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Biomedical subjects

Andrej Tarkowski

Publications and source records attributed to Andrej Tarkowski.

At least 19 recordsLinked to original sources

Extracellular mitochondrial DNA and oxidatively damaged DNA in synovial fluid of patients with rheumatoid arthritis.

We investigated whether plasma and synovial fluid (SF) samples from patients with rheumatoid arthritis (RA) contained extracellular mitochondrial DNA (mtDNA) or the oxidatively damaged DNA adduct 8-hydroxy-2'-deoxyguanosine (8-oxodG). Moreover, we correlated the laboratory findings of the patients with RA with their levels of mtDNA and 8-oxodG. SF and plasma samples from 54 patients with RA, SF from 30 non-arthritic control subjects, and plasma from 22 healthy volunteers were collected. The samples were subjected to polymerase chain reaction (PCR) using mitochondrial genomic primers, and the products were analyzed by SDS-polyacrylamide-gel electrophoresis. The intensities of the PCR-amplified bands were quantified and normalized to a reference sample. Furthermore, the SF samples were assayed by enzyme-linked immunosorbent assay for 8-oxodG. Extracellular PCR-amplifiable mtDNA was detected in the SF of 38 of 54 (70%) patients with RA, but not in any of the SF controls. PCR-amplifiable mtDNA was detected in the plasma of 30 of 54 (56%) of patients with RA and in 6 of 22 (27%) of the healthy volunteers. The levels of mtDNA in the plasma and SF samples of patients with RA were significantly higher (P < 0.0001) than in the respective control samples. The presence of both mtDNA and 8-oxodG in SF was significantly correlated with the presence of rheumatoid factor in the patients with RA. Extracellular mtDNA and oxidized DNA were detected in the SF of the great majority of patients with RA, but were absent or present at low levels in the control SF. These findings indicate that endogenous nucleic acid compounds might participate in joint inflammation by activating immune cells in the joints to produce proinflammatory cytokines.

8-Hydroxy-2'-Deoxyguanosine↗

High mobility group box chromosomal protein 1, a DNA binding cytokine, induces arthritis.

OBJECTIVE: To examine the potential role of high mobility group box chromosomal protein 1 (HMGB-1) in the pathogenesis of arthritis. METHODS: Mice were injected intraarticularly with 1 microg or 5 microg of HMGB-1. Joints were dissected on days 4, 7, and 28 after injection and were evaluated histopathologically and immunohistochemically. To investigate the importance of different white blood cell populations for the development of arthritis, in vivo cell depletion procedures were performed. In addition, spleen cells were cultured in the presence of HMGB-1, and nuclear factor kappaB (NF-kappaB) activation was detected by electrophoretic mobility shift assay. RESULTS: Injection of recombinant HMGB-1 (rHMGB-1) into different mouse strains resulted in an overall frequency of arthritis in 80% of the animals. The inflammation was characterized by mild to moderate synovitis and lasted for at least 28 days. The majority of cells found in the inflamed synovium were Mac-1+ macrophages, whereas only a few CD4+ lymphocytes were detected. Pannus formation was observed in some cases 7 and 28 days after HMGB-1 injection. No significant differences were found with respect to incidence and severity of arthritis between mice depleted of monocytes, granulocytes, or lacking T/B lymphocytes. However, combined removal of monocytes and neutrophils resulted in a 43% lower incidence of arthritis. Mice rendered deficient in the interleukin-1 (IL-1) receptor did not develop inflammation upon challenge with HMGB-1. In vitro data corroborate this finding, showing that rHMGB-1 activated NF-kappaB, a major pathway leading to IL-1 production. CONCLUSION: Our results indicate that HMGB-1 is not a mere expression of inflammatory responses, but on its own, it triggers joint inflammation by activating macrophages and inducing production of IL-1 via NF-kappaB activation.

Animals↗

Neuronal and astrocytic damage in systemic lupus erythematosus patients with central nervous system involvement.

OBJECTIVE: Symptoms originating from the central nervous system (CNS) frequently occur in patients with systemic lupus erythematosus (SLE). CNS involvement in lupus is associated with increased morbidity and mortality. Currently, reliable markers for activity in this condition are absent. The goal of this study was to determine the level of the light subunit of the neurofilament triplet protein (NFL) and that of glial fibrillary acidic protein (GFAP) in the cerebrospinal fluid of SLE patients with clinically verified CNS involvement and compare them with the levels in SLE patients without CNS involvement. METHODS: We assessed cerebrospinal fluid obtained from 99 patients with SLE and 99 age-matched controls for the presence of soluble molecules indicating neuronal destruction and astrogliosis-NFL and GFAP, respectively. Patients were evaluated clinically, with magnetic resonance imaging (MRI) of the brain, cerebrospinal fluid analyses, and neuropsychiatric tests. RESULTS: In the group of lupus patients with CNS involvement, intrathecal levels of NFL and GFAP were increased an average of 7-fold (P </= 0.0001) and 3-fold (P </= 0.05), respectively, compared with the levels in SLE patients without overt CNS disease. Intrathecal levels of NFL correlated significantly with cerebrospinal fluid levels of interleukin-6 (IL-6) (P </= 0.005), IL-8 (P </= 0.005), pleocytosis (P </= 0.05), the albumin ratio (P </= 0.0005), and the presence of oligoclonal IgG bands (P </= 0.005). Cerebrospinal fluid levels of both NFL and GFAP also showed a significant correlation with MRI abnormalities (P </= 0.001). Successful cyclophosphamide treatment of CNS lupus resulted in significantly decreased levels of both proteins; levels of GFAP reached those observed in healthy subjects. CONCLUSION: This study is the first to show biochemical signs of neuronal and astrocytic damage in patients with neuropsychiatric lupus. It is suggested that biochemical markers of brain damage should be used as a followup tool in this patient group.

Adolescent↗

Polarization of cytokine responses in B- and T-lymphocytes during Staphylococcus aureus infection.

The destructive course of Staphylococcus aureus arthritis is due to certain leukocytes and their products, mainly cytokines. The cellular source of cytokines mediating this inflammatory process has not been previously assessed on a protein level. Using a mouse model of hematogenously induced S. aureus infection the intracellular production of IFN-gamma, IL-4 and IL-10 in splenic B and T cells have been determined. This has enabled us to define distinct Th1 vs Th2 and Be1 vs Be2 populations of lymphocytes participating in S. aureus infection. Spleen cells were obtained before, and at different time intervals during the first week of infection and re-stimulated in vitro with staphylococcal peptidoglycan, formalin killed staphylococci and TSST-1. The different antigens used for re-stimulation gave rise to different cytokine profiles in analysed T cells (identified as CD4+) and B cells (identified as CD19+). TSST-1 acted as the most potent re-stimulator and we found that 40% of the CD4+ cells responded with IFN-gamma production, and unexpectedly almost 20% of the CD19+ cells. As to IL-4 and IL-10 production, the percentage of B cells expressing these cytokines was higher than the percentage T cells and the peak of their appearance appeared later than that of IFN-gamma. This finding indicates that Be1 cells are an important source of IFN-gamma early during the infection and that the production of the Th2 cytokines in B cells downregulates its production of IFN-gamma. In conclusion this study shows that both B and T cells contribute to the cytokine production during S. aureus infection in a complex pattern.

Animals↗

Inflammatogenic properties of bacterial DNA following cutaneous exposure.

Bacterial DNA and oligodeoxynucleotides containing cytosine-phosphate-guanosine sequences and thereby mimicking prokaryotic DNA, have recently been shown to exert potent immunostimulatory properties. As skin normally harbors bacteria, and as the bacterial content and the levels of bacterial degradation products increase during skin infection, we analyzed the potential inflammatogenic role of bacterial DNA and oligodeoxynucleotides in a mouse model of cutaneous inflammation. Bacterial DNA from Staphylococcus aureus was injected intradermally into mice and its inflammatogenic properties were compared with synthetic phosphodiester and phosphorothioate cytosine-phosphate-guanosine- or GpC-containing oligodeoxynucleotides. A peak inflammatory infiltrate in the skin was seen already 2 d after injection with either bacterial DNA or the phosphodiester cytosine-phosphate-guanosine-oligodeoxynucleotides. In contrast, nuclease-resistant phosphorothioate cytosine-phosphate-guanosine-induced dermatitis peaked 7 d after intradermal injection. The inflammatory infiltrates consisted mainly of macrophages, and depletion of this cell population resulted in a significant (p=0.0001) decrease in the severity of inflammation, which suggests that macrophages play a central part in inflammatory responses in the skin following exposure to cytosine-phosphate-guanosine-containing oligodeoxynucleotides. A significant decrease in local inflammatory infiltrate was also seen in mice with deficiencies in neutrophil or lymphocyte populations, which indicates that these cell populations may also be involved in mediating inflammatory signals after the injection of immunostimulatory DNA sequences. In summary, our results suggest that bacterial DNA is an important virulence determinant and inflammatory stimulus during skin infections.

Administration, Topical↗

Microbial superantigens as virulence factors and ways to counteract their actions.

Microbial superantigens represent a group of molecules that is able to cause massive activation of the host immune system. Human diseases originating from superantigen-secreting bacterial agents are characterized by shock, which continues to pose major health problems. Presently, the treatment of superantigen-mediated infections is limited to the administration of antibiotics and handling of the state of shock. However, the development of multiple antibiotic-resistant, superantigen-producing bacterial strains increases the threat of these infections, and prompts researchers to better understand and treat disease states in which exposure to superantigens is at least partly responsible for the outcome. In the past decade, significant understanding has been achieved regarding the molecular mechanisms of superantigen-host interactions. Based on this understanding, a variety of promising strategies directed against superantigens have been developed. In this review, we discuss some of these strategies, as well as the potential for therapeutic applications of superantigens for the benefit of the host.

Anti-Bacterial Agents↗

Fatal outcome of bacteraemic patients caused by infection with staphylokinase-deficient Staphylococcus aureus strains.

Staphylokinase (SAK) is a plasminogen-activator protein produced by Staphylococcus aureus. SAK production was evaluated in vitro in S. aureus isolates from the bloodstream of patients with lethal (n = 56) and non-lethal (n = 57) bacteraemia and from anterior nares of healthy subjects (n = 48). Most isolates (93/161) produced SAK, and 68 % of SAK-producing isolates expressed both surface-bound and secreted types of SAK. SAK production was significantly less common among isolates from patients with lethal bacteraemia (39 %) than isolates from patients with non-lethal bacteraemia (68 %) or nasal carriage isolates (67 %) (P < 0.01). After adjusting for infection with methicillin-resistant S. aureus and APACHE II score, patients infected with SAK-deficient isolates were 4.3 times more likely to have lethal bacteraemia than patients whose infecting isolate produced high levels of SAK (> or =5 microg ml(-1)), suggesting that in vitro SAK production was inversely associated with clinical outcome among patients with S. aureus bacteraemia. The high frequency of SAK production in nasal isolates and in cases with uncomplicated bacteraemia suggests that SAK may be one of the adaptive mechanisms of S. aureus symbiosis with the host.

Age Factors↗

Intraarticular release and accumulation of defensins and bactericidal/permeability-increasing protein in patients with rheumatoid arthritis.

OBJECTIVE: Defensins and bactericidal/permeability-increasing protein (BPI) are the components of the azurophilic granules of polymorphonuclear cells (PMNC) maintaining antimicrobial protection. Both these substances have been suggested to interact with the host immune system rather than merely kill invading pathogens. We assessed concentrations of BPI and a-defensins in synovial fluid (SF) and matching blood samples of patients with rheumatoid arthritis (RA). METHODS: Matching samples of SF and blood were collected from 67 patients with RA (aged 21-73 yrs) with acute joint effusion. Blood samples from 22 healthy individuals made up a control group. Concentrations of BPI and human neutrophil peptides (HNP 1-3) were measured by ELISA. The results were related to radiological signs of destructive arthritis, duration of the disease, and laboratory markers of inflammation. RESULTS: BPI and HNP concentrations in SF were 10-60 times higher than in matching blood samples (p < 0.0001). Strong correlations between BPI and HNP concentrations were found in both blood and SF. In SF, BPI and HNP concentrations correlated to white blood cell (WBC) count (p < 0.001), and were associated with erosive joint disease (p < 0.05). In contrast, WBC count, serum C-reactive protein, or rheumatoid factor were not significantly correlated to the BPI or HNP concentrations. Serum BPI concentrations were moderately but significantly increased in RA patients compared in blood to controls (p < 0.05). CONCLUSION: BPI and HNP are accumulated in the synovial cavity of patients with RA. Significant correlation between joint erosion and local occurrence of BPI and HNP suggests participation of these molecules in regulation of the destructive course of RA.

Adult↗

Current status of pathogenetic mechanisms in staphylococcal arthritis.

Interactions between staphylococci and the joint tissues of the host lead typically to rapidly progressing and highly destructive processes. Staphylococci possess a vast arsenal of components and products that contribute to the pathogenesis of joint infection. Occasionally these compounds have overlapping activities and act either in concert or alone. Host responsiveness to staphylococcal infection displays an even more complex pattern. Most of the cells and molecules that participate in the innate immune system protect the host against bacteria. However, the staphylococci have developed systems that counteract endogenous protective mechanisms. Interestingly, certain cells and molecules of the acquired immune system potentiate the severity of infection by triggering exaggerated responses to the staphylococcal danger signals. This review deals with the intricate host-bacterium interactions that occur during experimental septic arthritis, and outlines potential preventive and treatment modalities.

Animals↗

Urokinase, a constitutive component of the inflamed synovial fluid, induces arthritis.

Urokinase plasminogen activator (uPA) is an important regulator of fibrinolysis in synovial fluid. An increase of uPA activity and expression of its receptor have been reported in joints of patients with rheumatoid arthritis (RA). The aim of the present study was to assess the arthritogenic capacity of uPA and the mechanisms by which this effect is mediated. uPA was injected into the knee joints of healthy mice, and morphological signs of arthritis were assessed 4 days after the injection. The prerequisite of different leukocyte populations for the development of uPA-triggered arthritis was assessed by selective cell depletion. The inflammatory capacity of uPA was assessed in vitro. Finally, levels of uPA were measured in 67 paired blood and synovial fluid samples from RA patients. The synovial fluid from RA patients displayed higher levels of uPA compared with blood samples. Morphological signs of arthritis were found in 72% of uPA-injected joints compared with in only 18% of joints injected with PBS (P < 0.05). Synovitis was characterised by infiltration of CD4-Mac-1+ mononuclear cells, by the formation of pannus and by occasional cartilage destruction. The absence of monocytes and lymphocytes diminished the frequency of synovitis (P < 0.01), indicating an arthritogenic role of both these leukocyte populations. Synthetic uPA inhibitor downregulated the incidence of uPA-triggered arthritis by 50%. uPA induced arthritis, stimulating the release of proinflammatory cytokines IL-6, IL-1beta and tumour necrosis factor alpha. Accumulation of uPA locally in the joint cavity is a typical finding in erosive RA. uPA exerts potent arthritogenic properties and thus may be viewed as one of the essential mediators of joint inflammation.

Adult↗

Complement deficiency ameliorates collagen-induced arthritis in mice.

Collagen-induced arthritis (CIA) is an experimental animal model of human rheumatoid arthritis being characterized by synovitis and progressive destruction of cartilage and bone. CIA is induced by injection of heterologous or homologous collagen type II in a susceptible murine strain. DBA/1J mice deficient of complement factors C3 (C3(-/-)) and factor B (FB(-/-)) were generated to elucidate the role of the complement system in CIA. When immunized with bovine collagen type II emulsified in CFA, control mice developed severe arthritis and high CII-specific IgG Ab titers. In contrast, the C3(-/-) and FB(-/-) were highly resistant to CIA and displayed decreased CII-specific IgG Ab response. A repeated bovine collagen type II exposure 3 wk after the initial immunization led to an increase in the Ab response in all mice and triggered arthritis also in the complement-deficient mice. Although the arthritic score of the C3(-/-) mice was low, the arthritis in FB(-/-) mice ranked intermediate with regard to C3(-/-) and control mice. We conclude that complement activation by both the classical and the alternative pathway plays a deleterious role in CIA.

Alleles↗

Critical role of signaling through IL-1 receptor for development of arthritis and sepsis during Staphylococcus aureus infection.

IL-1R-deficient mice (IL-1R(-/-)) and their wild-type controls (IL-1R(+/+)) were i.v. inoculated with 1 x 10(7) or 10(6) Staphylococcus aureus per mouse to mimic bacterial sepsis and septic arthritis. The disease outcome was severely worsened in the IL-1R(-/-) mice as compared with IL-1R(+/+) mice. Indeed, 3 days after inoculation of 10(7) S. aureus per mouse 84% of IL-1R(-/-) mice displayed clinical signs of septicemia as compared with none of the IL-1R(+/+) mice. On day 9 after inoculation with 10(6) S. aureus per mouse 75% of the IL-1R(-/-) mice were dead as compared with none of the IL-1R(+/+) mice. Also, the number of staphylococci in circulation was 25- to 30-fold increased in IL-1R(-/-) mice as compared with IL-1R(+/+) mice, the most probable reason for the outcome. The frequency and severity of septic arthritis were significantly increased in IL-1R(-/-) mice, as compared with IL-1R(+/+) mice, following i.v. inoculation of staphylococci. This was probably due to an increased accumulation of bacteria in the joints of IL-1R(-/-) mice as compared with their wild-type controls. Interestingly, while serum levels of IL-18 in IL-1R(-/-) mice were significantly lower than in IL-1R(+/+) mice 24 h after inoculation of S. aureus, both IL-18 and IL-1beta were significantly increased in IL-1R(-/-) vs IL-1R(+/+) mice 4 days after the bacterial inoculation. In conclusion, IL-1R signaling plays a crucial role in host protection during systemic S. aureus infection as seen by the fatal outcome of S. aureus sepsis and arthritis in IL-1R-deficient mice.

Animals↗

Tissue factor as a proinflammatory agent.

Tissue factor (TF) is a transmembrane glycoprotein and the main triggering element of blood coagulation. TF expression on monocytes and endothelial cells is induced by exposure to endotoxin, tumor necrosis factor, and IL-1 and is considered to appear in consequence of inflammation. In order to assess the proinflammatory capacity of TF itself, the recombinant extracellular domain of TF was injected intra-articularly into healthy mice. To characterize the role of immune cells in the TF-induced arthritis, mice deprived of lymphocytes, neutrophils and monocytes were used. Histomorphological analysis of the joints with respect to inflammatory cell infiltration, pannus formation and erosion formation revealed development of arthritis in 80% of animals injected with TF. In most of the cases synovial proliferation was accompanied by pannus formation and cartilage destruction. Inflammatory cell infiltrate consisted of CD4-Mac1+ macrophages. Depletion of monocytes was, however, not enough to abolish inflammation. Indeed, combined deficiency of monocytes and lymphocytes was required to prevent inflammation following the injection of TF. We observed that TF induced chemokine production (MIP-1alpha and RANTES), but did not induce a proliferative response nor cytokine release by mouse spleen cells. TF has strong inflammatogenic properties mediated predominantly by monocytes and their release of chemokines. Our study shows that TF can simultaneously trigger the immune and coagulation systems.

Animals↗

Immunostimulatory DNA induces degranulation and NADPH-oxidase activation in human neutrophils while concomitantly inhibiting chemotaxis and phagocytosis.

We examined the effects of oligodeoxynucleotides (ODN) with different structures and sequences on human neutrophil function. In lymphocytes and monocytes, the CpG-mediated immunostimulation is dependent on motif content, flanking sequences and DNA backbone composition. In neutrophils, however, native phosphodiester ODN were without effect regardless of CpG content, while backbone-substituted phosphorothioate ODN (PS-ODN) modulated neutrophil function in a sequence-independent manner. The neutrophil respiratory burst and degranulation of the specific and gelatinase granules were markedly increased by PS-ODN, as was the shedding of L-selectin. In contrast, neutrophil chemotaxis and phagocytosis were inhibited by PS-ODN. In summary, PS-ODN have both stimulatory and inhibitory effects on neutrophil function. This impact of PS-ODN on neutrophil function is unique and distinct from that exerted on other immune cells, with respect to both the identity of the activating DNA molecules and the regulation of the effector functions. These findings may have implications for the development of DNA-based immunotherapy and vaccination.

Adjuvants, Immunologic↗

The presence of local and circulating autoreactive B cells in patients with advanced periodontitis.

AIM: The aim of the present investigation was to study the local (gingival) and systemic occurrence of autoreactive B cells (CD5+CD19 positive) in subjects with a high or low susceptibility to periodontitis. MATERIAL AND METHODS: 2 groups of subjects (Group A and B) susceptible to periodontitis were included. Group A consisted of 22 adult patients (7 females and 15 males, aged 24-66 years) with advanced and generalized chronic periodontitis and group B comprised 7 children (4 girls and 3 boys aged 9-13 years) with localized aggressive periodontitis. 26 periodontally healthy subjects, Group C (aged 23-80 years, mean 49.6+/-16.3), were also recruited. Assessment of clinical and radiographical characteristics of periodontal disease was performed. Gingival biopsies and peripheral blood samples were obtained and prepared for immunohistochemical analysis. Blood samples only were obtained from the periodontally healthy subjects (group C). RESULTS: The proportion of autoreactive B cells (CD5+CD19 positive) of peripheral blood lymphocytes was about 6 times higher in group A and 4 times higher in group B than in the samples from the control subjects (group C). About 40-50% of the B cells in the peripheral blood of the periodontitis susceptible individuals expressed markers for autoreactive features while less than 15% of the circulating B cells in the subjects of group C exhibited such markers. The periodontitis lesion in the adult periodontitis patients contained a substantial number of B cells out of which about 30% demonstrated autoreactive features. CONCLUSION: It is suggested that both circulating and local B cells in periodontitis susceptible individuals have a higher propensity to autoreactive properties than B cells of patients with a low susceptibility to periodontitis.

Adolescent↗

Mucosal tolerance to a bacterial superantigen indicates a novel pathway to prevent toxic shock.

Enterotoxins with superantigenic properties secreted during systemic Staphylococcus aureus infection are responsible for toxic shock. We show that intranasal administration of staphylococcal enterotoxin A (SEA), but not a recombinant SEA lacking superantigenic activity, protected mice against lethal systemic SEA challenge. Protection was superantigen specific since intranasal exposure to SEA would not protect against death caused by subsequent toxic shock syndrome toxin 1 systemic challenge. Protection was neither due to selective depletion of SEA-specific T-cell receptor Vbeta families nor due to production of neutralizing anti-SEA antibodies. Importantly, the production of interleukin 10 (IL-10) induced by "tolerization" (that is, by the induction of immunological tolerance) contributed to the observed protection against lethal superantigen-triggered disease. In support of this notion we found that (i) significantly increased levels of IL-10 in sera of "tolerized" animals (that is, animals rendered tolerant) and (ii) IL-10(-/-) mice could not be tolerized by mucosal SEA administration. Altogether, this is the first study to show that mucosal tolerance to a superantigen is readily triggered by means of immunodeviation.

Animals↗

The impact of Fcgamma receptors on Staphylococcus aureus infection.

Antibodies are known to be an important defence mechanism of the host's immune response towards certain invading microorganisms. Earlier findings have shown that antibodies directed to certain surface molecules on Staphylococcus aureus are of importance in systemic defence against infections. To further investigate the contribution of humoral immunity during intravenously induced S. aureus septicemia and arthritis we have studied the impact of IgG Fc receptors (FcgammaRs). DBA/1 mice deficient for the common gamma-chain (lacking the activating receptors, FcgammaRI, FcgammaRIII and FcepsilonRI) or the inhibitory FcgammaRII and corresponding littermate controls were used. We found that absence of FcgammaRII expression significantly increased the survival rate following severe infection with S. aureus. The FcgammaRII-/- infected mice showed increased levels of IL-10, elevated serum levels of IgG antibodies against clumping factor A and enhanced phagocytic capacity of granulocytes and monocytes, as compared to control mice. Deficiency in the common gamma-chain (FcgammaRI, III and FcepsilonRI) did not influence the arthritogenicity nor the mortality of systemic S. aureus infection. We conclude that expression of Fcgamma receptor II is of importance during S. aureus infection.

Animals↗

Phosphorotioated oligonucleotides trigger synthesis of human coagulation serine proteases.

RATIONALE: CpG containing phosphorotioated oligonucleotides (ODN) are efficient adjuvants able to enhance macrophage and B cell activities. Their impact in the generation of coagulation and fibrinolytic factors has not been analysed. OBJECTIVES: Production of coagulation and fibrinolytic proteins by human peripheral blood mononuclear cells (PBMC) treated with ODN was assessed. FINDINGS: ODN induced in vitro generation of tissue factor (TF), thrombin and plasminogen, by PBMC. Synthesis of TF and thrombin occurred mostly in monocytes, while plasminogen was produced by both monocytic and lymphocytic cell populations. Generation of these proteins stimulated by CpG was totally blocked by cycloheximide, indicating the requirement of ongoing protein synthesis. Protein synthesis was equally pronounced at stimulation with cytosine-phosphate-guanosine (CpG)- and GpC-containing ODN, and depended on the presence of the phosphorotioate moiety backbone in the ODN. Plasminogen, synthesized by monocytes and lymphocytes, was shown to be the primary product of ODN activation, leading subsequently to the expression of TF and thrombin generation. CONCLUSIONS: Our findings should be taken into consideration when assessing advantages and drawbacks of immunotherapy and gene therapy.

Adult↗