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Research Article| Volume 11, ISSUE 3, P276-284, May 1991

Platelets in inflammatory glomerular injury

  • Richard J. Johnson
    Correspondence
    Address reprint requests to Richard Johnson, MD, Division of Nephrology, RM-11, University of Washington Medical Center, Seattle, WA 98195.
    Affiliations
    From the Division of Nephrology, Department of Medicine, University of Washington, Seattle, WA, USA
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      References

        • Kincaid-Smith P.
        Coagulation and renal disease.
        Kidney Int. 1972; 2: 183-190
        • Cameron J.S.
        Platelets in glomerular disease.
        Ann Rev Med. 1984; 35: 175-180
        • Barnes J.L.
        • Venkatachalam M.A.
        The role of platelets and polycationic mediators in glomerular vascular injury.
        Semin Nephrol. 1985; 5: 57-68
        • Camussi G.
        • Tetta C.
        • Vercellone A.
        Platelets and platelet-derived cationic proteins in human and experimental glomerular pathology.
        Contr Nephrol. 1989; 69: 27-36
        • Lowenhaupt R.W.
        Human platelet chemotaxis can be induced by low molecular substance(s) derived from the interaction of plasma and collagen.
        in: Jamieson G.A. Scipio A.R. Interaction of Platelets and Tumor Cells. Liss, New York, NY1982: 269-280
        • Movat H.Z.
        • Mustard J.F.
        • Taichman N.S.
        • et al.
        Platelet aggregation and release of ADP, serotonin and histamine associated with phagocytosis of antigen-antibody complexes.
        in: Proc Soc Exp Med. 120. 1965: 232-237
        • Rosenfeld S.I.
        • Looney R.J.
        • Leddy J.P.
        • et al.
        Human platelet Fc receptor for immunoglobulin G. Identification as a 40,000-molecular-weight membrane protein shared by monocytes.
        J Clin Invest. 1985; 76: 2317-2322
        • Henseon P.M.
        The adherence of leucocytes and platelets induced by fixed IgG antibody or complement.
        Immunology. 1969; 16: 107-121
        • Gabbiani G.
        • Badonnel M.-C.
        • Vassali P.
        Experimental focal glomerular lesions elicited by insoluble immune complexes.
        Lab Invest. 1975; 32: 33-45
        • Johnson R.J.
        • Alpers C.E.
        • Pruchno C.
        • et al.
        Mechanisms and kinetics for platelet and neutrophil localization in immune complex nephritis.
        Kidney Int. 1989; 36: 780-789
        • Weksler B.B.
        Roles for human platelets in inflammation.
        Prog Clin Biol Res. 1988; 283: 611-638
        • Houle J.J.
        • Leddy J.P.
        • Rosenfeld S.I.
        Secretion of the terminal complement proteins, C5-C9, by human platelets.
        Clin Immunol Immunopathol. 1989; 50: 385-393
        • George J.N.
        • Saucerman S.
        • Levine S.P.
        • et al.
        Immunoglobulin G is a platelet alpha granule-secreted protein.
        J Clin Invest. 1985; 76: 2020-2025
        • Joseph M.
        • Capron A.
        • Ameisen J.-C.
        • et al.
        The receptor for IgE on blood platelets.
        Eur J Immunol. 1986; 16: 306-312
        • Cesbron J.-Y.
        • Capron A.
        • Vargaftig B.B.
        • et al.
        Platelets mediate the action of diethylcarbamazine on microfilariae.
        Nature. 1987; 325: 533-536
        • Larsen T.
        • Sorensen M.B.
        • Olsen R.
        • et al.
        Effect of scavengers of active oxygen species and pretreatment with acetylsalicylic acid on the injury to cultured endothelial cells by thrombin-stimulated platelets.
        In Vitro Cell Dev Biol. 1989; 25: 276-282
        • Slezak S.
        • Symer D.E.
        • Shin H.S.
        Platelet-mediated cytotoxicity.
        J Exp Med. 1987; 166: 489-505
        • Worner P.
        Arachidonic acid-induced chemiluminescence of human platelets: Contribution of the prostaglandin and lipoxygenase pathways.
        Thromb Heamostas. 1981; 46: 584-589
        • Duffus P.
        • Parbtani A.
        • Frampton G.
        • et al.
        Intraglomerular localization of platelet related antigens, platelet factor 4 and β-thromboglobulin in glomerulonephritis.
        Clin Nephrol. 1982; 17: 288-297
        • Miller K.
        • Dresner I.G.
        • Michael A.F.
        Localization of platelet antigens in human kidney disease.
        Kidney Int. 1980; 18: 472-479
        • George C.R.P.
        • Slichter S.I.
        • Quadracci L.J.
        • et al.
        A kinetic evaluation of hemostasis in renal disease.
        N Engl J Med. 1974; 29: 1111-1115
        • Clark W.F.
        • Lewis M.L.
        • Cameron J.S.
        • et al.
        Intrarenal platelet consumption in the diffuse proliferative nephritis of systemic lupus erythematosus.
        Clin Sci Molec Med. 1975; 49: 247-252
        • Parbtani A.
        • Frampton G.
        • Cameron J.S.
        Platelet and plasma serotonin concentrations in glomerulonephritis. II.
        Clin Nephrol. 1980; 14: 112-123
        • Johnson R.J.
        • Guggenheim S.J.
        • Klebanoff S.J.
        • et al.
        Morphologic correlates of glomerular oxidant injury induced by the myeloperoxidase-hydrogen peroxide-halide system of the neutrophil.
        Lab Invest. 1988; 58: 294-301
        • Ito S.
        • Camussi G.
        • Tetta C.
        • et al.
        Hyperacute renal allograft rejection in the rabbit.
        Lab Invest. 1984; 51: 148-161
        • Shigematsu H.
        • Niwa Y.
        • Takizawa J.
        • et al.
        Arthus-type nephritis I. Characterization of glomerular lesions induced by insoluble and poorly soluble immune complexes.
        Lab Invest. 1979; 40: 492-502
        • Clark W.F.
        • Turnbull D.I.
        • Driedger A.A.
        • et al.
        Intrarenal insoluble immune complex formation.
        J Clin Lab Immunol. 1980; 4: 21-25
        • Johnson R.J.
        • Pritzl P.
        • Iida H.
        • et al.
        Platelet-complement interactions in mesangial proliferative nephritis in the rat.
        Am J Pathol. 1991; 138: 313-322
        • Cattell V.
        Focal mesangial proliferative glomerulonephritis in the rat caused by habu snake venom: The role of platelets.
        Br J Exp Pathol. 1979; 60: 201-208
        • Handin R.U.
        • Karabin R.
        • Boxer G.J.
        Enhancement of platelet function by superoxide anion.
        J Clin Invest. 1977; 59: 959-965
        • Del Principe D.
        • Menichelli A.
        • De Matteis W.
        • et al.
        Hydrogen peroxide has a role in the aggregation of human platelets.
        FEBS Lett. 1985; 185: 142-146
        • Clark R.A.
        • Klebanoff S.J.
        Neutrophil-platelet interaction mediated by myeloperoxidase and hydrogen peroxide.
        J Immunol. 1980; 124: 399-405
        • Kornecki E.
        • Ehrlich Y.H.
        • Egbring R.
        • et al.
        Granulocyte-platelet interactions and platelet fibrinogen receptor exposure.
        Am J Physiol. 1988; 255: H651-H658
        • Ferrer-Lopez P.
        • Renesto P.
        • Schattner M.
        • et al.
        Activation of human platelets by C5a-stimulated neutrophils: A role for cathepsin G.
        Am J Physiol. 1990; 258: C1100-C1107
        • Poelstra K.
        • Hardonk M.J.
        • Koudstaal J.
        • et al.
        Intraglomerular platelet aggregation and experimental glomerulonephritis.
        Kidney Int. 1990; 37: 1500-1508
        • Stratta P.
        • Canavese C.
        • Mazzucco G.
        • et al.
        Mesangiolysis and endothelial lesions due to peroxidative damage in rabbits.
        Nephron. 1989; 51: 250-256
        • Zucker M.B.
        • Grant R.A.
        • Alper C.A.
        • et al.
        Requirement for complement components and fibrinogen in the zymosan-induced release reaction of human blood platelets.
        J Immunol. 1974; 113: 1744-1751
        • Nunez D.
        • Charriaut-Marlangue C.
        • Barel M.
        • et al.
        Activation of human platelets through gp140, the C3d/EBV receptor (CR2).
        Eur J Immunol. 1987; 17: 515-520
        • Cosgrove L.J.
        • d'Apice A.J.F.
        • Haddad A.
        • et al.
        CR3 receptor on platelets and its role in the prostaglandin metabolic pathway.
        Immunol Cell Biol. 1987; 65: 453-460
        • Vik D.P.
        • Fearon D.T.
        Cellular distribution of complement receptor type 4 (CR4): Expression on human platelets.
        J Immunol. 1987; 138: 254-258
        • Meuer S.
        • Ecker U.
        • Hadding U.
        • et al.
        Platelet-serotonin release by C3a and C5a: Two independent pathways of activation.
        J Immunol. 1981; 126: 1506-1509
        • Wiedmer T.
        • Esmon C.T.
        • Sims P.J.
        Complement proteins C5b-9 stimulates procoagulant activity through platelet prothrombinase.
        Blood. 1986; 68: 875-880
        • Kant K.S.
        • Pollak V.E.
        • Weiss M.A.
        • et al.
        Glomerular thrombosis in systemic lupus erythematosus: Prevalence and significance.
        Medicine. 1981; 60: 71-86
        • Weiss H.J.
        • Turitto V.T.
        • Baumgartner H.R.
        Role of shear rate and platelets in promoting fibrin formation on rabbit subendothelium.
        J Clin Invest. 1986; 78: 1072-1082
        • Walsh P.N.
        Platelet-mediated coagulant protein interactions in hemostasis.
        Semin Hematol. 1985; 22: 178-186
        • Lorenzet R.
        • Niemetz J.
        • Marcus A.J.
        • et al.
        Enhancement of mononuclear procoagulant activity by platelet 12-hydroxy-eicosatetraenoic acid.
        J Clin Invest. 1986; 78: 418-423
        • Johnsen U.L.H.
        • Lyberg T.
        • Galdal K.S.
        • et al.
        Platelets stimulate thromboplastin synthesis in human endothelial cells.
        Thromb Haemostas. 1983; 49: 69-72
        • Tipping P.G.
        • Worthington L.A.
        • Holdsworth S.R.
        Quantitation and characterization of glomerular procoagulant activity in experimental glomerulonephritis.
        Lab Invest. 1987; 56: 155-159
        • Johnson R.J.
        • Alpers C.E.
        • Pritzl P.
        • et al.
        Platelets mediate neutrophil-dependent immune complex nephritis in the rat.
        J Clin Invest. 1988; 82: 1225-1235
        • Bertani T.
        • Benigni A.
        • Cutillo F.
        • et al.
        Effect of aspirin and sulindac in rabbit nephrotoxic nephritis.
        J Lab Clin Med. 1986; 107: 261-268
        • Kniker W.T.
        • Cochrane C.G.
        The localization of circulating immune complexes in experimental serum sickness.
        J Exp Med. 1968; 127: 119-135
        • Camussi G.
        • Tetta C.
        • Deregibus M.C.
        • et al.
        Platelet-activating factor (PAF) in experimentally-induced rabbit acute serum sickness: Role of basophil-derived PAF in immune complex deposition.
        J Immunol. 1982; 128: 86-94
        • Lavelle K.J.
        • Moseman A.M.
        The influence of selective thrombocytopenia on immune complex glomerulonephritis.
        J Lab Clin Med. 1978; 92: 737-749
        • Schlondorff D.
        The glomerular mesangial cell: An expanding role for a specialized pericyte.
        FASEB. 1987; 1: 272-281
        • Johnson R.J.
        • Garcia R.L.
        • Pritzl P.
        • et al.
        Platelets mediate glomerular cell proliferation in immune complex nephritis induced by anti-mesangial cell antibodies in the rat.
        Am J Pathol. 1990; 136: 369-374
        • Stahl R.A.K.
        • Thaiss F.
        • Kahf S.
        • et al.
        Immune-mediated mesangial cell injury-Biosynthesis and function of prostanoids.
        Kidney Int. 1990; 38: 273-281
        • Jorgensen L.
        • Glynn M.F.
        • Hovig T.
        • et al.
        Renal lesions and rise in blood pressure caused by adenosine diphosphate-induced platelet aggregation in rabbits.
        Lab Invest. 1970; 23: 347-357
        • Pukerson M.L.
        • Heinrich-Joist J.
        • Yates J.
        • et al.
        Inhibition of thromboxane synthesis ameliorates the progressive kidney disease of rats with subtotal renal ablation.
        in: Proc Natl Acad Sci USA. 82. 1985: 193-197
        • Zoja C.
        • Perico N.
        • Bergamelli A.
        • et al.
        Ticlopidine prevents renal disease progression in rats with reduced renal mass.
        Kidney Int. 1990; 37: 934-942
        • MacKay K.
        • Striker L.J.
        • Stauffer J.W.
        • et al.
        Transforming growth factor-β. Murine glomerular receptors and responses of isolated glomerular cells.
        J Clin Invest. 1989; 83: 1160-1167
        • Border W.A.
        • Okuda S.
        • Languino L.R.
        • et al.
        Transforming growth factor-β regulates production of proteoglycans by mesangial cells.
        Kidney Int. 1990; 37: 689-695
        • Border W.A.
        • Okuda S.
        • Languino L.R.
        • et al.
        Suppression of experimental glomerulonephritis by antiserum against transforming growth factor β1.
        Nature. 1990; 346: 371-374
        • Henson P.M.
        • Cochrane C.G.
        Immunological induction of increased vascular permeability. I. A rabbit passive cutaneous anaphylactic reaction requiring complement, platelets, and neutrophils.
        J Exp Med. 1969; 129: 153-164
        • Ward P.A.
        • Macconi D.
        • Sulavik M.C.
        • et al.
        Rat neutrophil-platelet interactions in oxygen radical-mediated lung injury.
        in: UCLA Symposium on Molecular and Cellular Biology, New Series. 82. 1988: 83-98
        • Johnson R.J.
        • Klebanoff S.J.
        • Ochi R.F.
        • et al.
        Participation of the myeloperoxidase-H2O2-halide system in immune complex nephritis.
        Kidney Int. 1987; 32: 342-349
        • Johnson R.J.
        • Couser W.G.
        • Alpers C.E.
        • et al.
        The human neutrophil serine proteinases, elatase and cathepsin G, can mediate glomerular injury in vivo.
        J Exp Med. 1988; 168: 1169-1174
        • Kanwar Y.S.
        • Linker A.
        • Farquhar M.G.
        Increased permeability of the glomerular basement membrane to ferritin after removal of glycosaminoglycans (heparan sulfate) by enzyme digestion.
        J Cell Biol. 1980; 86: 688-693
        • Larsen E.
        • Celi A.
        • Gilbert G.E.
        • et al.
        PADGEM protein: A receptor that mediates the interaction of activated platelets with neutrophils and monocytes.
        Cell. 1989; 59: 305-312
        • Bravo R.
        • Frank R.
        • Blundell P.A.
        • et al.
        Cyclin/PCNA is the auxiliary protein to DNA polymerase-δ.
        Nature. 1987; 326: 515-517
        • Hawrylowicz C.M.
        • Santoro S.A.
        • Platt F.M.
        • et al.
        Activated platelets express IL-1 activity.
        J Immunol. 1989; 143: 4015-4018
        • Silver B.J.
        • Jaffer F.E.
        • Abboud H.E.
        Platelet-derived growth factor synthesis in mesangial cells: Induction by multiple peptide mitogens.
        in: Proc Natl Acad Sci USA. 86. 1989: 1056-1060
        • Iida H.
        • Alpers C.E.
        • Seifert R.
        • et al.
        Platelet-derived growth factor (PDGF) and PDGF receptor (PDGF-R) expression in mesangial proliferative nephritis (MesPGN).
        J Am Soc Nephrol. 1990; 1 (abstr): 526
        • Johnson R.J.
        • Iida H.
        • Alpers C.E.
        • et al.
        Expression of smooth muscle cell phenotype by rat mesangial cells in immune complex nephritis.
        J Clin Invest. March 1991; (in press)