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Published on: August 9, 2019
Choroidal and Retinal Permeability Changes in Chronic Kidney Disease-A Literature Review
Giacomo De Rosa1, Francesco Paolo De Rosa1, Giovanni Ottonelli1
1Department of Biomedical Sciences, Humanitas University, Via Rita Levi, Montalcini 4, 20072 Pieve Emanuele, MI, Italy.
Insights
Chronic kidney disease (CKD) and its treatments disrupt eye fluid balance, increasing risks of serous retinal detachment and central serous chorioretinopathy. Early ophthalmic screening and collaboration are key for managing these vision-threatening conditions.
Area of Science:
- Ophthalmology and Nephrology
- Retinal and Choroidal Vascular Physiology
- Systemic Disease Impact on Ocular Health
Background:
- Chronic kidney disease (CKD), particularly end-stage kidney disease (ESKD), affects systemic fluid homeostasis.
- Ocular fluid balance is intricately linked to systemic parameters like oncotic pressure and hydrostatic forces.
- Previous research suggests potential links between kidney disease and specific retinal pathologies.
Purpose of the Study:
- To review and synthesize evidence on how CKD and its treatments impact choroidal and retinal vascular permeability.
- To investigate the resulting changes in intraocular fluid homeostasis, specifically focusing on ESKD.
- To identify risk factors and clinical outcomes related to ocular conditions in CKD patients.
Main Methods:
- Comprehensive literature search of MEDLINE, reference lists, and specialized texts (1980-2025).
- Inclusion of 144 articles: clinical trials, observational cohorts, and case reports.
- Data abstraction focused on choroidal thickness, blood-retinal barrier integrity, CSCR/SRD incidence, and systemic factors (oncotic pressure, hypertension, corticosteroids, RPE function).
Main Results:
- ESKD creates a triad of low oncotic pressure, fluctuating hydrostatic forces, and impaired RPE pump function, leading to subretinal fluid.
- Hemodialysis acutely reduces sub-foveal choroidal thickness but has inconsistent effects on retinal thickness.
- Dialysis patients show significantly higher risks of SRD (3-4x) and CSCR (1.5x), with peritoneal dialysis posing the greatest risk. Post-transplant CSCR prevalence is ~6%, linked to surgery, hypertension, and immunosuppressants.
Conclusions:
- Systemic fluid-pressure imbalances and CKD treatments critically disrupt the outer blood-retinal barrier.
- Regular ophthalmic surveillance and early symptom screening are vital for detecting ocular complications.
- Close nephrologist-ophthalmologist collaboration is essential for timely management of vision-threatening conditions in CKD patients.
Abstract:
Purpose: This review consolidates current evidence on how chronic kidney disease (CKD)-especially end-stage kidney disease (ESKD) and its treatments-alters choroidal and retinal vascular permeability, leading to changes in intraocular fluid homeostasis. Methods: A literature search of Medical Literature Analysis and Retrieval System Online (MEDLINE), reference lists, and key ophthalmology-nephrology texts was performed for studies published between 1980 and 2025. One-hundred-forty-four articles (clinical trials, observational cohorts, and case reports) met the inclusion criteria. Data were abstracted on choroidal thickness changes, blood-retinal barrier integrity, incidence of Central Serous Chororioretinopathy (CSCR) and Serous Retinal Detachment (SRD) in dialysis and transplant populations, and systemic variables such as oncotic pressure, hypertension, and corticosteroid exposure, with special attention to retinal pigment epithelium (RPE) pump function. Findings were synthesized qualitatively and tabulated where appropriate. Results: ESKD induces a triad of lowered plasma oncotic pressure, fluctuating hydrostatic forces, and impaired RPE pump function that collectively drive subretinal fluid accumulation. Hemodialysis acutely reduces sub-foveal choroidal thickness by a mean of ≈15-25 µm yet shows inconsistent effects on retinal thickness. Large population data demonstrate a three- to four-fold higher SRD risk and ~1.5-fold higher CSCR risk in dialysis patients versus controls, with peritoneal dialysis conferring the greatest hazard. After kidney transplantation, CSCR prevalence approaches 6%, driven by combined stresses of surgery, hypertension, and long-term corticosteroid or calcineurin-inhibitor therapy. Most reported SRDs resolve as systemic parameters normalize, underscoring the importance of promptly identifying systemic drivers. Conclusions: Systemic fluid-pressure imbalances and treatment-related factors in CKD significantly perturb the outer blood-retinal barrier. Regular ophthalmic surveillance, early visual-symptom screening (e.g., Amsler grid), and close nephrologist-ophthalmologist collaboration are essential for timely detection and management. Future research should quantify the relative contribution of hypoalbuminemia, hypertension, and immunosuppression to ocular permeability changes, and evaluate preventive strategies tailored to high-risk CKD subgroups.
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