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Biomedical subjects

M Vitale

Publications and source records attributed to M Vitale.

At least 145 records · Page 8Linked to original sources

P58 molecules as putative receptors for major histocompatibility complex (MHC) class I molecules in human natural killer (NK) cells. Anti-p58 antibodies reconstitute lysis of MHC class I-protected cells in NK clones displaying different specificities.

Human CD3-16+56+ natural killer (NK) cells have been shown to display a clonally distributed ability to recognize major histocompatibility complex (MHC) class I alleles. Opposite to T lymphocytes, in NK cells, specific recognition of MHC class I molecules appears to induce inhibition of cytolytic activity and, thus, to protect target cells. Since a precise correlation has been established between the expression of the NK-specific GL183 and EB6 surface molecules (belonging to the novel p58 molecular family) and the specificity of NK clones, we analyzed whether p58 molecules could function as receptors for MHC in human NK cells. NK clones displaying the previously defined "specificity 2" and characterized by the GL183+EB6+ phenotype, specifically recognize the Cw3 allele and thus fail to lyse the Fc gamma R+ P815 target cells transfected with Cw3. On the other hand, NK clones displaying "specificity 1" and expressing the GL183-EB6+ phenotype failed to lyse Cw4+ target cells. Addition of the F(ab')2 fragments of either GL183 or EB6 mAb as well as the XA141 mAb of IgM isotype (specific for the EB6 molecules) completely restored the lysis of Cw3-transfected P815 cells by the Cw3-specific NK clones EX2 and EX4. Similarly, both the entire EB6 mAb, its F(ab')2 fragment and the XA141 mAb reconstituted the lysis of C1R, a Fc gamma R- target cell expressing Cw4 as the only serologically detected class I antigen. Thus, it appears that masking of different members of p58 molecules prevents recognition of "protective" MHC class I alleles and thus the delivering of inhibitory signals. Further support to the concept that p58 molecules represent a NK receptor delivering a negative signal was provided by experiments in which the entire anti-p58 mAbs (of IgG isotype) could inhibit the lysis of unprotected Fc gamma R+ P815 target cells, thus mimicking the inhibitory effect of MHC class I molecules.

Antibodies, Monoclonal↗

Optimal detection of apoptosis by flow cytometry depends on cell morphology.

Flow cytometry has recently become a choice technique for the quantitative analysis of apoptosis. Monoparametric DNA analysis usually allows identification of apoptotic cells as a "subdiploid" peak. Progression through apoptosis leads to chromatin condensation, nuclear fragmentation and eventually to cell disruption. Thus, a major problem for the flow cytometric analysis of apoptotic populations is discrimination between debris and apoptotic cells. Here we demonstrate that the best parameter on which to make such a distinction is the DNA content, no matter what type of cell is studied. In contrast, discrimination between apoptotic, non-apoptotic cells, and debris is possible on the basis of scattering signals only in few selected cases, depending on the morphology of the intact cells.

Animals↗

Subtraction of autofluorescent dead cells from the lymphocyte flow cytometric binding assay.

Flow cytometry allows the quantitative analysis of lymphocyte-target cell conjugates and the identification of the lymphocyte subset involved in the binding phenomenon. We recently described a methodology to identify the effector cells bound to K562 targets based on target cell autofluorescence coupled with lymphocyte staining by means of fluorescent monoclonal antibodies. Here we describe an implementation of the methodology that allows the subtraction of spontaneously dead targets to which lymphocytes may or may not adhere, thereby preventing the overestimation of the binding phenomenon and limiting its evaluation to living effector-target conjugates, thus preserving the specificity of the phenomenon.

Antibodies, Monoclonal↗

CD45-mediated regulation of LFA1 function in human natural killer cells. Anti-CD45 monoclonal antibodies inhibit the calcium mobilization induced via LFA1 molecules.

The TA218 and T205 monoclonal antibodies (mAb) were selected on the basis of their ability to inhibit the non-major histocompatibility complex-restricted lysis of the murine mastocytoma P815 cell line mediated by CD3-CD16+ natural killer (NK) cells. Both mAb were found to react with CD45 molecules, as demonstrated by immunoprecipitation after surface iodination and western blot analysis. A panel of tumor target cells susceptible to lysis by polyclonal or clonal CD3-CD16+ NK cells was used to study the mAb-mediated inhibitory effect. The inhibition of cytolysis mediated by TA218 and T205 mAb was found to consistently parallel the inhibition mediated (with the same tumor target cells) by the anti-LFA1 alpha mAb TS.1.22 or by the anti-LFA1 beta mAb TS.1.18. However, different from the anti-LFA1 mAb, T205 or TA218 mAb did not inhibit the binding of activated CD3-CD16+ effector NK cells to the same tumor target cells. This finding supported the concept that the anti-CD45 mAb-mediated inhibition could occur at a post-binding stage. In polyclonal or clonal CD3-CD16+ NK cells T205 or TA218 mAb were found to reduce by 50-70% the intracellular Ca++ ([Ca++]i) mobilization induced by anti-LFA1 alpha or anti-LFA1 beta mAb. On the other hand, TA218 and T205 mAb did not inhibit the Ca++ mobilization induced by anti-CD16 mAb or phytohemagglutinin, thus suggesting that, in NK cells, CD45 molecules may exert a selective inhibitory effect on the signal transduction mediated by LFA1 molecules. In line with this hypothesis, the cytolytic activity of human NK clones was triggered in the presence of the hybridoma cells secreting either anti-CD16 or anti-LFA1 alpha mAb (as "triggering targets"). This effect of anti-LFA1 alpha, but not of anti-CD16 hybridoma was susceptible to inhibition by the anti-CD45 mAb T205 or TA218. Further, experiments on cloned NK cells indicated that T205 or TA218 mAb induced a strong decrease in the constitutive phosphorylation of the LFA1 alpha chain (but not of HLA class I antigens). Taken together, these studies suggest that in human NK lymphocytes, CD45 molecule may regulate both the activation state and the function of the LFA1 molecule.

Animals↗

Differential kinetics of propidium iodide uptake in apoptotic and necrotic thymocytes.

Apoptosis and necrosis represent two different mechanisms by which cells die. The dynamics of cellular lesions in these two processes differ. In particular we demonstrate that plasma membrane damage, occurring as a primary event during necrosis represents, on the contrary, a delayed but massive phenomenon during apoptosis. In consequence there are different kinetics of propidium iodide incorporation by necrotic and apoptotic thymocytes. This represents the basis for the flow cytometric identification of different cellular subsets. Analysis of these subsets after sorting showed that clearly apoptotic cells, which are not able to exclude propidium iodide for long incubation periods, do not show any morphologically detectable membrane damage. The kinetics of propidium iodide incorporation in vivo in isolated rat thymocytes can therefore be used in flow cytometric analysis. This technique can be used instead of DNA staining of ethanol-treated cells or nick translation to recognize apoptotic cells, and distinguish apoptosis from necrosis, without killing the cell.

Animals↗

Phorbol ester-induced effects on cell cycle progression and terminal deoxynucleotidyltransferase (TdT) activity in KM-3 pre-B cell line.

Phorbol myristic acetate (PMA) is a tumor-promoting agent that has been shown to induce differentiation of human leukemia cells and of normal lymphoid cells. We have investigated the ability of PMA to induce inhibition of cell growth of the human KM-3 pre-B leukemic cell line by multiparametric analysis. Our results show that PMA treatment induces cell differentiation with the disappearance of terminal deoxynucleotidyltransferase and a decrease of cell growth, as evaluated by [3H]thymidine uptake. Flow cytometric analysis of BrdU incorporation shows that PMA is able to induce a modification of the cell cycle with a sharp decrease of the percentage of S-phase cells, which is more evident after 24 h of treatment. Comparison between the cell growth kinetics and TdT synthesis and activity shows that differentiated cells are still able to proliferate to a certain extent and that the TdT disappearance and the initial decrease of cell proliferation are two independent effects of PMA.

B-Lymphocytes↗

Human pituitary tumours: studies on genes expression.

Searching for differences in gene expression between different types of human pituitary adenomas, we evaluated the concentration of mRNA from hormonal genes (prolactin and growth hormone) and oncogenes (c-myc and c-fos) in 12 growth hormone-secreting 7 prolactin-secreting and 11 nonsecreting adenomas. We found a positive correlation between clinical diagnoses and hormonal gene expression in all the cases. Our reports indicate the presence of c-myc and c-fos mRNA in all the adenomas evaluated. The concentration of c-myc mRNA was higher in somatotrophic adenomas than in prolactinomas and nonsecreting adenomas whereas c-fos mRNA concentration was similar in the different types of tumours analysed. Oncogenes products, in turn, might stimulate DNA synthesis and cell proliferation and eventually lead to the formation of pituitary adenomas. This is a working hypothesis.

Adenoma↗

Integrin expression in thyroid cells from normal glands and nodular goiters.

To assess the expression of the very late antigens family of the integrin superfamily in normal and diseased thyroid glands, tissue specimens were digested to a single cell suspension and analyzed by flow cytometry with antibodies against the common beta 1 chain and the six alpha chains known to be associated to beta 1. In multinodular goiters, two cell populations were recognized. The thyroglobulin containing follicular cell population, represented the majority of cells; a minor population was composed of leukocytes. In normal glands, more than 97% of follicular cells expressed the beta 1 chain, associated with high levels of alpha 3 and very low levels of alpha 1, alpha 5, and alpha 6. The remaining cells (< 3%) expressed the beta 1 chain with a 10-fold higher intensity, associated with relatively high levels of alpha 1, alpha 5, and alpha 6, in addition to alpha 3. This small subset was much more represented in multinodular goiters, where it ranged from 10-60% of the total follicular cell population. Immunofluorescence on tissue sections showed that very late antigens were mostly located on the basal cell membrane and that in multinodular goiters cells expressing the alpha 1, alpha 5, and alpha 6 chains occurred in clusters.

Flow Cytometry↗

Interactions of promonocytic U937 cells with proteins of the extracellular matrix.

Monocyte interaction with proteins of the extracellular matrix (ECM) is regulated by expression of specific cell-surface receptors. 12-O-tetradecanoyl phorbol-13-acetate (TPA) has been shown to induce the promonocytic cell line U937 to a more differentiated monocyte-like state. In this study we have analysed the attachment of U937 cells to ECM proteins and the effects of treatment with TPA on this process. Non-induced U937 cells attach to fibronectin- and Matrigel-coated surfaces without TPA stimulation, but TPA further increases adherence to these substrates as measured by an enhanced binding and by the lower concentration of proteins needed in the substrate to achieve 50% of maximal cell adhesion. Attachment to type I collagen was seen only with activated U937 cells, whereas no measurable attachment to bovine serum albumin, vitronectin, and type IV collagen was detected. TPA-activated U937 cells showed a two-fold increase in the expression of the RGD-dependent integrin receptors alpha 3 and alpha 5, and a reduction in the expression of alpha 4, another fibronectin-specific receptor, whereas the common beta 1 chain was unchanged. Attachment of U937 cells to fibronectin was primarily mediated by the alpha 3 and alpha 5 integrins, as revealed by the ability of GRGDS peptides to inhibit attachment, whereas the CS-1 peptide, containing the alpha 4 binding site, was largely ineffective in blocking attachment.

Cell Adhesion↗

Expression of the cholecystokinin gene in pediatric tumors.

We have examined a wide range of cultured human tumor cell lines and found that a specific subset of tumors expresses the cholecystokinin (CCK) gene. All neuroepitheliomas (eight) and Ewing sarcoma (eight) cell lines that were tested express CCK RNA. In addition, two of six rhabdomyosarcoma cell lines also express the CCK gene, suggesting that rhabdomyosarcomas are probably heterogenous and that a subset may be similar to Ewing sarcoma and neuroepithelioma. Very few of the positive tumors express completely processed immunoreactive CCK. However, we have used a radioimmunoassay that detects the CCK precursor to demonstrate synthesis of CCK precursor-like peptides by all of the Ewing sarcoma and neuroepithelioma lines that were tested and by the rhabdomyosarcoma cell line that expresses CCK mRNA. These data demonstrate a consistent association of CCK gene expression with a specific group of human neoplasms. The data also add credence to the theory that Ewing sarcoma and neuroepithelioma are derived from the same transformed cell type. Finally, our results suggest that CCK gene expression may serve as a marker to distinguish these tumors, which are considered to be small-round-cell tumors of childhood, from other pediatric tumors.

Cholecystokinin↗

Natural killer function in flow cytometry. III. Surface marker determination of K562-conjugated lymphocytes by dual laser flow cytometry.

The recognition of effector cell populations that are able to actively from conjugates with target cells is of major importance in studies of lymphocyte cytotoxicity. A number of methodologies have been described to identify the conjugates and count them, but there have been few studies of the binding capability of the different subsets of effector cells involved in the conjugation phenomenon. Here we describe a methodology that permits the study of two surface markers on lymphocytes conjugated to K562 target cells. In particular, the expression of low density CD8 (CD8dim) has been studied on both CD3+ and CD16+ lymphocytes bound to K562 target cells. Previously described methodologies, either optical microscopy or flow cytometry, were not able to identify the effector population by mAb double staining, especially in the case of antigens expressed at low density. The flow cytometric methodology described here permits the measurement of the binding activity of small lymphocyte subsets such as the CD3+ 8dim+ population. However, the method could be used to study the binding activity of any effector population defined by mAb double staining.

Antigens, Differentiation↗

Serum hepatitis C virus (HCV)-RNA and response to alpha-interferon in anti-HCV positive chronic hepatitis.

Hepatitis C virus (HCV) replication was assessed before and during alpha-interferon (IFN) treatment in 22 anti-HCV positive patients with posttransfusion or sporadic chronic hepatitis (CH). Eleven patients were "responders" and 11 patients "non-responders" to IFN. Thirteen anti-HCV negative healthy subjects and five anti-HCV negative patients with autoimmune CH served as controls. Serum HCV-RNA was detected by the polymerase chain reaction (PCR) in all untreated anti-HCV positive patients but in none of the anti-HCV negative subjects. PCR primers from the 5'-noncoding (NC) region were more sensitive than primers from a non-structural (NS5) region in detecting HCV-RNA (21/22, 95% vs. 7/22, 32%, respectively). Positive strand HCV-RNA titre and positivity rate for the negative strand were similar in responders and non-responders before IFN treatment, as well as anti-c100-3 titre by enzyme-linked immunosorbent assay (ELISA), and anti-5-1-1, anti-c33c, anti-c22 positivity rate by immunoblot assay (RIBA). HCV-RNA positivity by both NC and NS primers was more frequent before IFN among responders. During IFN treatment, serum HCV-RNA was detectable, mostly at low titres, in 1 (NC positive) of the 11 responders and in 9 (4 NS positive and 5 NC positive) of the 11 non-responders. Among the four non-responders who were NS positive during IFN, three were NC positive before IFN. Serum HCV-RNA was always found in our post-transfusion or sporadic anti-HCV positive patients with CH. Viraemia generally decreased during IFN treatment, but no available HCV markers clearly distinguished responders from non-responders before IFN treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

DNA synthesis progression in 3T3 synchronized fibroblasts: a high resolution approach.

In order to investigate at ultrastructural level the mechanism of DNA synthesis progression during the different moments of S-phase a bromodeoxyuridine-anti bromodeoxyuridine (BrdU-anti BrdU) method has been applied to synchronized 3T3 fibroblasts. After 30 min BrdU incorporation, five different labelling patterns can be identified and should be related to early, middle and late S-phase. These patterns are represented mainly by diffuse labelling localized in different nuclear domains and by quite rare cases in which the labelling is limited to isolated clusters of gold particles. After a 5-min pulse with BrdU it is possible to observe isolated clusters of gold particles at each moment of S-phase, which, however, exhibit the same distribution of the five principal labelling patterns observed after 30 min incorporation. In both cases labelling can be detected in the interchromatin regions during early S-phase, at the boundary between interchromatin and heterochromatin during middle S-phase and in the heterochromatin domains during late S-phase. Considering their size, the isolated spots of labelling could be interpreted as single replication units which are subsequently activated throughout the different moments of the S-phase.

3T3 Cells↗

The impairment of natural killer function in the healthy aged is due to a postbinding deficient mechanism.

In order to study the fine mechanisms that underlie the impairment of non-MHC-restricted cytolytic activity which occurs during human aging, we examined by multiparametric flow cytometry the binding and lytic activities of human natural killer cells. The flow analysis revealed a striking increase of the CD16+8- subset, together with a significant decrease of CD8bright cells and total T cells (CD3+). Aging had no influence on the CD8dim subset. The total lytic activity expressed by PBL as well as their binding efficiency to K562 targets were moderately but not significantly increased in the elderly. In contrast, the cytotoxicity of the single target-bound natural killer cell (i.e., lytic efficiency) was deeply impaired in aged subjects, suggesting that the NK functional impairment observed in aging is located at postbinding level.

Adult↗

Age-related events in active T subpopulation. Changes in polyphosphoinositide metabolism during mitogenic activation.

The active E rosette test allows the characterisation of a lymphocyte subset with high affinity receptors for sheep red blood cells. In this study, we compared active T lymphocytes of healthy subjects over 65 and under 30 years of age after mitogenic stimulation. Active E rosettes increased in both age groups after 48 h of phytohemoagglutinin (PHA) stimulation, mainly in young subjects. In addition, analysing the in vitro phosphorylation of inositol lipids, changes occurred in the incorporation of radioactivity in both phosphatidylinositol 4-phosphate (PIP) and phosphatidylinositol 4,5-bis phosphate (PIP2) in the early steps of the mitotic response in the elderly subjects as compared to young ones, hinting that modifications of this signal transduction system are related to mitogenic stimulation in this peculiar T subpopulation.

Adult↗

Production and characterization of murine monoclonal antibodies recognizing HLA-DQ polymorphisms obtained by immunizing mice with transfected L cells.

Two polymorphic anti-HLA-DQB1 mAbs, TM 902 and TM 903, have been produced by immunizing F1 mice (Balb/C x C3H) with HLA-DQ-transfected mouse L cells. Cytotoxic analysis on a panel of HLA-typed cell lines has shown that TM 902 reacts with all the DQB1* alleles except DQB1*0501, *0502, and *0503, and DQB1*0601, *0602, *0603, and *0604, whereas TM 903 reacts with the DQB1*0501, *0502, and *0503, DQB1*0601, *0602, *0603, and *0604, and DQB1*0401 and *0402 alleles. The same reactivity pattern has been confirmed by cytofluorimetric analysis. Indirect immunofluorescence with various class-II-transfected cell lines showed no binding of both mAbs to the DR or DP products, suggesting their reactivity to the DQ products. The use of transfectants expressing HLA-DR/DQ heterodimers demonstrates that TM902 and TM903 mAbs are both specific for the DQ-beta chain. Comparison of the amino acid sequences of the DQ-beta chain suggests the involvement of residues 84-90 (QLELRTT) in the formation of TM902 epitope and of residues 54-55 (GR) in the formation of TM903 epitope.

Alleles↗

Interferon affects cell growth progression by modulating DNA polymerases activity.

A multiparametric analysis of the effects of human recombinant interferon alpha type A on Daudi cells involving flow cytometry and in vitro analysis of alpha and beta DNA polymerase activities has been performed. Results have disclosed (within 60 min of interferon treatment) a decrease of alpha polymerase driven DNA synthesis persisting to at least 24 h, while beta polymerase was poorly affected. Moreover, after 24 h of interferon treatment, a reduction of BrdUrd incorporation per cell, assessed by flow cytometry, was observed suggesting that DNA synthesis in S phase cells is almost completely abolished. The analysis of the effect of interferon on the distribution of cell cycle phases indicated that the G1/S transition is not inhibited by the treatment. These results support the hypothesis that interferon generates a transient initiating signal which quickly reaches the nucleus and produces a rapid inhibition of alpha polymerase activity, leading finally to the slowing of cell cycle progression.

Cell Cycle↗