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Updated: Jan 30, 2026

The Use of Reverse Phase Protein Arrays RPPA to Explore Protein Expression Variation within Individual Renal Cell Cancers
Published on: January 22, 2013
Proteins in artificial nutrition: toward an individualized and phase-specific prescription
Philipp Schuetz1, Frank Carrera-Gil2, Carla Wunderle3
1Medical University Department, Division of General Internal and Emergency Medicine, Kantonsspital Aarau, Aarau, Switzerland; Medical Faculty of the University of Basel, Basel, Switzerland.
Abstract:
Protein is a central component of artificial nutrition, yet its optimal dose and timing remain controversial. Provision of both insufficient and excessive protein is associated with adverse outcomes. Inadequate intake promotes negative nitrogen balance, muscle wasting, impaired tissue healing and repair, and increased risk of infection, whereas excessive protein may exceed metabolic capacity, causing azotemia, hepatic or renal strain, and reduced metabolic flexibility - particularly in patients with renal dysfunction. Emerging evidence indicates that the optimal protein dose is strongly influenced by patient-specific characteristics and evolves throughout the course of illness, supporting an individualized, phase-adapted strategy for protein provision rather than a fixed universal target. During early critical illness, catabolism predominates and high protein doses may not be effectively utilized. In contrast, during recovery and stabilization, higher protein targets appear beneficial for restoring lean body mass and functional capacity. This dynamic trajectory underscores the need to abandon universal recommendations in favor of personalized prescriptions. Although instruments such as nitrogen balance, body composition analysis, and indirect calorimetry can provide information about protein dosage, their routine use in clinical practice is limited and interpretation in acute illnesses remains difficult. Pragmatic, bedside strategies and the phenotyping of patients using biomarkers are, therefore, needed to tailor protein provision according to disease stage, organ function, and anabolic capacity. This opinion paper explores mechanistic insights, evidence from clinical trials, and guidelines on protein supplementation, explores biomarker-driven personalization, and highlights ongoing challenges and future research priorities in nutritional therapy.
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