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Biomedical subjects

R van Furth

Publications and source records attributed to R van Furth.

At least 289 records · Page 16Linked to original sources

Regulation of monocyte precursor cell proliferation by two endogenous factors.

The rather narrow variation in the number of mononuclear phagocytes in blood and tissues under steady-state conditions attests to a fine tuning mechanism regulating monocyte production and distribution. Some factors, such as CSF, prostaglandins, and lactoferrin, which are thought on the basis of in vitro findings to control homeostasis of the mononuclear phagocyte system, are reviewed, confirmation of the physiologic role of these factors will require in vivo studies. Under conditions leading to an increased demand for macrophages in tissues, large numbers of monocytes are produced in the bone marrow. Two endogenous factors, i.e. the factor increasing monocytopoiesis (FIM) and the monocyte production inhibitor (MPI), have been found to regulate monocytopoiesis in vivo during an inflammation. FIM occurring in the circulation during the initial phase of the inflammatory reaction is a protein that has no colony-stimulating activity, is cell-line specific, and stimulates the mitotic activity of the promonocytes and probably also the proliferation of the monoblasts. Macrophages produce and secrete FIM. MPI occurs in the circulation during the second phase of an inflammation. Although with the present assays these factors are only demonstrable during inflammation, which indicates that FIM and MPI are regulators of monocytopoiesis under increased demand, their possible role in control of homeostasis under normal steady-state conditions is not yet clear.

Animals↗

Membrane stimulation and intracellular killing by monocytes.

The present paper reviews our recent studies concerning the intracellular killing of bacteria by human monocytes and compares the results with those found for circulating granulocytes. The findings show that optimal intracellular killing of catalase-positive and catalase-negative bacteria is only reached during interaction of the Fc part of IgG and complement component C3b with their specific receptors in the membrane of the phagocytes. Similar stimulation was found during interaction of plant lectins and their specific sugar moieties in the cell membrane. The studies permit the general conclusion that optimal intracellular killing of micro-organisms requires membrane stimulation, which occurs after triggering of certain receptors.

Blood Bactericidal Activity↗

The current view on the origin of pulmonary macrophages.

In the present contribution the current view on the origin of macrophages is briefly summarized. Recent studies on the kinetics of pulmonary macrophages in the normal steady state and during an inflammatory reaction induced by heat-killed BCG applied intravenously or by aerosol are reported in more detail, and the effect of glucocorticosteroids on the kinetics of these cells is described. The results support the general conclusion that pulmonary macrophages derive mainly from circulating monocytes, exclude the existence of an interstitial pool of dividing precursors cells, and provide evidence that the limited local production of pulmonary macrophages is the result of division of mononuclear phagocytes recently derived from the circulation.

Animals↗

Role of granulocytes in experimental Streptococcus sanguis endocarditis.

We investigated the role of granulocytes during the induction and course of experimental Streptococcus sanguis endocarditis in rabbits by depleting blood granulocytes with nitrogen mustard. The induction of the endocarditis was not influenced by granulocytopenia: the 50% infectious dose was 5.4 X 10(4) colony-forming units in normal and granulocytopenic rabbits. However, granulocytopenia influenced the curse of the endocarditis, as shown by a significant increase in the number of colony-forming units per gram of vegetation (P less than 0.02) from 24 to 72 h after the injection of 10(5) colony-forming units of S. sanguis. This rise did not occur in the control rabbits. Furthermore, bacteremia was significantly higher in the granulocytopenic rabbits (P less than 0.05) during the first 48 h compared with the control rabbits. This was not because of altered clearance of the streptococcus inoculum or seeding of streptococci from extracardiac bacterial foci. We concluded that granulocytes have no measurable effect on the induction of S. sanguis endocarditis, but during the course of the endocarditis, granulocytes keep the endocardial infection in check.

Agranulocytosis↗

Characteristics of human monocytes cultured in the Teflon culture bag.

Blood monocytes from healthy volunteers were isolated by Ficoll-Isopaque centrifugation and cultured (together with lymphocytes) in medium 199 with 20% heat-inactivated newborn calf serum in a Teflon culture bag. Quantifiable data on survival showed that up to 21 days of culture, approximately 40% of the initial number of monocytes were still viable. Such cultures could be maintained for more than 8 weeks without refeeding. The monocytes exhibited the morphology of macrophages after 5-7 days of culture, and increased in size during culture. Less than 1% of the cells became giant cells even after long culture periods. Almost all cultured monocytes were positive for alpha-naphthyl butyrate esterase, whereas the peroxidase-positive granules disappeared during the first week of culture. After long culture times increasing amounts of lysozyme and angiotensin-converting enzyme were detected in the culture supernatants. Phagocytosis of staphylococci did not decrease appreciably during culture, and the same holds for intracellular killing of these bacteria. Chemotactic activity decreased during culture, whereas the chemokinetic response of the monocytes persisted.

Cell Movement↗

Phagocytosis and intracellular killing by peripheral blood monocytes of patients with monocytic leukemia.

This article concerns a study on the endocytic functions of circulating monocytes from 12 patients with acute or chronic monocytic leukemia. The results show that phagocytosis and intracellular killing of Staphylococcus aureus are impaired in only two patients and that the opsonic activity of the serum of all patients is normal. With respect to the intracellular killing of ingested Staphylococcus aureus, an interesting phenomenon was found in that the cells of patients with monocytic leukemia proved to be in a state of activation, as shown by the finding that patients' monocytes with normal phagocytosis killed about 64% of the ingested bacteria in the absence of extracellular stimulation by serum factors. When extracellular serum was present, the mean killing index rose to only 69%. This is unlike the situation seen in monocytes from healthy donors, where no killing occurs in the absence of extracellular serum and extracellular stimulation by serum factors is mandatory for optimal intracellular killing.

Acute Disease↗

Stimulation of the intracellular killing of Staphylococcus aureus by monocytes: regulation by immunoglobulin G and complement components C3/C3b and B/Bb.

The intracellular killing of Staphylococcus aureus by human monocytes requires continuous stimulation by extracellular serum factors interacting with the cells via membrane binding sites. At least 75% of the intracellular killing in the presence of fresh serum was accounted for by the combined stimulatory activities of IgG, C3/C3b, and B/Bb. C3b is a more potent stimulator than C3, and Bb stimulates the killing to the same degree as B. The stimulation of intracellular killing by C3 and C3b occurs by interaction of the stable binding site of this molecule with the C3b receptor in the monocyte membrane. The stimulation of intracellular killing by B and Bb is most probably mediated via a binding site on these proteins interacting with a receptor site in the monocyte membrane. Both complement receptors, i.e., for C3b and B, are pronase sensitive. However, only the C3b receptor can be inhibited by (Fab')2 fragments of anti-C3 receptor antibodies, indicating that the binding sites for C3/C3b and B/bb are different.

Blood Bactericidal Activity↗

Culture of human bone marrow in the teflon culture bag: identification of the human monoblast.

The proliferation of human bone marrow cells was studied in a liquid culture system without colony-stimulating factor. Bone marrow cells suspended in medium containing horse serum and fetal calf serum were incubated in the Teflon culture bag. During the first week there was an increase in the number of blast cells and early cells of the granulocytic series, both of which showed a high 3H-thymidine labeling index. The total number of mononuclear phagocytes increased during the first two weeks of culture. A number of characteristics of the cultured cells (alpha-naphthyl butyrate esterase, N-acetyl-DL-alanyl alpha-naphthyl esterase, Fc receptors, and phagocytosis) were determined. It was not feasible to recognize promonocytes and monoblasts with light microscopy, but with electron microscopy and the use of peroxidatic activity as marker, monoblasts and promonocytes were identified. The monoblast is a round cell with a few surface microextensions, a large nucleus, and few cytoplasmic granules. The nuclear envelope, the rough endoplasmic reticulum, and the granules show peroxidatic activity.

Bone Marrow Cells↗

Origin and kinetics of pulmonary macrophages during an inflammatory reaction induced by intravenous administration of heat-killed bacillus Calmette-Guérin.

This report gives a quantitative description of the kinetics of the pulmonary macrophages and their direct precursors during the acute inflammatory reaction in the lungs induced by intravenous injection of heat-killed bacillus Calmette-Guérin (BCG) into specific-pathogen-free mice. After BCG injection, the total number of pulmonary macrophages isolated by lavage and subsequent enzyme digestion of lung tissue increased to 225% of normal within 12 h and, after a minor decrease, rose to a maximum of 250% of normal at 96 h, followed by a decrease to 150% at 144 h, the end of the observation period. The number of circulating monocytes doubled in the first 48 h and stayed close to that level. In vivo and in vitro labeling with [3H]-thymidine showed that an influx of monocytes transforming into pulmonary macrophages was mainly responsible for the population increase. A temporary increase in the number of locally dividing pulmonary macrophages--manifested by an increased in vitro labeling index, reaching a maximum of 9.6% 72 h after BCG injection--made a minor contribution to the population increase. All pulmonary macrophages were classified according to morphological criteria as alveolar-macrophage-like (AML) or non-alveolar-macrophage-like (NAML), and their respective characteristics were established. The in vivo labeling data showed NAML to represent exudate macrophages derived from circulating monocytes entering the interstitial tissue, and these cells changed morphologically into AML upon entering the alveolar hypophase. This mechanism was confirmed by the finding that the interstitially deposited BCG were found first inside NAML and later in AML. The in vivo labeling data showed that local production was mainly a result of division of macrophages that were morphologically identical with normal alveolar macrophages. The former cells, however, derived most probably recently from the circulation, because the turnover of the total population was very high before local macrophage production became maximal. In mice treated with HC before the injection of BCG, this population increase was absent, because of virtual abolition of the initial monocyte influx and absence of the increased local production of macrophages. Calculations showed that the monocyte influx in the first 48 h amounted to approximately 4 x 10(6) cells, i.e., eight times that found in the normal steady state, and that the efflux of pulmonary macrophages in that period amounted to approximately 3.5 x 10(6) cells, i.e., seven times the normal efflux. The local production over the total period of 144 h was only three times that found normally. The results of these quantitative studies show that the increase of the pulmonary macrophage population during an acute inflammation is brought about mainly by monocyte influx and to a minor extent by a temporary increased local production of macrophages. Disposal of interstitially deposited BCG occurred by phagocytosis by local macrophages and the subsequent efflux of the latter.

Animals↗

Current view of the mononuclear phagocyte system.

The present communication discusses the origin of monocytes and macrophages and gives new mathematical approach to the analysis of results obtained in studies on cell kinetics. It has been shown that the great majority of the macrophages derive from circulating monocytes, whereas the remainder arise by division of immature mononuclear phagocytes in the tissues. However, these dividing cells too originate in the bone marrow and have recently arrived in the tissues. The turnover time of tissue macrophages appears to be of the order of 1 to 5 weeks, which is shorter than had previously been calculated. During an inflammatory response, monocyte production in the bone marrow is regulated by humoral factors that stimulate or inhibit the mitotic activity of promonocytes and their precursors. Whether such factors are also present during the normal steady state is not yet certain.

Animals↗

Characteristics and functions of monocytes and promonocytes in monocytic leukemia.

The characteristics of mononuclear phagocytes (promonocytes and bone-marrow and blood monocytes) of 27 patients with acute or chronic monocytic leukemia were studied. The percentages of promonocytes with peroxidase and esterase activity and of cells with Fcgamma and C3b receptors showed some divergence from those found in normal individuals. The phagocytic activity of monocytes and their ability to kill ingested Staphylococcus aureus were not decreased in this group of patients. The 3H-thymidine-labeling index of the promonocytes did not differ greatly from normal values, which indicates that the percentage of dividing promonocytes had not increased. The very low labeling index of the circulating monocytes means that these cells do not divide and therefore cannot be blast cells or monoblasts.

Bone Marrow↗

Functions of granulocytes after allogeneic bone marrow transplantation.

The phagocytosis and intracellular killing by granulocytes as well as the opsonizing capacity of the serum were studied in 13 patients who had undergone allogeneic bone marrow transplantation. Phagocytosis was normal in all patients. A moderately impaired opsonic activity of the serum was found in two patients, who were investigated within 30 days after the transplantation. The intracellular killing was less than control values in two patients. In one patient this was probably due to the existence of a split chimerism.

Adolescent↗

Selective antimicrobial modulation of human microbial flora: infection prevention in patients with decreased host defense mechanisms by selective elimination of potentially pathogenic bacteria.

To reduce the frequency and severity of bacterial infection, selective antimicrobial modulation (SAM) was applied in 39 patients with severely decreased host defense mechanisms. The objective was to eliminate potentially pathogenic aerobic microorganisms with minimal disturbance of the normal anaerobic bacterial flora. Elimination of potentially pathogenic aerobic microorganisms was easily accomplished in patients not infected at hospitalization. The anaerobic flora seemed to be undisturbed, and selection of or overgrowth with resistant microorganisms did not occur. The microbiologic results of the SAM regimen correlated with the incidence of infection. Only three major infections occurred in 23 patients who were free of potentially pathogenic microorganisms; 10 major infections occurred in 16 patients who were not free of potential pathogens. Seven of these 10 infections were present at hospitalization. The incidence of major infections was 47% in the patients on the SAM regimen and 82% in a group of control patients with a similar risk of infection.

Adolescent↗

Kinetics of phagocytosis and intracellular killing of Staphylococcus aureus and Escherichia coli by human monocytes.

The kinetic patterns of the phagocytosis and intracellular killing of Staphylococcus and Escherichia coli by monocytes were investigated separately to acquire more insight into the total process, i.e. from the ingestion to the death of the micro-organisms. Phagocytosis proved to be dependent on: (1) both the bacteria-to-monocyte ratio and the monocyte concentration; a concentration of at least 5 x 10(5) monocytes/ml proved necessary for the measurement of ingestion, whereas the rate of ingestion was found to be proportional to the number of extracellular bacteria until a maximum rate is reached, (2) the serum concentration in the incubation medium, which influenced both the rate of phagocytosis and the maximum number of bacteria taken up by one monocyte, and (3) the temperature, the highest rate of phagocytosis being reached at 37-41 degrees C. The intracellular killing proved to be dependent on: (1) the number of bacteria ingested; the rate of killing was proportional to the number of ingested bacteria until a maximum rate was reached; (2) the temperature, since a maximum rate of killing is only reached at 37-41 degrees C; at lower and higher temperatures the rate of killing is lower, in the latter case due to inactivation of extracellular stimuli. These separate data on the ingestion and killing processes made it possible to compute the theoretical numbers of extracellular, viable intracellular, and total intracellular bacteria for a model system consisting of 5 x 10(6) monocytes, 5 x 10(6) bacteria, and 10% serum. These calculated values are in agreement with the experimental data.

Cell Count↗

The use of lysostaphin in in vitro assays of phagocyte function: adherence to and penetration into granulocytes.

The usefulness of lysostaphin for the removal of cell-adherent and extracellular bacteria in assays performed to measure the intracellular killing of Staphylococcus aureus by granulocytes was investigated. The results showed that the adherence of lysostaphin to the granulocyte surface is effectuated by a temperature-independent process and that bound lysostaphin is still microbicidal. Lysostaphin also penetrates into the granulocytes by a temperature-dependent process and kills ingested S. aureus intracellularly. Therefore, despite reports to the contrary in the literature, lysostaphin is not a reliable agent for the removal of only extracellular S. aureus and should no longer be used in assays to determine the rate of intracellular killing by granulocytes.

Bacteriolysis↗

Normal microbicidal function of monocytes in a girl with chronic granulomatous disease.

The history of a 13-year-old girl with a syndrome resembling Chronic Granulomatous Disease (C.G.D.) is described. Metabolic studies in granulocytes and monocytes classified the patient as having C.G.D. The granulocytes failed to kill Staphylococcus aureus and Candida Albicans; however, the killing of these microorganisms by the patient's monocytes was nearly normal. Family studies revealed no abnormalities in the phagocytic cells of the parents and the siblings.

Adolescent↗

Participation of immunoglobulins and complement components in the intracellular killing of Staphylococcus aureus and Escherichia coli by human granulocytes.

Immunoglobulins and complement components are required for optimal ingestion and optimal killing of microorganisms by granulocytes. The degree of opsonization of microorganisms necessary for their ingestion was lower than that required for the killing of these bacteria during the ingestion phase. Killing during this phase was found to depend mainly on the presence of heat-labile opsonins, probably C3b, present on the microorganisms. Extracellular immunoglobulin G (IgG) and C3b were indispensable for optimal intracellular killing after ingestion was complete. This was established with an assay permitting assessment of the course of the number of viable intracellular bacteria independent of the ingestion of new live bacteria. Maximal intracellular killing by human granulocytes of ingested catalase-positive (Staphylococcus aureus and Escherichia coli) or catalase-negative (Streptococcus pyogenes and S. pneumoniae) microorganisms was found only when fresh serum was present extracellularly. Killing was suboptimal in the absence of serum. With heat-inactivated serum, the killing index lay between the indices obtained in the presence and absence of fresh serum. The stimulatory activity of heat-inactivated serum was most probably due to the interaction of IgG with the Fc receptor on the granulocyte membrane, since IgG subclasses IgG1 and IgG3 as well as pFc fragments of IgG stimulated the intracellular killing to the same degree as heat-inactivated serum did. In addition, (Fab1)2 fragments of IgG did not stimulate killing, and reduced killing was observed in the presence of heat-inactivated serum after reduction of the number of Fc receptors. The extra stimulation of the killing process in the presence of fresh serum compared with heat-inactivated serum was due to the interaction between membrane receptors and complement--most probably C3b generated by both the classical and the alternative pathways of complement activation. This conclusion is based on results obtained with sera in which one or both complement pathways were blocked, on the restoration of the killing-stimulatory activity of C3-deficient serum after addition of fresh C3, and on the reduced killing observed in the presence of fresh serum after reduction of the number of C3 receptors by the use of pronase or antigranulocyte serum.

Blood Bactericidal Activity↗