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Sex hormone-binding globulin, androgen-binding protein, and vitamin K-dependent protein S are homologous to laminin A, merosin, and Drosophila crumbs protein.

Androgen-binding protein (ABP) and sex hormone-binding globulin (SHBG) are extracellular steroid-binding proteins that are homologous to the COOH-terminal domain of vitamin K-dependent protein S, a protein important in blood clotting. We find that the sequences of ABP, SHBG, and protein S are also similar to two basement membrane proteins, laminin and merosin, and to an integral membrane protein, Drosophila crumbs protein. These latter three proteins have important roles in regulating differentiation and development. The sequence similarity corresponds to the G domain of laminin A chain, which binds heparin and type IV collagen. Analysis of a multiple alignment of these proteins reveals one well-conserved segment corresponding to the part of SHBG that binds to its membrane receptor and another corresponding to the part of protein S that binds to C4b-binding protein. The similarities suggest that ABP, SHBG, and protein S may also have functions related to that of laminin and merosin.

Amino Acid Sequence↗

Protein S levels during the normal menstrual cycle and during estrogen therapy for premature ovarian failure.

Protein S levels have been reported to be decreased in pregnancy and with oral contraceptive use. This study monitored the effects of estrogen shifts on protein S levels. Four patients with premature ovarian failure were treated with either oral or transdermal patch estrogen replacement. Blood drawn on days 1, 14, and 28 of therapy was analyzed for estradiol, estrone, free and total protein S, and C4b-binding protein (C4b-BP) levels. Similar studies were performed on six normally cycling control patients and seven postmenopausal women. In healthy females, total levels of protein S fell from 22.1 +/- 0.73 micrograms/mL on day 1 to 19.2 +/- 1.29 micrograms/mL on day 14 (p < 0.023). Free protein S levels declined from 6.45 +/- 0.70 micrograms/mL to 5.59 +/- 0.69 micrograms/mL (p < 0.016). C4b-BP levels did not change during the normal menstrual cycle. Baseline total protein S (44.1 +/- 7.0 micrograms/mL) and C4b-BP (193 +/- 18%) levels were elevated in patients with premature ovarian failure. On oral therapy, there was a strong, negative correlation (r = -0.979, p < 0.021) between C4b-BP and estradiol levels. C4b-BP levels did not change in patients with the patch. Both estrogen therapies produced similar declines (44 to 26 micrograms/mL) in total protein S levels. In all cases, total protein S levels changed as a reciprocal function of estradiol. C4b-BP (128 +/- 6.5%) and total protein S (32.2 +/- 3.0 micrograms/mL) levels were higher in postmenopausal women than in nonmenopausal females. Free protein S levels in postmenopausal women (9.6 +/- 0.6 micrograms/mL) were normal.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Reduction in alternative complement pathway mediated C3 conversion following burn injury.

Studies were performed to further investigate an abnormality of the alternative complement pathway associated with burn injury. C3 conversion by inulin and cobra venom factor was measured in serial serum samples from 18 burned patients and in the sera from 25 normal controls. C3 conversion by both activating substances in the patients' sera was significantly decreased during 50 days postburn in comparison to C3 conversion in the normal sera. The most marked reduction in C3 conversion occurred in patients with large full-thickness injuries and infectious complications. However, the abnormality was not more severe in patients with pneumonia and bacteremia in comparison to patients with bacteremia only. It was also not predictive of fatal outcome resulting from infectious complications. Preliminary evidence was presented to suggest that the abnormality is caused by a serum inhibitor, which has an affinity for cellulose and/or is inactivated by it.

Adolescent↗

Functional assay of protein S in 70 patients with congenital and acquired disorders.

A functional assay for the selective measurement of the active form of protein S in plasma, based on the prolongation of an APTT, was previously developed. This assay is sensitive, reproducible and specific, not affected by other clotting factors including FVIII. This method was applied to the measurement of protein S activity in congenital and acquired disorders. Results of protein S activity were compared to those of total and free antigen measured by ELISA. In 30 controls, there was an excellent correlation between protein S activity and free antigen. In patients with inflammatory disease, protein S activity and free antigen were normal, despite high levels of both C4b-binding protein and total protein S antigen. In dicoumarol-treated patients, protein S activity was lower than free antigen due to the presence of acarboxylated forms. Surprisingly, in liver cirrhosis, free antigen was only slightly decreased whereas protein S activity was significantly reduced. In 23 patients with congenital deficiency, protein S activity was consistently decreased, from less than 5% to 60% and showed good correlation with the free antigen. This functional assay allows the rapid diagnosis of congenital or acquired deficiency of protein S.

Adult↗

Study of the protein S system in HIV-infected patients: acquired protein S deficiency or unsuitable assays?

The plasma protein S (PS) system was studied in 120 HIV seropositive patients (CDC classification: group II: n = 35; group III: n = 6; groups IVA, IVC2 or IVE, n = 38; groups IVB, IVC1 or IVD, n = 41). Total PS antigen and C4b-binding protein (C4b-BP) values were not significantly different from control values. Free protein S levels assessed by an immunological method in the supernatant of PEG-precipitated plasma samples (PEG-fPS) were below the normal limit in 85 patients, lower values being found in patients with advanced HIV disease. No correlation was found between PEG-fPS levels and C4b-BP or total PS levels. At least 25 patients had a low functional PS value. Low functional levels of PS were found in each clinical group although there was no difference in the distribution of functional PS values among groups. Crossed immuno-electrophoresis showed an abnormal distribution of PS in some patients, but failed to confirm the marked decrease of free PS in patients with very low PEG-fPS. An impairment of the protein S system is observed in HIV-infected patients. However, the discrepancies found in some patients among the results of the various PS-related assays should lead to a cautious interpretation concerning the incidence of PS deficiency in HIV-infected patients.

Adult↗

Reduction of myocardial infarct size after ischemia and reperfusion by the glycosaminoglycan pentosan polysulfate.

Activation of the complement system contributes to the tissue destruction associated with myocardial ischemia/reperfusion. Pentosan polysulfate (PPS), a negatively charged sulfated glycosaminoglycan (GAG) and an effective inhibitor of complement activation, was studied for its potential to decrease infarct size in an experimental model of myocardial ischemia/reperfusion injury. Open-chest rabbits were subjected to 30-min occlusion of the left coronary artery followed by 5 h of reperfusion. Vehicle (saline) or PPS (30 mg/kg/h) was administered intravenously immediately before the onset of reperfusion and every hour during the reperfusion period. Treatment with PPS significantly (p < 0.05) reduced infarct size as compared with vehicle-treated animals (27.5+/-2.9% vs. 13.34+/-2.6%). Analysis of tissue demonstrated decreased deposition of membrane-attack complex and neutrophil accumulation in the area at risk. The results indicate that, like heparin and related GAGs, PPS possesses the ability to decrease infarct size after an acute period of myocardial ischemia and reperfusion. The observations are consistent with the suggestion that PPS may mediate its cytoprotective effect through modulation of the complement cascade.

Animals↗

Prevention of graft-versus-host disease using antibody to Thy 1. A role for complement in vivo.

An in vitro assay was used to determine whether mouse complement (C') was able to lyse T cells coated with a monoclonal IgM anti-Thy-1 antibody. Using lymph node cells (LNC) as targets, it was found that antibody-coated mature T cells were efficiently lysed by serum from C57BL/6, but inefficiently lysed by serum from BALB/c mice. Serum from both strains lysed antibody-coated thymocytes, demonstrating that BALB/c serum is not deficient in one of the C' components. The lytic activity of BALB/c serum could be improved by increasing the concentration of monoclonal anti-Thy-1 used to coat the target LNC. In contrast, serum from C5-deficient A/HeJ mice was unable to lyse either of the antibody-coated target cells in vitro. These in vitro results were confirmed in vivo using a model of lethal graft-versus-host disease (GVHD) induced to minor histocompatibility antigens. In this model, GVHD occurs when lethally irradiated mice are transplanted with bone marrow plus spleen cells from H-2-identical donor mice. GVHD is prevented when T cells are removed from the cells by in vitro treatment with anti-Thy-1 antibody plus rabbit C'. As predicted by the in vitro data, C57BL/6 mice were protected from GVHD when transplanted with LP cells treated with a 1:100 dilution of anti-Thy-1 antibody, but without complement, but BALB/c recipients of antibody-coated B10.D2/nSN cells were not. When the concentration of anti-Thy-1 used to coat the donor cells was increased to 1:50, 8 of 9 recipients were protected from GVHD. In contrast, none of the C5-deficient DBA/2 recipients of anti-Thy-1 (1:50 dilution) treated B10.D2 cells were protected from GVHD. Complement-mediated lysis appears to be the primary mechanism by which T cells coated with a monoclonal IgM anti-Thy-1 antibody are functionally inactivated in vivo.

Animals↗

Inhibition of complement-mediated endothelial cell cytotoxicity by decay-accelerating factor. Potential for prevention of xenograft hyperacute rejection.

Complement plays a major role in hyperacute rejection of discordant xenografts. In immediately vascularized xenografts, such as porcine organs to humans, C activation contributes to triggering of endothelial cell activation and adhesion of leukocytes and platelets to the endothelial cells, which is followed by thrombosis and tissue necrosis. We investigated the potential utility of the membrane-associated inhibitor of C, decay accelerating factor (DAF), in the prevention of C-mediated tissue injury. We used an in vitro model of xenotransplantation consisting of porcine aortic endothelial cells incubated with human serum as the source of xenogeneic natural antibodies and C. Because C inhibitors such as DAF may be relatively species-specific, we tested whether human DAF would incorporate into porcine endothelial cells and function to inhibit cytotoxicity of such cells by human C. We found that purified radiolabeled human DAF incorporated into porcine endothelial cells in a dose-dependent manner and that human DAF very significantly protected the endothelial cells from the cytotoxic effect of human C.

Animals↗

Prolonging discordant xenograft survival with anticomplement reagents K76COOH and FUT175.

The guinea pig heart, when transplanted into the rat heterotopically, is rejected within 30 min via activation of the alternative complement pathway. Natural antibody does not contribute to rejection. This xenotransplantation model was used to assess the effect of anti-complement reagents on discordant xenograft survival. In vivo administration of K76COOH (K76) to rats induced only slight suppression of factors B and D and a marked decrease of C3, leading to the depression of ACH50 (reflecting the potency of the alternative pathway). On the other hand, FUT175 (FUT) reduced C3 activity by about 80% and inhibited factor B activity nearly 100% < 1 hr after the administration, but inhibited factor D activity only marginally. FUT abrogated ACH50 for > 6 hr. Of note, the xenograft beating time was prolonged approximately 3 times by FUT but not by K76, suggesting that direct inhibition of plasma serine protease factor B results in the complete suppression of ACH50 and graft survival. The administration of both K76 and FUT resulted in the longest graft survival, but the effects of these reagents were abolished by additional antigraft antibody. Anticomplement reagents that block factor B and C3 are therefore effective for prolongation of discordant xenograft survival when the graft rejection is associated with the complement alternative pathway.

Animals↗

Complement activation during liver transplantation.

Twelve patients with end-stage liver disease undergoing liver transplantation were studied regarding complement activation and formation of anaphylatoxins (C3a and C5a) and terminal C5b-9 complement complexes (TCC) after reperfusion of the grafted liver. Blood samples for complement variables (C1INH, C3, C4, C5, C3a, C5a, and TCC) were drawn preoperatively, before the anhepatic phase, 1 min before, and 2, 15, and 60 min after the start of reperfusion of the grafted liver. Activation of complement was observed during the operation. The C1INH, C3, C4, and C5 plasma concentrations decreased during the entire operation while the anaphylatoxin C3a and the terminal C5b-9 complement complex increased after the reperfusion of the grafted liver. Activation of complement with the formation of biologically active substances like anaphylatoxins and terminal C5b-9 complement complexes may be one explanation for circulatory complications often seen in patients undergoing orthotopic liver transplantation.

Adult↗

Donor species complement after liver xenotransplantation. The mechanism of protection from hyperacute rejection.

Hamster hearts transplanted into stable rat recipients of hamster livers (OLT rats) were hyperacutely rejected after transfer with unaltered rat antihamster hyperimmune serum (HS). This was followed by immediate liver xenograft rejection in 4 of 5 rats. In contrast, simple heat inactivation of the rat HS resulted in prolonged survival of hamster hearts to 25 days without deterioration effect in the liver xenografts. This effect was species-specific because third-party mouse heart grafts in OLT rats were hyperacutely rejected in minutes if either active or heat inactivated antimouse HS was given. In cytotoxicity experiments, the complement in OLT serum produced weak lysis of hamster lymphocytes, while efficiently doing so with mouse cell targets. Because normal hamster serum caused no lysis at all of hamster target cells, the residual low-grade lysis of OLT serum was possibly being mediated by extrahepatic sources of rat C. In conclusion, the homology of C and target cells represents a mechanism of protection that the liver confers to other organs, and that is mostly easily seen in xenografts but may be allospecifically operational with allografts as well within the limits of MHC restriction.

Animals↗

Complement-mediated pulmonary xenograft injury: studies in swine-to-primate orthotopic single lung transplant models.

BACKGROUND: The pathogenesis of acute pulmonary xenograft injury has not yet been determined. The present study evaluates the role of complement in mediating pulmonary xenograft dysfunction by using cobra venom factor (CVF) to deplete recipient complement and transgenic swine, which express human regulators of complement activation (human decay-accelerating factor [hDAF] and hCD59). METHODS: Fifteen orthotopic lung transplants were performed as follows: group I, swine-to-swine (n=5); group II, unmodified swine-to-baboon (n=3); group III, unmodified swine-to-(CVF treated) baboon (n=3); and group IV, hCD59/hDAF swine-to-baboon (n=4). Left pulmonary artery flow and pulmonary vascular resistance were measured at 30-min intervals. Serial lung biopsies were examined by light microscopy and immunofluorescence. The activation of complement was quantified by measurement of baboon plasma CH50 and C4 functional activity. RESULTS: Group II xenotransplants ceased functioning within 30 min of reperfusion. Histopathologic ab normalities included erythrocyte/platelet aggregates and hemorrhagic pulmonary edema. Groups I and IV showed excellent function throughout. hDAF/hCD59 lungs (group IV) showed trace venular fibrin plugs and moderate loss of alveolar architecture. Pretreatment with CVF (group III) was ineffective in preventing xenograft injury. CONCLUSIONS: These results characterize the fundamental features of discordant pulmonary xenotransplantation. Correction of the known defects in the regulation of heterologous complement activation was partially effective in preventing pulmonary xenograft dysfunction, suggesting that complement mediates, in part, some of the features of acute lung injury after discordant lung xenotransplantation.

Animals↗

Prolongation of heart xenograft survival in a hamster-to-rat model after therapy with a rationally designed immunosuppressive peptide.

BACKGROUND: Modification of the aminoacid sequence of peptides derived from the HLA class I heavy chain in combination with computer rational design resulted in the development of a peptide, RDP1258, with enhanced immunosuppressive activity. METHODS: We evaluated the activity of this peptide, analyzing infiltrate by immunohistology and cytokine transcripts by reverse transcriptase-polymerase chain reaction method, in a hamster-to-rat xenograft model where recipients were treated with cobra venom factor (CVF) and peptide. RESULTS: Although CVF or peptide alone had no effect, a combination of CVF/peptide RDP1258 resulted in a significant prolongation of graft survival (7.9+/-1 vs. 4.5+/-0 and 3.5+/-0 days, P<0.001). This effect was associated with an increased expression of heme oxygenase 1 (HO-1) in spleen, a significant reduced graft infiltrate, and a decrease of tumor necrosis factor-alpha mRNA transcripts (P<0.05) compared with CVF-treated recipients (1.6+/-0.07 vs. 3.3+/-0.3%, P=0.001) on day 3 after transplantation. CONCLUSION: These observations are consistent with the observation that up-regulation of HO-1 results in inhibition of immune effector functions and suggest that the peptide acts, at least partially, through HO-1 regulation.

Animals↗

Human serum-induced expression of E-selectin on porcine aortic endothelial cells in vitro is totally complement mediated.

BACKGROUND: Whereas complement is a key mediator of hyperacute xenograft rejection, its role in acute vascular rejection (AVR) is a matter of controversy. AVR is associated with de novo synthesis of endothelial cell-derived inflammatory mediators, including the leukocyte-recruiting adhesion molecule E-selectin. Here we investigate the role and mechanism of complement in human serum-induced porcine endothelial cell activation. METHODS: An in vitro xenotransplantation method was designed using porcine aortic endothelial cells stimulated with human serum in microculture wells. E-selectin expression was measured by cell-enzyme immunoassay. Complement inhibitors acting at different levels in the cascade were investigated for their effect on E-selectin expression. RESULTS: E-selectin was strongly induced by normal human serum but not by heat-inactivated serum. Compstatin, a synthetic C3 inhibitor, markedly reduced human serum-induced E-selectin expression. Purified C1-inhibitor suppressed E-selectin induction completely, indicating activation through the classical or lectin pathway. Furthermore, a monoclonal antibody (mAb) that inhibits cleavage of C5 or another mAb that blocks the function of C7, completely inhibited the expression of serum-induced E-selectin, consistent with the terminal C5b-9 complement complex being the mediator of the endothelial cell activation. Inhibition of the alternative pathway using a novel antifactor D mAb did not reduce E-selectin expression. CONCLUSION: Human serum-induced expression of porcine E-selectin is totally complement dependent, induced by a C1-inhibitor regulated pathway and mediated through the terminal complement complex. The data may have implications for therapeutic strategies, particularly of C1-inhibitor and anti-C5 mAb, to protect against endothelial cell activation and subsequent AVR of porcine xenografts.

Animals↗

Complement and complement inhibitors: their role in autoimmune and inflammatory diseases.

The role of complement in the pathogenesis of renal injury is now being confirmed with the use of knockout technology and specific inhibitors. Chronic injury, particularly of the tubules and interstitium, and local complement synthesis are emerging as potential additional targets for complement-based therapy. Strategies are being developed to prevent complement-induced injury both in transplant and in native kidneys.

Animals↗

Targeting the complement system.

Interest has blossomed in the development of complement inhibitors, in parallel with a growth in our understanding of the biology of the complement cascade. The first generation of designed inhibitors was based on naturally occurring complement receptors and regulatory molecules. These agents provided useful tools for exploring the role of complement in experimental models of disease, but may have limited therapeutic application in humans because of their short half-lives, limited bioavailability and possible antigenicity. More recently, humanized antibodies and synthetic molecules that block the activation of complement have been developed, which look as though they may overcome some of these difficulties. The possibility for precision inhibition of a limited part of the complement cascade, or for inhibition confined to a single organ, may offer effective therapeutic results, while avoiding the disadvantages of nonselective complement blockade. This review examines the recent evidence that complement inhibition will reduce tissue damage resulting from organ transplantation, ischaemia-reperfusion injury, cancer, glomerulonephritis and the use of extracorporeal circuits.

Animals↗