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Biomedical subjects

G Masucci

Publications and source records attributed to G Masucci.

At least 55 records · Page 3Linked to original sources

Clinical status of monoclonal antibodies in the treatment of colorectal carcinoma.

MoABs have demonstrated an antitumor effect and, in time, may lead to improved outcome in patients with colorectal cancer. The authors describe their experience in Sweden and summarize the results of other studies. Primarily, unconjugated mouse MoABs have been used--directed against tumor-associated antigens. More promising are hybrid antibodies composed of mouse and human elements (chimeric), or human MoABs. Such antibodies also can be used as carriers of a cytotoxic compound. The authors discuss two mechanisms by which MoABs induce their antitumor effect, and how cytokines combined with a MoAB can contribute to lysis. The potential roles of anti-idiotypic antibodies are outlined and the use of MoABs postoperatively is proposed.

Antibodies, Anti-Idiotypic↗

Effect of human blood mononuclear cell populations in antibody dependent cellular cytotoxicity (ADCC) using two murine (CO17-1A and Br55-2) and one chimeric (17-1A) monoclonal antibodies against a human colorectal carcinoma cell line (SW948).

Peripheral blood mononuclear cells (PBMC) from healthy individuals were studied for their lytic capability in ADCC using SW948 (a human colorectal carcinoma cell line) as target cells. Three monoclonal antibodies (MAbs) were used: two mouse MAbs (IgG2A) against the antigenic structures CO17-1A and BR55-2 respectively and one chimeric MAb 17-1A (IgG1) (mouse-human). Three kinds of effector cells were prepared. PBMC were purified on a Ficoll-Isopaque gradient (FIP cells) (a mixture of lymphocytes and monocytes). To obtain pure monocytes (greater than 90%), PBMC were centrifuged on a Nycodenz gradient (Nycodenz cells). Highly purified lymphocytes (greater than 98%) were obtained by treatment of FIP cells with iron powder and removal of phagocytic cells (PBL cells). Monocytes had the highest lytic capability. FIP cells were less effective than monocytes. PBL cells had the poorest killing activity. In reconstitution experiments addition of increasing amount of monocytes to PBL resulted in an augmented cytotoxicity. The numbers of Leu-M3+ cells, Leu-M5+ cells (monocytes) and CD16+ cells correlated positively to cytotoxicity. Higher concentration of MAb 17-1A was required to reach the same level of cytotoxicity using FIP cells as effector cells as compared to monocytes. MAb BR55-2 induced the same cytotoxic activity as MAb 17-1A. Combination of these two MAbs did not increase the lytic capability. Chimeric MAb 17-1A mediated ADCC in a dose-dependent fashion. The chimeric MAb was consistently more effective than the mouse MAb.

Animals↗

Analysis of Epstein-Barr virus-specific and non-specific immune functions in a patient during the development of a non-Hodgkin's lymphoma.

A 57-year-old woman who presented with a reactive non-malignant lymphadenopathy was observed subsequently during the development of a nodular centroblastic non-Hodgkin's B-cell lymphoma. The Epstein-Barr virus (EBV)-specific antibody profile and EBV-specific and non-specific cell-mediated immune functions were determined at first presentation, and at various times during progression, in order to determine whether EBV was causally involved in the lymphoma and to assess in general the patient's cell-mediated immune function. At presentation, an immunodeficient status was suggested by an EBV-specific antibody profile indicative of an activated persistent infection; high antibody titers to viral capsid antigen (VCA) and early antigens (EA), but a low level of antibodies to EBV nuclear antigen (EBNA) confirmed by lack of leukocyte migration inhibition in response to EBNA (LMI-EBNA). The number of positive cells reactive with OKIa1 monoclonal antibody was significantly depressed, as was also the natural and interferon-activated killing (NK-IAK). After emergence of the lymphoma, NK-IAK reactivity and spontaneous lymphocyte DNA synthesis augmented in parallel with an increase in the frequency of Leu-7+ blood lymphocytes. The EBV-specific cell-mediated response, reflected by the outgrowth inhibition (OI) test was abolished in parallel with a decrease in the frequency of OKT3- and OKT4-positive lymphocytes.

Cell Migration Inhibition↗

Leukocyte migration inhibitory factor production by activated lymphocytes representing immunological memory or virus-receptor interaction: response of T cell subsets to Epstein-Barr virus nuclear antigen, response of B cells to UV inactivated Epstein-Barr virus.

Both T and B lymphocytes are known to produce leukocyte migration inhibitory factor (LIF) after appropriate activation. We showed that EBV nuclear antigen (EBNA) triggered T cells for LIF production in an immunologically specific way: only T cells of seropositive individuals responded. Both Fc receptor positive and negative T cells produced LIF, and the presence of macrophages was necessary. The virus itself activated B cells independently of the serological status of the donors, thus the function was not based on immunological memory. This phenomenon was independent of the transforming capacity of the virus, because UV-inactivated virus also elicited LIF production by B lymphocytes. This triggering seems to be the consequence of the virus-receptor interaction on the cell surface.

Antigens, Viral↗

Epstein-Barr virus (EBV)-specific cell-mediated and humoral immune responses in ataxia-telangectasia patients.

As a part of studies on cell-mediated immune (CMI) responses of immunocompromised, Epstein-Barr virus (EBV)-infected patients who can or cannot restrict the proliferation of EBV-transformed B cells, we have studied 16 Turkish patients with ataxia-telangectasia (AT). Fifteen were EBV seropositive; one was seronegative. Among the seropositives, eight had no or only low anti-EBV-determined nuclear antigen (EBNA) antibody titers, while seven had normal anti-EBNA levels. EBV-seropositive and -seronegative healthy Turkish children were used as controls. We have particularly asked the question whether low EBNA antibody titers can be correlated with the level of EBV-specific and -nonspecific cell-mediated immunity. Non-EBV-specific tests included cell count, phenotypical characterization with monoclonal antibodies, assessment of natural killer (NK)-cell activity, and ability to suppress mitogen-induced immunoglobulin production. Two EBV-specific CMI tests were used: outgrowth inhibition (OI) and leukocyte migration inhibition (LMI). The majority of the patients of the low-EBNA antibody group was IgA deficient and had high levels of alpha-fetoprotein (a-FP). Cells reacting with OKT8 monoclonal antibody predominated in both AT patient groups. In contrast, the suppressor activity was present in only a few patients and NK and interferon-activated killing (IAK) activities were normal. EBV-specific cell-mediated responses were defective in seven of eight patients in the low-anti-EBNA group and five of seven patients in the group with normal anti-EBNA titers. It is concluded that AT patients are often defective in their EBV-specific cell-mediated immune responses and with regard to their EBNA antibody levels. These defects are associated with a predominance of T cells reacting with OKT8 monoclonal antibody.

Adolescent↗

EGNA-specific LIF production of human lymphocyte subsets.

Using the indirect leukocyte migration inhibition technique T cells have been identified as being responsible for Epstein-Barr virus nuclear antigen-induced specific leukocyte migration inhibitory factor production. The response was dependent on the presence of macrophages or their product, T-lymphocyte activating factor.

Antigens, Viral↗

Production of leukocyte migration inhibitory factor (LIF) in human lymphocyte subsets exposed to polyclonal activators.

Lymphocyte subsets separated on the basis of nylon-wool adherence and E and EA rosetting, and characterized for the presence of esterase-positive phagocytic cells were investigated for production of leukocyte migration inhibitory factor (LIF) in response to polyclonal T- and B-cell activators, PHA, ConA, PWM, and Epstein-Barr virus (EBV). In the nylon-passed population only the high avidity E+EA+ cells responded to ConA, PHA-induced LIF production in all E-rosetting subsets. The nylon-adherent E+ subset, which contains activated T cells, produced LIF spontaneously. B cells produced LIF when exposed to PWM or uv-inactivated EBV. In accordance with the known T-cell dependence of PWM activation, LIF was detected only in supernatants of reconstituted populations containing both B and T cells. In contrast, uv-inactivated EBV, devoid of transforming potential, elicited LIF production in the pure B-cell population. LIF production in response to polyclonal activators seemed to be independent of accessory cells since reconstitution with autologous macrophages or semipurified monokine, high-molecular-weight Interleukin 1 (IL-1), did not alter the results.

B-Lymphocytes↗

Virologic, immunologic, and clinical observations on a patient during the incubation, acute, and convalescent phases of infectious mononucleosis.

One patient with infectious mononucleosis (IM) was studied from the probable time of Epstein-Barr virus (EBV) infection (38 days before the onset of clinically overt disease), during the incubation and acute phases, until 6 months after clinical remission. Analysis of spontaneous outgrowth of EBV-carrying lymphoblastoid cells, by limiting dilution on feeder layer cultures, showed that virus containing B lymphocytes are already present early during the incubation period. Also low interferon serum levels were detected early after infection, and only before the onset of clinical disease. All other studied clinical laboratory and virus-associated variables were within normal range during the incubation phase, but changed to a pattern characteristic of IM in parallel to the clinical symptoms. During the acute disease EBV-associated nuclear antigen (EBNA)-positive cells could be directly detected among the lymphocytes, and antibodies to EBV antigens appeared. Lymphocytes stained by monoclonal antibodies, detecting Ia-like determinants (activated cells) and suppressor cells, increased dramatically, in parallel to a strong increase of functional suppressor cell activity, measured by inhibition of blastogenesis and PWM-induced immunoglobulin production. During the acute phase there was also a decrease of spontaneous cytotoxicity against the NK-sensitive cell line K562, while cytotoxicity (spontaneous) against an autologous EBV-positive lymphoblastoid cell line (LCL) was detected only during this phase. These reactions correlated to the presence of blasts, and the autologous reaction was exerted mainly by Fc-receptor-negative cells. Lymphokine production in response to EBV antigens was also initiated during the acute phase. During the convalescence period the serological and cellular immune parameters adjusted to the pattern of a normal EBV-seropositive person.

Adolescent↗

Immunological characterization of Hodgkin's and non-Hodgkin's lymphoma patients with high antibody titers against Epstein-Barr virus-associated antigens.

We have studied nine Hodgkin's lymphoma (HD) and ten non-Hodgkin's lymphoma (NHL) patients with extraordinarily high anti-viral capsid antigen (VCA) titers (greater than 5120). Controls were 13 HD and 23 NHL patients with anti-VCA titers between 40 and 2560. High anti-VCA titers were present in NHL patients at the time of diagnosis or within 16 months, whereas the rise of anti-VCA titers in HD patients appeared to be a late event during the clinical course of the disease (mean time from diagnosis, 68 months). In particular, we have asked whether the exceptionally high anti-Epstein-Barr virus (EBV) titers in some HD and NHL patients can be correlated to some of the EBV-specific and -nonspecific parameters of cell-mediated immunity. The battery of non-EBV-specific immunological tests included the assessment of natural killer cell activity and the analysis of T-lymphocyte subclasses according to surface markers, together with spontaneous and mitogen-induced DNA synthesis and their helper or suppressor activity on PWM-generated immunoglobulin synthesis. Outgrowth inhibition (Ol) and leukocyte migration inhibition were used to assess EBV-specific cell-mediated immunity. The majority of the high-titer HD and NHL patients showed a drastically reduced OKT4:OKT8 ratio in their peripheral lymphocyte population. Low-titer HD and NHL patients showed no such reduction. There was no strict correlation between the number of OKT8-positive cells and suppressor activity in the functional PWM-induced immunoglobulin production test. Part of the high-titer HD patients showed defective cellular responses in the outgrowth inhibition test, directed against the proliferation of EBV-transformed (EBV-determined nuclear antigen-positive) cells. Some of them showed also a deficient leukocyte migration inhibition response to EBV-determined nuclear antigen but, interestingly, not to early antigen-VCA. In the NHL group, only one of the high-titer patients showed a similar defect. None of the low-titer HD and NHL patients showed such defects.

Adult↗

Gamma-interferon (IFN-gamma) produced during effector and target interactions renders target cells less susceptible to NK-cell-mediated lysis.

Human mitomycin C-treated PBL were mixed with cells of an NK sensitive hybrid cell line (PUTKO-I). A fraction of tumor cells survived this treatment and could be recovered from the cultures. These surviving cells were completely NK-resistant and this property persisted for 2-3 weeks after cultivation in fresh medium. Treatment of a clone (C13) of PUTKO-I with PBL-PUTKO mixed lymphocyte-tumor-cell culture (MLTC) supernatants resulted in a marked reduction in NK sensitivity after 8-12 h of treatment. The kinetics of induction of NK resistance by MLTC supernatants was similar to that of purified IFN-gamma and was faster than for IFN-alpha. The active component in the supernatants was characterized as a mixture of IFN-gamma and IFN-alpha based on neutralization of activity with specific antisera. The role of mycoplasma contamination was investigated and it was found that cell lines free of detectable mycoplasma stimulated production of NK-protective activity by PBL and this activity was neutralized by anti-IFN-gamma serum. Separation of PBL on discontinuous Percoll gradients demonstrated a correlation between the NK activity of cell fractions and their ability to produce IFN in response to tumor cells. Taken together, the selection-dependent variations in NK sensitivity, the kinetics of IFN production and induction of resistance suggest that tumor cells may be able to escape elimination by NK cells due to protection by IFN produced by the effector-cell-containing population.

Cell Line↗

Comparison of highly NK active human lymphocyte subsets separated by various procedures involving E, EA rosetting, density gradients and adherence to immune complexes.

Lymphocyte subsets from human blood obtained by different procedures were analyzed for cytotoxic potential and phenotypic characteristics. Nylon wool column passed lymphocytes were fractionated on the basis of: (1) E and Fc gamma receptor expression, (2) cell density and Fc gamma receptor expression, (3) Fc gamma receptor expression. The cytotoxic subsets obtained by separation on the basis of E and EA rosetting differed in their phenotypic composition from those separated on the basis of density or on immune complex monolayers. The E- Fc gamma- population contained few LGL and OKM1 positive cells. The E- Fc gamma+ population was made up almost entirely of LGL and OKM1 positive cells. The low density population was highly enriched in LGLs; among these the Fc gamma- cells were OKT3 positive. In contrast to the E- population the low dense Fc gamma+ cells were mainly LGLs and were OKM1 positive. Fc gamma+ subsets had less killer activity against Daudi cells. The choice of procedure for obtaining a strongly cytotoxic population depends on the needs of particular experiments. Separation on the basis of E rosetting gave lower cell (62%) and cytotoxic (43%) recovery and required about twice the amount of blood and twice the time, as compared with the other 2 procedures. The cell fractions obtained this way allowed characterization of several phenotypically different active populations and showed a difference in cytotoxic potential against K562 and Daudi cells. Density fractionation isolated a highly cytotoxic subset with LGL morphology but this population was still heterogeneous phenotypically. With regard to enrichment of NK activity, the immune complex monolayer attachment method was the most efficient for total cell recovery and for the time taken to perform it.

Antigen-Antibody Complex↗

Large granular lymphocytes inhibit the in vitro growth of autologous Epstein-Barr virus-infected B cells.

The effect of lymphocyte subsets, separated on the basis of cell density, on Epstein-Barr virus (EBV)-induced B-cell proliferation was studied. The experiments were performed with lymphocytes of seropositive individuals. After 2 weeks of culture, the growth of B cells was inhibited by the T subset, which is also active in natural killer assays, i.e., the low-buoyant density lymphocyte fractions. However, if the cultures were observed for a longer time, the initial growth regressed even in cultures containing the subsets which did not have natural killing (NK) function, i.e., those with high cell density. The initial cell concentration at which the cultures were seeded determined the outcome of the experiments and the demonstration of inhibitory effects. An important difference was seen between the subsets with regard to radiosensitivity. The prompt inhibitory effect of the NK-positive subset remained after irradiation, while the function of the NK-negative one was abrogated. In the presence of the irradiated T-enriched total population, infected B cells (BEBV) grew. Consequently, the radiation-resistant effector compartment, represented by the low-density cells, was not sufficient to counteract the establishment of BEBV lines. They contributed, nevertheless, to the regression because the kinetics of B-cell growth were different in cultures containing separated high-density cells or the total population. In the former, growth continued for a longer time and complete regression occurred only in the cultures initiated with high cell concentrations. The experiments showed that two types of cells contribute to the regression of BEBV growth in cultures initiated with lymphocytes of seropositive donors. One acts promptly and is independent of cell proliferation; another is activated for proliferation by encounter with B blasts.

Cell Division↗

Natural killer activity of human blood lymphocytes.

Natural killer (NK) activity is an operational designation. It implies the in vitro cytotoxicities registered in short-term tests exerted by lymphocytes derived from donors with no known immunization history against the particular target. The strength of the effect exerted by unmanipulated blood lymphocytes shows an individual variation. Short-term in vitro treatment with interferon elevates the lytic potential of lymphocytes. Owing to the heterogeneity of the cytotoxic blood lymphocytes with regard of cell surface properties it is not possible to separate all active cells and inactive cells in clean populations. A considerable enrichment of active cells can be achieved if nylon wool non-adherent, large, granular Fc gamma receptor positive SRBC receptor negative--or low-avidity SRBC receptor positive--OKM1-reactive cells are separated. Negative cells are concentrated in the Fc receptor and OKM1-negative high-avidity SRBC receptor positive high cell density subset. The activity of lymphocytes in the former category is potentiated by interferon and the latter acquire the lytic function if PHA is added to the assay system. Freshly separated, non-cultured tumor cells are not or weakly sensitive to the effect of unmanipulated lymphocytes. However, when the lymphocytes are treated with interferon prior to the assay a lytic potential can be induced even against these in allogeneic effector target combinations. Cytotoxic cells which acquired the function after in vivo and/or in vitro immunization are designated as 'cytotoxic T-lymphocytes' (CTL), and were shown to act on the basis of antigen recognition. The expression of known T-markers on at least a fraction of the active cells and the recognition of alloantigens in NK systems suggest that the distinction between CTL and NK cells is not as sharp as initially suggested.

Animals↗