Localization of the membrane attack complex (MAC) in experimental immune complex glomerulonephritis.
Open Access
- 1 June 1983
- journal article
- research article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 157 (6), 1885-1905
- https://doi.org/10.1084/jem.157.6.1885
Abstract
The role of the membrane attack complex (MAC) as a mediator of renal tissue injury was evaluated in rats affected by bovine serum albumin (BSA)-induced immune complex glomerulonephritis. Immunofluorescence studies revealed concurrent deposits of IgG, BSA, C3, and the MAC along glomerular capillary walls, although the MAC manifested a more restricted distribution than that observed for immune complexes. Immunoelectron microscopic techniques were utilized to demonstrate immune complexes, C3, and the MAC within dense deposits in the subepithelial aspect of the basement membrane. Visceral epithelial foot processes were fused in areas overlying large dense deposits and exhibited intense staining for the MAC, lesser reactivity for C3 but IgG was absent from the foot process membranes. Smaller granular deposits of immune complexes, C3, and the MAC were observed in the subendothelial region of the lamina rara interna and the lamina densa. Immune complexes may activate the classical complement pathway causing diffuse injury to the glomerular basement membrane (GBM), allowing subepithelial accumulation of complexes. These observations implicate the MAC as a mediator of GBM and juxtaposed podocyte membrane injury, thereby contributing to disruption of the glomerular filtration barrier. IgG and C3 were demonstrated within tubulointerstitial regions on the surface of collagen fibers in close proximity to the tubular basement membrane (TBM) of proximal convoluted tubules. Within the TBM, C3 localization was prominent with diminished reactivity for the MAC, but IgG was not detectable. The demonstration of C3 and scant MAC deposits in the TBM of nonimmunized control rats without evidence of interstitial IgG and C3 deposits suggests that both nonimmune and immune processes play a role in the pathogenesis of extraglomerular lesions. Evidence derived from these morphologic studies indicates that the MAC is associated with injury to the GBM, foot process membranes of visceral epithelium, and the TBM. Further experiments designed to selectively enhance or inhibit the deposition of MAC and assess consequent renal dysfunction are required to substantiate hypotheses concerning the in vivo membranolytic potential of the MAC in experimental immune complex glomerulonephritis.This publication has 50 references indexed in Scilit:
- Fibronectin: Its Relationship to Basement Membranes II. Ultrastructural Studies in Rat KidneyCollagen and Related Research, 1981
- CHRONIC SERUM SICKNESS IN THE RAT - INFLUENCE OF ANTIGEN DOSE, ROUTE OF ANTIGEN ADMINISTRATION AND STRAIN OF RAT ON THE DEVELOPMENT OF DISEASE1981
- The terminal membrane C5b-9 complex of human complement. Evidence for the existence of multiple protease-resistant polypeptides that form the trans-membrane complement channel.The Journal of Immunology, 1980
- SC5b-9 complex of complement: formation of the dimeric membrane attack complex by removal of S-protein.The Journal of Immunology, 1980
- The Nature of the Receptor for Complement (C3b) in the Human Renal GlomerulusAmerican Journal of Clinical Pathology, 1978
- LOSS OF ANIONIC SITES FROM GLOMERULAR BASEMENT-MEMBRANE IN AMINONUCLEOSIDE NEPHROSIS1978
- Mechanisms of the Puromycin-Induced Defects in the Transglomerular Passage of Water and MacromoleculesJournal of Clinical Investigation, 1977
- A receptor for the third component of complement in the human renal glomerulusThe Journal of Experimental Medicine, 1975
- Neoantigens of the membrane attack complex of human complement.Proceedings of the National Academy of Sciences, 1975
- Glomerular polyanion. Alteration in aminonucleoside nephrosis.1970