to oxidative stress, cell death, and organ failure. Suboptimal kidney function increases the risk of elevated circulating AGEs because levels are controlled through urinary excretion.
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