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An Efficient Sieving Method to Isolate Intact Glomeruli from Adult Rat Kidney
Published on: November 1, 2018
Effects of caspase inhibition on the progression of experimental glomerulonephritis
Bin Yang1, Timothy S Johnson, John L Haylor
1Sheffield Kidney Institute, Department of Histopathology and Division of Clinical Sciences, Sheffield Teaching Hospitals, Sheffield University, United Kingdom. by5@le.ac.uk
Background:
Caspase-3 has a central role in the execution of apoptosis. In a nephrotoxic nephritis (NTN) model, we previously demonstrated an up-regulation of caspase-3 that was associated with inappropriate renal apoptosis, inflammation, tubular atrophy, and renal scarring.
Methods:
We applied a pan caspase inhibitor, Boc-Asp (OMe)-fluoro-methyl-ketone (B-D-FMK), directly to rat NTN kidney using an intrarenal cannula fed from an osmotic pump. Animals were treated either for the first 7 days (acutely) to determine the effects on renal inflammation (ED-1 staining) and apoptosis (in situ end labeling of fragmented DNA), or for 28 days commencing 15 days after NTN (chronically) to observe the effects on cell death and renal fibrosis. Changes of caspase-3 and caspase-1 activity were detected by fluorometric substrate cleavage assay. Changes in caspase-3 and caspase-1, interleukin-1 beta (IL-1 beta), and collagen I, III, and IV proteins and mRNA were detected by Western blotting and Northern blotting, respectively.
Results:
In both treated groups, caspase-3 activity was inhibited, and 17 and 24 kD active caspase-3 proteins were reduced significantly. A compensatory increase of caspase-3 mRNA occurred in the acutely treated group, but decreased in the chronically treated group (P < 0.05). Although there were no significant changes in caspase-1 activity and its active protein, the observed decrease in its precursor in the chronic group was increased by treatment (P < 0.05). Further, IL-1 beta precursor and its mRNA were significantly reduced by treatment only in the chronically treated group. Apoptosis was decreased in the glomeruli of acutely treated rats, and in the tubules and interstitium of chronically treated animals (P < 0.05). Glomerular inflammation was decreased only in the acutely treated group, whereas tubulointerstitial inflammation was lowered in both treated groups (P < 0.05). Glomerulosclerosis was reduced in both inhibitor groups, with a reduction in tubulointerstitial fibrosis and collagen I, III, and IV mRNA restricted to chronically treated animals (P < 0.05). Proteinuria was significantly decreased with caspase inhibition in both treated groups, but not serum creatinine level.
Conclusion:
This study clearly indicates that caspase inhibition reduces renal apoptosis, ameliorates inflammation and fibrosis, and improves proteinuria in experimental glomerulonephritis, which may mainly be related to changes in the caspase enzymatic system.
Insights
Inhibiting caspase-3 in a rat model of nephrotoxic nephritis significantly reduced kidney apoptosis, inflammation, and fibrosis. This caspase inhibition improved proteinuria, highlighting its therapeutic potential for kidney disease.
Area of Science:
- Renal Pathophysiology
- Molecular Biology
- Pharmacology
Background:
- Caspase-3 is crucial for apoptosis execution.
- Nephrotoxic nephritis (NTN) involves renal apoptosis, inflammation, and scarring.
- Previous studies linked caspase-3 upregulation to NTN pathology.
Purpose of the Study:
- To investigate the therapeutic effects of a pan caspase inhibitor on experimental glomerulonephritis.
- To assess the impact of caspase inhibition on renal apoptosis, inflammation, and fibrosis in a rat NTN model.
Main Methods:
- Administered a pan caspase inhibitor (Boc-Asp (OMe)-fluoro-methyl-ketone) via intrarenal cannula in rats with NTN.
- Treated animals acutely (7 days) or chronically (28 days, starting 15 days post-NTN).
- Evaluated effects on apoptosis, inflammation (ED-1 staining), fibrosis (collagen I, III, IV), caspase activity, and proteinuria.
Main Results:
- Caspase-3 activity and protein levels were significantly reduced by the inhibitor.
- Apoptosis and inflammation were decreased in glomeruli (acute) and tubules/interstitium (chronic).
- Renal fibrosis and proteinuria were ameliorated, particularly with chronic treatment.
Conclusions:
- Caspase inhibition effectively reduces renal apoptosis, inflammation, and fibrosis in experimental glomerulonephritis.
- The observed benefits are likely linked to modulation of the caspase enzymatic system.
- Caspase inhibition shows promise for treating kidney diseases characterized by apoptosis and fibrosis.

