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D V Devine

Publications and source records attributed to D V Devine.

At least 37 records · Page 2Linked to original sources

Effects of prestorage white cell reduction on platelet aggregate formation and the activation state of platelets and plasma enzyme systems.

BACKGROUND: The introduction of prestorage white cell (WBC) reduction in random-donor platelet concentrates in Canada has increased the occurrence of particulate material in PCs. The effects of filtration on platelet activation state and the activation of plasma enzyme systems were assessed. STUDY DESIGN AND METHODS: Particulate material was examined by light microscopy, electron microscopy, protein electrophoresis, and biochemical analysis. Thirty PCs (10 unfiltered, 20 filtered) were examined during processing and 5-day storage for pH, platelet count and mean volume, morphology, activation marker expression, and hypotonic shock response. Complement activation, thrombin generation, and fibrinolysis were assessed by using specific enzyme immunoassays or chromogenic assays. RESULTS: By all analyses, the particulate material appeared to be platelet aggregates. Platelets exposed to WBC-reduction filters expressed a significantly higher level of activation markers CD62 and CD63, altered morphology, and increased platelet microparticles throughout the storage period than did unfiltered platelets. Complement activation at the C3 level was significantly increased in filtered units with little evidence of coagulation or fibrinolytic system activation. CONCLUSION: Exposure of platelets to filters during prestorage WBC reduction increased platelet activation and mildly increased complement activation over the levels during the storage period. These alterations can contribute to the formation of irreversible platelet aggregates during processing.

Antigens, CD↗

Role of neutrophils and alpha1-antitrypsin in coal- and silica-induced connective tissue breakdown.

Mineral dusts produce emphysema, and administration of dust to rats results in the rapid appearance of desmosine and hydroxyproline in lavage fluid, confirming that dusts directly induce connective tissue breakdown. To examine the role of neutrophils and alpha1-antitrypsin (alpha1-AT) in this process, we instilled silica or coal into normal rats or rats that had been pretreated with antiserum against neutrophils. One day after dust exposure, lavage fluid neutrophils and desmosine and hydroxyproline levels were all elevated; treatment with antiserum against neutrophils reduced neutrophils by 75%, desmosine by 40-50%, and hydroxyproline by 25%. By 7 days, lavage fluid neutrophils and desmosine level had decreased, whereas macrophages and hydroxyproline level had increased. By ELISA analysis, lavage fluid alpha1-AT levels were increased four- to eightfold at both times. On Western blot, some of the alpha1-AT appeared as degraded fragments, and by HPLC analysis, 5-10% of the methionine residues were oxidized. At both times, lavage fluid exhibited considerably elevated serine elastase inhibitory capacity and also showed elevations in metalloelastase activity. We conclude that, in this model, connective tissue breakdown is initially driven largely by neutrophil-derived proteases and that markedly elevated levels of functional alpha1-AT do not prevent breakdown, thus providing in vivo support for the concept of quantum proteolysis proposed by Liou and Campbell (T. G. Liou and E. J. Campbell. Biochemistry 34: 16171-16177, 1995). Macrophage-derived proteases may be of increasing importance over time, especially in coal-treated animals.

Animals↗

Inhibition of liposome-induced complement activation by incorporated poly(ethylene glycol)-lipids.

Complement activation causes opsonization of foreign particles leading to particle elimination from the blood. Complement-mediated opsonization of charged and large liposomes presents a fundamental problem in their use to deliver therapeutic agents in vivo. To prolong the circulation half-lives of such liposomes, complement activation must be curtailed. The aim of this study was to assess the ability of poly(ethylene glycol)-lipids (PEG-lipids) to inhibit the in vitro activation of the classical pathway of complement in human serum by anionic liposomes. Incorporation of cholesterol-PEG600 (CH-PEG600), cholesterol-PEG1000 (CH-PEG1000), or phosphatidylethanolamine-PEG2000 (PE-PEG2000) resulted in dose-dependent inhibition of C1q binding and complement activation. The dose of PEG-lipid at which complement activation was blocked was inversely related to the PEG chain length. Complement activation was strongly inhibited when 15 mole% of CH-PEG600, 10 mole% CH-PEG1000, or 5 mole% PE-PEG2000 was incorporated into 100-nm anionic liposomes. PEG-lipid incorporation into larger liposomes (240 nm) was also successful in blocking C1q binding and complement activation. Radiolabeled cholesterol-PEG approximately 1400 was prepared and used to determine both the percentage of CH-PEG incorporated into the liposomes and the percentage maintained in the liposomes in the presence of 50% human serum at 37 degrees C for up to 24 h.

Cholesterol↗

The covalent coupling of Arg-Gly-Asp-containing peptides to liposomes: purification and biochemical function of the lipopeptide.

With the advent of liposomes as drug carriers, there arises a need for efficient targeted delivery in vivo. Proteins coupled to liposomes usually yield heterogeneous products that are ill-defined both chemically and in terms of spatial orientation. We now report on the disulfide linkage to the surface of intact liposomes of a peptide representing one-half of a ligand-receptor pair. An RGD-motif-containing peptide was coupled to the phospholipid PDP-DOPE of the liposomes by a thiol-disulfide exchange. The resulting lipopeptides were amenable to definition by TLC, HPLC, and MS and found to be in a functional orientation allowing biochemical interaction with their receptor, the integrin glycoprotein IIb-IIIa.

1,2-Dipalmitoylphosphatidylcholine↗

Analysis of HLA class I and class II in Na-Dene and Amerindian populations from British Columbia, Canada.

We analyzed the distribution of HLA class II alleles and haplotypes in one Na-Dene (Athabaskan) group from British Columbia (Canada) by PCR amplification of the DRB1, DQA1 and DQB1 second exon sequences. We extended the typing of the DRB1 in an Amerindian group (Penutian) from British Columbia. The presence of the alleles DRB1* 0405, *0407 and *0410 only in Na-Dene and alleles DRB1*0408, *1301*1302, *1304, *1305, *1502 and *1601 only in Amerindians suggests separate origins of these two groups. There were fifteen different DRB1/DQA1/DQB1 haplotypes. One unique haplotype previously reported in Native Americans was found. Thirty-four per cent of Athabaskans presented Native American haplotype DRB1*1402/DQA1*0501/DQB1*0301. In addition, the results of this study are compatible with previous evidence with mitochondrial (mtDNA) polymorphisms indicating that Amerindians and Na-Dene populations derived from different migrations from Asia.

Alleles↗

Neutralization of cytomegalovirus virions: the role of complement.

Complement provides a key immunologic defense against invading pathogens; thus, a clear understanding of the interactions between cytomegalovirus (CMV) and complement may permit the development of strategies to enhance CMV neutralization. In the presence of specific anti-CMV antibodies, complement enhanced the neutralizing ability of serum by 2- to 3-fold. However, in the absence of specific anti-CMV antibodies, complement was ineffective in neutralizing CMV virions by plaque assay. Although complement alone did not mediate any neutralizing effect, CMV consumed complement activity from seronegative serum, resulting in the deposition of C3 on the virion. However, only in the presence of specific anti-CMV antibody did complement activation continue to the deposition of C9 on the virions. These results strongly suggest complement regulation by CMV virions that is modulated by anti-CMV antibody; this regulation may be attributed to three host complement regulators on the virions: CD55, CD46, and CD59.

Antibodies, Viral↗

Complement component 3 interactions with coxsackievirus B3 capsid proteins: innate immunity and the rapid formation of splenic antiviral germinal centers.

Innate immunity is central to the clearance of pathogens from hosts as well as to the definition of acquired immune responses (D. T. Fearon, and R. M. Locksley, Science 272:50-53, 1996). Coxsackievirus B3 (CVB3), a human cardiopathic virus, was evaluated for the ability to activate the alternative and classical pathway of complement. CVB3 proteins interact with complement component 3 (C3, a soluble protein effector of innate immunity) after either in vitro exposure to mouse serum or in vivo murine infection and activate the alternative pathway of complement. In addition, we demonstrate that viral antigen retention and localization in germinal centers is dependent on C3, while virus antigen retention in extrafollicular regions in the spleen is not. In vivo depletion of native C3 abolished the rapid formation of virus-specific germinal centers (by day 3 post-CVB3 infection) in the absence of serum anti-CVB3 antibodies. These studies demonstrate that innate immune mechanisms, such as C3 interaction with CVB3, are essential for splenic antiviral germinal center formation in naive (antigen nonsensitized) mice resistant (C57BL/6J strain) and susceptible (A/J strain) to CVB3-induced myocarditis.

Animals↗

The role of immunoproteins in the survival of liposomes in the circulation.

The clearance of liposomes from the circulation is mediated largely by the cells of the reticuloendothelial system. These cells recognize liposome-bound immunoproteins, particularly immunoglobulins and complement. This review addresses the state of knowledge of the plasma proteins that can initiate complement activation and antibody binding and the known interactions among these proteins and liposomes. Evidence for the involvement of immunoproteins and other molecules in the in vivo survival of liposomes is also reviewed.

Antigen-Antibody Reactions↗

Presence in peripheral blood of healthy individuals of autoreactive T cells to a membrane antigen present on bone marrow-derived cells.

Intrathymic clonal deletion is thought to be the major mechanism responsible for tolerance to nonsequestered antigens such as the ones expressed by bone marrow-derived cells. In the case of sequestered antigens that potentially do not come in contact with T cells in the thymus, it is thought that autoreactive T cells are present in periphery but are tightly regulated to prevent autoimmune disease. Indeed, autoreactive T cells to sequestered antigens can be isolated in healthy individuals. However, the presence of autoreactive T cells to nonsequestered circulating antigens had not been observed. In this report, we present evidence for the presence, in the periphery of all healthy individuals tested (n = 25), of autoreactive T cells to GpIIb-IIIa, a membrane antigen present on bone marrow-derived cells that is expressed on circulating platelets and on the cell surface of the epithelial cells of the thymic stroma early in intrauterine life. Using an in vitro T-cell proliferation assay, we have demonstrated that activation of these specific GpIIb-IIIa autoreactive alpha beta TCR+ CD4+ CD8- T cells requires internalization and processing of the GpIIb-IIIa by antigen-presenting cells and its presentation by HLA-DR class II molecules in the presence of exogenous interleukin 2 (IL-2). This indicates that some autoreactive T cells directed against membrane antigens present on bone marrow-derived cells and also expressed in the thymus are not necessarily eliminated by intrathymic deletion.

Antigen-Presenting Cells↗

Altered expression of host-encoded complement regulators on human cytomegalovirus-infected cells.

Human cytomegalovirus (HCMV)-infected cells persist in the presence of anti-HCMV antibody, suggesting that HCMV has evolved mechanisms to evade host immune defenses. Insofar as no virus-encoded complement inhibitors have been identified for HCMV, we hypothesized that HCMV infection may alter the expression of host-encoded cell surface complement inhibitors. Herein, we report that cell surface expression of two complement regulator proteins, CD55 and CD46, which are members of the regulators of complement activation (RCA) gene cluster, increased up to eightfold following infection of fibroblasts or glioblastoma cells with HCMV, but not after infection with HSV-1 or adenovirus. However, the cell surface expression of a third complement regulator, CD59, which is not a member of the RCA gene cluster, was not altered during HCMV infection. Functional studies using purified complement components demonstrated that up-regulation of CD55 suppressed the activity of cell-associated C3 convertases on HCMV-infected cells. Furthermore, increased CD55 expression protected infected cells from complement-mediated lysis, an effect which directly correlated with the length of HCMV infection. Increased expression of host-encoded complement regulator proteins may provide protection of HCMV-infected cells from the host immune response in vivo, through increasing the resistance of infected cells to complement-mediated lysis and decreasing the deposition of C3-derived products on the cell surface.

Antigens, CD↗

Complement expression on astrocytes and astrocytoma cell lines: failure of complement regulation at the C3 level correlates with very low CD55 expression.

Primary fetal human astrocytes and an astrocytoma cell line, U373-MG, expressed membrane cofactor protein (CD46), CD59, and low levels of decay-accelerating factor (CD55). Astrocyte CD55 was capable of regulating C3 deposition on the cell surface; albeit at a lower level than primary human fibroblasts. Negligible complement-mediated lysis of primary astrocytes and the U373-MG cell line was observed, even when large amount of astrocyte-specific, complement-activating antibodies were bound to the cells. Blocking the function of CD59 on astrocytes resulted in a > 90% cell lysis, while equivalent lysis of fibroblasts could only be achieved with additional blocking of CD55.

Antigens, CD↗

Platelet-associated factor XIII in platelet activation, adhesion, and clot stabilization.

Platelet-associated factor XIII provides a means by which to promote clot stabilization and platelet interaction with proteins of the coagulation and fibrinolytic pathways. In addition to its intracellular role within the platelet cytoplasm, activated factor XIII will bind to the surface of activated platelets. These platelets then participate in cell-cell or cell-clot interactions, thereby increasing the local concentration of factor XIIIa. The platelet-associated factor XIIIa may increase the amount of crosslinking in a fibrin clot, thereby contributing to the aging of the clot and the reduction in the degree of platelet binding. Clot resistance to fibrinolysis is enhanced by platelet factor XIIIa-mediated crosslinking of alpha 2-antiplasmin to fibrin. The binding of factor XIIIa to the platelet surface requires the activation of the platelet fibrinogen receptor, glycoprotein IIb-IIIa. Thus, platelet-associated factor XIIIa may be used as a marker of in vivo platelet activation. Since half of the factor XIII present in blood is provided by the platelets, it is not surprising that this form of factor XIII plays an important role in hemostasis.

Blood Coagulation↗

Coagulation factor activation in stored platelet concentrates is modulated by the platelets.

To assess alterations in coagulation proteins in stored platelet concentrates, we used a series of platelet parameters and measures of coagulation activation to compare samples collected before unit donation, during the processing of platelet concentrates (PC) from CPDA-1 blood, and in storage up to 5 days as well as stored platelet-poor plasma (PPP). Storage-dependent increases in activated partial thromboplastin time and prothrombin time were seen in both PC and PPP. However, FVII, FXI, FXII, kallikrein activity and prothrombin F1.2 levels remained unchanged in stored PC. Surprisingly, in stored PPP, significant alterations in FXII, FVII, kallikrein and prothrombin F1.2 levels were seen. Platelet morphology and surface marker studies demonstrated platelet activation during storage. These data suggest that the presence of platelets in the CLX storage container partially suppresses coagulation activation at significant cost to platelet viability.

Blood Coagulation↗

Phylogenetic analysis of mtDNA lineages in South American mummies.

Some studies of mtDNA propose that contemporary Amerindians have descended from four haplotype groups, each defined by specific sets of polymorphisms. One recent study also found evidence of other potential founder haplotypes. We wanted to determine whether the four haplotypes in modern populations were also present in ancient South American aboriginals. We subjected mtDNA from Colombian mummies (470 to 1849 AD) to PCR amplification and restriction endonuclease analysis. The mtDNA D-loop region was surveyed for sequence variation by restriction analysis and a segment of this region was sequenced for each mummy to characterize the haplotypes. Our mummies exhibited three of the four major characteristic haplotypes of Amerindian populations defined by four markers. With sequence data obtained in the ancient samples and published data on contemporary Amerindians it was possible to infer the origin of these six mummies.

Chromosome Mapping↗

The antiphospholipid syndrome: when does the presence of antiphospholipid antibodies require therapy?

To avoid wasting healthcare resources through overinvestigation in otherwise healthy people, it is important to remember that antiphospholipid antibodies (ie, lupus anticoagulant and anticardiolipin antibody) often do not signify clinical disease. However, when features of the antiphospholipid syndrome (APS) are also present, serious thrombosis may be expected. Exactly how these antibodies alter hemostasis to induce a hypercoagulable state remains unclear. Activated partial thromboplastin time may not be a reliable screening test in a minority of patients with lupus anticoagulant and is not useful in screening for anticardiolipin antibodies. When APS is strongly suspected on clinical grounds, definitive tests (ie, enzyme-linked immunosorbent assay for IgG, IgA, and IgM anticardiolipin antibodies and the dilute Russell's viper venom time test) followed by confirmatory tests (eg, for lupus anticoagulant) should be ordered. Patients with APS are at high risk for recurrent thrombosis, but questions about optimal clinical management remain unresolved. High-intensity or lifelong anticoagulation therapy should be considered in some cases. Low-molecular-weight heparin may ultimately prove to be the treatment of choice in pregnant APS patients.

Antibodies, Antiphospholipid↗

Autoreactive T cells in healthy individuals show tolerance in vitro with characteristics similar to but distinct from clonal anergy.

Peripheral tolerance to self antigens has been suspected to play an important role in the regulation of the immune response in humans since autoreactive T cells can be isolated from the peripheral blood of healthy individuals. The mechanism of this tolerance is not known, but a number of groups have shown that autoreactive T cells can be induced to proliferate in vitro by the addition of their specific antigen and exogenous interleukin (IL)-2. In this report, we present the analysis of autoreactive T cells, isolated from healthy individuals, to the autoantigen GpIIb-IIIa present on circulating bone-marrow-derived cells and on thymic epithelial cells. We found that the response of GpIIb-IIIa autoreactive T cells in vitro, when stimulated with GpIIb-IIIa, shares characteristics with the response found for anergic T cells. In response to GpIIb-IIIa, the GpIIb-IIIa-autoreactive T cells are neither able to proliferate nor produce IL-2 on their own, but do express IL-2 receptors alpha on their cell surface and produce IFN-gamma. This state of unresponsiveness can be broken by the addition of exogenous IL-2 and IL-7, as in the case of anergic T cells. However, GpIIb-IIIa-autoreactive T cells differ from anergic T cells in their capacity to be stimulated by IL-12 and by their production of IL-2 mRNA. Interestingly, once the unresponsive state to GpIIb-IIIa has been broken by the addition of IL-2, GpIIb-IIIa autoreactive T cells can produce IL-2 and proliferate when restimulated by GpIIb-IIIa alone. Altogether, these results suggest that the tolerance of GpIIb-IIIa autoreactive T cells from healthy individuals could involve post-transcriptional regulation of IL-2 expression.

Autoimmunity↗

Profibrinolytic and antifibrinolytic effects of platelets.

The pro- and antifibrinolytic effects of platelets have been reviewed periodically over the past 25 years. Review of the current publications indicates that the profibrinolytic and antifibrinolytic effects attributed to platelets are highly dependent upon the test system used. On balance, the antifibrinolytic effect appears to predominate; however, this conclusion awaits further experimentation, particularly through clinical studies clarifying the effects of platelets in therapeutic fibrinolysis.

Aspirin↗

Liposome-induced activation of the classical complement pathway does not require immunoglobulin.

We have investigated the contribution of immunoglobulin to the liposome-induced activation of complement in human serum. Liposomes containing the negatively charged phospholipids cardiolipin, phosphatidylglycerol or phosphatidylinositol, in addition to phosphatidylcholine and cholesterol, were used to activate complement in a whole serum system. The contribution of immunoglobulin was studied by comparing normal human serum (NHS) to serum depleted of IgG and IgM (DDS). Using hemolytic assays of complement function, greater concentrations of phospholipids were required to activate complement in the absence of immunoglobulins. Activation of the classical pathway was confirmed using a C1q ELISA which showed that activation was dependent on the presence of C1q and confirmed that greater concentrations of phospholipids were required to activate complement in the absence of immunoglobulins. Complement activation was also assessed using crossed immunoelectrophoresis of C3 activation fragments. Using immunoblot analysis, iC3b was detected on the surface of liposomes exposed to NHS or DDS. These studies demonstrate that when liposomes, containing anionic phospholipids at an equivalent charge to cardiolipin 20 mol%, are exposed to immunoglobulin depleted serum they become opsonized by complement proteins.

Complement Activation↗