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The macrophage in the development of experimental crescentic glomerulonephritis. Studies using tissue culture and
Abstract:
The role played by the macrophage in the development of injury in rabbit nephrotoxic nephritis (NTN) has been assessed by electron microscopy and glomerular culture of renal tissue obtained by several biopsies during the course of the disease. These observations have been correlated with the other immune, cellular, and biochemical events occurring in the glomerulus, ie, deposition of immunoglobulin and complement, proteinuria, polymorphonuclear leukocyte (PMN) exudation, fibrin deposition, crescent formation, and renal failure. A biphasic macrophage accumulation was detected, corresponding to the heterologous and autologous phases of the disease. In the autologous or crescentic phase, macrophages accumulated within the glomerular tuft from Day 5; their appearance coincided with the accumulation of PMN and development of proteinuria. Fibrin deposition in Bowman's space, which commenced on Days 6 and 7, was rapidly followed by the migration of macrophages from the glomeruli into Bowman's space. Within Bowman's space, macrophages were observed to phagocytose fibrin, transform into epithelioid and giant cells, and accumulate to form a substantial proportion of the cells forming the crescent. The inflammatory process of PMN exudation, macrophage accumulation, fibrin deposition, and crescent formation and the degree of renal failure reached a maximum by Days 12 to 14. Thereafter, resolution of the inflammatory process occurred so that by Day 40 macrophages had disappeared from the glomeruli. However, varying degrees of glomerular damage and renal failure persisted, occurring largely as a result of glomerulosclerosis and sclerosis of crescents. The tissue culture studies also demonstrated mesangial cell proliferation during the inflammatory process but did not show any abnormality of epithelial cell activity. This study demonstrates that the macrophages participate in NTN by accumulating in damaged glomeruli then migrating into Bowman's space (probably in response to fibrin deposition) where they undergo granulomatous transformation and accumulate, contributing to crescent formation.
Insights
Macrophages play a key role in nephrotoxic nephritis (NTN) injury by accumulating in glomeruli and forming crescents. Their migration and transformation contribute significantly to kidney damage and renal failure in this disease model.
Area of Science:
- Nephrology
- Immunology
- Pathology
Background:
- Nephrotoxic nephritis (NTN) is a model of glomerular injury.
- The role of macrophages in NTN pathogenesis is not fully understood.
Purpose of the Study:
- To investigate the role of macrophages in the development of rabbit nephrotoxic nephritis.
- To correlate macrophage activity with other immune and cellular events in the glomerulus.
Main Methods:
- Electron microscopy and glomerular culture of renal tissue from rabbits with NTN.
- Correlation of macrophage accumulation with immunoglobulin and complement deposition, proteinuria, PMN exudation, fibrin deposition, crescent formation, and renal failure.
Main Results:
- Biphasic macrophage accumulation observed, correlating with disease phases.
- Macrophages migrated into Bowman's space, phagocytosed fibrin, and contributed to crescent formation.
- Maximal inflammatory response and renal failure occurred by Days 12-14, with persistent damage.
Conclusions:
- Macrophages are critical participants in NTN, contributing to crescent formation and renal damage.
- Macrophage migration and transformation into epithelioid and giant cells are key events in NTN pathogenesis.
- Glomerulosclerosis and crescent sclerosis lead to persistent renal failure despite resolution of acute inflammation.