PubMed Health⌕ Search

Biomedical subjects

R van Furth

Publications and source records attributed to R van Furth.

At least 55 records · Page 3Linked to original sources

Antibody response to diphtheria, tetanus, and poliomyelitis vaccines in relation to the number of CD4+ T lymphocytes in adults infected with human immunodeficiency virus.

A prospective study of antibody production by adults infected with human immunodeficiency virus (HIV) after vaccination with T lymphocyte-dependent diphtheria toxoid, tetanus toxoid, and inactivated trivalent poliovirus vaccine was conducted. Individuals were divided into three groups according to CD4+ T-lymphocyte count: group 1 had a count of < or = 100-300 x 10(6)/L; and group 3, > 300 x 10(6)/L. After vaccination, 61%, 70%, and 73% of the individuals in groups 1, 2, and 3, respectively, developed protective titers of antibody to diphtheria toxin; the mean postvaccination antibody titer of HIV-infected individuals was significantly lower than that of healthy controls not infected with HIV. Furthermore, the mean titers of antibodies to tetanus toxin and poliovirus were significantly lower in HIV-infected individuals with CD4+ lymphocyte counts of < 300 x 10(6)/L than in controls. Of the HIV-infected vaccinees, 83%-100% were protected against tetanus and 78%-100% against polio. We conclude that HIV-infected individuals with CD4+ lymphocyte counts of < 300 x 10(6)/L have an impaired (secondary) antibody response after receipt of T lymphocyte-dependent vaccines.

Adult↗

Release of tumor necrosis factor: an innate host characteristic that may contribute to the outcome of meningococcal disease.

Tumor necrosis factor (TNF) plays a pivotal role in meningococcal disease. The TNF response to endotoxin, however, differs between individuals and can be determined in whole blood samples ex vivo. The release of TNF in whole blood samples from 50 survivors of meningococcal disease 6-58 months after hospital discharge was studied. The TNF response was higher in patients who had experienced a moderately severe disease course compared with patients with a mild course. The TNF response was low again in the survivors of fulminant disease, who on original hospital admission presented with risk factors exposing them to a high chance of mortality (50% overall). On admission, the patients who did not survive had initial TNF levels three times higher than those in survivors with a clinical disease presentation of similar severity. Overall interpretation of these findings is that the innate TNF response may contribute to the outcome of meningococcal disease.

Adolescent↗

Bordetella pertussis fimbriae bind to human monocytes via the minor fimbrial subunit FimD.

Nonopsonized Bordetella pertussis can bind to and become ingested by human monocytes. Previous studies demonstrated that mutant B. pertussis strains that lack fimbriae express a reduced adherence to monocytes. The present study was undertaken to investigate the involvement of the minor fimbrial subunit FimD in the adherence of B. pertussis to human monocytes using purified fimbriae, FimD, and strains with mutations in fimbrial genes. Flow cytometry demonstrated that purified B. pertussis fimbriae avidly bind to monocytes in a dose-dependent manner but bind less to neutrophils and hardly to lymphocytes; FimD-lacking fimbriae did not bind to monocytes. Purified fimbriae or FimD inhibited the binding of wild-type B. pertussis to monocytes in a dose-dependent manner and similarly inhibited the binding of a mutant defective in the major fimbrial subunits. It did not affect the binding of strains defective in FimD. These results prove that B. pertussis bind to human monocytes via the fimbrial minor subunit FimD.

Bacterial Adhesion↗

Effect of xanthine derivates and dexamethasone on Streptococcus pneumoniae-stimulated production of tumor necrosis factor alpha, interleukin-1 beta (IL-1 beta), and IL-10 by human leukocytes.

The present study concerns the release of the proinflammatory cytokines interleukin-1 beta (IL-1 beta) and tumor necrosis factor alpha and of the anti-inflammatory cytokine IL-10 by human leukocytes in whole blood during stimulation with Streptococcus pneumoniae and the effects of various xanthine derivates, i.e., pentoxifylline (PTX), caffeine, and theofylline, and of dexamethasone (DXM). All three xanthine derivates and DXM inhibited the release of tumor necrosis factor alpha, PTX being the most effective. PTX, theofylline, and DXM inhibited the release of IL-1 beta, but caffeine did not affect IL-1 beta release. The release of IL-10 was significantly reduced by PTX at 24 h and by caffeine at 48 h, but DXM increased the release of this cytokine. In sum, the results of this study demonstrate that DXM inhibits only the release of proinflammatory cytokines but not of the anti-inflammatory cytokine IL-10 by human leukocytes, while PTX is the most potent inhibitor of both proinflammatory and anti-inflammatory cytokines.

Caffeine↗

Role of Yops in inhibition of phagocytosis and killing of opsonized Yersinia enterocolitica by human granulocytes.

The virulence plasmid of Yersinia enterocolitica codes for the production of the outer membrane protein YadA and the secretion of several proteins, called Yops, which may play a role in the interaction between granulocytes and this bacterium. We investigated whether the expression of YadA or the secretion of Yops affected the phagocytosis and killing of opsonized Y. enterocolitica by human granulocytes. The rates of phagocytosis and killing of Y. enterocolitica by granulocytes in suspension in the presence of rabbit Yersinia antibodies and complement were determined by microbiological assays. In addition, noningested cell-adherent bacteria were differentiated from ingested yersiniae by immunofluorescence microscopy. Plasmid-bearing opsonized Y. enterocolitica was able to inhibit phagocytosis and killing by human granulocytes. The inhibition of phagocytosis was specific for the plasmid-bearing strain of Y. enterocolitica, since granulocytes were still able to phagocytose and kill Staphylococcus aureus in the presence of Y. enterocolitica. Plasmid-cured Y. enterocolitica was readily phagocytosed and killed by these cells. To investigate the role of YadA or Yops in the inhibition of phagocytosis by granulocytes, the phagocytosis of mutant strains unable to express YadA or to secrete Yops was studied. A Y. enterocolitica mutant unable to secrete Yops lost its ability to inhibit phagocytosis; a mutant expressing only YadA was readily ingested by granulocytes. These results indicate that after attachment of opsonized Y. enterocolitica to granulocytes, Yops play an important role in inhibiting the ingestion of Y. enterocolitica by human granulocytes.

Adhesins, Bacterial↗

Mycobacterial 65-kilodalton heat shock protein induces tumor necrosis factor alpha and interleukin 6, reactive nitrogen intermediates, and toxoplasmastatic activity in murine peritoneal macrophages.

The 65-kDa heat shock protein (Hsp65) is supposed to play a role in host defense against infections with various microbial pathogens and in autoimmune inflammatory disorders. These effects are thought to result mainly from an Hsp65-specific T-lymphocyte-mediated immune response that recognizes conserved epitopes. The aim of the present study was to assess whether mycobacterial Hsp65 has a direct effect on resident murine peritoneal macrophages, independent of Hsp65-sensitized T lymphocytes. Exposure of peritoneal macrophages from naive C57BL/6 mice to the mycobacterial Hsp65 in vitro induced an enhanced release of tumor necrosis factor alpha (TNF-alpha) and interleukin 6. These cells also produced large amounts of reactive nitrogen intermediates (RNI) and inhibited the intracellular proliferation of Toxoplasma gondii. Small amounts of gamma interferon acted synergistically with Hsp65. Thus, exposure of murine macrophages to Hsp65 results in activation of these cells. The acquisition of these characteristics by peritoneal macrophages occurred in the absence of sensitized T lymphocytes. Addition of anti-TNF-alpha antiserum resulted in an attenuation of the Hsp65-induced release of RNI and toxoplasmastatic activity, indicating that endogenous TNF-alpha is involved in the Hsp65-induced macrophage activation. The conclusion of this study is that in vitro exposure of peritoneal macrophages to the mycobacterial Hsp65 induces the release of proinflammatory cytokines and RNI and results in inhibition of the intracellular proliferation of T. gondii. These effects on murine macrophages occur independently of Hsp65-specific T lymphocytes. The proinflammatory effect of Hsp65 demonstrated in this study suggests that this heat shock protein may play a role in the initiation of inflammation that adds to a non-species-specific resistance in the early stages of infections.

Animals↗

Aetiology of community-acquired pneumonia: a prospective study among adults requiring admission to hospital.

BACKGROUND: The prevalence of microorganisms causing community-acquired pneumonia in patients who required admission to hospital was investigated and the percentage of cases whose aetiology remained unknown due to the study design and logistical problems estimated. METHODS: Between January 1991 and April 1993 all patients with community-acquired pneumonia admitted to six hospitals were included in the study. Aetiological diagnosis, categorised as definite, probable and possible, was based on the results of routine microbiological and serological tests. RESULTS: Three hundred and thirty four patients with a median age of 65 (range 17-92) years were enrolled in the study. The diagnosis of community-acquired pneumonia was definite in 108 cases, and probable or possible in 73 and 27 cases, respectively, including dual infections. Streptococcus pneumoniae was the predominant pathogen (27%) followed by viruses and Haemophilus influenzae (both about 8%) and Mycoplasma pneumoniae (6%). Chlamydia spp (3%) and Legionella pneumophila (2%) were less frequently detected. No diagnosis was made in 45% of the cases. With adjustment for anti-microbial therapy before admission and for other logistical considerations, it is estimated that the aetiology could have been ascertained in 65% of the cases. CONCLUSIONS: Streptococcus pneumoniae is the most frequently detected cause of community-acquired pneumonia. The inability to detect a micro-organism results mainly from the use of routine diagnostic tests and, to a lesser extent, from logistical problems or the use of antibiotics before admission.

Adolescent↗

Tumour necrosis factor, but not interferon-gamma, is essential for acquired resistance to Listeria monocytogenes during a secondary infection in mice.

Mice with a secondary Listeria monocytogenes infection eliminate the bacteria much faster and more efficiently from their organs than mice with a primary infection. During the course of a secondary infection, serum concentrations of interferon-gamma (IFN-gamma) and tumour necrosis factor-alpha (TNF) are higher than during a primary infection. The aim of the present study was to determine whether these cytokines are involved in the acquired resistance to L. monocytogenes during a secondary infection in mice. In order to neutralize cytokines, alginate-encapsulated cells, which form anti-cytokine monoclonal antibodies, were injected into the nuchal region of mice during a Listeria infection. Mice recovered from a sublethal primary Listeria infection, which acquired cell-mediated immunity, received a subcutaneous injection of anti-IFN-gamma-forming cells, or anti-TNF-forming cells, and 4 days later received an intravenous injection with 10 50% lethal dose (LD50) L. monocytogenes. The number of bacteria recovered from the liver and spleen of immune mice treated with anti-IFN-gamma-forming cells was slightly larger (approximately 1 log10) than that found for immune mice treated with anti-beta-galactosidase-forming cells, called immune control mice. The organs of immune mice treated with anti-TNF-forming cells yielded significantly more (approximately 4 log10) bacteria than those of immune control mice, more than those of immune mice treated with anti-IFN-gamma-forming cells, and comparable numbers to those of non-immune mice. Taken together, these results demonstrate that TNF is essential in acquired resistance to L. monocytogenes during a secondary infection in mice, while IFN-gamma plays a minor role.

Animals↗

Reduced toxoplasmastatic activity of monocytes and monocyte-derived macrophages from AIDS patients is mediated via prostaglandin E2.

OBJECTIVE: To establish the role of prostaglandin E2 (PGE2) formed and released by monocytes and monocyte-derived macrophages (MDM) in the reduced toxoplasmastatic activity of these cells. DESIGN: Determination of PGE2 levels in the serum of AIDS patients, the release of PGE2 by monocytes and MDM from AIDS patients, the toxoplasmastatic activity of these cells and the effect of indomethacin, an inhibitor of PGE2 synthesis, on this cell function. SETTING: Laboratory of Cellular Immunology of the Department of Infectious Diseases, University Hospital, Leiden. PARTICIPANTS: Twenty-six AIDS patients. Healthy blood donors served as controls. RESULTS: The concentration of PGE2 in the serum from AIDS patients was significantly higher compared with serum from controls. Non-stimulated monocytes and lipopolysaccharide-stimulated monocytes and MDM from AIDS patients released significantly more PGE2 than corresponding cells from the controls. The proliferation of Toxoplasma gondii in monocytes and MDM from AIDS patients was significantly higher than in the respective cells from controls. Preincubation of these cells with indomethacin resulted in a decreased proliferation of T. gondii in non-activated monocytes and MDM and in interferon-gamma-activated MDM from AIDS patients. Preincubation of monocytes from healthy donors with PGE2 resulted in a dose-dependent increase of Toxoplasma proliferation which confirms that PGE2 can reduce the toxoplasmastatic activity of monocytes. CONCLUSION: PGE2 is involved in the reduced toxoplasmastatic activity of monocytes and MDM from AIDS patients.

Acquired Immunodeficiency Syndrome↗

Antimicrobial functions of mononuclear phagocytes.

One of the major functions of mononuclear phagocytes, i.e., monocytes and macrophages, is the phagocytosis and killing of microorganisms. To obtain more insight into the pathogenesis of infectious diseases and to develop new therapies against these diseases, a better understanding of the antimicrobial mechanisms employed by mononuclear phagocytes is essential. The present review gives a short description of the mononuclear phagocyte system and summarizes various methods that are used to study the antimicrobial mechanisms of mononuclear phagocytes.

Animals↗

Cytokines and the host defense against Listeria monocytogenes and Salmonella typhimurium.

The host defense against intracellular pathogens depends largely on activation of phagocytes and is regulated by a complex network of cytokines. Modulation of this cytokine network might lead to new or additional therapies in the treatment of infections with intracellular pathogens. Therefore, insight in the role of various cytokines in the host defense against these pathogens is required. The present contribution summarizes the results of various studies on the role of different cytokines in the host defense against the intracellular bacteria Listeria monocytogenes and Salmonella typhimurium.

Animals↗

Influence of cytostatic agents on the pulmonary defence of mice infected with Klebsiella pneumoniae and on the efficacy of treatment with ceftriaxone.

The effect of cytostatic treatment on the cellular defence and the efficacy of treatment with ceftriaxone in Klebsiella pneumoniae pneumonia was studied. Mice, made monocytopenic and granulocytopenic by cyclophosphamide or monocytopenic by etoposide, were infected intratracheally with K. pneumoniae (approximately 10(4) CFU) and then treated with ceftriaxone. At various intervals, the numbers of bacteria in the broncho-alveolar lavage (BAL) fluid and in lungs homogenised after lavage were determined. Cyclophosphamide reduced the numbers of granulocytes in the BAL fluid significantly but reduced only slightly the number of alveolar macrophages at the time of inoculation, 12 and 15 h later. The number of CFU in cyclophosphamide-treated mice was higher than that in controls, being significant in the homogenised lungs at 15 h after infection. In etoposide-treated mice, the numbers of alveolar phagocytes in BAL did not differ from those in control mice, whereas the number of bacteria was lower (only significantly in BAL fluid at 15 h after infection) than that in the controls. In this short experimental infection cytostatic treatment did not affect the outgrowth of Klebsiella pneumoniae substantially or the efficacy of treatment with ceftriaxone.

Animals↗

Anti-tumor necrosis factor antibodies inhibit the influx of granulocytes and monocytes into an inflammatory exudate and enhance the growth of Listeria monocytogenes in various organs.

This study concerns the effect of anti-tumor necrosis factor (TNF) antibodies on the course of a sterile inflammatory reaction in the peritoneum and a generalized infection with gram-positive bacteria. Mice received an intravenous injection of rabbit anti-TNF serum or normal rabbit serum 24 h before an intraperitoneal injection of heat-killed Listeria monocytogenes or an intramuscular injection of live L. monocytogenes. The course of the leukocytes in blood and the peritoneal cavity was followed for 72 h; the infection was evaluated for 144 h. The results lead to the conclusion that anti-TNF inhibits the migration of granulocytes and monocytes from bone marrow to the circulation and from the circulation to the peritoneal cavity during an acute inflammation. Furthermore, treatment of mice with anti-TNF serum enhanced the growth of Listeria monocytogenes in thigh muscle, liver, and spleen. The results of this study indicate that treatment with anti-TNF antibodies can inhibit the development of a cellular inflammatory exudate and can have a deleterious effect on the course of an infection with gram-positive bacteria.

Animals↗

Antibody response to influenza, tetanus and pneumococcal vaccines in HIV-seropositive individuals in relation to the number of CD4+ lymphocytes.

OBJECTIVE: To establish when the formation of antibodies against T-lymphocyte-dependent and -independent antigens is impaired during HIV infection. DESIGN: Prospective study on antibody formation before and 30 days and 60 days after vaccination with tetravalent influenza vaccine, tetanus toxoid and pneumococcal vaccine; booster with influenza vaccine was administered 30 days after initial vaccination. SETTING: Outpatient clinic of University Hospital Leiden. PARTICIPANTS: Fifty-one HIV-infected individuals and 10 healthy controls. RESULTS: In HIV-infected individuals with < 100 x 10(6)/l CD4+ lymphocytes almost no influenza antibodies were formed; CD4+ counts between 100 and 300 x 10(6)/l correlated with suboptimal antibody formation; CD4+ counts > or = 300 x 10(6)/l yielded more individuals with protective antibody titres. Thirty days after vaccination, protective antibody titres against the four influenza strains had been achieved in 24% of all HIV-infected individuals for A/Beijing (H3N2) (controls, 90%), 59% for A/Taiwan (H1N1) (controls, 80%), 18% for B/Beijing (controls, 30%) and 37% for B/Panama (controls 90%). Booster vaccination after 1 month did not increase antibody levels. Anti-tetanus toxin antibody formation, which is also T-lymphocyte-dependent, was correlated with the number of CD4+ lymphocytes. After pneumococcal vaccination (T-lymphocyte-independent), normal antibody formation was observed in HIV-infected individuals, including those with low CD4+ counts. CONCLUSIONS: Influenza vaccination should not be administered to HIV-infected individuals with CD4+ counts < 100 x 10(6)/l; pneumococcal vaccination can be offered to all HIV-infected individuals and a tetanus toxoid booster should be administered when indicated.

Adult↗

Surface molecules involved in the adherence of recombinant interferon-gamma (rIFN-gamma)-stimulated human monocytes to vascular endothelial cells.

During an inflammatory reaction, an increased number of circulating monocytes adhere to the endothelial cells (EC) of the vessel wall. This process is mediated by molecules located on the surface of monocytes and EC. Locally released inflammatory mediators can modulate monocyte-EC interaction. In an earlier study we reported that stimulation of monolayers of cultured venous EC with rIFN-gamma enhanced their adhesiveness for monocytes. The aim of the present study was to investigate the effect of rIFN-gamma on peripheral blood monocytes with regard to the expression of surface molecules and the binding to non-stimulated or cytokine-stimulated EC. Flow cytometric analysis demonstrated that monocytes stimulated with 500 U/ml rIFN-gamma for 24 h showed increased expression of CR3 (CD11b/CD18), p150,95 (CD11c/CD18) and Fc gamma RI (CD64); the expression of LFA-1 (CD11a/CD18), L-selectin, CD14 and VLA-4 (CD49d/CD29) did not change or was slightly reduced. Upon stimulation with rIFN-gamma monocytes showed an enhanced binding to both non-stimulated or rIFN-gamma-stimulated EC. This was even more pronounced when EC had been stimulated with rIL-1 alpha for 24 h. The increased binding of rIFN-gamma-stimulated monocytes to rIL-1 alpha-stimulated EC was further analysed. Studies with MoAbs against adhesion molecules on monocytes revealed that the binding of rIFN-gamma-stimulated monocytes, but not that of non-stimulated monocytes, to rIL-1 alpha-stimulated EC was inhibited by about 30-60% with MoAbs against CD11a, CD11b, CD18, L-selectin or CD14. MoAbs against CD11c or CD49d had little or no effect. From these results, we conclude that exposure of monocytes to rIFN-gamma enhances their adhesiveness to cytokine-stimulated EC by a mechanism which involves CD11a/CD18, CD11b/CD18, CD14 and L-selectin on monocytes.

Antigens, CD↗

Mycobacterial heat-shock protein 65 induces proinflammatory cytokines but does not activate human mononuclear phagocytes.

The 65 kDa heat-shock protein (Hsp65), a well-conserved and immunodominant antigen which elicits a cellular and humoral immune response, may play a role in host defence against invading microorganisms and autoimmune disorders. The aim of the present study was to assess the effects of Hsp65 on the functional activities of human mononuclear phagocytes in the absence of lymphocytes. Incubation with Hsp65 resulted in an enhanced release of TNF-alpha and IL-1 beta by human monocytes and monocyte-derived macrophages (MDM). The amount of cytokines released by these cells in response to Hsp65 was similar to that released in response to IFN-gamma together with LPS. Incubation with ovalbumin did not stimulate the release of these cytokines. In vitro stimulation of monocytes with Hsp65 enhanced the membrane expression of complement receptor III but did not influence either the expression of Fc gamma-receptor I and HLA class-II antigens or the release of reactive oxygen intermediates. Therefore, Hsp65-stimulated monocytes cannot be considered to be activated according to classical criteria. The release of the proinflammatory cytokines TNF-alpha and IL-1 beta by human mononuclear phagocytes in response to Hsp65 indicates that this protein can contribute to both host defence and tissue damage in inflammatory lesions characterized by an abundant expression of Hsp65.

Antigens, Surface↗

Bacteriostatic activity of BCG/PPD-activated macrophages against Mycobacterium fortuitum does not involve reactive nitrogen or oxygen intermediates.

Mycobacteria preferentially reside in resident macrophages whereas activated macrophages are presumed to eliminate the bacteria effectively. The aim of the present study was to determine the antibacterial activities of resident and activated murine peritoneal macrophages against Mycobacterium fortuitum and the intracellular mechanisms involved. After phagocytosis M. fortuitum could not be killed by either BCG/PPD-activated and IFN-gamma-activated macrophages and resident macrophages. The mycobacteria did not multiply in BCG/PPD-activated macrophages and the rate of proliferation of M. fortuitum in IFN-gamma-activated macrophages was only slightly inhibited compared to that in resident macrophages. Experiments with selective inhibitors of the production of reactive nitrogen intermediates (RNI) and reactive oxygen intermediates (ROI) demonstrated that these factors are not essential for the mycobacteriostatic activity of BCG/PPD-activated macrophages. After phagocytosis of M. fortuitum, BCG/PPD-activated and IFN-gamma-activated macrophages produced substantial amounts of both RNI and ROI. No correlation was found between the levels of these intermediates and the proliferation of M. fortuitum in the macrophages. In conclusion, BCG/PPD-activated macrophages are bacteriostatic, but not bacteriocidal for M. fortuitum and the former does not involve reactive nitrogen and oxygen intermediates.

Animals↗