Search PubMed⌕ Search

Biomedical subjects

L Zamai

Publications and source records attributed to L Zamai.

At least 37 records · Page 2Linked to original sources

Different approaches to the study of apoptosis.

The morphological features of cell undergoing programmed cell death is well known and has been widely described in a number of experimental models with a variety of apoptotic triggering agents. Despite the similar cell behaviour, underlying molecular events seem variable and only partially understood. A multiple approach appears crucial to better clarify the phenomenon. The first technique, DNA gel electrophoresis, allows the identification of fragmented DNA and has been long considered the hallmark of apoptosis. Different patterns of DNA cleavage, which can be identified by conventional or "pulsed-field gel" electrophoresis, are presented and discussed. "In situ" labelling methods are also described both with terminal deoxynucleotidyl transferase and DNA polymerase I, aimed at the study of the distribution of DNA cleavage areas. Flow cytometry is also proposed and different technical approaches, based on different laser utilizations, are discussed. Ultrastructural analysis, allowing the study of apoptotic cell details, is finally considered.

Animals↗

Ionizing radiation-induced apoptosis and DNA repair in murine erythroleukemia cells.

A morphological study of DNA repair and apoptotic patterns in relationship with cell cycle events was performed on murine erythroleukemia cells. The presence and distribution of DNA replicon sites were evaluated through the BrdU-anti BrdU immunofluorescence and immunogold techniques in light and electron microscopy. Different patterns of labelling and percentages of BrdU positive cells were observed depending on irradiation dose (up to 60 Gy) and time in post-irradiation culture (up to 24 hours). An enlargement of the S phase of the cell cycle was evidenced 18 hours post-irradiation as determined by flow cytometry analysis. The high resolution approach showed that, in spite of several morphological alterations, BrdU labelling was present even in cells displaying early and late apoptotic features.

Animals↗

Tiazofurin induces a down-modulation of ICAM-1 expression on K562 target cells impairing NK adhesion and killing.

Tiazofurin treatment of K562 leukemia cells in vitro depletes the metabolites of the guanylate biosynthetic pathway, inducing erythroid differentiation, that, in turn, alters the phenotypic profile. As a consequence, K562 cells possibly modify their interaction with immune cells. Here we describe the binding and killing activity of peripheral blood NK cells against differentiating K562 cells and the correlation between their altered binding capacity and ICAM-1 expression levels in differentiating K562 cells. We found that decreased percentages of NK (and T) cells were bound to differentiating K562 cells generating a decreased cytotoxic activity. This corresponded to decreased expression of ICAM-1, as detected by FACS analysis and Western blot. Erythroid differentiation, binding and killing reduction, and ICAM-1 down-modulation were completely abrogated by guanosine treatment. Tiazofurin causes a decrease in lymphocyte recognition and binding to K562 target cells. This can be ascribed to the down-modulation of ICAM-1 expression on target cells, which, therefore, can escape killing, acquiring a selective survival advantage.

Antigens, CD↗

A subset of human CD34+ hematopoietic progenitors express low levels of CD4, the high-affinity receptor for human immunodeficiency virus-type 1.

We investigated the expression of CD4 antigen in normal bone marrow (BM) samples, enriched in CD34+ hematopoietic progenitor cells. At flow cytometry, a significant fraction (ranging from 25% to 65%) of CD34+ cells also showed low levels of CD4 antigen on their surface. The CD4 receptor densities on the surface of hematopoietic progenitors was approximately 50% that of peripheral blood monocytes and 5% of peripheral blood T lymphocytes. In immunoprecipitation experiments, the CD4 antigen expressed by BM hematopoietic progenitors appeared to be the same form expressed by mature peripheral blood CD4+ cells and appeared to be a potentially functional receptor for human immunodeficiency virus-type 1, because it specifically bound recombinant envelope gp120. Moreover, BM samples, highly enriched in CD34+ cells, showed the presence of CD4 mRNA at reverse transcription-polymerase chain reaction examination. In experiments of complement-mediated cytotoxicity with Leu3-a+Leu3b anti-CD4 monoclonal antibody, a significant reduction in the number of both classes of megakaryocyte (burst-forming unit-meg [BFU-meg] and colony-forming unit-meg [CFU-meg]) and granulocyte/macrophage (CFU-GM) progenitors was observed, whereas erythroid (BFU-E) progenitors were only slightly affected. Moreover, purified CD4+ BM cells obtained by immunomagnetic selection, using high concentrations of Leu3a+Leu3b, showed a colony-forming ability of megakaryocyte and granulocyte/macrophage progenitors comparable with that of CD4- BM cells. In conclusion, the present data show that immature hematopoietic progenitor cells express low levels of CD4, the high-affinity receptor of human immunodeficiency virus-type 1.

Antibodies, Monoclonal↗

In vitro exposure to human immunodeficiency virus type 1 induces apoptotic cell death of the factor-dependent TF-1 hematopoietic cell line.

In this study, we evaluated the effect of a short-term exposure (2 hours) to two different lymphocytotropic strains of human immunodeficiency virus type 1 (HIV-1; HIVIIIB and ICR-3) on the survival of a factor-dependent CD34+ hematopoietic progenitor cell line (TF-1). At flow cytometry analysis, a significant (P < .05) increase in the frequency of apoptotic cell death was observed in HIV-1-treated TF-1 cells, supplemented with low doses of either interleukin-3 (IL-3; 0.02 to 1 ng/mL) or granulocyte-macrophage colony-stimulating factor (GM-CSF; 0.02 to 0.2 ng/mL) with respect to mock-treated cells. On the other hand, higher doses of both cytokines or combinations of suboptimal concentrations of IL-3 plus GM-CSF (eg, 0.2, plus 0.2 ng/mL) completely reversed the HIV-1-induced increase of apoptosis. Remarkably, no signs of productive or latent virus replication were ever observed in HIV-1-treated TF-1 cells up to 16 days of liquid culture. In parallel experiments, the in vitro exposure to HIVIIIB induced a significant and progressive increase of apoptotic death in purified bone marrow CD34+ cells, seeded in liquid cultures in the presence of 1 ng/mL IL-3. The HIV-1-induced apoptosis of TF-1 cells was likely triggered by the simple interaction of HIV-1 envelope glycoprotein gp120 with CD4 receptor, which was expressed at a low level on the surface of TF-1 cells. In fact, treatment of TF-1 cells with recombinant gp120 plus a polyclonal anti-gp120 antibody or with anti-CD4 monoclonal antibody plus rabbit antimouse IgG significantly increased the percentage of apoptotic death. These data suggest that HIV-1, and perhaps also free gp120 in the presence of anti-gp120 antibody; could play a direct role in the pathogenesis of peripheral blood cytopenias in acquired immunodeficiency syndrome patients by inducing apoptotic death of hematopoietic progenitor cells without the need of a direct infection.

Antigens, CD↗

IL-1 alpha antiproliferative and differentiative effects on Daudi lymphoma cells: multiparametric analysis.

Interleukin I alpha (IL-1) is a potent agent that induces a wide range of biological effects. In this study we analysed its effects on cell cycle progression and differentiation of Daudi lymphoma cells. The parallel analysis in light microscopy and cytofluorimetry by means of anti-BrdU monoclonal antibodies showed a reduced rate of proliferation (S phase) with a G1 arrest. These features were confirmed by the lower incorporation of [3H]-thymidine supporting the decrease in the rate of DNA synthesis. In addition this cytokine was able to induce differentiation after 24 hrs of treatment as assessed by the increased expression of Fc receptors (FcR) and morphological criteria. This multiparametric analysis gives evidence to the sensitivity to this cytokine of this peculiar cell line.

Burkitt Lymphoma↗

6-Iodoacetamidofluorescein labelling to assess the state of sulphhydril groups after thermal stabilization of isolated nuclei.

Isolated nuclei and nuclear matrices, prepared from mouse erythroleukaemia cells, were reacted with the sulphhydryl-specific dye 6-iodoacetamidofluorescein. To determine whether in vitro formation of disulphide bonds might play a role in the nuclear matrix stabilization triggered by exposure of isolated nuclei to the physiological temperature of 37 degrees C, a variety of techniques were employed to assess the state of cysteinyl residues after such an incubation. Both flow cytometry and confocal microscopy quantitative analysis did not reveal major differences in the fluorescence intensity of nuclei incubated at 37 degrees C in comparison with those maintained at 0 degrees C. Confocal scanning laser microscopy revealed that 6-iodoacetamidofluorescein labelled a fibrogranular network in isolated nuclei. The fluorescent pattern of the network was not affected by a 37 degrees C exposure of nuclei. However, such a network was not detectable in isolated nuclear matrices, thus suggesting a possible protein re-arrangement during matrix preparation. Sodium dodecyl sulphate-polyacrylamide gel electrophoresis of fluorescent-labelled nuclear proteins showed no difference between heat-exposed and control samples. We conclude that oxidation of cysteinyl residues is not a major factor leading to the stabilization of nuclei incubated at 37 degrees C.

Animals↗

Nuclear pores in the apoptotic cell.

During apoptosis, nuclear pores undergo strong modifications, which are described here in five different apoptotic models. Conventional electron microscopy, supported by freeze-fracture analysis, showed a constant migration of nuclear pores towards the diffuse chromatin areas. In contrast, dense chromatin areas appear pore-free and are frequently surrounded by strongly dilated cisternae. A possible functional significance of this pore behaviour during apoptosis is discussed.

Animals↗

The behaviour of nuclear domains in the course of apoptosis.

Programmed cell death is activated, by different stimuli and in many cell types, to regulate cell population balance during tissue proliferation and embryogenesis. Its initial event seems to be, in most cases, the activation of a Ca(2+)-dependent endonuclease, causing DNA cleavage into nucleosomic fragments. Its morphological expression is characterized by deep nuclear changes, consisting of typical cap-shaped chromatin marginations, followed by nuclear fragmentation and final formation of numerous micronuclei. Cytoplasmic damage appears in a very late stage of the process and the greatest part of the phenomenon appears to take place despite good preservation of the plasma membrane and organellar component. In the present study we analyzed apoptosis in camptothecin-treated HL60 leukaemia cells, and in freshly isolated mouse thymocytes treated with dexamethasone. The process was first quantified and time monitored by flow cytometry. Subsequently the specimens were processed for morphological examination in order to investigate the behaviour of the different nuclear domains. To follow DNA and RNA localization, we utilized osmium ammine and DNase-colloidal gold cytochemical reactions. The concentration of most DNA in the cap-shaped structures was demonstrated by these reactions. Confocal microscopy of cells processed by in situ nick-translation suggested that DNA was firstly cleaved and subsequently condensed in cup-shaped structures. Despite the strong nuclear modifications, nucleoli could be clearly recognized until the late apoptotic stages.

Animals↗

Age-related events in active T lymphocyte subpopulation. A morphological study.

The incorporation of 5-bromo-2'-deoxyuridine (BrdU) into the DNA of active T lymphocytes from healthy aged donors was evaluated after in vitro PHA stimulation by means of light microscopy, electron microscopy and flow cytometry. The percentage of BrdU-labelled cells differed markedly between aged and young donors after 48 h of PHA stimulation, due to an enlarged early S phase compartment. In contrast, after 72 h the percentage of positive cells was quite similar in both age groups and no significant differences in the distribution within S phase nor changes in the patterns of ultrastructural localization of DNA replicon sites were observed. Our study provides evidence that an altered synchronization and a substantial delay in the in vitro cell proliferation occur in this peculiar T subpopulation as a consequence of the ageing process.

Adult↗

Ultrastructural features of apoptosis.

Apoptosis is a gene-directed physiological and programmed process of cell deletion aimed at the regulation of tissue and organ development. It affects different cell types and is triggered by a variety of stimuli all inducing closely comparable structural changes. Despite the deeply different morphology and metabolism of the cell models and the various inducers and their initial effects, a convergence seems to take place in a common metabolic pathway that, in most cases, involves the activation of a Ca2+ dependent endonuclease. A growing body of data is now available on the molecular events that lead to DNA damage. DNA cleavage in nucleosomic or oligonucleosomic fragments is related to the appearance of unusual and very characteristic ultrastructural changes. The nucleus is especially affected, and shows chromatin rearrangements consisting of cup-shaped marginations, sharply separated from diffuse chromatin areas. Nuclear fragmentation subsequently appears, finally followed by the formation of numerous micronuclei. Cytoplasmic damage appears at a very late stage and the process takes place despite good preservation of plasma membrane and cytoplasm.

Animals↗

Human leukemic pre-B line (KM-3) treated with phorbol-ester: trend of polyamines during cell differentiation.

Aliphatic polyamines, putrescine, spermine and spermidine present in bacteria and eukaryotic cells are essential for cell growth. Generally, polyamine levels are elevated in rapidly growing normal and pathological systems. Since polyamines belong to the category of molecules whose synthesis is strongly activated during the G1 period they have been implicated in the cell's preparation for DNA replication. In our experiments, we have differentiated by phorbol-ester, the human pre-B leukemic cell line KM-3. Biochemical and flow cytometric analysis show an increase, in treated cells, of polyamines pathway related to G1 and early S-phase of cell cycle during B cell differentiation.

B-Lymphocytes↗

Lymphocyte binding to K562 cells: effect of target cell irradiation and correlation with ICAM-1 and LFA-3 expression.

Tumor irradiation induces modifications in the interaction of surviving target cells with immune cells. This interaction is mediated by adhesion molecules, whose expression can be strongly altered by radiation treatment. Here the probably of K562 tumor cells for lymphocyte binding was studied after exposure of target cells to different doses of gamma-radiation. Results were correlated to the expression of ICAM-1 and LFA-3 adhesion molecules on target cells. Radiation treatment enhanced the expression of both ICAM-1 and LFA-3 on the surface of target cells in a dose and time of culture-dependent fashion, reaching a maximum 24 hrs postirradiation, when also lymphocyte binding was increased. 10-30 Gy irradiation of K562 cells in vitro induces after 24 hrs, an up-regulation of ICAM-1 and LFA-3 expression that, in turn, increase lymphocyte binding, making tumor cells more exposed to cytotoxic attack. The progressive morphological damage induced by radiation, documented by the scattering singlas in flow cytometry and by electron microscopy analysis of irradiated K562 cells, induced, particularly at delayed times of culture in high doses irradiated cells, alterations of the target cell surface that might prevent the correct interaction with immune cells.

Adult↗

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↗

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↗

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↗