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Protein delivery in mechanically ventilated adults in Australia and New Zealand: current practice
Tejaswini Arunachala Murthy1,2, Rinaldo Bellomo3,4,5,6, Marianne J Chapman1,2,7,4
1Intensive Care Unit, Royal Adelaide Hospital, Adelaide, SA, Australia.
Insights
Critically ill adults in Australia and New Zealand receive suboptimal protein intake, falling below international guidelines. This study quantifies protein delivery, highlighting a significant gap in nutritional support for these patients.
Area of Science:
- Clinical Nutrition
- Critical Care Medicine
- Dietetics
Background:
- Optimal protein delivery is crucial for critically ill patients to support recovery and reduce complications.
- International guidelines recommend specific protein intake levels for intensive care unit (ICU) patients.
Purpose of the Study:
- To quantify current protein prescription and delivery in critically ill adults in Australia and New Zealand.
- To compare actual protein delivery with international nutritional guidelines.
Main Methods:
- Prospective, multicentre, observational study in five ICUs.
- Inclusion of mechanically ventilated adults expected to receive enteral nutrition for ≥ 24 hours.
- Collection of data on protein requirements, enteral nutrition, parenteral nutrition, and protein supplement delivery.
Main Results:
- Mean protein delivery was 0.85 g/kg ideal body weight (IBW) per day from enteral nutrition and 0.88 g/kg IBW per day from all sources.
- Protein delivery met or exceeded the guideline of ≥ 1.2 g/kg IBW per day on only 29% of study days.
- Estimated protein requirements were 1.46 g/kg IBW per day, with actual delivery significantly lower.
Conclusions:
- Current protein delivery in critically ill adults in Australia and New Zealand is below recommended international guidelines.
- There is a substantial gap between estimated protein needs and actual delivery in this patient population.
- Further research and interventions are needed to optimize protein provision in ICU settings.
Abstract:
Objective: To quantify current protein prescription and delivery in critically ill adults in Australia and New Zealand and compare it with international guidelines. Design: Prospective, multicentre, observational study. Setting: Five intensive care units (ICUs) across Australia and New Zealand. Participants: Mechanically ventilated adults who were anticipated to receive enteral nutrition for ≥ 24 hours. Main outcome measures: Baseline demographic and nutrition data in ICU, including assessment of requirements, prescription and delivery of enteral nutrition, parenteral nutrition and protein supplementation, were collected. The primary outcome was enteral nutrition protein delivery (g/kg ideal body weight [IBW] per day). Data are reported as mean ± standard deviation or n (%). Results: 120 patients were studied (sex, 60% male; mean age, 59 ± 16 years; mean admission APACHE II score, 20 ± 8). Enteral nutrition was delivered on 88%, parenteral nutrition on 6.8%, and protein supplements on 0.3% of 1156 study days. For the 73% (88/120) of patients who had a nutritional assessment, the mean estimated protein requirements were 99 ± 22 g/day (1.46 ± 0.55 g/kg IBW per day). The mean daily protein delivery was 54 ± 23 g (0.85 ± 0.35 g/kg IBW per day) from enteral nutrition and 56 ± 23 g (0.88 ± 0.35 g/kg IBW per day) from all sources (enteral nutrition, parenteral nutrition, protein supplements). Protein delivery was ≥ 1.2 g/kg IBW per day on 29% of the total study days per patient. Conclusions: Protein delivery as a part of current usual care to critically ill adults in Australia and New Zealand remains below that recommended in international guidelines.
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