| Literature DB >> 31188898 |
Lívia Helena de Morais Pereira1, Crislaine Aparecida da Silva1, Maria Luíza Gonçalves Dos Reis Monteiro1, Liliane Silvano Araújo1, Laura Penna Rocha1, Marcelo Bernardes da Rocha Reis1, Fernando Silva Ramalho2, Rosana Rosa Miranda Corrêa1, Marcos Vinicius Silva3, Marlene Antonia Reis1, Juliana Reis Machado1.
Abstract
There are controversies whether Minimal Change Disease (MCD) and Focal and Segmental Glomerulosclerosis (FSGS) are distinct glomerular lesions or different manifestations within the same spectrum of diseases. The uPAR (urokinase-type plasminogen activator receptor) and some slit diaphragm proteins may be altered in FSGS glomeruli and may function as biomarkers of the disease in renal biopsies. Thus, this study aims to evaluate the diagnostic potential of uPAR and glomerular proteins for differentiation between MCD and FSGS in renal pediatric biopsy. Renal biopsies from 50 children between 2 and 18 years old were selected, with diagnosis of MCD (n = 29) and FSGS (n = 21). Control group consisted of pediatric autopsies (n = 15) from patients younger than 18 years old, with no evidences of renal dysfunction. In situ expressions of WT1, nephrin, podocin and uPAR were evaluated by immunoperoxidase technique. Renal biopsy of patients with MCD and FSGS expressed fewer WT1 (p≤0.0001, F = 19.35) and nephrin (p<0.0001; H = 21.54) than patients in the control group. FSGS patients expressed fewer podocin than control (p<0.0359, H = 6.655). FSGS cases expressed more uPAR than each of control and MCD (p = 0.0019; H = 12.57) and there was a positive and significant correlation between nephrin and podocin (p = 0.0026, rS = 0.6502) in these cases. Podocin had sensitivity of 73.3% and specificity of 86.7% (p = 0.0068) and uPAR had sensitivity of 78.9% and specificity of 73.3% (p = 0.0040) for diagnosis of FSGS patients. The main limitation of the study is the limited number of cases due to the difficulty in performing biopsy in pediatric patients. Podocin and uPAR are good markers for FSGS and differentiate these cases from MCD, reinforcing the theory of distinct glomerular diseases. These findings suggest that podocin and uPAR can be used as biomarkers in the routine analysis of renal biopsies in cases of podocytopathies when the lesion (sclerosis) is not sampled.Entities:
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Year: 2019 PMID: 31188898 PMCID: PMC6561567 DOI: 10.1371/journal.pone.0217569
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Epidemiological data on cases of MCD, FSGS and control group.
| Control | MCD | FSGS | Total of patients | |
|---|---|---|---|---|
| 7.4±4.3 | 10.6 ± 4.6 | 11.3 ± 4.9 | 10.9±4.7 | |
| 7 (2–14) | 12 (2–17) | 12 (2–18) | 12 (2–18) | |
| 12 (80.0%) | 14 (48.2%) | 12 (57.1%) | 26 (52.0%) | |
| 3 (20.0%) | 15 (51.7%) | 9 (42.8%) | 24 (48.0%) | |
| NI | 22 (75.8%) | 15 (71.4%) | 37 (74.0%) | |
| NI | 4 (13.7%) | 6 (28.5%) | 10 (20.0%) | |
MCD, Minimal change disease; FSGS, Focal and segmental glomerulosclerosis; n, number of cases; NI, not informed
Clinical and laboratorial data of patients with FSGS and MCD.
| MCD | FSGS | P value and statistical tests | |
|---|---|---|---|
| 4 (13.8%) | 4 (19.0%) | ||
| 20 (69.0%) | 12 (57.0%) | p = 0.69; χ2 = 0.73 | |
| 5 (17.2%) | 5 (24.0%) | ||
| 6 (21.0%) | 7 (33.3%) | ||
| 13 (44.8%) | 9 (42.9%) | p = 0.54; χ2 = 1.22 | |
| 10 (34.2%) | 5(23.8%) | ||
| 2.5±2.861 | 4.7±3.975 | p = 0.06; U = 104.0 | |
| 0.6±0.2 | 2.1±4.2 | p = 0.15; U = 88.0 | |
| 24.6±6.8 | 46.6±50.5 | p = 0.05; U = 59.6 | |
| 2.8±1.1 | 2.96±1.0 | p = 0.61, t = 0.51 | |
| 285.4±106.0 | 348.9±165.5 | p = 0.15; t = 1.49 | |
| 128.0±80.0 | 102.2±95.3 | p = 0.16; U = 42.0 | |
MCD, Minimal change disease; FSGS, Focal and segmental glomerulosclerosis; n, number of cases; NI, not informed; U, Mann Whitney test; χ2, Fisher's exact test and t, Student´s t test
Fig 1Expression of WT1, nephrin, podocin and uPAR in glomeruli by immunoperoxidase technique in the 3 groups: Control, MCD and FSGS.
(A) Expression of WT1 in the 3 groups. ANOVA test followed by Tukey's multiple comparison test when normal distribution and bars represent the mean and the line above represents the standard deviation. WT1 immunolabeling in glomeruli in control (B), MCD (C) and FSGS groups (D) (1600X). (E, I and M) Expression of nephrin, podocin and uPAR in the 3 groups. Kruskal-Wallis test followed by Dunn's multiple comparison test when non-normal distribution and the horizontal lines represent the medians, the bars represent the 25–75% percentiles and the vertical lines represent the percentiles 10–90%. Nephrin immunolabeling in glomeruli in control (F), MCD (G) and FSGS (H) groups (1600X). Podocin immunolabeling in glomeruli in control (J), MCD (K) and FSGS groups (L) (1600X). uPAR immunolabeling in glomerular compartment in control (N), MCD (O) and FSGS groups (P) (1600X). *Statistical significance was defined as p<0.05.
Fig 2Correlation of nephrin and podocin expression in patients of control, MCD and FSGS groups.
Correlation between (A) percentage in nephrin area and percentage in podocin area in control patients, (B) percentage in nephrin area and percentage in podocin area in patients in MCD group, (C) percentage in nephrin area and percentage in podocin area in patients of FSGS group. Used Spearman’s correlation test (rS) and Pearson’s correlation test (r). *Statistical significance was defined as p <0.05.
Fig 3The receiver operating curves for models predicting podocin and uPAR performance for diagnosis of MCD and FSGS.
(A) ROC curve graphic of plotted sensibility and 1-specificity of Podocin for MCD diagnosis. (B) ROC curve graphic of plotted sensibility and 1-specificity of Podocin for FSGS diagnosis. (C) ROC curve graphic of plotted sensibility and 1-specificity of uPAR for MCD diagnosis. (D) ROC curve graphic of plotted sensibility and 1-specificity of uPAR for FSGS diagnosis.