A physiological human nutrition includes circadian feeding and nighttime fasting during sleep. There is increasing evidence, that this natural fasting episode over nighttime majorly contributes to repair processes of the human body. So far, intensive care patients are normally enterally fed continuously, so that there is no circadian nutrition and no nighttime fasting. An enteral nutrition for 12 hours followed by a fasting period of 12 hours supported by exogenous ketone salts potentially improves the reconstitution of ICU patients compared to ICU patients who are continuously enterally fed.
There is increasing evidence that a circadian rhythm of feeding (cyclic feeding) could be beneficial for critical ill patients. Cyclic feeding and fasting are assumed to have positive effects on the gut microbiome resulting in optimization of host responses to gastrointestinal pathogens. Another positive effect of cyclic feeding potentially results from activation of a "fasting response", inducing repair pathways such as ketogenesis, mitochondrial biogenesis, anti-inflammatory pathways, antioxidant defenses and autophagy processes. The activation of these repair pathways could diminish cellular stress and promote cellular recovery in critical ill patients. A randomized controlled trial by van Dyck et al. could show that fasting-mimicking intervals of 12 hours are sufficient to generate a metabolic fasting response without risking a caloric deficit. This fasting response can be enhanced by additional supplementation of exogenous ketones. A cyclic enteral nutrition with 12 hours of daytime feeding and 12 hours of ketogenic nighttime fasting compared to a continuous enteral feeding for 24 hours can potentially improve the reconstitution of critically ill Intensive Care patients. This improved reconstitution can be measured by maintenance of muscle mass (measured by ultrasound of the musculus rectus femoris), urea/creatinine ration, length of ventilation, length of ICU and hospital stay, 30-day mortality, ICU mobility scale.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
SUPPORTIVE_CARE
Masking
NONE
Enrollment
130
12 hours of enteral feeding (as per patients´individual calorimetric requirements measured by indirect calorimetry) followed by a fasting period of 12 hours supported by the supplementation of exogenous ketone salts.
Department of Anesthesiology and Intensive Care Medicine
Cologne, North Rhine-Westphalia, Germany
RECRUITINGLoss of muscle mass
Loss of muscle mass via Ultrasound of M. rectus femoris of a predefined leg
Time frame: From date of randomization until the date of ICU discharge up to 1 month
Progress of urea / creatinine ratio
Urea / creatinine ratio in the patients´ blood
Time frame: From date of randomization until the date of ICU discharge up to 1 month
Length of invasive and noninvasive ventilation
Length of invasive and noninvasive ventilation
Time frame: From date of randomization until the date of ICU discharge up to 1 month
Length of ICU and hospital stay
Length of ICU and hospital stay
Time frame: From date of randomization until the date of hospital discharge up to 6 months
30 day mortality on day 30
30 day mortality on day 30
Time frame: From date of randomization 30 days
ICU mobility scale on discharge
ICU mobility scale (lowest score 0, highest score 10)
Time frame: From date of randomization until the date of ICU discharge up to 1 month
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