| Literature DB >> 26729322 |
Abstract
Several new methods of renal replacement therapy (RRT) are now available for treating patients in the ICU setting. However, utilization of RRT in the ICU is subject to considerable variation and the need for RRT is associated with worse outcomes. Several factors influence the application of dialysis and reflect the interplay of patient and process of care elements that are dynamic in nature. Despite multiple studies evaluating RRT and its application, there are gaps in our knowledge that must be overcome to improve outcomes. This article discusses some of the important issues that require attention in delivering RRT in critically ill patients and provides a framework for the optimal use of RRT in the ICU.Entities:
Mesh:
Year: 2015 PMID: 26729322 PMCID: PMC4699092 DOI: 10.1186/cc14727
Source DB: PubMed Journal: Crit Care ISSN: 1364-8535 Impact factor: 9.097
Renal replacement therapy support based on underlying demand and capacity framework
| Demand | Capacity | Example | Action |
|---|---|---|---|
| High | Normal | High catabolic state | Reduce demand if possible |
| High nutritional loading | Monitor for renal support | ||
| Poisoning | |||
| High | Low | Decreased GFR from AKI | Renal support |
| Reduce demand if possible | |||
| Normal | Low | CKD | Add renal support if necessary to maintain steady state |
| Noncatabolic | |||
| AKI | |||
| Low | Low | Malnutrition and wasting CKD | Assess for nutritional state and add renal support if necessary |
AKI acute kidney injury, CKD chronic kidney disease, GFR glomerular filtration rate
Proposed parameters for delivered dose assessment
| Parameter | Measurement | Tools |
|---|---|---|
| Very small waste products | K+, Na+, phosphate | Blood levels of K, Na, PO4 |
| Phosphate clearance | ||
| H- | pH, HCO3 AG, SIDeff, SIDapp, SIG, Delta gap, Delta ratio | |
| Small waste products | Urea | Clearance (ml/minute) |
| EKR (ml/minute) | ||
| Standard Kt/V | ||
| Middle sized molecules | Serum β2-microglobulin | β2-Microglobulin clearance |
| Weight (kg) | Weight changes | |
| Inputs-outputs | Fluid accumulation | |
| Bioelectrical impedance | Fluid overload | |
| BNP | Bioimpedance vector analysis | |
| BNP profile |
AG anion gap, BNP brain natriuretic peptide, EKR equivalent urea clearance, H- ions, HCObicarbonate, K potassium, Na sodium, POphosphate, SIDapp apparent strong ion difference, SIDeff effective strong ion difference