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Published on: November 7, 2017
Inflammation and Cardiovascular Disease Associated With Hemodialysis for End-Stage Renal Disease
1Department of Cardiovascular Centre, The First Hospital of Jilin University, Jilin, China.
Insights
Chronic kidney disease (CKD) and cardiac insufficiency are linked, especially in hemodialysis (HD) patients. Understanding inflammation
Area of Science:
- Nephrology
- Cardiology
- Pathophysiology
Background:
- Chronic kidney disease (CKD) and cardiac insufficiency frequently coexist, particularly in uremic patients undergoing hemodialysis (HD).
- Poor renal function in cardiac insufficiency patients often signals a worse prognosis and impaired cardiac mechanics.
- Uremic patients on HD commonly experience cardiovascular complications due to inflammation, endothelial dysfunction, volume overload, and metabolic imbalances.
Purpose of the Study:
- To review the mechanisms of inflammation and oxidative stress in uremic patients on dialysis.
- To elucidate the development of cardiovascular complications in the context of inflammation in CKD.
- To provide clinical recommendations for anti-inflammatory treatment of cardiovascular complications in ESRD patients.
Main Methods:
- Literature review focusing on the interplay between CKD, inflammation, and cardiovascular disease.
- Analysis of mechanisms linking inflammation, oxidative stress, and cardiac dysfunction in uremia.
- Synthesis of clinical evidence for anti-inflammatory strategies in hemodialysis patients.
Main Results:
- Inflammation is a key factor connecting CKD and cardiovascular disease, influencing prognosis.
- Cardiovascular complications in CKD patients on HD are multifactorial, driven by uremia-induced pathological changes.
- Adverse cardiovascular events are significantly increased in HD patients, especially early in treatment.
Conclusions:
- Breaking the inflammation-mediated vicious circle between renal and cardiac insufficiency is crucial for improving outcomes in end-stage renal disease (ESRD).
- Understanding the sequential development of inflammation in CKD is essential for effective management.
- Targeting inflammation and oxidative stress offers a promising therapeutic approach for cardiovascular complications in uremic patients.
Abstract:
Chronic kidney disease (CKD) and cardiac insufficiency often co-exist, particularly in uremic patients on hemodialysis (HD). The occurrence of abnormal renal function in patients with cardiac insufficiency is often indicative of a poor prognosis. It has long been established that in patients with cardiac insufficiency, poorer renal function tends to indicate poorer cardiac mechanics, including left atrial reserve strain, left ventricular longitudinal strain, and right ventricular free wall strain (Unger et al., Eur J Heart Fail, 2016, 18(1), 103-12). Similarly, patients with chronic kidney disease, particularly uremic patients on HD, often have cardiovascular complications in addition to abnormal endothelial function with volume overload, persistent inflammatory states, calcium overload, and imbalances in redox responses. Cardiac insufficiency due to uremia is therefore mainly due to multifaceted non-specific pathological changes rather than pure renal insufficiency. Several studies have shown that the risk of adverse cardiovascular events is greatly increased and persistent in all patients treated with HD, especially in those who have just started HD treatment. Inflammation, as an important intersection between CKD and cardiovascular disease, is involved in the development of cardiovascular complications in patients with CKD and is indicative of prognosis (Chan et al., Eur Heart J, 2021, 42(13), 1244-1253). Therefore, only by understanding the mechanisms underlying the sequential development of inflammation in CKD patients and breaking the vicious circle between inflammation-mediated renal and cardiac insufficiency is it possible to improve the prognosis of patients with end-stage renal disease (ESRD). This review highlights the mechanisms of inflammation and the oxidative stress that co-exists with inflammation in uremic patients on dialysis, as well as the mechanisms of cardiovascular complications in the inflammatory state, and provides clinical recommendations for the anti-inflammatory treatment of cardiovascular complications in such patients.
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