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At least 19 recordsLinked to original sources

Characterization of the autofluorescence of polymorphonuclear leukocytes, mononuclear leukocytes and cervical epithelial cancer cells for improved spectroscopic discrimination of inflammation from dysplasia.

Fluorescence spectroscopy has the potential to improve the in vivo detection of intraepithelial neoplasias; however, the presence of inflammation can sometimes result in misclassifications. Inflammation is a common and important pathologic condition of epithelial tissues that can exist alone or in combination with neoplasia. It has not only been associated with the presence of cancer but also with the initiation of cancer by damage induced due to the oxidative activity of inflammatory cells. Microscopic examination of cervical biopsies has shown increased numbers of polymorphonuclear and mononuclear leukocytes in inflamed tissues mostly confined to the stroma. The purpose of this study was to characterize the fluorescence properties of human polymorpho- and mononuclear leukocytes and compare their fluorescence to that of cervical cancer cells. Human neutrophils were purified from peripheral blood and their fluorescence characterized over an excitation range of 250-550 nm. There are four notable excitation emission maxima: the tryptophan peak at 290 nm excitation, 330 nm emission; the NAD(P)H peak at 350 nm excitation, 450 nm emission, the FAD peak at 450 nm excitation, 530 nm emission and an unidentified peak at 500 nm excitation, 530 nm emission. Treatment of these peripheral blood neutrophils with 40 nM phorbol myristate acetate or with the chemotactic peptide formyl-Met-Leu Phe (1 M) demonstrated a significant increase in NAD(P)H fluorescence. Isolated mononuclear cells have similar emission peaks for tryptophan and NAD(P)H and a small broad peak at 450 nm excitation, 530 nm emission suggestive of FAD. Comparison of the fluorescence from leukocytes to epithelial cancer cell fluorescence has demonstrated the presence of these fluorophores in different quantities per cell. The most notable difference is the high level of tryptophan in cervical epithelial cancer cells, thus offering the potential for discrimination of inflammation.

Female↗

Receptor redistribution does not accompany terbutaline-induced down regulation of beta-adrenergic receptors on human mononuclear leukocytes.

Mononuclear leukocytes are easily accessible cells for investigating the regulation of beta-adrenergic receptors in humans. We have previously shown that brief incubations with agonists redistribute (? internalize) most of the beta-adrenergic receptors on mononuclear leukocytes away from the cell surface without changing total receptor number. However, negligible redistribution occurred after exercise or an infusion of isoproterenol. The current study was designed to ask whether receptor redistribution occurs over a longer time course after administration of terbutaline, a beta 2-adrenergic agonist that is known to cause a decrease in receptor number. Normal volunteers were given terbutaline, 5 mg t.i.d. for 6 days. As expected, the number of beta-adrenergic receptors decreased. However, the remaining receptors were not redistributed. Redistribution also did not occur after 1 or 2 days of terbutaline, at which time down regulation was minimal. We also found that terbutaline did not alter the ability of the receptors to be redistributed or desensitized by a preincubation with isoproterenol.

Administration, Oral↗

Interleukin-1 and tumor necrosis factor production by tumor-associated mononuclear leukocytes and peripheral mononuclear leukocytes in cancer patients.

The production of interleukin-1 (IL-1) and tumor necrosis factor (TNF) by tumor-associated mononuclear leukocytes (TAML) and peripheral mononuclear leukocytes (PMBL) from 9 otherwise untreated patients with a variety of malignancies (lung, sarcoma, stomach, renal) was assessed. Cells were cultured for 24 hr in vitro in the presence or absence of lipopolysaccharide (LPS), and IL-1 and TNF levels were measured in culture supernatants. TNF production was comparable between TAMLs and PBMLs. However, a striking defect in IL-1 production by TAMLs was noted. There was no basal production of IL-1 and LPS-stimulated TAMLs produced only 1% the amount of IL-1 produced by LPS-stimulated PBMLs.

Biological Assay↗

Suppression of lymphoproliferation by high concentrations of normal human mononuclear leukocytes.

Mononuclear leukocytes (MNL) include cells that suppress lymphoproliferation in unstimulated and antigen-stimulated cultures. Suppression is demonstrated by increasing the concentration of cells added to cultures and does not require preactivation of suppressor cells. Suprression of 3H-thymidine incorporation occurred if the high concentrations of MNL were added to cultures before the proliferative responses commenced. This suppressive effect of high cell concentration upon 3H-thymidine incorporation is removed by depleting MNL present in high numbers of cells that adhere to foreign surfaces or by preincubating these cells with cycloheximide, puromycin, or pactamycin. The suppressor cell, which only functions when present in a viable state, is radioresistant, adheres to foreign surfaces, remains active through 5 days in culture, and equates with the presence of a cell that is rich in cytoplasmic esterase. The suppressor cell may be of the monocyte series and did not appear to belong to either the T or the B lymphocyte series. This study provides additional evidence that normal immune reactivity in man is under regulatory control. The suppressor mechanism identified herein with normal human MNL is probably related to a similar type of suppression (but at a much lower cell concentration) that has been described with Hodgkin's disease and solid tumors.

Aging↗

Variation in sister chromatid exchange frequencies between human and pig whole blood, plasma leukocyte, and mononuclear leukocyte cultures.

Sister chromatid exchange (SCE) induction by ultraviolet (UV) light was studied in both human and pig whole blood cultures (WBC) and plasma leukocyte cultures (PLC). No variation in SCE frequency was observed between pig WBC and PLC in control as well as in treated cells. Conversely, SCE frequencies of human PLC were consistently higher than those of WBC in control and UV-exposed cells. Thus, red blood cells (RBCs) do not influence the sensitivity of lymphocytes to UV light exposure, and there must be some different culture condition(s) in the induction of SCEs between human WBC and PLC but not in swine lymphocyte cultures. Since the BrdUrd/lymphocyte ratio of WBC was halved in PLC, the effect of BrdUrd concentration in inducing the SCE baseline frequency of PLC may be ruled out. Also, Ficoll-Hypaque-separated human mononuclear leukocytes in culture (MLC), but not pig MLC, showed a two-fold increase in SCE frequency over WBC values. Thus, neither the cell separation technique nor polymorphonuclear leukocytes had a significant role in the elevated SCE frequency of human PLC or MLC. Experiments where human RBCs were titrated into human PLC showed that the induction of an elevated SCE frequency of PLC was suppressed in a dose-dependent manner by the presence of RBCs in the culture medium. Since the incorporation of pig or human RBCs into human PLC as well as into MLC reduced the SCE frequency to that of WBC, a common component and/or function existing in these cells is suggested. Analysis of different RBC components showed that RBCs, specifically RBC ghosts, release a diffusible but not dialyzable "corrective" factor into culture medium that is able to reduce the SCE frequencies of PLC. Antioxidant enzymes such as catalase and horseradish peroxidase were unable to reduce the SCE frequency of human PLC to WBC values.

Animals↗

Agonist-induced beta-adrenergic receptor internalization on intact human mononuclear leukocytes: effect of temperature of mononuclear leukocyte separation.

The hydrophilic ligand 3H-CGP 12177 was used to measure beta-adrenergic receptors on intact human mononuclear leukocytes (MNLs). A single homogeneous class of receptor sites was found, with KD value of 0.71 +/- 0.04 nmol/L and Bmax of 3.0 +/- 0.4 fmol/10(6) cells (mean +/- SEM; n = 12). The receptor affinity (KD) and density (Bmax) were similar when measured on MNLs, purified lymphocytes, and a T-lymphocyte-enriched population from the same individual. Preincubation of intact MNLs with 1 mumol/L isoproterenol at 37 degrees C for 20 minutes reduced the number of surface receptors, measured by 3H-CGP 12177 binding at 4 degrees C for 20 hours, by approximately 70% (receptor internalization) without affecting KD. This effect was reversible, and surface receptors completely reappeared when binding was investigated at 37 degrees C for 40 minutes. Receptor internalization was similar when either isolated MNLs or whole blood was incubated with isoproterenol. Agonist-induced receptor internalization was stable during MNL isolation from whole blood at 4 degrees C but was partially or completely lost from MNLs prepared at 20 degrees C.

Adrenergic beta-Agonists↗

Corticosteroid-induced differential regulation of beta-adrenergic receptors in circulating human polymorphonuclear leukocytes and mononuclear leukocytes.

A method of reproducibility measuring human leukocyte beta-adrenergic receptor density and affinity has been developed and applied to the study of receptor regulation in man. The method has the advantages of using a membrane preparation which binds highly specifically and employing techniques such as using low concentrations of [3H]dihydroalprenol, analyzing the data by computer modelling techniques, and providing data from both granulocytes and lymphocytes in the same individual to minimize measurement errors. Using this methodology, human beta-adrenergic receptor regulation is examined. Cortisone acetate was found to induce an acute rise in granulocyte beta-adrenergic receptor density and adenylate cyclase activity and an acute fall in lymphocyte beta-adrenergic receptor density. This potentially differential regulation of a single receptor subtype in two lines of leukocytes has important implications for the study of receptor regulation in man using leukocyte models.

Adenylyl Cyclases↗

Revised radioreceptor assay for beta 2-adrenoceptors expressed on peripheral mononuclear leukocytes.

Peripheral mononuclear leukocytes (pMNL) bear a population of beta 2-adrenoceptors. Radioreceptor assays with (-)-125Iodocyanopindolol (125I-CYP) are often used to determine the expression of these hormone receptors under physiological and pathological conditions. Doubts on the occurrence of just one class of binding sites as well as the availability of new laboratory equipment prompted us to revise the procedure employed for investigation of these receptors. pMNL were harvested from venous human blood by density centrifugation with LymphopaqueR, LymphoprepR, or FicollR yielding immunologically distinct pMNL fractions. Receptor binding assays were performed semi-automatically with 125I-CYP in the range from 0.6-600 pmol/l. Analysis of the data (modified affinity spectra, Scatchard plot) revealed two classes of binding sites (high- and low affinity binding). The binding isotherms were sigmoidal in the concentration range from 0.6-3.0 pmol/l. Parameters estimated for the high affinity binding site may vary by a factor of 10, depending on the mathematical model employed.

Humans↗

Oxidative stress induces DNA damage and inhibits the repair of DNA lesions induced by N-acetoxy-2-acetylaminofluorene in human peripheral mononuclear leukocytes.

Human mononuclear leukocytes were exposed to prooxidants such as H2O2, phorbol-12-myristate-13-acetate, and 4-nitroquinoline-N-oxide, and the effects on induction of DNA damage and repair were evaluated. ADP ribosylation was activated by prooxidant exposure and the response was bimodal with peaks of activation occurring at about 30 min and 4-5 h. Other evidence for prooxidant-induced DNA damage was provided by nucleoid sedimentation assays. Unscheduled DNA synthesis (UDS) was only slightly induced by prooxidant exposure which suggested that either the DNA lesions were repaired by a short patch mechanism involving little UDS, or the repair process was inhibited by prooxidant exposures, or some combination of both. This point was clarified by the fact that the repair of DNA lesions induced by N-acetoxy-2-acetylaminofluorene, an inducer of large patch DNA repair, was inhibited in a dose-dependent manner by exposure to H2O2 and the inhibition was dependent on ADP ribosylation. In contrast, the repair of DNA strand breaks induced by prooxidant exposures as identified above were complete within about 8 h and the repair was independent of ADP ribosylation. Both ADP ribosylation and N-acetoxy-2-acetylaminofluorene-induced UDS were shown to be up- and down-regulated by the redox state of human mononuclear leukocytes indicating a unique mechanism of cellular control over DNA repair.

2-Acetylaminofluorene↗

Effect of dialysable leukocyte extract on the mononuclear leukocytes in Hodgkin's disease.

Therapy with dialysable leukocyte extract repeated 6 times, had a beneficial effect on the impaired functions of mononuclear leukocytes in Hodgkin's disease. The decreased phagocytosis and chemotaxis of monocytes increased almost to the values of healthy controls. There was no significant change in the C3b receptor activity of the patients' monocytes but their pathologically increased EA rosette formation showed some correction during dialysable leukocyte extract therapy. The number of T cells bearing histamine and IgG Fc receptors was reduced initially and increased during therapy but this effect was only temporary. The results suggest that the stimulating effect of dialysable leukocyte extract on cellular immunity was due partly to the correction of mononuclear phagocyte functions rather than an effect on lymphocyte subpopulations in Hodgkin's disease. The beneficial effect of transfer factor on mononuclear phagocyte function may affect the rate of tumour progression and reduce the number of severe infections in patients with Hodgkin's disease.

Antigen-Antibody Complex↗

ACTH receptor distribution and modulation among murine mononuclear leukocyte populations.

Murine mononuclear leukocytes express adrenocorticotropin (ACTH) receptors that were recognized by a monospecific antiserum to the ACTH receptor on Y-1 adrenal cells. The antiserum was utilized in an immunofluorescence (IF) assay to characterize the distribution of ACTH receptors on resting murine mononuclear leukocyte populations. Forty-seven percent of spleen cells, 32% of lymph node cells, and 1% of thymocytes constitutively expressed ACTH receptors. Separation of lymphocytes into purified B cell and T cell populations, followed by IF analysis revealed that 47% of B cells and 23% of T cells possessed ACTH receptors. Helper T cells (CD4+ T cells) constituted the majority of ACTH receptor-positive T lymphocytes. Furthermore, 47% of resident peritoneal macrophages, purified by adherence to plastic, expressed ACTH receptors. The T-lymphocyte mitogen, concanavalin A, interferon gamma, and ACTH enhanced ACTH receptor expression. The differential distribution of ACTH receptor-positive cells among specific leukocyte populations explains in part why differential cellular responses are observed and implies important regulatory functions for these receptors in the generation or regulation of immune responses.

Adrenocorticotropic Hormone↗

Circannual variation in the expression of beta 2-adrenoceptors on human peripheral mononuclear leukocytes (MNLs).

Peripheral mononuclear leukocytes (MNLs) are widely used as a tissue model in studies of beta-adrenoceptor disturbances in hypertension and asthmatic diseases. The beta 2-adrenoceptor density (Bmax), however, depends not only on the gender of the person under study and on the time of day the blood specimens are obtained. Evidence is now reported for a circannual variation in the expression of beta 2-adrenoceptor sites on peripheral MNLs. In male volunteers the 24-h mean was found to be highest in the men studied in April/May (1135 +/- 10 sites/cell) and decreased to 891 +/- 16 sites/cell in August and to 712 +r90 sites/cell in December (means +/- SE, P less than 0.01 April/May compared to December). Concomitantly the circadian amplitude increased from 17.3% +/- 6.4% of 24-h mean in April/May to 28.2% +/- 1.4% of 24-h mean in August and to 34.2% +/- 4.2% of 24-h mean in December (means +/- SE, P less than 0.05, April/May compared to December). The circadian acrophase remained constant (190 degrees +/- 30 degrees equivalent to 12 h 40 min +/- 2 h 00 min, means +/- SE).

Adult↗

Evidence of cytocidal effects of Pasteurella haemolytica on bovine peripheral blood mononuclear leukocytes.

Pasteurella haemolytica had a pronounced cytocidal effect on bovine mononuclear leukocytes. Mononuclear leukocytes separated from venous blood on Ficoll-diatrizoate and incubated with either P haemolytica or Escherichia coli showed a significantly greater percentage cell death than did cells incubated with Staphylococcus epidermidis or controls. Neither heat-killed nor x-irradiated P haemolytica caused a significant percentage cell death. The cytotoxic potential of P haemolytica was dose related in that cell death among mononuclear leukocytes increased as the ratio of bacteria-to-cells increased. Enriched monocyte cultures showed a higher and less variable rate of cell death than either enriched lymphocyte or mixed leukocyte cultures.

Animals↗

Migration inhibition of human leukocytes mixed with phytohemagglutinin-preincubated mononuclear leukocytes.

An in vitro test able to demonstrate phytohemagglutinin (PHA)-induced migration inhibition of human peripheral blood leukocytes was investigated. The migration inhibition was demonstrated by the agarose migration technique. Purified mononuclear leukocytes which had been incubated for 30 min with PHA, then washed and added to non-separated leukocytes induced migration inhibition of the mixed cell population. Since no PHA was added to the non-separated leukocytes, a direct PHA effect on polymorph migration was avoided. If the PHA-preincubated mononuclear leukocytes were heated at 56 degrees C for 30 min, their ability to cause migration inhibition was abolished. This suggests that the inhibition was caused by migration inhibitory factor (MIF) produced by the PHA-stimulated lymphocytes.

Cell Migration Inhibition↗

Nitric oxide and superoxide radical production by human mononuclear leukocytes.

Human mononuclear cells (90% lymphocytes, 9% monocytes, and 1% polymorphonuclear leukocytes) produced spontaneously in resting state 0.11+/-0.01 nmol of nitric oxide (NO)/min/10(6) cells and 0.25+/-0.02 nmol of superoxide anion (O2-)/min/10(6) cells, as primary products. When these cells were stimulated with phorbol 12-myristate 13-acetate (PMA), the NO and O2- production increased by 82% and 204% to 0.25+/-0.02 nmol of NO/min/10(6) cells and 0.76+/-0.12 nmol of O2-/min/10(6) cells, respectively. Oxygen uptake reasonably accounted for the sum of the rates of NO and hydrogen peroxide (H2O2), the latter calculated as 0.5 O2- production, in nonstimulated and in PMA-stimulated cells. H2O2 and peroxynitrite formation were detected and measured as secondary products of the primary products O2- and NO. An original assay to determine H2O2 steady-state concentration and production rates is described. The determined production rates of the involved reactive species are in good agreement with known chemical equations. It is apparent that NO and O2- production by human mononuclear cells may constitute the basis of intercellular signaling and cell toxicity.

Cells, Cultured↗

Antibacterial activity of human mononuclear leukocytes against Staphylococcus aureus.

Human mononuclear leukocytes kill Staphylococcus aureus cells in vitro. The killing of the bacteria takes place even in the absence of antibodies. The presence of antibodies (in an autologous inactivated serum) usually enhances the antibacterial activity of mononuclear leukocytes. In some cases, however, this activity is markedly decreased by the serum, probably depending of the spectrum of antibodies contained in the serum. The antibacterial activity of mononuclear leukocytes is mostly due to monocytes because their depletion causes substantial drop or the activity disappearance. We failed to demonstrate in the case of S. aureus the antibacterial cytotoxicity of T lymphocytes described by some authors dealing with Gram-negative bacteria. Large differences in the structure of the bacterial cell wall underlie apparently the different sensitivity of G+ and G- bacteria to some protective mechanisms of the host. In the antibacterial assay against S. aureus, electron microscopy revealed a maximal activation of monocytes which phagocytized the bacteria although extracellular killing is not excluded. Electronoptical findings point also to a possible participation of NK cells in the antibacterial cytotoxicity against S. aureus.

Adult↗

Frequency of association of noncytopathic bovine viral diarrhea virus with mononuclear leukocytes from persistently infected cattle.

All mononuclear leukocytes and T lymphocyte-enriched and B lymphocyte-enriched subpopulations of mononuclear leukocytes collected from 8 cows persistently infected with 1 of 3 isolates of noncytopathic bovine viral diarrhea virus were tested for association with virus. For all persistently infected cows, approximately 4.4% of all mononuclear leukocytes, 5.4% of T lymphocyte-enriched, and 2.1% of B lymphocyte-enriched subpopulations of mononuclear leukocytes were associated with virus. Differences between leukocyte populations in percentages of leukocytes associated with virus were real (P less than 0.05). Among virus isolates, significant differences in percentages of leukocytes associated with virus were not detected.

Animals↗