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Biomedical subjects

E Saksela

Publications and source records attributed to E Saksela.

At least 19 recordsLinked to original sources

The presence of concanavalin-A(Con-A)-like molecules on natural-killer (NK)-sensitive target cells: their possible role in swainsonine-augmented human NK cytotoxicity.

In the present study we examined the expression of concanavalin-A(Con-A)-like molecules on natural-killer (NK)-sensitive target cells and investigated their possible role in the human NK-cell phenomenon. The incubation of either peripheral-blood lymphocytes (PBL) or large granular lymphocytes (LGL) with swainsonine (SW), an inhibitor of mannosidase II, resulted in the augmentation of cytotoxicity against K562 leukemia cells. The enhanced cytotoxicity was associated with increased binding of fluorescein isothiocyanate-conjugated Con-A to SW-treated effector cells, and immunofluorescence staining of the target K562 cells using goat anti-Con-A antibody (Ab) showed a significant positive shift in the flow cytometric pattern. Electrophoretic separation and immunoblotting analysis revealed that 4 components with a molecular weight of approximately 95, 80, 60 and 50 kDa were recognized by anti-Con-A Ab from the detergent-extract of K562 cells. The addition of Con-A during the antibody incubation step of the Western blotting abolished their expression, thus excluding non-specific binding of the antibody. The addition of Con-A also strongly inhibited the cytotoxicity of SW-treated effector cells (PBL or LGL) against K562 cells, and this inhibition was abolished by 40 mM alpha-methyl-mannopyranoside (alpha-MM), which binds to Con-A. Furthermore, Con-A increased the binding frequency of SW-treated LGL to K562, in spite of the inhibited cytotoxicity, and this effect could be neutralized by the further addition of alpha-MM. Our results suggest that Con A-like molecules might play an important role in cell-cell interactions between SW-treated effector cells and NK target cells.

Adenosine Triphosphate

Involvement of beta 2-integrins in the migration of human natural killer cells.

Human large granular lymphocytes with the NK cell phenotype (CD16+ or CD56+CD3-) were greatly enriched among the cells which migrated spontaneously through untreated or albumin-coated, 3-microns pore size polycarbonate filters for 1 to 8 h. Three days of rIL-2 treatment (300 IU/ml) and 3 to 5 wk of rIL-2 treatment (100 IU/ml) generated a 2.7 +/- 0.9-fold and 5.6 +/- 0.8-fold increase in cell migration, respectively. The adhesion and subsequent migration of freshly isolated NK cells was mainly mediated by CD11b/CD18, because migration could be inhibited by 80 +/- 8% anti-CD11b (Mac-1) antibodies but not with antibodies against CD11a (LFA-1) or CD11c (p150,95), the other alpha-chains of the beta 2-integrins. After rIL-2 activation, however, CD11a/CD18 was the major receptor utilized in migration, inasmuch as anti-CD11a antibody caused a 69 +/- 8% reduction in the number of migrated cells. Anti-CD11b antibody decreased migration by 43 +/- 12%, and together these antibodies inhibited migration by 82 +/- 7%. Anti-CD11a alone did not have any effect on adhesion, but CD11a/CD18 cooperated in the adhesion because anti-CD11b decreased adhesion by 40 +/- 11% and together these antibodies inhibited adhesion by 74 +/- 6%. The ability of large granular lymphocytes to rapidly utilize beta 2-integrins and unidentified ubiquitous ligands for binding and migration may be significant for their capacity to function in the first line of immune defense under highly variable conditions.

Antibodies, Monoclonal

Analysis of collagen isotypes in crystalloid structures of salivary gland tumors.

Extracellular collagenous crystalloids (CCs) have been reported in salivary gland tumors. To study the occurrence and characteristics of these structures we reviewed 230 pleomorphic adenomas and myoepitheliomas of both major and minor salivary glands. Twelve of these cases contained crystalloids composed of radially arranged collagen fibers. However, no CCs were found in 124 malignant salivary gland tumors of different types. We show that CCs contain types I and III collagen but not type II, IV, or VI collagen. Moreover, cells surrounding CCs expressed the basement membrane molecules laminin and type IV collagen. These cells also showed other immunohistochemical features typical of myoepithelial cells.

Adenoma, Pleomorphic

Adhesion molecules involved in the interaction of LGL/NK cells and human endothelial cells stimulated with Salmonella bacteria.

Previously we showed that pretreatment of LGL/NK or HUVE cells with Salmonella bacteria augments the adhesion of LGL/NK cells to endothelium. Here we analyse the roles of HUVEC adhesion molecules VCAM-1, ICAM-1 and E-selectin, and the counter-receptors VLA-4, LFA-1 and SLex in the increase of LGL/NK adhesion to HUVEC, stimulated with Salmonella Minnesota mR595 bacteria, LPS or TNF-alpha. On Salmonella-stimulated HUVEC, VCAM-1 and ICAM-1 were the major binding structures involved, and their effect was additive in monoclonal antibody inhibition experiments. We could demonstrate the induction of both structures on cultured HUVEC after 24 h of Salmonella stimulation in flow cytometric analysis. For Salmonella-stimulated LGL/NK, the principal binding structure was LFA-1. Stimulation of LGL/NK cells did not alter the expression of the adhesion structures (subunits CD11a/CD18, CD49d/CD29), as determined by flow cytometric analysis, and thus the increased adherence is presumably produced by an increased avidity of the receptors on LGL/NK cells. Pretreatment of endothelium or lymphocytes with various stimuli, including Salmonella bacteria or LPS, leads to an activation state which provides for characteristic anchorage sites for the increased migration of LGL/NK cells towards the site of inflammation.

Antibodies, Monoclonal

Fibronectin facilitates the migration of human natural killer cells.

The interaction of lymphocytes with the extracellular matrix plays an important role in the immune defence against tumor cells and virus-infected cells. We have examined the effect of matrix proteins on the migration of large granular lymphocytes (LGL) through 3-microns pores in Nuclepore filters in a Boyden invasion chamber. Fibronectin bound on the filter surface significantly increased (p less than 0.001) the capacity of LGL to migrate, whereas soluble fibronectin did not. In addition, a significantly higher (p less than 0.001) percentage of LGL was capable of migration through fibronectin-coated filters than through untreated filters. With fibronectin-coated filters, a strong enrichment of CD16+ and CD56+CD3- cells with LGL morphology and reduction of CD3+ cells was found among migrating cells when the incubation time was 4 h or less. Later agranular lymphocytes, mainly CD3+ T lymphocytes, also started to migrate. Laminin coating of filters also facilitated migration, and when filters were coated with both fibronectin and laminin the increase in migration was equal to the sum of the increases induced by each protein alone. Interactions between cell surface and the Arg-Gly-Asp (RGD) peptide sequence of many matrix proteins had no role in the LGL migration through untreated filters. However, when filters were coated with either fibronectin or laminin, or with both, peptide containing the RGD sequence reduced migration to the level of untreated filters, whereas an Arg-Gly-Glu control peptide had no effect. Our results show that unstimulated LGL/natural killer cells are capable of rapid migration through matrix-coated porous membranes, and that interactions between cell surface receptors and the RGD sequence of fibronectin and probably laminin are utilized in this process.

Antigens, CD

Myxoma of the external auditory meatus.

A case of myxoma of the external auditory meatus is described. The patient presented with a recurring tumour which had not been correctly diagnosed although the growth had been removed ten times over a period of two years. The tumour was skin covered, contained gelatinous material and was attached to the tympanic membrane and anterior canal wall. Following recognition of the tumour as myxoma, removal was performed with sufficiently wide margins and there has been no recurrence during follow-up for one year.

Adult

Human natural killer cells express different integrins and spread on fibronectin.

Human natural killer (NK) cells adhered and most of them also actively spread on cellular fibronectin (cFn), plasma Fn (pFn) and its Mr 120,000-140,000 or Mr 105,000 cell-binding proteolytic Fn-fragments as well as on heparin-binding Fn-fragments containing the alternative cell binding site. The cells did not spread on vitronectin, laminin or collagens. Adhesion on Mr 105,000 Fn fragment containing the cell binding site, could be prevented by the synthetic peptide GRGDS but not by an inactive peptide, whereas adhesion on heparin-binding Fn fragments was unaffected by the peptide. Spreading of the NK cells led to a distinct reorganization of F-actin. Immunoprecipitation with monoclonal antibodies (MoAb) against the beta 1 integrin subunit of radioactively surface-labelled cells revealed a broad polypeptide band of Mr 140,000 under reducing conditions and a polypeptide doublet of Mr 160,000 and Mr 110,000 under non-reducing conditions. Identical polypeptides, corresponding to the alpha- and beta-subunits of the Fn-receptor complex, were bound to the Mr 105,000 chymotryptic Fn-fragment coupled to Sepharose. Similar experiments with small lymphocytes did not reveal any polypeptides. Immunofluorescence results with McAbs suggested that among the alpha-subunits of integrins, the alpha 3, alpha 4, and alpha 5 subunits are expressed in NK cells. The present results suggest that non-activated NK cells, but not small lymphocytes, express beta 1-integrins, and that at least the Fn-receptors alpha 4 beta 1 and alpha 5 beta 1 may function in the adhesion and migration of NK cells.

Cell Adhesion

Effect of Salmonella bacteria on the interaction of human NK cells with endothelial cells.

Leukocyte-endothelial cell adhesion and its regulation are essential and complex initial aspects of lymphocyte migration. Various factors (IL-1, TNF-alpha, IFN-gamma etc.) have been shown to increase the endothelial adhesiveness for human lymphocytes, including natural killer cells (NK cells). In this work we have demonstrated that pretreatment of either the target endothelial cell monolayers or the binding LGL-cells with mR595 Salmonella Minnesota bacteria results in a substantial increase in the adhesiveness of LGL-cells to endothelial cells. The increase was more prominent when the endothelial cells were treated than when the adhering LGL-cells were similarly pretreated. The adhering cell population was significantly enriched with CD56 (Leu19) and CD16 positive cells, i.e. cells with NK cell phenotype, when the lymphocyte population was pretreated. However, the pretreatment of EC resulted in a non-specific increase in EC adhesiveness since the relative proportion of CD56+ (Leu19), CD16+ and CD3+ cells among the adhering cells did not significantly differ from the starting population. The bidirectional enhancement of adhesiveness of human NK cells to endothelium by mR595 Salmonella bacteria may be significant in the host defense responses against microbial infections.

Antigens, Differentiation

Potentiation of human natural killer cell cytotoxicity by Salmonella bacteria is an interferon- and interleukin-2-independent process that utilizes CD2 and CD18 structures in the effector phase.

Incubation of large granular lymphocytes (LGL) with glutaraldehyde-fixed bacteria stimulated in the supernatant the production of interferon (IFN), which proved to be mainly IFN-gamma. Even though IFN-gamma was produced upon exposure of LGL to bacteria, anti-IFN-gamma antibodies failed to interfere with induction of cytotoxicity by bacterial contact. Anti-IFN-gamma receptor antibodies had no effect on the induction of activated killing by bacterial contact either. We also tested the effect of anti-IFN-alpha antibody, but it failed to interfere with induction of cytotoxicity by bacterial contact. No interleukin-2 (IL-2) was detected in the culture supernatant of bacterially activated LGL by the mouse HT2 cell assay, nor did we detect any IL-2 mRNA in bacterially activated LGL by Northern RNA blot assay. Neutralizing anti-IL-2 antiserum had no effect on the induction of activated killing by bacterial contact, and recombinant IL-4 did not interfere with the induction of activated killing. We then studied the membrane structures involved in bacterially activated killing. Anti-CD18 monoclonal antibody did not interfere with the induction phase of bacterially activated killing. However, both anti-CD18 and anti-CD2 antibodies inhibited the effector phase of bacterially activated killing. The effector pathways utilized by activated LGL depended on the mode of activation in that even though bacterially activated LGL were sometimes blocked by anti-CD2 monoclonal antibody, recombinant-IL-2-stimulated LGL were not. In conclusion, our present results suggest that there may be mediators other than exogenously secreted IFNs and IL-2 which are responsible for the induction of activated killing after bacterial contact. CD18 and CD2 structures were shown to be involved in the effector phase of bacterially activated killing.

Antibodies, Monoclonal

Tumor necrosis factor as a potent inhibitor of adrenocorticotropin-induced cortisol production and steroidogenic P450 enzyme gene expression in cultured human fetal adrenal cells.

We have previously demonstrated that tumor necrosis factor alpha (TNF-alpha), a multifunctional cytokine mainly produced by activated monocytes, inhibits the ACTH-induced production of cortisol in cultures of human fetal adrenals. To clarify the molecular basis of this suppression, we investigated the effect of recombinant TNF-alpha (rTNF-alpha) on the messenger RNAs (mRNAs) for adrenal cytochrome P450 oxidases, P450scc (cholesterol side-chain cleavage enzyme/20.22-desmolase), P450c11 (11 beta-hydroxylase/18-hydroxylase/18-methyl oxidase), P450c17 (17 alpha-hydroxylase/17,20-lyase), and P450c21 (21-hydroxylase). Northern and dot blot experiments showed that 36 h incubation of primary cultures of human fetal adrenals with ACTH (200 ng/ml) increased the levels of all P450 enzymes severalfold. Preincubation of the cultures with rTNF-alpha at concentrations ranging from 0.1-100 ng/ml produced a dose-dependent inhibition of the ACTH-induced accumulation of all P450 mRNAs. The decrease in the expression of genes for steroidogenic enzymes was accompanied by a similar decrease in the production of cortisol but not in that of dehydroepiandrosterone sulphate nor androstenedione. Neither the basal expression of P450 enzymes nor the basal secretion of the steroids was significantly altered by 10 ng/ml of rTNF-alpha. rTNF-alpha did not affect the level of actin mRNA, the cell viability, nor the cell number. All the effects brought about by rTNF-alpha could be neutralized by addition of monoclonal anti-TNF-alpha antibody. These results show that TNF-alpha suppresses the synthesis of cortisol and shifts the steroid secretory pattern towards androgen production at least partly by suppressing the accumulation of mRNAs for adrenal cytochrome P450 oxidases.

Adrenal Glands

Heat shock inhibits the cytotoxic action of TNF-alpha in tumor cells but does not alter its noncytotoxic actions in endothelial and adrenal cells.

We have previously demonstrated that a short heat treatment protects target cells from lysis by tumor necrosis factors (TNFs). Here we show that a similar heat treatment of human umbilical vein endothelial cells and human fetal adrenal cells does not alter noncytotoxic actions of TNF, suggesting that heat shock may specifically inhibit the cytotoxic action of TNF. To find clues to the mechanisms by which heat shock protects cells from TNF killing, its effects on TNF-alpha-TNF-receptor interactions, on the metabolism of the ligand, and on the expression of mRNAs for possible protective proteins were studied. The affinity of binding and the internalization of the ligand were slightly reduced after heat shock. These effects were, however, very vague and seen both in heat-responsive tumor cells and in endothelial and adrenal cells. Thus, it is unlikely that they could explain the heat-induced TNF resistance. Heat shock increased the expression of mRNAs for heat shock proteins (hsps) 27 and 70 in all the cells studied, but did not alter the expression of manganous superoxide dismutase (MnSOD) mRNA, which has previously been shown to play a crucial role in TNF resistance. Based on these results, we suggest that cells have multiple mechanisms to escape TNF-mediated lysis and that heat-induced protection from TNF killing may be mediated by hsps or other heat-inducible protective proteins, which act after receptor binding and protect cells from TNF-induced cellular damage without inhibiting the signal transduction mediating noncytotoxic effects of TNF.

Adrenal Glands

Swainsonine, an inhibitor of glycoprotein processing, enhances cytotoxicity of large granular lymphocytes.

In the present study we investigated the effects of inhibitors of glycoprotein processing on cytotoxicity of human large granular lymphocytes (LGL). The incubation of LGL for 36 h with 0.5 microgram/ml swainsonine (SW), which is an inhibitor of mannosidase II, resulted in the augmentation of cytotoxicity of LGL against an NK-resistant colon carcinoma cell line (Colo-320DM) without increase of binding frequency of LGL to target cells or of cell proliferation. The enhanced cytotoxicity was associated with increased binding of concanavalin A to SW-treated LGL. The augmentation of cytotoxicity was also seen by 1-deoxymannojirimycin (1-DMN), an inhibitor of mannosidase I, but much higher amounts of this agent were needed to get the same level of augmentation as that with SW. Other inhibitors of glycoprotein processing such as castanospermine and 1-deoxynojirimycin (1-DN) did not show any augmentative effects on LGL cytotoxicity. The enhancement of cytotoxicity by SW was abolished by the addition of rabbit anti-human interleukin (IL-2) antibody to the culture. This result suggests that IL-2 is involved in the augmentation of cytotoxicity of LGL by SW. The presence of SW in the culture of LGL together with IL-2 also enhanced LAK generation compared to that with IL-2 alone. Thus, our results suggest that SW should be recognized as an efficient immunopotentiator and that modulation of carbohydrate moieties elicited by SW may shed further light on the mechanism of LGL activation.

Alkaloids

Interleukin-2 activated lymphocytes (LAK cells) as potential tumor tracers.

The homing characteristics and infiltrative capacity of interleukin-2 activated human peripheral blood lymphocytes, the lymphokine activated killer (LAK) cells, were studied. In vitro stimulated 111In-oxine labeled lymphocytes were injected into the hypogastric artery during hysterectomy, performed because of endometrial carcinoma. Scintigrams demonstrated clear homing of the lymphocytes into the area of the malignant tumor. No selective homing was detectable when labeled red blood cells were injected in a similar fashion. To analyze the infiltrative capacity of the activated lymphocytes, they were incubated in vitro with tumor spheroids grown from cultured glioma cell lines. As revealed by antibodies against the leukocyte common antigen and immunoperoxidase techniques, the activated lymphocytes infiltrated the three-dimensional tumor tissue slowly as a frontier. These results show that, in addition to their previously suggested potential role in cancer therapy, interleukin-2 activated lymphocytes may possibly also be useful as tumor tracers.

Female

Human natural killer cell activity is augmented by interferon via recruitment of 'pre-NK' cells.

Contact with various cell-line targets increases the natural killer (NK) activity of human lymphocytes. Supernatants of such 20 h co-cultures augment the NK activity of virgin lymphocyte populations, and the augmenting factor penetrates 0.2 micrometer Millipore filters. The supernatants also contain interferon, and partially purified human leucocyte interferon increases NK activity when added to 20 h assays with 51Cr-labelled K-562 target cells. Potent anti-interferon antiserum added to the co-cultures inhibits the target-cell-induced augmentation phenomenon. Both the target-cell contact and interferon-induced augmentation affect a population of human lymphocytes, from which the 'mature' NK cells have been removed by adsorption-elution using fetal fibroblasts as adsorbents. The activity of 'mature' NK cells is not enhanced, and we conclude that the augmentation is mediated by recruitment of 'pre-NK' cells.

Adsorption