Search PubMed⌕ Search

Biomedical subjects

A Poggi

Publications and source records attributed to A Poggi.

At least 73 records · Page 4Linked to original sources

Origin and functions of human natural killer cells.

Recent data have substantially modified our view of natural killer cells. Although maturation of natural killer cells occurs in the absence of a functional thymus, we have shown that clonogenic precursors capable of differentiating into mature CD3-16+56+ natural killer cells exist in CD3-4-8-16- populations isolated from human thymus. Analysis of peripheral blood-derived natural killer clones showed that they can lyse normal cells (e.g., phytohemagglutinin-induced blasts) isolated from some individuals. Importantly, natural killer clones isolated from single individuals displayed different patterns of cytolytic activity against a panel of normal allogeneic cells. These data suggested the existence of a natural killer cell repertoire. A number of observations have revealed that the expression of given HLA class I alleles protects target cells from lysis by different groups of natural killer clones. Evidence has been gained by genetic analysis of the determinants responsible for susceptibility/resistance to lysis by natural killer clones together with analysis, as target cells, of HLA-defective variants or HLA transfectants. Thus, natural killer cells were found to express a clonally distributed ability to recognize HLA class I alleles. The selection of new monoclonal antibodies directed against members of a novel family of natural killer specific p58 molecules allowed the identification of the putative natural killer receptors for different MHC class I alleles. Firstly, a correlation was established between the expression of given p58 molecules (e.g., EB6 and GL183) and the class I alleles recognized. Secondly, anti-p58 monoclonal antibodies restored the natural killer-mediated lysis of class I-protected cells.(ABSTRACT TRUNCATED AT 250 WORDS)

HLA-C Antigens↗

Reduced smooth muscle cell regeneration in Yoshida (YOS) spontaneously hypercholesterolemic rats.

Hypercholesterolemia is a predisposing factor for atherosclerosis. We studied the response to damage of vascular smooth muscle cells (SMC) from normocholesterolemic Brown Norway (BN) and from spontaneously hyper-cholesterolemic Yoshida (YOS) rats (16-24 month old). The regrowth rate of SMC from BN and YOS rats after freeze-induced damage was similar in the presence of fetal calf serum and of serum derived from normocholesterolemic rats, while it was reduced in the presence of serum from hypercholesterolemic rats. Freeze-injury of the abdominal aorta was followed by reduced neointima formation in YOS rats, as compared to BN rats, confirming the impaired response of vascular cells from hypercholesterolemic rats to injury. This defect may be due either to lipids or to unknown factors present in the hyperlypidemic serum.

Animals↗

Ontogeny, specific functions and receptors of human natural killer cells.

Several of the generally accepted ideas on natural killer (NK) cells have been challenged by recent data that have substantially modified our view on these lymphoid cell populations. Although maturation of NK cells can occur in the absence of a functional thymus, clonogenic precursors capable of differentiating into mature CD3-16+56+ NK cells were found in CD3-4-8-16- populations isolated from human postnatal thymus. Analysis of the cytolytic activity of interleukin-2-activated NK cell populations and clones revealed that they can lyse normal cells (e.g., PHA blasts) isolated from certain individuals. In addition, NK clones isolated from single donors displayed different patterns of cytolytic activity against a panel of allogeneic cells, thus indicating that an NK cell repertoire exists. Genetic analyses of the determinants responsible for susceptibility/resistance to lysis together with the use of HLA-defective variants or HLA-transfectants revealed that the expression of given HLA class I alleles protects target cells from lysis by different groups of NK clones. Thus, NK cells express a clonally distributed ability to recognize HLA class I alleles. New monoclonal antibodies directed to members of a novel family of NK-specific p58 molecules allowed identification of the putative NK receptors for different major histocompatibility complex class I alleles. Indeed, a precise correlation has been established between expression of given p58 molecules (e.g., EB6 and GL183 molecules) and class I alleles recognized. In addition, anti-p58 monoclonal antibodies restored the NK-mediated lysis of class I-protected cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Characterization of a cyclosporin A-sensitive activation pathway in cultured T and natural killer cells.

Previously, the authors have described a molecule, identified by the LD6 monoclonal antibody (MoAb), present at the cell surface of long-term cultured T and Natural Killer (NK) cells which is involved in cell triggering. In the study described here the authors used biotin surface labelling and immunoprecipitation to show that LD6 MoAb recognizes a surface protein of approximately 65 kDa. In combination with submitogenic concentrations of phorbol esters (PMA); LD6 MoAb was able to induce accumulation of mRNA specific for GM-CSF, gamma-IFN and TNF-alpha and release of these cytokines by LD6+ T-cell lines. Both lymphokine production and lymphokine-specific mRNA accumulation induced by the LD6 MoAb were blocked totally by Cyclosporin A (CsA). To investigate the mechanism(s) of signal transduction through this activatory pathway, the authors performed Ca++ mobilization experiments. The results of these experiments suggested a role for Ca++ in signal transduction. The Ca++ mobilization induced by LD6 MoAb cross-linking could be inhibited totally by the use of pertussis toxin, indicating a possible role for G proteins in signalling through the LD6 MoAb-reactive molecule. Western blot analysis performed with an anti-phosphotyrosine antibody did not suggest that tyrosine kinase activation has a role.

Antibodies, Monoclonal↗

Mouse antithrombotic assay. Inhibition of platelet thromboembolism by disintegrins.

The mouse antithrombotic assay represents a model of fatal pulmonary thromboembolism induced by intravenous injection of collagen and epinephrine. Mice were protected by low doses of two disintegrins, albolabrin (10 micrograms/mouse) and eristostatin (0.6 micrograms/mouse), whereas high doses of a thrombin inhibitor and an inhibitor of von Willebrand Factor binding to glycoprotein Ib were not effective. Injection of collagen and epinephrine resulted in the drop of platelet count and accumulation of platelet aggregates in the lung that appears to be the immediate cause of death. Albolabrin or eristostatin administration did not prevent the decrease of platelet count. Injection of albolabrin resulted in the formation of smaller and reversible platelet aggregates in the lungs and decreased accumulation of 51Cr-labeled platelets in the lung suggesting that this disintegrin decreases formation of platelet aggregates in vivo. We compared the effects of albolabrin and erisostatin on platelet aggregation, tail bleeding time, and survival of challenged animals. Eristostatin was about 5 times more potent in inhibiting platelet aggregation in vitro than albolabrin and 38 times more potent than albolabrin in protecting animals from sudden death. Both disintegrins, at the same doses (0.6-5 micrograms/mouse), caused similar dose-dependent prolongation of the bleeding time; however, only eristostatin exerted a protective effect. In conclusion, a) the mouse antithrombotic assay is a suitable model to screen and to evaluate the potency of platelet fibrinogen receptor antagonists in vivo; b) the results of the antithrombotic assay correlate better with the inhibition of platelet aggregation in vitro than with the prolongation of bleeding time.

Amino Acid Chloromethyl Ketones↗

Extrathymic differentiation of T lymphocytes and natural killer cells from human embryonic liver precursors.

Liver cells were isolated on Ficoll/Hypaque gradients from embryos or fetuses at 6-10 weeks of gestation; 2-20% of the cells expressed CD45 or HLA class I surface antigens and 2-6% expressed CD7. Other T- or natural-killer (NK)-cell-lineage-specific markers were undetectable. Liver-cell suspensions cultured in the presence of phytohemagglutinin and recombinant interleukin 2 gave rise to large proportions of CD3+ lymphocytes expressing either alpha/beta or gamma/delta T-cell receptors. This occurred not only in bulk cultures but also when cells were cloned under limiting dilution conditions. Importantly, these figures were obtained also in embryos at 6-8 weeks of gestation, which is before colonization of the thymic rudiment by T-cell precursors. When the same liver-cell suspensions were cultured in the presence of irradiated H9 cells and recombinant interleukin 2 (either in bulk cultures or under cloning conditions), large proportions of cells (or clones) expressed surface CD16 and CD56 antigens and displayed a strong cytolytic activity against both NK-sensitive (K562) and NK-resistant (M14) target cells. In addition, liver-derived T or NK cells expressed functional receptor molecules since they could be activated via either CD3/T-cell receptor or CD16 surface antigens, respectively. Further fractionation of liver cells on the basis of CD45 antigen expression indicated that only CD45+ cells could give rise to T or NK cells in culture. Thus, CD45 can be used as a marker for identification of an early liver-cell population containing T- and NK-cell precursors. That T or NK cells were derived from male embryos and not from the mother was shown by PCR amplification of X and Y chromosomal sequences. Our present data may offer an in vitro model for extrathymic embryonic T-cell maturation that can be used to examine fundamental aspects of human T-cell development and function.

CD3 Complex↗

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↗

Involvement of CD56/N-CAM molecule in the adhesion of human solid tumor cell lines to endothelial cells.

Tumor-endothelial cell adhesion has been investigated, as this event might represent one of the first steps in the generation of tumor metastasis. We focused our attention on the N-CAM homologous CD56 (besides the CD44, CD15, and CDw49d antigens), as we have recently reported that it can mediate lymphocyte-endothelial cell adhesion [11]. Herein we show that CD56 is involved in tumor cell-endothelial cell binding. This phenomenon is independent of Ca2+ and unlikely to be influenced by the degree of CD56 sialylation.

Antigens, CD↗

Endothelialized myointimal thickening in the rat aorta as a result of extensive freeze injury.

The regeneration of rat aorta intima and medial layer was examined after extensive freeze injury that caused the death of both endothelial and smooth muscle cells. After 1 month complete re-endothelialization of the denuded area was observed. In parallel, myointimal thickening was formed by the smooth muscle cells (SMC) from the uninjured edges and its thickness increased with time. The SMC of myointimal thickening were stellate in the upper part and elongated near the internal elastic lamina. No regenerative response was seen in the medial layer, consisting only of elastic and collagen fibers, and its thickness was reduced during regeneration. These results show that the regenerative response of medial SMC to extensive freeze injury proceeds in the form of intimal thickening.

Animals↗

Differences in the glutathione system of cultured aortic smooth muscle cells from young and aged rats.

We studied the relation between the glutathione (GSH) system and cell proliferation in a model of smooth muscle cells (SMC) derived from the thoracic aorta of 4-6-week-old (young) and 15-month-old (aged) rats. SMC from aged rats showed greater levels of total non-protein thiol compounds (T-SH), increased glutathione transferase (GST) and increased glutathione reductase (GSSG-Red) activities compared with cells from young rats. These changes were associated with an increased proliferation rate of SMC from aged rats. To evaluate the role of GSH on cell proliferation better, a specific inhibitor of gamma-glutamyl-cystein synthetase, DL-buthionine-SR-sulphoximine (BSO) was used. BSO showed a dose-dependent inhibition of cell growth, with an IC50 of 10(-4) M, after 48-72 h of incubation. Removal of BSO restored cell growth, further suggesting a link between GSH levels and vascular cell proliferation. The inhibitory effect of BSO was about two times greater on SMC from young than on SMC from aged rats. BSO showed 56% inhibition on the proliferation of SMC from young rats and 32% inhibition on SMC from aged rats (10(-4) M, 72 h of incubation). A parallel reduction of GSH levels of 38% and 19% for SMC from young and aged rats, respectively, was observed, suggesting that age-related factors may influence the involvement of GSH system in cell proliferation.

Aging↗

The importance of blood cell-vessel wall interactions in tumour metastasis.

Tumour cell dissemination is a complex process, depending on the ability of malignant cells to escape from the primary tumour and penetrate and flow through the bloodstream. Circulating tumour cells can adhere to the vessel wall, dissolve the basal lamina and extravasate, giving origin to metastases. Interactions between tumour cells, blood platelets and leukocytes favour tumour cell adhesion to the vessel wall, migration in extravascular spaces and growth in secondary sites. The biochemical and molecular mechanisms regulating tumour cell adhesion to the vessel wall and intercellular contacts have been studied extensively in recent years. Moreover, it has been shown that either tumour cells or blood cells release growth factors and inflammatory proteins, such as cytokines and chemokines, that may be involved in tumour cell migration and proliferation. Finally, tumour cells and cells of the surrounding tissue possess procoagulant and fibrinolytic properties that may be important in modulating the extracellular matrix around the tumour, to allow tumour cell invasion and progression. We have described the cell types (i.e. blood platelets, leukocytes, endothelial cells), the matrix components (i.e. fibronectin, thrombospondin and laminin) and the growth factors/cytokines (i.e. platelet-derived growth factor, transforming growth factor beta, tumour necrosis factor) involved in these processes. In particular, we have described cell-cell and cell-matrix interactions, cell migration and release of growth factors, cytokines, chemotactic peptides and proteolytic enzymes. This survey has also considered a few innovative approaches for the prevention and cure of cancer and metastasis that are based on these new concepts.

Amino Acid Sequence↗

Signal transduction in human tumor infiltrating lymphocytes.

In the present study we demonstrate that the CD28 activation pathway was functional in human tumor infiltrating lymphocytes (TIL), as it could induce a strong proliferation. On the other hand, a mitogenic combination of anti-CD2 monoclonal antibodies (MoAb) induced a slight proliferation of TIL isolated from lung but not from renal cell carcinoma (RCC). It is to note that CD28 triggering led to calcium mobilization, whereas stimulation via CD2 did not. Moreover, in most cases no synergistic effect between CD2 and CD28 activation pathways could be observed. Phenotypic analysis showed that freshly isolated TIL were mostly CD3+, LAM1+ and CD45RO+. Upon stimulation with anti-CD28 MoAb, the majority of cells lost LAM1 antigen and coexpressed both high (CD45RA) and low (CD45RO) molecular weight isoforms of CD45 molecule. By contrast, among CD2-activated TIL, a small fraction was LAM1+ and less than 10% coexpressed CD45RA and CD45RO antigens. Noteworthy, the CD45 molecule could regulate the CD28-induced calcium mobilization, as demonstrated by cross-linking of CD45RO, but not CD45RA, isoforms before challenging TIL with anti-CD28 MoAb.

Antigens, Differentiation, T-Lymphocyte↗

Antigen-independent pathways of T-cell activation are functional in human immature thymocytes.

The signal requirements for proliferation of CD1+CD3- immature thymocytes have been studied in order to define whether this immature cell population could function despite the lack of the CD3/T-cell receptor complex. We found that CD1+CD3- cells proliferate upon stimulation with anti-CD28 monoclonal antibody as well as with a pair of anti-CD2 monoclonal antibodies in the presence of low doses (0.5 ng/ml) of phorbol-13-myristate-12-acetate and/or recombinant interleukin-2. A minor fraction of CD3+ cells (15%-20%) was also present in the proliferating cell population originating from CD1+CD3- thymocytes stimulated with phorbol-13-myristate-12-acetate and recombinant interleukin-2, either in the presence or in the absence of specific monoclonal antibodies. We further observed that the anti-CD3 monoclonal antibody did not induce the proliferation of CD1+CD3- cells, as expected, and efficiently triggered unfractionated or CD1+CD3+ thymocytes only if exogenous recombinant interleukin-2 was provided. Unexpectedly, we noted that highly purified (greater than 99%), CD1+CD3- immature thymocytes could mobilize calcium via CD3, besides CD2 and CD28 surface molecules, suggesting that a minor undetectable fraction (less than 1%) of CD3+ cells was still present in the purified CD3- population. Nevertheless, the preferential expansion of CD3-CD8+ cells (about one-third of proliferating cells) after triggering via CD28, and to a lesser extent via CD2, support the notion that the alternative pathways of T-cell activation are actually functional in CD1+CD3- immature thymocytes.

Antibodies, Monoclonal↗

Cultured human thymocytes lacking CD2 and CD11a/CD18 antigens are functional and adhere to endothelial cells via CD56 or CDw49d molecules.

The preferential growth of CD3-CD2-CD11a/CD18- thymocytes was obtained by stimulation of CD2-CD3- thymic cells with low doses of PMA (0.5 ng/ml) and subsequent culture in the presence of recombinant interleukin-2 (100 U/ml). After 2-3 weeks, CD3-CD2-CD11a/CD18- thymocytes represented 40-60% of the total proliferating cells. Highly purified CD3-CD2-CD11a/CD18- cell populations were obtained by depletion of the CD11a/CD18+ thymocytes by immunomagnetic beads. Moreover, these populations proliferated for 2-5 weeks and did not change their surface phenotype. It is of note that these cells, despite the lack of CD2 and CD11a/CD18 adhesion molecules, could bind to umbilical vein endothelial cells as efficiently as did CD3+CD2+CD11a/CD18+ thymocytes. Furthermore we demonstrate that (a) CD56 molecule is involved in the adhesion of CD3-CD2-CD11a/CD18- thymic cells, but not of peripheral CD3-CD56+ lymphocytes, to untreated or IFN-gamma- and/or TNF-alpha-treated endothelium, (b) anti-CDw49d mAb could inhibit the adhesion of this thymus-derived population to either IFN-gamma- or TNF-alpha-treated endothelial cells but not to untreated endothelium, and (c) CD56 antigen expressed by these cultured thymocytes has a sialic acid content different from that of peripheral lymphocytes. Indeed, isoelectrofocusing analysis showed that CD56 molecule expressed on CD3-CD2-CD11a/CD18- thymocytes displayed an isoelectric point (pI 5.0) different from that of CD56 antigen expressed by peripheral NK cells (pI 4.7 and 5.4). Further, we noted that CD56 antigen showed the same pI 5.8 after desialylation obtained using neuraminidase treatment. Finally, CD3-CD2-CD11a/CD18- thymocytes mobilized Ca2+ and released TNF-alpha and IFN-gamma after treatment with lectins.

Antigens, CD↗