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Inhibition of C3 and IgG proteolysis enhances phagocytosis of Porphyromonas gingivalis.

In the face of an apparently competent immune response to Porphyromonas gingivalis, it is unclear how P. gingivalis evades the immune response and persists in human periodontitis. Particularly germane may be its ability to resist phagocytosis by degrading and not binding serum opsonins. In our study, the resistance by invasive (W83 and A7436) and noninvasive (ATCC 33277) P. gingivalis strains to phagocytosis by human neutrophils was compared with their C3- and IgG-proteolytic activity. The ability of opsonic human serum antibody to inhibit C3 proteolysis was also evaluated. Our results indicate that the more phagocytosis-resistant invasive strains accumulate less 125I-C3 than the noninvasive strain; moreover, invasive strains degrade complement C3 in a dose-dependent manner, inhibitable by rabbit antiserum or adult periodontitis serum. Opsonization and C3 accumulation on strain A7436 were both facilitated by pretreatment with rabbit antiserum, certain adult periodontitis sera, protease inhibitors (p-chloromercuriphenylsulfonic acid, N alpha-p-tosyl-L-lysine chloromethyl ketone, diisopropylfluorophosphate), heat (60 degrees C, 15 min), and were Mg2+ dependent. The sera from 13 human subjects with or without periodontitis were assayed for antibody titers to P. gingivalis (ELISA units), opsonic activity (% of PMN engaged in phagocytosis) and enhancement of C3 accumulation. Statistically significant associations were observed between % of PMN engaged in phagocytosis and % C3 accumulation, between % of PMN engaged in phagocytosis and ELISA units and between % C3 accumulation and ELISA units. Degradation of purified rabbit IgG, but not specific antibody-containing rabbit IgG by P. gingivalis A7436 was observed, and was inhibited by diisopropyl fluorophosphate (DFP) or cold (2 degrees C). Our data suggest that C3 and IgG cleavage by P. gingivalis proteases are inhibitable by antibody and are contributory factors in, but are not the sole determinants of, phagocytosis resistance.

Antibodies, Bacterial↗

Improved suppression of circulating complement does not block acute vascular rejection of pig-to-rhesus monkey cardiac transplants.

At present, acute vascular rejection (AVR) remains a primary obstacle inhibiting long-term graft survival in the pig-to-non-human primate transplant model. The present study was undertaken to determine whether repetitive injection of low dose Yunnan-cobra venom factor (Y-CVF), a potent complement inhibitor derived from the venom of Naja kaouthia can completely abrogate hemolytic complement activity and subsequently improve the results in a pig-to-rhesus monkey heterotopic heart transplant model. Nine adult rhesus monkeys received a heterotopic heart transplant from wild-type pigs and the recipients were allocated into two groups: group 1 (n = 4) received repetitive injection of low dose Y-CVF until the end of the study and group 2 (n = 5) did not receive Y-CVF. All recipients were treated with cyclosporine A (CsA), cyclophosphamide (CyP) and steroids. Repetitive Y-CVF treatment led to very dramatic fall in CH50 and serum C3 levels (CH50 < 3 units/C3 remained undetectable throughout the experiment) and successfully prevented hyperacute rejection (HAR), while three of five animals in group 2 underwent HAR. However, the continuous suppression of circulating complement did not prevent AVR and the grafts in group 1 survived from 8 to 13 days. Despite undetectable C3 in circulating blood, C3 deposition was present in these grafts. The venular thrombosis was the predominant histopathologic feature of AVR. We conclude that repetitive injection of low dose Y-CVF can be used to continuously suppress circulating complement in a very potent manner and successfully prevent HAR. However, this therapy did not inhibit complement deposition in the graft and failed to prevent AVR. These data suggest that using alternative pig donors [i.e. human decay accelerating factor (hDAF)-transgenic] in combination with the systemic use of complement inhibitors may be necessary to further control complement activation and improve survival in pig-to-non-human primate xenotransplant model.

Animals↗

Unusual complement-mediated hemolytic kinetics at low ionic strength.

The dilution of human serum in relatively low ionic strength buffer (mu = 0.070) caused the spontaneous activation of C1 and a limited activation of C4 and C3 in the fluid phase. The unusual degree of activation of the complement system in the fluid phase suggested that the optimal functions of complement-regulatory systems such as C1 inhibitor might be reduced. As a function of the time of preincubation (PI) of diluted serum at 37 degrees C, under low ionic strength conditions, an unusual complement-mediated hemolytic kinetic pattern was observed upon adding sensitized erythrocytes (EA). For a 1:36 dilution of human serum, there was an initial progressive decrease in complement hemolytic activity (from 3 to 20 min PI, phase I), followed by an apparent functional reversal (increase) in hemolytic activity (20-50 min PI, phase II) and finally a gradual irreversible depletion of the hemolytic activity (after 50 min PI, phase III). This hemolytic pattern could only be adequately demonstrated using a kinetic assay which followed the course of lysis of EA in the presence of low dilutions of human serum as a complement source. Others might have missed this observation due to the use of end-point titration methods which required the use of relatively elevated serum dilutions at the time of EA addition. Mechanisms which governed the variations in hemolytic activity at low ionic strength were not clear. Speculatively, partial consumption of early complement components, generation of free C1q and generation of complement fragments might have accounted for the initial decrease in the hemolytic activity observed in phase I. The apparent functional reversal of hemolytic activity observed in phase II might have involved a critical depletion of C1 inhibitor which occurred secondary to C1 inhibitor binding to C1 (activated by low ionic strength effects) and to the C1 activated at the time of EA addition. Without sufficient regulation, a rapid unrestricted C1-mediated complement activation could have occurred, which resulted in a rapid deposition of complement on the EA. Finally, prolonged exposure of serum to low ionic strength effects appeared to induce a significant complement consumption, which caused a time-dependent irreversible depletion of complement hemolytic activity (phase III). Excess exogenous C1 inhibitor, when co-incubated with diluted serum at low ionic strength, reversed the time-dependent effects of low ionic strength and enhanced the subsequent specific complement-mediated hemolytic activity as compared to controls.(ABSTRACT TRUNCATED AT 400 WORDS)

Complement Activation↗

Increased systemic activation of neutrophils but not complement in preeclampsia.

OBJECTIVE: To investigate whether neutrophils and systemic complement are activated in pregnancies complicated by preeclampsia more than in normal pregnancies. METHODS: We measured native complement components and activation products in plasma by enzyme immunoassays in 19 women with uncomplicated pregnancies, 15 with preeclampsia before cesarean deliveries, and 16 nonpregnant women. Neutrophil activation was measured by specific enzyme immunoassays for myeloperoxidase and lactoferrin. RESULTS: Myeloperoxidase was significantly higher in women with preeclampsia (197 microg/L, 95% confidence interval [CI] 94, 646) than in women with uncomplicated pregnancies (124 microg/L, 95% CI 70, 289; P =.009), whereas lactoferrin did not differ between groups. C4 was decreased in preeclamptic women (0.16 g/L, 95% CI 0.07, 0.48) compared with women with uncomplicated pregnancies (0.21, 95% CI 0.10, 0.30, P <.001). There were no differences for the other native complement components. There was a significant decrease in C1rs-C1 inhibitor, 13 AU/mL (95% CI 9, 34) versus 19 (95% CI 13, 38) (P < or =.001) in normal pregnant women compared with nonpregnant women. There also was an increase in C3, C4, C9 (data not shown), C4bp, 132% (95% CI 94%, 161%) versus 91% (95% CI 57%, 128%); C3bc (7.4 AU/mL, 95% CI 4.2, 10.7) versus 4.8 AU/mL (95% CI 3.2, 7.3) and C4bc (8.6 AU/mL, 95% CI 5.7, 14.0) versus 3.5 AU/mL (95% CI 2.2, 6.7) in normal pregnant women compared with nonpregnant women (P < or =.001). CONCLUSION: Neutrophil activation in preeclampsia was shown by systemic increases in myeloperoxidase. Except for a decrease in C4, systemic complement activation could not be detected in preeclampsia.

Adult↗

Mechanisms of effects of complement inhibition in murine collagen-induced arthritis.

OBJECTIVE: To determine the mechanisms of amelioration of collagen-induced arthritis (CIA) in DBA/1J mice by inhibition of complement activation. METHODS: Mice received 2 intradermal injections of bovine type II collagen (CII), on days 0 and 21. From day 21 (immediately after the second injection of CII) through day 35, mice received intraperitoneal injections of either phosphate buffered saline (PBS), a monoclonal mouse antibody to murine C5 (anti-C5 antibody), or the C3 convertase inhibitor Crry-Ig. RESULTS: On days 30 and 32, the clinical disease activity score was lower in mice treated with anti-C5 antibody than in those treated with Crry-Ig. Histopathologic evidence of joint damage was 75% lower in the mice treated with anti-C5 antibody than in those treated with either PBS or Crry-Ig. Spleen cells from mice receiving either form of complement inhibition exhibited decreased CII-stimulated proliferation, whereas increased proliferative responses were exhibited by lymph node cells from mice treated with Crry-Ig. Treatment with anti-C5 antibody decreased production of IgG1 anticollagen antibody, while production of IgG2a antibody was inhibited by both complement inhibitory treatments. CII-stimulated spleen cells from anti-C5-treated mice produced lower levels of tumor necrosis factor alpha (TNFalpha) and interleukin-10 (IL-10) compared with those from mice treated with Crry-Ig. Lower steady-state messenger RNA (mRNA) levels for TNFalpha, interferon-gamma (IFNgamma), IL-18, and IL-6 were observed in the joints of anti-C5-treated mice, and for IFNgamma and IL-6 in mice receiving Crry-Ig, all in comparison with PBS-treated mice. However, mRNA levels for IL-1beta and TNFalpha were lower in the joints after treatment with anti-C5 compared with Crry-Ig. CONCLUSION: These results indicate that inhibition of complement in CIA leads to decreased production of IgG2a antibody and suppressed CII-induced spleen cell proliferation. The greater inhibitory effects on CIA of anti-C5 antibody in comparison with Crry-Ig may be attributable primarily to decreased levels of IL-1beta and TNFalpha mRNA in the joints.

Animals↗

Immune complex independent activation of complement, C1s secreted from hamster embryo malignant fibroblasts, Nil2C2 in serum free culture medium.

Antibody independent activation of complement C1s was examined by immunoblot analysis using an antibody against a synthetic peptide of hamster C1s L chain. Approx. 50% of C1s secreted from hamster embryo malignant fibroblasts Nil2C2 was functionally active in its two-chain form in the serum free culture medium. In contrast, no active C1s was found in a culture medium of hamster embryo fibroblasts (HEF). Active C1s was detectable, however, in the culture medium after HEF became a cell line. The immune complex independent activation of C1s was also observed in rat cell lines but not in secondary rat embryo fibroblasts. C1s in a membrane fraction of Nil2C2 was a proenzyme form and was not activated by incubation of the membrane itself suggesting that C1s was activated after secretion. The activation of C1s was not inhibited by human C1 inhibitor (C1-INH), benzamidine or soy bean trypsin inhibitor (SBTI) but was inhibited by leupeptin, nitrophenyl guanidinobenzoate and DFP. Our results suggest that C1s is activated either by a serine proteinase(s) other than those reported to cleave C1s or by an activator which directly stimulates autoactivation of C1s.

Amino Acid Sequence↗

Potassium cyanide protects Escherichia coli from complement killing by the inhibition of C3 convertase activity.

The exact mechanism by which deposited C5b-9 complexes kill Gram-negative bacteria is unclear. It has been proposed that during complement activation the membrane attack complex triggers an energy dependent process in Gram-negative bacteria that mediates destruction of the inner membrane. This observation in part resulted from the survival of Gram-negative bacteria that were incubated with an uncoupler (DNP) or an inhibitor (KCN) of oxidative phosphorylation during complement activation. In a reexamination of this issue we employed potassium cyanide (KCN) to block energy dependent pathways and observed a dose dependent inhibition of C9 uptake on E. coli J5 during serum incubation, suggesting that cyanide was interfering with complement activation. To verify the effect on complement activation we chose specifically to study the effects of KCN on the C3 convertase of the classical pathway. Sensitized sheep erythrocytes were employed as our model system. This system allowed us to construct a series of stable intermediates that were used to test the effect of cyanide on the formation and activity of precursors of the classical pathway C3 convertase. The data illustrate that the concentrations of potassium cyanide that inhibit complement killing of J5 also inhibit C3 convertase activity on sensitized sheep erythrocytes. The results of this study refute the principal observation made by other investigators, that potassium cyanide protects bacteria from complement killing by inhibiting bacterial energy dependent pathways that spark inner membrane destruction. A better scenario is that the organisms survive because cyanide inhibits complement activation.

Animals↗

A study of optimal reaction conditions for an assay of the human alternative complement pathway.

The optimal conditions for performance of a sensitive functional assay for the human alternative complement pathway were studied. The serum dilution causing 50% lysis of rabbit erythrocytes in magnesium EGTA buffer is designated the APH50 titer. Optimal reaction conditions for the assay were pH 7.2, incubation temperature 37 degrees C, incubation time 60 minutes, and magnesium concentration 0.002 M. Lowering the ionic strength of the buffer from 0.150 M to 0.0125 M increased APH50 titers nearly 2.5-fold, but decreased the reproducibility of titers. Significant fluid-phase conversion of C3 at 37 degrees C in low ionic strength buffer was demonstrated by crossed immunoelectrophoresis. Using the optimal reaction conditions, in normal ionic strength buffer the mean APH50 +/- SD for 45 normal adults was 25.3 +/- 5.7 U/mL. Heparin, an inhibitor of the alternative pathway, decreased APH50 by 50% at a concentration of 100 U heparin/mL serum, and totally abolished alternative pathway hemolytic activity at 1,000 U heparin/mL serum, while lowering CH50 titers to a much lesser degree. When increasing doses of zymosan were used for complement activation in vitro, the per cent APH50 depletion at low doses of zymosan was at least twice the per cent depletion of CH50 or antigenic P, B, and C3. A striking dichotomy between nearly complete APH50 depletion and normal or near normal CH50 and hemolytic C4 levels was documented for a human burn patient and for a baboon infused with a lethal dose of Escherichia coli lipopolysaccharide. Therefore, we documented a substantially greater sensitivity of APH50 than of conventional complement determinations for detecting complement consumption by alternative pathway activators.

Adult↗

Complement inhibitors and immunoconglutinins in ulcerative colitis and Crohn's disease.

The serum concentrations of the complement inactivators C1INH, C3bINA and beta 1H have been determined in patients with ulcerative colitis and Crohn's disease and their correlation with C3 and properdin factor B examined. The incidence of immunoconglutinins (1K) in these patients was investigated. Raised serum concentrations of C1INH and C3bINA have been found in patients with active disease, but no significant alteration was found in serum concentration of beta 1H. An increasing incidence of positive 1K titres was found with increased length of disease history. These results suggest continuing complement activation in these diseases.

Colitis, Ulcerative↗

Purification and partial characterization of human and porcine C3a anaphylatoxin.

C3a anaphylatoxin is a protein fragment generated enzymatically in serum during activation of the third component of complement (C3). A four-step procedure is described for the purification of human and porcine C3a anaphylatoxins from their respective sera after activation with inulin. Because serum carboxypeptidase rapidly inactivates C3a, the inhibitor epsilon-aminocaproic acid (EACA) was added during C3 activation, thus permitting isolation of fully active C3a anaphylatoxins directly from serum. A 2000-fold purification of C3a was achieved with an average 30% recovery assuming total conversion of C3 during treatment of serum with inulin. Human C3a anaphylatoxin obtained through the action of the C3 activating enzyme of the "alternate" pathway appeared nearly identical with the C3a obtained from isolated C3 after treatment with the C4,2 enzyme of the "classical" pathway or with trypsin. Comparisons were made between various properties of human and porcine C3a anaphylatoxins. The molecular weights differed only slightly. Electrophoresis on a cellulose acetate strip at pH 8.6 indicated a difference of approximately one net charge between human and porcine C3a, with the human anaphylatoxin exhibiting the more basic behavior. Although the amino acid compositions are similar, significant differences exist. The most marked difference was the total absence of threonine residues in porcine C3a. The NH2-terminal sequences of 20 amino acid residues were examined; homology existed for 16 of the 20 positions. Although partial analysis of the primary structure of human and porcine C3a indicates approximately 80% homology, no immunological cross-reactivity between the anaphylatoxins could be detected with antisera produced to either human or porcine C3a. In spite of the structural differences, the biological activities of porcine and human C3a were essentially identical. Smooth muscle contraction, increase in vascular permeability, and release of histamine from mast cells were similarly induced by equal amounts of anaphylatoxin from either human or porcine origin. Porcine C3a, like human C3a, was shown to contain a COOH-terminal arginyl residue essential for smooth muscle contraction and for induction of histamine release from mast cells. The sequence adjacent to the COOH-terminal arginine was Leu-Ala-Arg-COOH for both humans and porcine C3a. Current evidence suggests common mechanisms exist for the generation of C3a in various animal species and that the two known C3 activating enzymes in serum exhibit trypsin-like specificity.

Amino Acid Sequence↗

Circulating immune complexes associated with decreased complement-mediated inhibition of immune precipitation in sera from patients with bacterial endocarditis.

The sera of patients with bacterial endocarditis frequently contain high levels of circulating immune complexes. In in vitro assays these sera have been shown to be deficient in the complement mediated inhibition of immune precipitation (immune complex solubilization) although C3 and C4 levels were often normal. The deficiency is due to the presence of a factor which also inhibits the ability of normal serum to solubilize immune complexes. This inhibitor is possibly rheumatoid factor which is frequently detected in endocarditis. Serial studies on 16 patients showed the levels of immune complexes, the ability to prevent immune precipitation and rheumatoid factor to correlate with disease activity. The similarity of the findings to those in rheumatoid arthritis are discussed.

Adult↗

Identification on melanoma cells of p39, a cysteine proteinase that cleaves C3, the third component of complement: amino-acid-sequence identities with procathepsin L.

We previously identified, on normal or tumour cells, two membrane proteinases, p57 and p65, that cleave human C3, the third component of complement, thus regulating C3's biological properties. Whereas p57 was purified from human erythrocytes, p65 was identified using polyclonal anti-p57 antibodies on a human melanoma cell line resistant to complement lysis. Analysis of cell distribution of C3-cleaving proteinases established that DSm, a murine melanoma cell line, expressed a C3-cleaving proteinase distinct from p57 and p65 proteinases. Thus we purified the C3-cleaving proteinase solubilized from membranes of DSm cells. The purified proteinase, termed 'p39' on the basis of its molecular mass of 39 kDa, was identified, using specific proteinase inhibitors, as a cysteine proteinase. Anti-p39 antibodies, prepared against highly purified p39, localized the p39 C3-cleaving proteinase mainly at the cell surface and demonstrated that p39 is also secreted. Anti-p39 antibodies inhibited solubilized C3-cleaving activity. Preincubation of DSm cells with anti-p39 F(ab')2 fragments increased up to 60% complement cell susceptibility. Amino acid analysis of N-terminal and three other regions of p39 demonstrated that this C3-cleaving proteinase carries 100% identity within four regions of procathepsin L. This is the first demonstration that a melanoma cell line expresses on its surface and secretes a p39 C3-cleaving cysteine proteinase that shares sequence identities with procathepsin L. Thus the p39 cysteine proteinase represents a new member of the C3-cleaving proteinase family associated with, and/or expressed on, the cell surface.

Amino Acid Sequence↗

Biochemical investigations after burning injury: complement system, protease-antiprotease balance and acute-phase reactants.

Seventeen burned patients were investigated--Group I (n=10) with a mean burned area expressed as unit burn standard (UBS) of 69 +/- 24 and Group II (n = 7) with a mean UBS of 23 +/- 8. Blood samples were collected immediately after admission, 6-12 h after injury, during the morning and evening of day 1, and then daily for 2 weeks. This prospective study demonstrated complement activation in vivo in all burned patients, measured by C3d/C3 ratio index which was not related to the extent of the burned surface. A significant protease-antiprotease imbalance, correlated to the severity of burns, was found, leukocyte elastase was increased throughout the observation period, alpha 2-macroglobulin drastically decreased in severely burned patients, and alpha 1-proteinase inhibitor promptly decreased below the normal level in patients with more than 40 UBS. Finally, there was a delayed but then persistent acute-phase reactant protein response involving C-reactive protein, haptoglobin and alpha 1-acid glycoprotein, the concentrations of which reached a plateau on days 6 or 7.

Acute-Phase Proteins↗

Mast cells mediate complement activation after acid aspiration.

A significant role for the alternative complement pathway in acid aspiration has been demonstrated by the observation that C3 but not C4 genetic knockout mice are protected from permeability edema. Using mast cell-deficient mice (W/Wv), we tested the hypothesis that mast cells mediate complement activation after acid aspiration. Tracheostomy tubes were placed in anesthetized mice and 2 mL/kg 0.1 N HCL was instilled in the trachea. After 4 h, extravasation of 125I-albumin was used to calculate lung vascular permeability. The serum alternative complement pathway hemolytic activity was examined, and lung immunohistochemistry was performed. Lung permeability in W/Wv mice was 62% less than that of mast cell sufficient (+/+) animals and similar to +/+ mice treated with the chymase inhibitor chymostatin (65% decrease). Treatment of +/+ mice with D-PRO2,D-TRP(7,9)-Substance P, an antagonist to the neuropeptide substance P, reduced injury by 66%. Serum complement hemolytic activity was intact in injured w/wv mice and +/+ animals treated with chymostatin or dpdt-sp, but was decreased to 65% in the injured untreated +/+ group. Alveolar C3 deposition was intense in injured untreated +/+ mice but absent in the other groups. We interpret these data to indicate that mast cells mediate complement activation, via chymase degranulation, after acid aspiration. This mast cell activity likely is regulated by the release of substance P.

Animals↗

Angiotensin-converting-enzyme inhibitors suppress synthesis of tumour necrosis factor and interleukin 1 by human peripheral blood mononuclear cells.

Administration of angiotensin-converting-enzyme (ACE) inhibitors reduce vascular proliferation following endothelial injury as well as progression of renal disease in various animal models. These effects might be due to interference with cytokines such as interleukin 1 (IL-1) or tumour necrosis factor alpha (TNF) since they have been implicated in regulating the effects of vascular cell growth factors such as fibroblast- and platelet-derived growth factors. We investigated the in vitro synthesis of IL-1 and TNF from human peripheral blood mononuclear cells (PBMC) in the presence of various ACE-inhibitors. Captopril dose-dependently suppressed the IL-1 beta-induced synthesis of TNF by 74% (P < 0.01) and the IL-1 beta-induced synthesis of IL-1 alpha by 60% (P < 0.01). Cytokine synthesis induced by lipopolysaccharide was less affected. At concentrations suppressing TNF and IL-1, captopril did not reduce the synthesis of complement C3 in the same cells. Enalapril and cilazapril also suppressed cytokine-induced cytokine synthesis. Ramipril, lisinopril, perindopril and spirapril had no significant effect on TNF synthesis suggesting that the effect was not related specifically to the inhibition of ACE. Accumulation of mRNA for IL-1 and TNF were not affected by captopril, suggesting a posttranscriptional effect. We conclude that certain ACE-inhibitors suppress IL-1 and TNF synthesis at a posttranscriptional level and might therefore influence cytokine-mediated cell growth.

Angiotensin-Converting Enzyme Inhibitors↗

Factors in cobra venoms affecting the complement system.

Three constituents of cobra venoms are known to interact with complement: the "cobra venom factor" (CVF), a high-molecular-weight factor (H-CoF), and the "cobra inhibitor" (CI). CVF and CI act by forming complexes with certain complement components. In doing so, CVF replaces an endogenous component, C3b, and hence activates the alternative pathway and leads to C3 (and C5) consumption. In contrast, CI competes with essential complex formations of endogenous components and thus inhibits various reactions. Both, CVF and CI, are useful tools to study the biochemistry of complement and its pathophysiological involvements. The effect of H-CoF on complement has not yet been studied in detail.

Complement System Proteins↗

Complement activation by the surface of Plasmodium falciparum infected erythrocytes.

The surface of trophozoite-stage Plasmodium falciparum infected erythrocytes will, in the presence of immune human or owl monkey serum, activate the classical complement pathway. This was demonstrated with a sensitive, enzyme-linked immunosorbent assay which detects the complex, C1s-C1 inhibitor, which is only generated when the classical pathway is activated. A second enzyme-linked immunosorbent assay, as well as Covaspheres coated with affinity-purified anti-C3, showed that immune activation of the classical pathway by infected erythrocytes resulted in the accumulation of significant amounts of C3b on the erythrocyte surface. During the development of the parasite to the trophozoite stage, the erythrocyte membrane is also transformed from a non-activator into a surface capable of activating complement by the alternative pathway. Erythrocytes infected with trophozoite-stage parasites directly activated the alternative complement pathway. This activation led to the specific binding of an average of 15,000 C3b molecules per infected cell. Alternative pathway activation was augmented by anti-parasite antibody. Such conditions mediated the accumulation of an average of 36,000 C3b molecules per infected erythrocyte. The amounts of C3b on the infected erythrocyte surface did not lead to cellular lysis. They are, however, likely to have a major impact on the total in vivo response to this parasite.

Cells, Cultured↗

Complement-independent, peroxide-induced antibody lysis of platelets in HIV-1-related immune thrombocytopenia.

Immunologic thrombocytopenia is seen commonly in HIV-1 infection. The pathogenesis of this problem has been unclear, but it is associated with circulating immune complexes that contain platelet membrane components and anti-platelet membrane GPIIIa49-66 IgG antibodies. These antibodies cause acute thrombocytopenia when injected into mice. We now show that purified anti-GPIIIa49-66 causes platelet fragmentation, in vitro in the absence of complement, and in vivo in wild-type and C3-deficient mice. The mechanism of complement-independent platelet lysis is shown to be caused by the antibody-induced generation of H202, as indicated by in vitro experiments with inhibitors of reactive oxygen species, and in vivo studies carried out with p47phox-deficient mice. Thus, a novel mechanism of immunologic platelet clearance is described in which an anti-platelet IgG causes platelet fragmentation via the induction of reactive oxygen species.

Animals↗