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Biomedical subjects

M Tricarico

Publications and source records attributed to M Tricarico.

14 recordsLinked to original sources

Effects of resveratrol on human immune cell function.

Resveratrol (3,5,4'-trihydroxystilbene), a polyphenol found in grapes and grape products such as red wine, has been reported to exhibit a wide range of biological and pharmacological activities both in vitro and in vivo. Because many of the biological activities of resveratrol, like the inhibition of cyclooxygenase, induction of CD95 signaling-dependent apoptosis, effects on cell division cycle and modulation of NF-kB activation, suggest a possible effect on the immune system, we evaluated the in vitro effects of resveratrol in three immune response models: i) development of cytokine-producing CD4+ and CD8+ T cells induced by stimulation of peripheral blood mononuclear cells (PBMC) with anti-CD3/anti-CD28; ii) specific antigen-induced generation of cytotoxic T lymphocytes; iii) natural killer (NK) activity of PBMC. The results showed that in vitro exposure to resveratrol produces a biphasic effect on the anti-CD3/anti-CD28-induced development of both IFN-gamma- IL2- and IL4-producing CD8+ and CD4+ T cells, with stimulation at low resveratrol concentrations and suppression at high concentrations. Similarly, the compound was found to induce a significant enhancement at low concentrations and suppression at high concentrations of both CTL and NK cell cytotoxic activity. On the whole, the results of the study indicate that resveratrol modulates several human immune cell functions and suggest that this activity may be related to its effects on cytokine production by both CD4+ and CD8+ T cells.

Anti-Inflammatory Agents, Non-Steroidal↗

In vitro infection of CD4+ T lymphocytes with HTLV-I generates immortalized cell lines coexpressing lymphoid and myeloid cell markers.

The human T cell leukemia/lymphoma virus (HTLV-I) is the etiologic agent of adult T cell leukemia (ATL). CD4+ lymphocytes are the preferential targets of infection, even though other cell types can be infected in vitro by the virus. Although ATL cells show CD3 and CD4 surface markers, some ATL-derived cell lines were reported to express also myeloid antigens. In order to analyze possible phenotypic changes induced by HTLV-I after infection of human lymphocytes, CD4+ cells were isolated from peripheral blood of three healthy donors, by separation through immunomagnetic beads. CD4+ lymphocytes were then infected by coculture with irradiated HTLV-I producing MT-2 cells. The phenotypic profile of infected cells was studied by flow cytometric analysis using monoclonal antibodies against lymphoid (CD3, CD4, TCR alpha/beta) and myelomonocitic markers (CD13, CD14, CD15, CD33, CD34). The results show that HTLV-I immortalized cell lines coexpressed CD13, CD33 and lymphoid markers. No expression of CD14, CD15 and CD34 was observed. These data suggest that the presence of both myeloid and lymphoid phenotype in HTLV-I infected T cells is the results of an induction rather than a selection mechanism.

Biomarkers, Tumor↗

Interferons antagonize gamma-ray-induced depression of natural immunity.

PURPOSE: The aim of this study was to determine the inhibitory effects of in vitro radiation on the number and function of natural killer (NK) cells and to investigate the capability of interferons (IFNs) to restore the activity of NK, depressed by gamma-rays. METHODS AND MATERIALS: Mononuclear cells (MNC) were obtained from intact or in vitro irradiated (20 Gy) peripheral blood collected from healthy donors. Alternatively, MNC were irradiated (20 Gy) after separation from intact whole blood. The in vitro treatment of MNC with IFNs (alpha, beta, or gamma, 200 UI/ml) was performed at different times after or before radiation. The NK activity (4 h-51Cr release test), the percentage of CD16+/CD56+ cells and apoptosis (cytometric analysis), and binding (microscopic observation) were evaluated on Days 0, 1, 2, and 5 from gamma-ray exposure and IFNs treatment. RESULTS: The in vitro treatment of irradiated MNC with betaIFN after radiation completely reverses the inhibitory effects of gamma-rays on human NK activity. BetaIFN do not reduce the apoptosis induction by radiation and don't modify the number of CD16- or CD56-positive cells. The binding between irradiated effectors and tumor cells (K562) appears partially increased in betaIFN-treated MNC. CONCLUSIONS: The results of the present investigation suggest a possible role of betaIFN in reversing the detrimental effect of radiation on human natural immunity and provide a rational basis for in vivo use of betaIFN in cancer radiotherapy.

Gamma Rays↗

Long-term hospitalization for tuberculosis control. Experience with a medical-psychosocial inpatient unit.

CONTEXT: Patients with tuberculosis (TB) who are nonadherent to therapy or have complicated medical or social problems pose a threat to public health. In some cases, hospitalization may be a necessary component of a comprehensive TB control program. OBJECTIVE: To describe experience with a new inpatient program for TB control. DESIGN: Retrospective review. SETTING: Eighteen-bed, secure, TB treatment unit in a state public health hospital providing a spectrum of acute and chronic care services. PATIENTS: Patients with known or suspected TB who were unable to be treated as outpatients and were hospitalized from 1990 through 1995. INTERVENTIONS: Voluntary or involuntary hospitalization, with medical, psychosocial, and legal services. MAIN OUTCOME MEASURES: Admissions, treatment completion, and disposition. RESULTS: A total of 166 patients with a confirmed diagnosis of TB accounted for 214 hospitalizations for TB. The mean age was 42 years, 132 (79.5%) were men, 84 (50.6%) were nonwhite, and 45 (27.1%) were foreign born. At the time of admission, 58 patients (34.5%) were homeless, 116 (69.9%) had a history of abuse of alcohol or other drugs, and 46 (31.7%) were positive for human immunodeficiency virus. The mean length of stay was 119.7 days (median, 70 days; range, 7-656 days), and was higher among homeless patients than nonhomeless patients (168.8 vs 93.4 days). Of 48 patients (28.9%) who were admitted involuntarily, 21 required long-term confinement under court order. Admission indications (not mutually exclusive) changed over 5 years: nonadherence decreased (95% to 34%), medical complexity increased (14% to 77%), short-term isolation increased (19% to 39%), and involuntary admission decreased (54% to 13%). Of 157 patients with positive cultures for Mycobacterium tuberculosis, 36 (23.1%) were resistant to at least 1 drug, including 16 who were multidrug resistant. A total of 123 patients (74.7%) were discharged to an outpatient setting to complete therapy, 40 (24.1%) required inpatient care to complete therapy, and 3 died (1 from TB) before discharge. CONCLUSIONS: A high proportion of patients with TB who failed outpatient therapy completed treatment in a combined medical and psychosocial inpatient unit. During the 5-year study period, involuntary admissions decreased and most patients completed therapy as outpatients. In Massachusetts, this program plays an important role in protecting public health and in providing specialized medical management for patients to complete therapy in a safe and supportive environment.

Adult↗

Untreated or drug-treated tumor cells are differentially recognized by allogeneic lymphocytes.

Murine tumor cells treated with triazene compounds (TZC), in vivo or in vitro, are capable of eliciting specific transplantation resistance in syngeneic hosts, and T-cell-mediated proliferative and cytotoxic responses, directed against novel drug-induced antigen(s). Since this phenomenon, referred to as chemical xenogenization (CX) could open up new perspectives in the immunochemotherapy of human neoplasias, it was of interest to investigate whether CX could also occur in human tumors. However, established human tumor cell lines along with fully immunocompetent autologous lymphocytes, are seldom available. Therefore studies were carried out to test whether parental or TZC-treated tumor cells could be differentially recognized by allogeneic lymphocytes. Experiments were performed in both human and murine models, using a lung adenocarcinoma line treated in vitro with TZC, or an established xenogenized mouse lymphoma, respectively. The results indicate that allogeneic cytotoxic T-lymphocytes (CTL) recognize specifically murine TZC-treated tumor cells. This was supported by the finding that antisera directed against the drug-treated cells abrogated the generation and the cytolytic activity of allogeneic CTL reactive against the TZC-treated tumor. In addition it was found that changes of the antigenic pattern of cell membrane recognizable by cloned allogeneic CTL occur in the TZC-treated human carcinoma cell line.

Animals↗

Combined effects of host antitumor immune responses and chemotherapy. Studies with hexamethylmelamine.

The antitumor activity of hexamethylmelamine (HMM) was tested in various mouse tumor models in the presence or absence of host-vs-tumor graft responses. The drug was moderately active against Sarcoma-180 growing in different strains of non-sensitized mice. Strong protection was afforded when recipients were preimmunized with irradiated tumor cells 15 days before tumor challenge followed by HMM treatment. The drug did not show antitumor activity against two radiation-induced lymphomas of congenic mice of B10 background, inoculated into H-2 compatible hosts, or into mice incompatible for subregions of H-2. In this model HMM increased mortality of allogeneic mice presumably through impairment of host-vs-lymphoma graft resistance. In conclusion this study shows that synergistic or antagonistic effects can be obtained by combining chemotherapy with antitumor immune responses.

Altretamine↗

[Not Available].

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Austria↗

Drug-mediated increase of susceptibility of human lung cancer to NK or LAK effector cells.

Previous studies in murine models have shown that in vivo or in vitro treatment of tumor cells with mutagenic triazene compounds (TZC) lead to the appearance of novel drug-mediated tumor antigens (DMTA) capable of eliciting graft resistance in syngeneic hosts. This phenomenon, defined as 'chemical xenogenization' (CX), could be of potential value for immunochemotherapy of human neoplasias. It was also shown that TZC modulate NK sensitivity of murine tumor cells. Therefore, experiments were conducted to evaluate whether susceptibility of a human lung adenocarcinoma cell line (H125) to natural cytotoxic effectors could be affected by treatment with an in vitro active TZC. The results showed that drug treatment of H125 line leads to heritable increase of susceptibility to NK and LAK cells. Moreover, increased binding between effector and drug-treated target cells was observed. Additional studies on HLA antigens showed that changes in HLA-ABC molecule expression were probably not involved in TZC-induced increase of NK/LAK susceptibility. These results suggest that TZC treatment of a human tumor could result in increased expression of membrane structures recognized by natural cytotoxic effector cells. Further studies are required to explore whether these changes are generated by mutational events correlated with TZC-induced CX of human cancer cells.

Antigens, Neoplasm↗

Effect of 4-hydroxynonenal, a product of lipid peroxidation, on natural cell mediated cytotoxicity.

Lipid peroxidation of cell membrane yields a variety of final products whose a quantitatively important component is 4-hydroxynonenal (HNE). Previous studies performed in our laboratory suggest that HNE may play a physiological role in the control of cellular proliferation and/or differentiation. This appears to be further supported by our recent findings showing that pre-treatment of K562 cells with a physiological concentration of HNE leads to a marked reduction of susceptibility of NK cells. The observed regulatory effects of HNE on tumor cell growth and susceptibility to natural immune resistance, led us to try to better understand the immunotoxicological properties of this aldehyde. The present study analyses the effects of HNE on NK-mediated cytotoxicity. Treatment of MNC as effector cells with concentrations of HNE ranging from 0.001 to 1 microM for 1 h, did not produce noticeable effects on NK activity. Therefore, this aldehyde at physiological concentrations is able to differentiate tumor cells and to down-regulate target susceptibility to NK effectors from one side. On the other side, it is not able to modify the efficiency of the NK function. Moreover, HNE concentrations higher than 1 microM showed significant and concentration-dependent inhibition of NK activity. However, this effect is reversible and can be antagonized, at least in part, by treatment of effector cells with HNE in combination with beta-interferon.

Aldehydes↗

In vitro effect of hyperthermia on natural cell-mediated cytotoxicity.

It is well known that hyperthermia (HY), which is used for the treatment of cancer, depresses natural cell-mediated immunity in vitro. Experiments were performed to confirm the inhibitory effect of HY (42 degrees C for 1 hour) on natural killer (NK) activity and to evaluate the influence of HY on the generation and cytotoxic activity of interleukin-2 (IL-2)-activated NK cells. Additional experiments were also carried out to evaluate the effect of a simultaneous exposure of effector and target cells to HY. The results showed that HY profoundly reduced the lytic activity of NK cells and demonstrated that this inhibition was transient and not due to an apoptosis-induced reduction of the number of effector cells. Moreover, the exposure of mononuclear cells to HY before IL-2 stimulation did not affect the generation of IL-2-activated NK cells, whereas, the hyperthermic treatment of IL-2-activated NK cells produced a marked reduction of their cytotoxic activity. The results also showed that the simultaneous exposure of effector and target cells to HY, during the cytotoxicity assay, produced a marked reduction of lytic activity of NK and IL-2-activated NK cells, and that this impairment was specific for effector cells. In this context, heat-exposure of target cells alone, did not substantially modify their susceptibility to lysis induced by either NK or IL-2-activated NK cells. These results add further evidence of HY-induced inhibition of natural cell-mediated immunity, and suggest that, in the course of therapeutic HY, immune response could be significantly altered.

Cell Communication↗

Effect of 4-hydroxynonenal, a product of lipid peroxidation, on NK susceptibility of human K562 target cells.

4-Hydroxynonenal (HNE) is one of the major breakdown products generated by lipid peroxidation of cellular membranes. The level of lipid peroxidation and the concentration of its products are inversely related to the rate of cell proliferation and directly related to the level of cell differentiation. It has been reported that HNE inhibits DNA synthesis, ornithine decarboxylase (ODC) activity and c-myc expression in different leukemic cells lines. It has also been demonstrated that HNE inhibits proliferation and induces differentiation in HL60 cell line. In the present study the effects of HNE, at concentrations close to those found in the normal tissues, on the NK susceptibility of human K562 target cells were analyzed. Repeated treatments at 45 minutes intervals with 1 microM HNE were performed to maintain the cells in the presence of the aldehyde for 12 hours. The effect of HNE was compared with that obtained in Haemin-treated cells. HNE causes a strong inhibition of cells growth (53% vs. 34% with Haemin) without affecting cell viability. We further investigated the NK susceptibility of K562 cell line upon in vitro treatment with HNE. Cytotoxic activity of mononuclear cells (MNC) from peripheral blood of healthy donors was determined by 4 hours Cr51-release assay. The results obtained, expressed in terms of percentage of specific lysis at different E:T ratios and in terms of KC (10(6)) at the E:T ratio of 50:1, show that HNE treatment of K562 cells leads to a marked reduction of susceptibility to NK cells; this decrease is very close to that found in the K562 cells treated with Haemin used as inducer. Similar results were obtained using MNC pre-treated with beta-interferon (IFN) as effector cells. MNC show a reduced capacity to lyse HNE-treated cells also under the enhancing cytolytic effect of IFN. These results are in line with data obtained with several common inducers of differentiation such as DMSO, retinoic acid or others.

Aldehydes↗

2'-2'-difluorodeoxycytidine: in vitro effects on cell-mediated immune response.

Little or no data are available on the immunotoxicity of the new deoxycytidine analogue, gemcitabine (2'-2'-Difluorodeoxycytidine, dFdC). The drug was tested on natural killer (NK), interleukin 2-activated killer (LAK) and antigen-dependent cytotoxic effector cells (CTL) activity. NK cells were treated for 16 hours and then tested against K562 cell line. LAK cells were pretreated for 16 hours before or after IL2 stimulation, and tested against DAUDI cells on day 4. CTL were pretreated for 16 hours on day-1 or on day 4 of coculture, and then tested against MT-2 on day 5. Cytotoxic activity was evaluated by a 4 hours 51Cr-release assay. The results indicate that dFdC inhibits markedly LAK or CTL generation, but does so less efficiently on "mature" LAK or CTL lymphocyte function and only slightly on NK cell activity. Therefore dFdC can be considered immunotoxic for either natural or antigen-dependent cell-mediated immunity.

Antimetabolites, Antineoplastic↗