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P Cafforio

Publications and source records attributed to P Cafforio.

17 recordsLinked to original sources

Immunogenicity of an eight amino acid domain shared by Fas (CD95/Apo-I) and HIV-1 gp120. I. Structural and antigenic analysis.

UNLABELLED: Previous studies have demonstrated that immunoglobulin G (IgG) antibodies to VEINCTR-N, a domain shared by Fas (CD95/Apo-I) and gp120, contribute to T-cell apoptosis during human immunodeficiency virus-type 1 (HIV-1) infection as a result of the agonist cross-linking of Fas. The present work was designed to determine whether these molecules are elicited primarily to HIV-1 or the cell receptor. MATERIALS AND METHODS: Sera from 439 HIV-1-infected patients were screened by ELISA for their reactivity to VEINCTR-N. Subjects with significant serum elevations of IgG anti-VEINCTR-N were further investigated. Immunologic parameters, including CD4+ and CD8+ lymphocyte count, extent of T-cell apoptosis, occurrence of both anti-Fas antibodies and circulating soluble Fas titers, and reactivity to the 8-mer peptides resembling the flank-regions of VEINCTR-N on both gp120 V3 loop and Fas were examined. In addition, the antigenicity of these domains was assessed by biochemical and computerized analyses. RESULTS: 21 patients with significant levels of IgG to VEINCTR-N showed both an increased extent of peripheral T-cell apoptosis and binding to full-length Fas. A weak, though positive correlation of the anti-VEINCTR-N activity with its antecedent peptide on Fas was also found. Charge and structural analysis revealed that, although the extended 26-amino acid (a.a.) regions on both proteins were hydrophilic, the Fas peptide adjacent to VEINCTR-N expressed a short beta-conformed a.a. sequence in contiguity with a portion of the shared epitope, also in beta-sheet conformation. Patterns of antigenicity confirmed an apparent immunodominance of the full VEINCTR-N, based on its homology with the consensus sequence of other members of the tumor necrosis factor (TNF) receptor family. The hypothesis that the high immunogenicity of this region of Fas, rather than gp120, can drive the production of anti-VEINCTR-N antibodies also was supported by the concurrent significant elevations of soluble Fas in almost all of the sera studied. CONCLUSIONS: Our results indicate that a high release of the soluble form of Fas by T cells during the chronic immune activation of HIV-1 infection primes a humoral response against this epitope of Fas as a result of its high antigenicity. This is similar to the antibodies to tumor necrosis factor alpha (TNFalpha) receptor (R) (TNFalpha-R) that occur in response to increased levels of the soluble receptor for TNF during autoimmunity.

Amino Acid Sequence↗

VEINCTR-N, an immunogenic epitope of Fas (CD95/Apo-I), and soluble Fas enhance T-cell apoptosis in vitro. II. Functional analysis and possible implications in HIV-1 disease.

BACKGROUND: Recent studies indicate that soluble Fas (sFas) may modulate T-cell apoptosis, since it inhibits Fas-ligand (Fas-L)-mediated cytotoxicity in vitro. Here, we explored whether the soluble receptor and its major immunogenic domain, namely VEINCTR-N, interfered with apoptosis of T cells from human immunodeficiency virus-type 1 (HIV-1)+ subjects showing serum elevations of both the soluble receptor and anti-Fas antibodies, and with that of several T-cell lines. MATERIALS AND METHODS: Both proliferation and apoptosis extent of T cells from 16 HIV-1+ patients showing serum anti-VEINCTR-N immunoglobulin G (IgG) and 15 controls were tested after incubation with sFas and three 8-mer peptides of its first consensus sequence that included VEINCTR-N. Several cell lines were also investigated by flow cytometry for their expression of Ki-67, the APO2.7-related mitochondrial protein, and the annexin-V. In addition, we evaluated the expression of Fas-L and caspases FLICE, CPP32 and ICE either by flow cytometry, immunoblotting, and/or reverse transcription polymerase chain reaction (RT-PCR). RESULTS: Cell proliferation in cultures from both patients and controls was affected significantly by sFas and VEINCTR-N. However, a prevalent increase of the subdiploid DNA-containing cell population occurred within these cultures. Similarly, Jurkat, CEM cells, and a mouse WR19L transformant overexpressing native human Fas underwent prompt apoptosis, which was detected as enlargement of APO2.7-reactive and annexin-V-positive populations. By exploring the Fas pathway in Jurkat cells, we found that both apoptosis inducers acted through Fas, since Fas-L, as well as CPP32 and FLICE were activated. By contrast, ICE was up-regulated only in control cells treated with tumor necrosis factor alpha (TNFalpha). CONCLUSIONS: These data suggest that the soluble molecular forms of Fas prime cell death in Fas-positive cells. Therefore, the shedding of high amounts of sFas in HIV- 1 disease is possibly entrusted with amplification of the death execution program by cells functionally exhausted and committed to die. It is conceivable that the appearance of anti-Fas antibodies reflects an attempt by the immune system to neutralize these effective forms of the receptor and its structurally degraded domains, such as VEINCTR-N.

Amino Acid Sequence↗

Th1 polarization of the immune response in Behçet's disease: a putative pathogenetic role of interleukin-12.

OBJECTIVE: To investigate whether immunologic abnormalities in patients with Behçet's disease (BD) are related to abnormalities of the Th1/Th2 ratio. METHODS: Th1/Th2 cytokine production by peripheral blood lymphocytes (PBL) from 31 patients with BD, 11 patients with inflammatory arthritis, and 10 healthy blood donors was evaluated by intracellular immunofluorescence staining. Serum interleukin-12 (IL-12) levels were measured using an enzyme amplified-sensitivity immunoassay. The effect of recombinant IL-12 (rIL-12) on spontaneous and Fas-mediated apoptosis of phytohemagglutinin (PHA)-stimulated PBL was evaluated by flow cytometry using propidium iodide (PI) staining and a bromodeoxyuridine (BrdU)/PI procedure. RESULTS: Intracellular immunofluorescence staining of IL-2, IL-4, and interferon-gamma (IFNgamma) in CD3+ lymphocytes from BD patients demonstrated a strong polarization of the immune response toward the Th1 pathway that correlated with the progression of BD. Peripheral Th1 cells were significantly increased in patients with active disease (n = 14) as compared with those in patients in complete remission (n = 17), patients with inflammatory arthritis, and normal donors. In addition, serum IL-12 levels were correlated with peripheral Th1 lymphocytes and disease progression. Apoptotic analysis revealed that PHA-activated PBL from patients with active disease were highly sensitive to spontaneous and Fas-mediated activation-induced cell death. However, addition of rIL-12 to complete medium prevented this spontaneous and Fas-induced apoptosis and enhanced the proliferation of Th1 lymphocytes. CONCLUSION: Taken together, these results indicate that a strong Th1 immune response occurs in active BD and suggest that IL-12 plays a substantial part in the pathogenesis of BD. By preventing spontaneous and Fas-induced cell death, in fact, it results in an abnormal growth of autoreactive Th1 lymphocytes that could contribute to the prolonged inflammatory autoimmune condition of BD.

Adult↗

Functional Fas-ligand expression on T cells from HIV-1-infected patients is unrelated to CD4+ lymphopenia.

Recent studies have demonstrated that the expression of Fas by peripheral T cells from HIV-1+ patients is deregulated and increases the susceptibility of these cells to undergo apoptosis. Here, we show that secretion of Fas-ligand (L), the complementary agonist of Fas, is abnormally upregulated in CD4+ cells from HIV-1-infected individuals, particularly during the non-lymphopenic stages of the disease. An increase of soluble Fas-L occurred in T cell cultures from 26 patients with a number of CD4+ cells higher than 400/microliter, whereas it was almost undetectable in cultures from 21 severely lymphopenic patients (CD4+ < 200/microliter). The MTT test, cytofluorimetric analysis of cellular DNA, cytotoxicity, and proliferative assays using the Fas-transfected WC8 mouse lymphoma confirmed the cytocidal capability of T cell supernatants from non-lymphopenic patients. Double-fluorescence analysis revealed that the majority of CD4+ cells (approximately 90%) in these cultures secreted Fas-L in the presence of high intracellular gamma-interferon and low Bcl-2. In contrast, the CD8+/Fas-L+ population was comparably decreased (approximately 55%). Molecular cloning of Fas-L revealed a substantial expression of Fas-L mRNA in cells from non-lymphopenic patients compared with patients with advanced disease and healthy controls. Since CD4+ cells of Th1 phenotype are impaired during HIV-1 infection and show high cellular expression of Fas-L, it is conceivable that excess Fas-L during the early or non-lymphopenic phase of the disease increases the extent of apoptosis in these cells by the Fas/Fas-L pathway. The defective expression of the ligand in severely lymphopenic stages could be explained by exhaustion of this mechanism as the disease progresses.

Apoptosis↗

CD8+/CD57 cells and apoptosis suppress T-cell functions in multiple myeloma.

The aim of this study was to evaluate the role of CD8+/CD57+ lymphocytes in the immune dysregulation of multiple myeloma (MM). Cytofluorimetry of peripheral blood lymphocytes (PBL) purified from 39 MM patients showed an inverse relationship between the percentage of CD8+/CD57+ cells and CD4/CD8 ratio. Analysis of their activation antigens revealed that they were prevalently HLA-DR+ and Fas+. Removal of CD8+/CD57+ cells from MM PBL significantly improved cell proliferation and pokeweed mitogen (PWM)-induced polyclonal Ig production in vitro, whereas the addition of supernatants from patients' CD8+/CD57+ cell cultures to normal PBL suppressed both the PWM-driven Ig synthesis and the proliferative rate of stimulated PBL, supporting the contention that CD8+/CD57+ cells release in vitro an inhibitory factor that is directly involved in T-cell regulatory function. However, since the proliferative recovery of PWM- and phytohaemagglutinin (PHA)-stimulated MM PBL in the absence of CD8+/CD57+ lymphocytes was only partial, a dysregulated activation-induced apoptosis was anticipated. In fact, patients' PBL displayed an increased susceptibility to apoptosis and this was significantly enhanced after PWM and, even more, after PHA stimulation. Analysis of CD57 antigen expression on apoptotic or viable cells demonstrated a substantial defect of apoptosis in the CD8+/CD57+ population. Our results indicate that both the immunosuppressive effect of CD8+/CD57+ cells and the enhanced susceptibility to apoptosis of PBL could be involved in the pathogenesis of the immunodeficiency observed in this disease.

Apoptosis↗

Fas/Fas ligand (FasL)-deregulated apoptosis and IL-6 insensitivity in highly malignant myeloma cells.

IL-6 is a growth factor which interferes in the apoptosis of malignant plasma cells. Here we explore its role in the spontaneous and Fas/FasL-regulated apoptosis of seven myeloma cell clones (MCC). MCC-2 and -7 were constitutively defective in Fas antigen in the presence of large membrane exposure of FasL, and showed a high rate of cell proliferation irrespective of the presence of IL-6. Cytofluorimetric analysis following propidium iodide (PI) staining revealed a minimal extent of spontaneous apoptosis, as in other IL-6-insensitive, though Fas-positive MCC, namely MCC-3 and -5. By contrast, a regular amplitude of apoptosis occurred in the remaining IL-6-dependent clones. Their propensity to cell death, as well as their FasL membrane expression, were promptly down-modulated by the cytokine, whereas no substantial effect was detected in IL-6-independent MCC. Furthermore, we investigated the quantitative secretion of FasL. Both [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide] (MTT) cytotoxicity assay and PI staining of WC8 lymphoblasts from a Fas-transfected mouse lymphoma, incubated with supernatants from MCC, showed a variable cytocidal property, thus confirming the cellular release of FasL. However, a significant elevation of FasL secretion occurred in both Fas- MCC, whereas molecular cloning and sequencing of Fas revealed the presence of a splicing variant, namely Fas Exo4,6Del, in the cDNA from both MCC-3 and -5, which were previously demonstrated to be unresponsive to Fas stimulation. Taken together, these data provide evidence that concurrence of IL-6 insensitivity and deregulation of apoptosis in myeloma cells reflects a high malignancy grade. It is suggested that the secretion of Fas splicing variants in Fas+ plasma cells, as well as the over-production of FasL in Fas- myelomas, are differential mechanisms by which myeloma cells escape host immune surveillance.

ADP-ribosyl Cyclase↗

IgG M-components in active myeloma patients induce a down-regulation of natural killer cell activity.

Natural killer cell activity and related cell surface markers of peripheral blood lymphocytes were studied in 73 patients with multiple myeloma, 25 with monoclonal gammopathy of undetermined significance and 20 normal controls. Natural killer cell number was significantly higher in both multiple myeloma and monoclonal gammopathy patients than in controls, whereas the natural killer activity of multiple myeloma patients was inversely related to their disease status. Incubation of peripheral blood lymphocytes or natural killer cells with IgG myeloma proteins purified from several patients induced a down-modulation of basic natural killer activity. This inhibitory effect of monoclonal IgG was dose dependent and significantly stronger in patients with active (at diagnosis and at relapse) than stable multiple myeloma or in normal controls. Addition of exogenous recombinant interleukin-2 restored natural killer cell activity against K562 target cells, indicating that natural killer cells were able to recover their functions. However, recombinant interleukin-2-stimulated natural killer cells were responsive to down-modulation of monoclonal IgG. These data suggest that impaired natural killer cell function in active multiple myeloma is caused by the inhibitory effect of M-component.

Adult↗

Cross-linking of Fas by antibodies to a peculiar domain of gp120 V3 loop can enhance T cell apoptosis in HIV-1-infected patients.

Previous studies have demonstrated that T cell-reactive antibodies in HIV-1 infection contribute to lymphocyte depletion by cytotoxicity that involves differential membrane targets, such as the 43.5-kD receptor on CEM cells. Here, we show that these antibodies bind Fas as result of a molecular mimicry of the gp120. Both flow cytometry and immunoblotting using the human Fas-transfected mouse WC8 lymphoma revealed positive binding of immunoglobulin G from several patients to a 43.8-kD membrane receptor that also reacts with the CH11 anti-Fas monoclonal antibody. Specificity to Fas was further confirmed to chimeric recombinant human Fas-Fc by ELISA, whereas overlapping peptide mapping of a Fas domain (VEINCTR-N) shared by gp120 V3 loop demonstrated a predominant affinity to the full-length 10-mer peptide. Four anti-Fas affinity preparations greatly increased the subdiploid DNA peak of CEM cells similar to agonist ligands of Fas. In addition, anti-Fas immunoglobulin G strongly inhibited the [3H]thymidine uptake of CEM cells in proliferative assays, inducing a suppression as high as provoked by both CH11 mAb and recombinant human Fas ligand. Since anti-Fas were reactive to gp120, it is conceivable that antibodies binding that domain within the V3 region are effective cross-linkers of Fas and increase apoptosis in peripheral T cells. These results suggest that autologous stimulation of the Fas pathway, rather than of lymphocytotoxic antibodies, may aggravate lymphopenia in a number of HIV-1+ subjects.

Acquired Immunodeficiency Syndrome↗

Antiphosphatidylserine antibodies in human immunodeficiency virus-1 patients with evidence of T-cell apoptosis and mediate antibody-dependent cellular cytotoxicity.

Serum reactivities to a panel of phospholipid antigens, including cardiolipin (CL), phosphatidylserine (PS), sphingomyelin, phosphatidylcholine, and phosphatidylethanolamine, were measured by enzyme-linked immunosorbent assay in 196 human immunodeficiency virus-l+ (HIV-1+) patients with CDC II to IVC clinical disease. Significant levels of IgG to CL, PS, or both were observed in 23 patients lacking evidence of thrombophilic events or any peculiar clinical feature of HIV-1 infection. Fluorescence-activated cell sorting analyses showed that in vitro apoptosis of T cells was increased in patients with high serum anti-PS IgG, whereas the overexpression of Fas/Apo-1 marker was detected in all patients regardless of their antiphospholipid reactivities. Macrophages from patients with significant titers of anti-PS IgG antibodies were not activated by the presence of apoptotic CEM lymphoblasts or by purified anti-PS IgG from the same patients. By contrast, these antibodies greatly improved the effector functions of autologous macrophages in antibody-dependent cellular cytotoxicity (ADCC) assays using 51Cr-labeled CEM cells, whereas polyspecific IgG were unable to induce an equivalent cytotoxicity in all instances. An increasing effect on ADCC was also observed in tests using macrophages from healthy controls to CEM coated with anti-PS IgG. These results support a potential correlation of anti-PS specificity with T-cell apoptosis in HIV-1 infection. Because PS is exteriorized by apoptotic lymphocytes, its persistence may stimulate antibodies which cooperate with macrophages in the clearance of dead cells by an enhanced ADCC mechanism. This interpretation could explain the absence of thrombophilia in HIV-1+ patients with serum elevations of antiphospholipid reactivities.

Antibodies, Antiphospholipid↗

Overexpression of Fas antigen on T cells in advanced HIV-1 infection: differential ligation constantly induces apoptosis.

OBJECTIVES: To investigate Fas in peripheral lymphocytes from HIV-1-positive patients at different disease stages with respect to the extent of apoptosis. DESIGN: The study included analysis of Fas involvement in T-cell apoptosis observed during HIV-1 infection. Because ligation of Fas can result in costimulation of proliferation or the induction of apoptosis in uninfected cells, we evaluated the effect on T cells of Fas activation by monoclonal antibodies (MAb) of different specificity from both UB2 and CH11 clones and activation by the Fas ligand (Fas-L). METHODS: Fas was measured by FACS in peripheral blood and in phytohaemagglutinin (PHA)-driven cultures derived from 59 HIV-1-positive individuals with different Centers for Disease Control and Prevention stages. The percentage of apoptotic cells was detected by propidium iodide cell staining. The effect of Fas ligation was assessed in peripheral T cells from patients and healthy controls by a proliferative test measuring the 3H-thymidine uptake. RESULTS: FACS analysis revealed that Fas was predominantly expressed in advanced disease, although it was promptly exposed in PHA cultures from asymptomatic individuals. In several instances, Fas overexpression was associated with substantial subdiploid DNA content in cells from severely lymphopenic patients. The proliferative assay showed a significant inhibition of 3H-thymidine uptake in T cells from all patients following Fas ligation by the immunoglobulin (Ig) G1 MAb from the UB2 clone. This was in contrast to the apparent cell activation detected in controls and the weak suppression observed in Fas-positive cell lines. In addition, the IgM anti-Fas and recombinant Fas-L concentrations inducing a moderate inhibition of fresh T cells from controls strongly depressed the proliferative rate of cells from patients. CONCLUSIONS: Our data suggest that Fas overexpression parallels the progression of the disease and that the increased susceptibility of T cells from HIV-1-infected individuals to undergo apoptosis may include a Fas pathway. Functionally exhausted T cells in advanced HIV-1 infection are primed to apoptosis because of their high sensitivity to Fas stimulation even using the IgG1 MAb, which is unreactive to the death domain of Fas. This suggests that the increased sensitivity of Fas is apparently unrelated to its trimeric ligation and supports the hypothesis that Fas pathway plays a role in increasing the lymphocyte apoptosis during the disease.

Adult↗

Intravenous immune globulin therapy of lupus nephritis: use of pathogenic anti-DNA-reactive IgG.

The authors have recently shown that antibodies with anti-idiotype (Id) specificity to pathogenic Ids of lupus nephritis may occasionally occur in several intravenous immune globulin (IVIG) preparations because they are present in healthy donors and the healthy relatives of SLE patients. In the present study, the authors purified these anti-Ids and treated two SLE patients with nephritis in parallel with conventional high-dose IVIG management with a commercial preparation (IVIG 6) in three controls for two months. Because pathogenic Ids of anti-DNA molecules, such as both 8.12 and F4 Ids, show a cationic mobility in isoelectric focusing, a commercial preparation of IVIG (11) was absorbed on a Sepharose column coupled with DC-305-39 myeloma protein, namely an 8.12+ and F4+ cationic IgG. Infusion of the eluate (EL-11) induced a prompt resolution of proteinuria levels and an evident decrease of serum levels of anti-DNA antibodies in both patients, whereas in the three controls, proteinuria and anti-DNA antibodies were scarcely reduced. In addition, plasma levels of interleukin (IL)-6 and tumour necrosis factor (TNF)-alpha were also significantly influenced by both treatments. The mean values of both cytokines increased significantly after 1 h and then progressively declined over the next 48 h. It was of interest, however, that the increased TNF-alpha in the two EL-11-treated patients was significantly lower than in the three controls. The data suggest that reduction of active lupus nephritis by enriched specific anti-Id molecules is the result of two (or perhaps more) mechanisms: suppression of pathogenic idiotypes at the cellular level and improvement in the mesangium of the secretion of anti-inflammatory cytokines, such as IL-6, whose defective function is related to the autoimmune disorder.

Antibodies, Anti-Idiotypic↗

Molecular specificities of CD4+ T cell-reactive IgM in human immunodeficiency virus (HIV-1) infection.

The molecular targets and biological properties of lymphocytotoxic sera in 11 human immunodeficiency virus (HIV)+ subjects in CDC stages II to IVC were investigated. A purified soluble CEM membrane used as the CD4+ T cell clonotypic model in immunoblotting techniques revealed a homogeneous pattern of IgM-mediated reactivity to a 43.5-kDa membrane component in 10 sera. Conversely, CEM membrane-reactive IgG from these sera were weakly reactive to various antigens with no prevalent specificity. ELISA assay against purified 25.5-, 43.5-, and 60.8-kDa CEM membrane antigens revealed a significant affinity of IgM from sera 3, 8, 9, and 10 for the 43.5-kDa receptor, thus confirming the high specificity of these cytotoxic antibodies for their substrate. Additional experiments included the idiotypic saturation of purified IgM molecules with increasing amounts of the 43.5-kDa antigen. Functional inhibition of CEM-reactive IgM by their antigen was dose-dependent. The maximum inhibition of the ELISA reactivity was detected at 1/7 antigen/antibody concentration. By contrast, a significant decline of cytotoxic properties of sera 8, 9, and 10 to CEM lymphoblasts was noted only when equivalent concentrations of the 43.5-kDa receptor and purified IgM were incubated. In addition, the 43.5-kDa antigen appeared to be the preferential target of cytotoxic IgM in HIV-1 infection, since purified cytotoxic IgM from two SLE patients were not inhibited by this molecule. Our data provide specific molecular support for earlier evidence of exacerbation by T cell-reactive antibodies of the lymphopenia associated with HIV-1 infection.

Acquired Immunodeficiency Syndrome↗

Pathogenic anti-DNA idiotype-reactive IgG in intravenous immunoglobulin preparations.

This study was addressed to explore the reactivity of natural anti-idiotypes from commercial lots of immunoglobulins to several idiotypes (Ids), usually expressed by anti-DNA molecules in lupus nephritis. Eleven intravenous immunoglobulin (IVIG) preparations and nine (three polyvalent and six hyper-immune) intramuscular IgG were investigated for specific content of anti-DNA, anti-F(ab')2 and antibodies reacting with several anti-DNA IgG Ids. Two samples (nos 6 and 11) showed high reactivity with allogeneic F(ab')2 and with F(ab')2 of myeloma proteins bearing the anti-DNA Id 3I+ and the 8.12+. Since both 3I and 8.12 Id markers are known to characterize pathogenic anti-DNA IgG in systemic lupus erythematosus (SLE), anti-Id antibodies to these markers were obtained by absorbing the IVIG samples nos 6 and 11 to Sepharose columns coupled with pooled F(ab')2 fragments of 3I(+)-F4(+)-8.12(+)-myeloma proteins. Inhibition experiments showed that anti-8.12 Id-eluted IgG induced a selective suppression of the DNA-reactive antibodies derived from patients with active lupus nephritis to their substrate, suggesting the involvement of 8.12+ molecules in the SLE glomerular damage. Since 8.12+ anti-DNA are nephritogenic antibodies, the occurrence of anti-8.12+ Id in commercial IVIG may be of potential therapeutic relevance in modulating the pathogenic SLE Id network. Previous variable results of IVIG treatment in SLE, such as resolution of proteinuria or worsening nephritis, could be related to variable enrichment of different lots of IVIG in suppressive anti-pathogenic Id antibodies.

Antibodies, Antinuclear↗

Polymorphonuclear cell function impairment in patients with Chlamydia trachomatis urogenital infections.

The phagocytic and killing functions of polymorphonuclear cells (PMNs) and monocytes in patients with culturally and serologically proven Chlamydia trachomatis urogenital infections, and the distribution of peripheral blood T cell subsets in the same patients were analysed. A significant impairment of PMNs function was observed in infected patients as compared to the control group, whereas the monocyte function was not affected. In addition, a decrease of CD4+ cells frequency was observed in these patients. Since the PMNs are the most prominent cells observed at the site of C. trachomatis infection, we suggest that a defect of PMNs function may play a role in the host susceptibility to C. trachomatis.

Adult↗

[Methods for assessing programmed cell death].

Apoptosis, namely programmed cell death, is a fundamental mechanism involved in both organogenesis and tissue homeostasis. Since this process is genetically controlled, its defective regulation plays a role in the pathogenesis of several diseases including inflammatory and degenerative disorders, autoimmunity and neoplasia. Several methods have been suggested to identify the cellular events including the modification of cell size, cytoplasmic condensation and nuclear degradation occurring during this phenomenon. The cell morphologic changes can be observed in detail by electronic microscopy, while the chromatin cleavage is well detected by both electrophoretic and flow cytometry techniques, using various fluorochromes able to bind specifically the double-stranded DNA. Here we review the different techniques to evaluate apoptosis with respect to their sensitivity in both qualitative and quantitative analyses.

Apoptosis↗