- Author:
Xiao-Ting WANG
1
;
Cui WANG
2
;
Hong-Min ZHANG
1
;
Da-Wei LIU
1
Author Information
- Publication Type:Journal Article
- MeSH: Acute Kidney Injury; physiopathology; therapy; Animals; Female; Hemodynamics; physiology; Humans; Male; Renal Dialysis; methods; Renal Replacement Therapy; methods
- From: Chinese Medical Journal 2017;130(10):1244-1248
- CountryChina
- Language:English
-
Abstract:
OBJECTIVEContinuous renal replacement therapy (CRRT) is a continuous process of bedside blood purification which is widely used in the treatment of acute kidney injury (AKI) and for fluid management. However, since AKI and fluid overload are often found to be associated with hemodynamic abnormalities, determining the relationship between CRRT and hemodynamics remains a challenge in the treatment of critically ill patients. The aim of this review was to summarize key points in the relationship between CRRT and hemodynamics and to understand and monitor renal hemodynamics in critically ill patients, especially those with AKI.
DATA SOURCESThis review was based on data in articles published in the PubMed databases up to January 30, 2017, with the following keywords: "continuous renal replacement therapy," "Hemodynamics," and "Acute kidney injury."
STUDY SELECTIONOriginal articles and critical reviews on CRRT were selected for this review.
RESULTSCRRT might treat AKI by hemodynamic therapy, and it was an important form of hemodynamic therapy. The targets of hemodynamic therapy should be established when using CRRT. Therefore, hemodynamic management and stability were very important during CRRT. Most studies suggested that renal hemodynamics should be clearly identified.
CONCLUSIONSCRRT is not only a replacement for organ function, but an important form of hemodynamic therapy. Improved hemodynamic management of critically ill patients can be achieved by establishing specific therapeutic hemodynamic targets and maintaining circulatory stability during CRRT. Over the long term, observation of renal hemodynamics will provide greater opportunities for the progression of CRRT hemodynamic therapy.