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Biomedical subjects

T F Lint

Publications and source records attributed to T F Lint.

At least 37 records · Page 2Linked to original sources

Activation of complement on the surface of cells infected by human immunodeficiency virus.

Cells were infected with HIV-1 and tested for C activation using a flow cytometric assay for bound C3 fragments. HIV-infected H9 cells bound increased levels of C3 using normal human serum as a C source only after cells were first incubated with serum containing anti-HIV antibody. Uninfected H9 cells or infected cells incubated with HIV-antibody negative sera did not bind C3. Although C3 bound quickly and was maximal within 10 min, modulation of bound C3 was slow with about 50% loss after 4 h. C3 binding required specific anti-HIV antibody, was blocked by EGTA, and did not occur in C2-deficient serum suggesting that binding was via the classical pathway. The HTLV-1-infected MT-4 cell line also bound high levels of C3 after coinfection with HIV. C3 binding in HIV-infected MT4 cells was also mediated via the classical pathway because it was not observed in Mg-EGTA chelated or C2-deficient sera. However, this classical pathway activation appeared to be antibody independent because it was also detected in HIV-antibody negative serum and a-gamma-globulinemic serum. This indicates that coinfection with HTLV-1 and HIV-1 can produce novel C activating conditions. No cytotoxic effect of human C for antibody-treated HIV-infected cells was observed in a chromium release assay. However, rabbit C was cytotoxic for HIV-infected cells in the absence of anti-HIV antibodies. Our results suggest that C can be activated in vivo by infected cells via specific anti-HIV antibody. The resultant C3 deposition on infected cells could have profound effects on interaction with CR-bearing cells.

Antibody-Dependent Cell Cytotoxicity↗

Neutralization of human immunodeficiency virus type 1 by complement occurs by viral lysis.

The ability of complement to inactivate human immunodeficiency virus (HIV) in the presence of specific antibody was evaluated. HIV was treated with complement and/or antibody, and then its titer was determined on the CD4+ H9 cell line. While complement alone had no effect on the HIV titer, complement plus subneutralizing levels of antibody resulted in titer reductions. Complement sources deficient in membrane attack component C5 or C8 did not inactivate antibody-treated HIV, suggesting that neutralization occurred via lysis. This possibility was investigated by assessing release of reverse transcriptase (RT) from the virion. Antibody plus complement, but neither reagent alone, released RT from HIV in a dose-dependent manner. Release of RT did not occur with C5- or C8-deficient sera, also indicating a requirement for membrane attack components. These studies show that complement can neutralize HIV via the classical complement pathway and that this neutralization occurs via C5b-9-mediated viral lysis. Thus, complement may play a major role in resistance to disease by lysing HIV and preventing infection of Fc- and complement receptor-positive cells, as well as CD4+ cells.

Antibody Formation↗

Tumor necrosis factor/cachectin. Induction of hemorrhagic necrosis in normal tissue requires the fifth component of complement (C5).

TNF induces hemorrhagic necrosis (HN) when injected into skin exposed to bacterial agents but not when injected into normal skin. In this paper, we present several lines of evidence suggesting that TNF requires the fifth component of complement (C5) to induce HN in skin exposed to bacteria. First, mouse strains that do not have C5 did not develop HN after injection of TNF and bacteria into skin. Second, plasma from C5-sufficient mice could correct the defect in these C5-deficient mice. Third, heating at 56 degrees C for 30 min inactivated the capacity of plasma to reconstitute C5-deficient mice. Fourth, CVF, which is known to inactivate complement, abrogated the capability of C5-sufficient mice to respond. Fifth, depleting plasma of hemolytic activity while generating C5a did not affect the capacity of the activated plasma to reconstitute C5-deficient mice. Finally, only the plasma fraction containing molecules of the size range of C5a reconstituted C5-deficient mice. These findings indicate that C5a and not the membrane attack complex is required for HN. Although we do not know through which mechanism C5a participates in the development of HN, we propose that the described HN response is related to a local defense mechanism in which TNF and C5a lead to the disruption of capillaries in the direct vicinity of bacteria. By this mechanism the rapid spread of bacteria or their products into the circulation is prevented. Such a tissue response is consistent with the known higher susceptibility of C5-deficient mice to bacterial infections and provides a model with which to search for the multiple steps involved in this important local defense mechanism.

Animals↗

Analysis of human C8 with monoclonal antibodies. Characterization of a monoclonal antibody that recognizes free C8 alpha-gamma subunit.

The eighth component of human C is essential for the formation of the membranolytic C attack complex. C8 has a unique structure in that two covalently linked chains, C8 alpha and C8 gamma, are associated non-covalently with the third chain, C8 beta. In order to study the structure and assembly of the C8 molecule, a panel of mAb has been produced against the C component C8. Eight of these mAb had reactivity to the C8 alpha-gamma subunit, whereas four reacted with C8 beta. One of the C8 alpha-gamma mAb, C8A2, had specificity for an epitope on the C8 alpha-chain and exhibited no cross-reactivity to any of the other terminal C components, including C8 beta. C8A2 inhibited the hemolytic activity of the C8 alpha-gamma subunit but had no effect on the activity of fluid phase whole C8 or C8 within membrane-bound C5b-8. Functional experiments suggest that C8A2 inhibits C8 alpha-gamma activity by interfering with its interaction with the C8 beta-chain. In an enzyme immunoassay using the C8A2 mAb, free C8 alpha-gamma subunit could be detected in both homozygous and heterozygous C8 beta-deficient serum. However, only low level binding was observed when homozygous C5- and C7-deficient sera were tested. Thus the mAb, C8A2, recognizes an epitope expressed on the C8 alpha-gamma subunit but not on intact C8 and can detect free C8 alpha-gamma in the presence of native C8.

Antibodies, Monoclonal↗

The terminal complement complex, C5b-9, a marker of disease activity in patients with systemic lupus erythematosus.

Concentrations of the terminal complement complex (TCC), C5b-9, were examined in 120 serum samples from 28 patients with systemic lupus erythematosus. Eleven patients with various manifestations of the disease were followed longitudinally for a 2-year period during active and inactive phases of the disease. In 9 of the 11 patients, elevations in TCC concentrations correlated with disease exacerbations. In many of these patients, C3 and C4 levels remained normal during the study and were less sensitive indicators of disease activity than were TCC concentrations. We believe that measurements of TCC are useful in monitoring patients with rheumatic diseases in which complement activation is a component.

Adult↗

Changes in respiratory burst activity during human monocyte differentiation in suspension culture.

Monocytes undergo a process of differentiation following their accumulation into extravascular spaces. This process has been examined previously by culturing monocytes and identifying changes in cell morphology, metabolism, and function over time. The present study was designed to characterize mononuclear phagocyte respiratory burst activity as related to differentiation by measuring chemiluminescence and superoxide anion generation in cultured human monocytes. Monocytes maintained in Teflon vials for up to 12 days increased in size, were positive for nonspecific esterase, and retained the ability to ingest latex particles. During culture, however, cells progressively lost their peroxidase-positive granules. When monocytes were cultured for one or five days, they elicited less than 50% of the luminol-enhanced chemiluminescence produced by fresh monocytes following PMA stimulation. By day 7, less than 20% of day 0 PMA-elicited chemiluminescence was observed. A comparable loss of serum-opsonized zymosan-induced chemiluminescence occurred during monocyte culture. Since it is recognized that luminol-enhanced chemiluminescence is, in large part, dependent upon myeloperoxidase and since differentiated mononuclear phagocytes are only minimally peroxidase-positive, cultured monocyte respiratory burst activity was also assessed by directly quantifying superoxide anion generation. When monocytes were cultured for three or five days, they elicited 38% more superoxide anion than did fresh monocytes following PMA stimulation. At day 7, PMA-induced superoxide anion release was comparable to day 0 levels. These data indicate that monocytes allowed to differentiate under nonadherent conditions maintain the ability to undergo a respiratory burst response as measured by superoxide anion release, but they concomitantly lose peroxidase-dependent luminol-enhanced chemiluminescence. In this regard, monocytes cultured in suspension metabolically resemble macrophages that have undergone differentiation within sites of inflammation.

Cell Differentiation↗

The third component of complement (C3) bound to tumor target cells enhances their sensitivity to killing by activated macrophages.

The third component of complement (C3) bound to P815 tumor cells enhanced their susceptibility to killing by Corynebacterium parvum-activated murine macrophages (M phi). Hemolytically active normal mouse serum and C5-deficient mouse serum were used to deposit complement (C) on P815 tumor cells, in the absence of exogenous antibody, by an alternative pathway mechanism. Cell-bound C3 was detected and was quantified by using a cellular enzyme-linked immunospecific assay. Activated M phi produced tumor cytolysis in a serum-free 16-hr 51Cr-release assay. The lysis of C-treated tumor cells was increased over targets treated with sera containing 10 mM EDTA, heat-inactivated mouse sera, or medium. In addition, C alone did not cause specific 51Cr release. M phi elicited by casein or PBS did not lyse any of the tumor targets tested. The increase in lysis was dependent on the dilution of serum used, and was strongly correlated with the amount of C3 detected on the tumor cells. The enhanced lysis was abrogated by incubating C3-bearing tumor cells with F(ab')2 fragments of a goat anti-mouse C3 antibody. C treatment did not alter the kinetics of tumor cell lysis, nor did it enhance the binding of the targets to effector cells. These results suggest that C may regulate M phi-mediated killing of tumor cells by increasing the lytic efficiency of M phi that are in contact with target-bound C3.

Animals↗

An enzyme-linked immunoabsorbent assay for the quantitation of the terminal complement complex from cell membranes or in activated human sera.

A sensitive and simple enzyme-linked immunoabsorbent assay (ELISA) has been developed to measure the terminal complement complex (TCC) in solution. Commercially available antibodies to the native complement (C) components C5 and C9 were used in a double antibody sandwich technique sensitive enough to detect 0.3 microgram/ml of purified TCC. The TCC was not detected in normal human serum (NHS) nor was it generated when sera from patients with a genetic deficiency of functional C5, C7, C8 beta or C9 were activated with cobra venom factor (CVF). If the C8 beta deficient serum was reconstituted with the C8 beta chain and incubated with CVF, TCC were formed and detected by the assay. In in vitro experiments, the TCC was detected in NHS activated by either the classical or alternative pathway even when there was no measurable consumption of C5, C8 or C9. In addition, adaptation of a detergent extraction procedure permitted the quantitation by the assay, of TCC which were generated on sensitized sheep erythrocyte membranes. Experiments to test sample handling conditions showed no generation of TCC in NHS after four freeze/thaw cycles and spontaneous formation only if NHS had been incubated at 37 degrees C for 48 h. The TCC in zymosan-activated NHS were stable at 37 degrees C for 1 week. Patients with C activation associated diseases such as SLE and rheumatoid arthritis had increased levels of TCC that correlated with positive clinical tests for inflammation, even though C levels were normal when measured by routine techniques. These results suggest that this ELISA will provide a valuable tool for studying the role of C in the pathogenesis of C-mediated diseases and in examining the mechanism of tissue injury in in vitro experimental systems.

Animals↗

Enhancement of human peripheral blood monocyte respiratory burst activity by aggregated C-reactive protein.

We had previously demonstrated that C-reactive protein (CRP), an acute phase reactant, when aggregated or coupled to a ligand, interacts with monocytes and certain human peripheral blood lymphocytes. The purpose of the present study, after further characterizing the binding interaction of CRP with human monocytes, was to focus on the biological response of monocytes to CRP binding. Flow cytometric analysis of human mononuclear leukocytes, following incubation with fluoresceinated heat-aggregated CRP (Agg-CRP), revealed that while greater than 70% of monocytes bound Agg-CRP, only 8% of lymphocytes demonstrated positive fluorescence. Furthermore, mean channel fluorescence values indicated that monocytes bound greater amounts of Agg-CRP per cell than did lymphocytes. Luminol-enhanced chemiluminescence (CL) was used as a measure of monocyte respiratory burst activity. Monocytes were stimulated only minimally by Agg-CRP alone; however, Agg-CRP substantially enhanced the CL response to heat-aggregated IgG. This Agg-CRP enhancing effect was selective for IgG-initiated monocyte activation, as no augmentation in CL was observed following cell stimulation with phorbol myristate acetate or serum-opsonized zymosan. These results demonstrate that aggregated CRP binds to the major proportion of human monocytes and selectively augments Fc receptor-mediated stimulation of monocyte oxidative metabolism.

C-Reactive Protein↗

Aggregated C-reactive protein binds to human polymorphonuclear leukocytes and potentiates Fc receptor-mediated chemiluminescence.

Aggregated C-reactive protein (CRP), an acute phase reactant, binds to and influences the functional activities of human mononuclear leukocytes. Our purpose was to examine the potential interactions between CRP and human polymorphonuclear leukocytes (PMNL). Binding of CRP to PMNL was examined by flow cytometry after cell incubation with fluorescein-labeled heat-aggregated CRP (Agg-CRP) or Agg-CRP and fluorescein-conjugated F(ab')2 anti-CRP antibodies. It was determined that, at an optimal dose of Agg-CRP (100 micrograms), approximately 36% of PMNL were fluorescence positive. This was in contrast to the 70% of monocytes and 8% of lymphocytes that expressed Agg-CRP binding sites. Although less than half of resting PMNL bound Agg-CRP, up to 93% of PMNL activated with 1.0 micrograms/ml of phorbol myristate acetate (PMA) expressed binding sites for Agg-CRP. Exposure to PMA similarly enhanced the amount of Agg-CRP bound per PMNL as determined by mean channel fluorescence. To evaluate whether Agg-CRP binding to PMNL could induce or modify a biologic response, respiratory burst activity was assessed by measuring luminol-enhanced chemiluminescence. Whereas Agg-CRP alone did not elicit a chemiluminescence response, Agg-CRP synergistically enhanced the chemiluminescence response induced by heat-aggregated IgG (Agg-IgG). Although this enhancing effect of Agg-CRP could be observed at both optimal and suboptimal concentrations of Agg-IgG, no enhancement of PMA or serum-opsonized zymosan-induced CL was detected. These data demonstrate that aggregated CRP binds to and selectively modulates the response of PMNL to Fc receptor-mediated activation.

C-Reactive Protein↗

Meningococcal meningitis in a women with inherited deficiency of the ninth component of complement.

A 17-year-old woman presented with acute pyogenic meningitis; Neisseria meningitidis group C was isolated from blood on culture. Complement assays demonstrated a hemolytic complement titer of 12 u/ml; individual components were normal except for C9, which was absent by both functional and antigenic analysis. Family studies were consistent with a familial C9 deficiency, autosomal co-dominant inheritance. This is the first report of the association of C9 deficiency and disseminated neisserial infection; whether this complement deficiency predisposes to the neisserial infection remains to be established.

Adolescent↗

Decreased C5b67-inhibitor activity in two families with hereditary functional deficiency of the eighth component of complement.

In addition to its role in hemolysis and host defense against Neisseria infection, the eighth component of human complement (C8) is one of several plasma proteins that are C5b67-inhibitors (C5b67-INH). The recent identification in our laboratory of two new families with hereditary deficiency of C8 provided an opportunity to study further the role of C8 as a C5b67-INH. Based on mixing and reconstitution experiments, the deficiency of C8 seemed to be due to a selective lack of the C8 beta-chain in one family and the C8 alpha-gamma subunit in the other family. Sera from individuals homozygous for the C8 abnormality were substantially deficient in C5b67-INH activity as well as totally deficient in hemolytic activity. Sera from control individuals possessed approximately 2500 C5b67-INH U/ml, whereas sera from the C8-deficient individuals had markedly depressed C5b67-INH activity, with a mean of only 428 U/ml. C5b67-INH activity was completely reconstituted in C8-deficient serum by the addition of purified human C8. We conclude that C8 constitutes the substantial majority of the C5b67-INH activity of normal human serum.

Adolescent↗

Antibody and complement in the stimulation of neutrophil chemiluminescence by Neisseria meningitidis: studies in a patient with complete deficiency of C7.

When an eight-year-old boy with a syndrome compatible with disseminated neisseria infection was found to lack C7, studies on the role of antibody and complement in the interaction of polymorphonuclear leukocytes (PMNLs) and Neisseria were initiated with use of a luminol-enhanced chemiluminescence assay. The chemiluminescent response to opsonized Neisseria meningitidis was markedly lower than the response to opsonized zymosan or Streptococcus pneumoniae but was similar to that obtained with Haemophilus influenzae type b. IgG antibody to N. meningitidis was shown to enhance the chemiluminescent response. The chemiluminescent response of PMNLs to N. meningitidis was normal when the bacteria were incubated with sera deficient in C5, C6, or C7 but was absent in serum lacking C2. Thus, both antibody and the early-acting proteins of the classical complement pathway appear to be essential for maximal stimulation of PMNL oxidative metabolism by N. meningitidis, although the late-acting components of complement are not.

Animals↗

Laboratory detection of complement activation and complement deficiencies.

The complement system is the major humoral amplification and effector mechanism of the immune system. Complement is activated in a variety of conditions, especially in immune-complex diseases. Activation can result in consumption of components involved in either the classical or the alternative complement pathway or both pathways. Such activation can be detected by laboratory analysis, quantitating specific complement component levels and measuring hemolytic function. An integrated approach to the laboratory evaluation of complement can ascertain which complement pathway is being activated, either in vivo or in vitro. Complement deficiency states are not rare, and a large enough number of such patients have now been detected for the patterns of disease susceptibility to be recognized. Since inherited deficiency of a complement protein may have dire consequences, it is important for laboratory technologists to recognize the patterns of reactivity associated with these deficiency states. The physician can then be alerted so that appropriate and effective preventive or therapeutic measures can be taken. In addition, the study of patients lacking an individual complement component has provided substantial understanding of the role of the complement system in host defense and inflammation.

Animals↗

A role for C-reactive protein in the complement-mediated stimulation of human neutrophils by type 27 Streptococcus pneumoniae.

Although C-reactive protein (CRP) has been shown to be opsonic when bound to erythrocytes, its role in bacterial phagocytosis is unclear. Chemiluminescence (CL), a measure of the metabolic stimulation of neutrophils, was used to investigate the effects of CRP and complement (C) on the interaction between phagocytes and Streptococcus pneumoniae, type 27 (Pn27). CRP binding to Pn27 was demonstrated by using radiolabeled CRP, and Scatchard analysis indicated a saturation binding of about 10(7) CRP molecules/CFU. When Pn27 was pretreated with normal human serum and added to neutrophils, the CL response observed was directly related to the number of bacteria and the amount of serum added. Although bacteria pretreated with CRP alone produced minimal CL, the addition of CRP to serum resulted in a two to 13-fold enhancement of the CL response. CRP enhancement of CL was not observed with heated serum or serum from a patient genetically lacking C2. CRP bound to Pn27 was found to cause consumption of C3 and C4 in normal human serum, indicating activation of the classical C pathway. Because CRP opsonization might provide early protection in the nonimmune host, we tested the ability of CRP to enhance opsonization in serum with markedly decreased immunoglobulin. CRP enhanced the CL response in serum from a hypogammaglobulinemic patient to between 12 and 16 times the serum control. These studies show CRP binds to Pn27 and in the presence of C enhances the opsonization of these organisms. These findings support the concept that CRP plays a protective role in bacterial infection.

Agammaglobulinemia↗