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C J Lucas

Publications and source records attributed to C J Lucas.

At least 37 records · Page 2Linked to original sources

Recognition of influenza virus-infected B-cell lines by human influenza virus-specific CTL.

The cytotoxic activity on influenza virus-infected Epstein-Barr virus (EBV)-transformed B-lymphoblastoid cell lines (LCL-Flu) and influenza virus-infected phytohemagglutinin lymphoblasts (PHA-Flu) was compared with the use of influenza-A virus-specific cytotoxic T lymphocytes (CTL), generated in short-term bulk cultures. Cold-target inhibition experiments showed that the lysis of PHA-Flu was completely blocked by both cold LCL-Flu and cold PHA-Flu whereas the lysis of LCL-Flu was completely inhibited by cold LCL-Flu, but only partially by cold PHA-Flu, indicating that structures can be recognized on LCL-Flu which are absent from PHA-Flu. Monoclonal antibody (McAb) directed against a monomorphic determinant of major histocompatibility complex (MHC) class I molecules inhibited the lysis of PHA-Flu more strongly than the lysis of LCL-Flu. Since LCL have a high expression of MHC class II molecules compared to PHA lymphoblasts, we examined whether class II-restricted CTL activity was responsible for the (anti)class I McAb-resistant lysis of LCL-Flu. Neither anti-CD4 McAb nor anti-class II McAb inhibited the lysis of LCL-Flu which argues against a contribution of MHC class II-restricted CTL. Depletion of CD16+ cells, containing the majority of the nonspecific cytotoxic cells, did not affect the lysis of LCL-Flu, indicating that the remaining lysis on LCL-Flu was also not due to a nonspecific component. We suggest that cell-type-dependent variations exist in the nature of the immunogenic determinants to which CTL respond.

Antibodies, Monoclonal↗

Role of IL-2 and interferon in the generation of natural cytotoxic activity in influenza virus-stimulated PBL cultures: analysis with the use of prednisolone.

We have examined the role of interleukin 2, interferon-gamma and interferon-alpha in the generation of natural cytotoxic (NC) activity and cytotoxic T-lymphocyte (CTL) activity in peripheral blood lymphocyte cultures stimulated with influenza virus, using the immunosuppressive effects of prednisolone. In addition to an inhibitory effect on the generation of CTL activity, prednisolone also inhibited the generation of NC activity in a similar dose-and time-dependent manner. Prednisolone suppressed the production of interferon-gamma when it was added on the first day of culture of PBL with influenza virus. Levels of interferon-alpha were not affected. The effects of prednisolone on the generation of NC activity and CTL activity in kinetic terms were not paralleled by the effects on interferon-alpha and interferon-gamma production. The diminished generation of NC activity could be reversed by the addition of interleukin 2 (IL-2), but interferon-gamma had little if any restorative effects. Interferon-alpha had no effect. These findings support the hypothesis that IL-2 is the major inducer of NC activity in CTL generation cultures. The inhibitory effect on CTL generation could only be reversed by IL-2 and not by interferon-alpha- and interferon-gamma. Thus, in the absence of IL-2, interferon-alpha and interferon-gamma cannot support the generation of CTL activity or the concomitantly induced NC activity.

Cytotoxicity, Immunologic↗

Inactivation of 12 viruses by heating steps applied during manufacture of a hepatitis B vaccine.

The efficacy of two heating cycles (90 sec at 103 degrees C and 10 hr at 65 degrees C) used during manufacture of a plasma-derived hepatitis-B vaccine was validated for the inactivation of 12 virus families. A period of 15 min warming up to 65 degrees C had already completely inactivated representatives of nine virus families, ie, poxvirus (vaccinia), picornavirus (encephalomyocarditis virus), togavirus (sindbis virus), coronavirus (mouse hepatitis virus), orthomyxovirus (influenza virus), rhabdovirus (vesicular stomatitis virus), herpes virus (cytomegalovirus), lentivirus (human immunodeficiency virus), and retrovirus (murine leukemia virus). After prolonged heating at 65 degrees C or heating for 90 sec at 103 degrees C, parvovirus (canine parvovirus) and the phage phiX174 were also completely inactivated. Papovavirus represented by simian virus 40 (SV-40) was the most heat-resistant virus evaluated. The infectivity of SV-40 was reduced by 10(4) Tissue Culture Infectious Doses (TCID50) per ml after 90 sec at 103 degrees C, but a marginal residual activity (less than 1.5 TCID50 per ml) was observed. Subsequent pasteurization for 10 h at 65 degrees C did not further reduce the infectivity of SV-40. This study shows that the two heat-inactivation steps used during the production of this vaccine kill a wide variety of viruses that might be present in human blood.

Bacteriophage phi X 174↗

The role of IL-2 and T4+ cells in the generation of human influenza virus-specific CTL activity.

Stimulation of human peripheral blood lymphocytes (PBL) with influenza A virus leads to the generation of virus-specific cytotoxic T lymphocyte (CTL) activity as well as natural killer (NK)-like activity. In this study, we show that exogenous IL-2 augments the in vitro generation of virus-specific CTL activity, only when added some days after the initiation of the culture. Apparently, the endogenously produced IL-2 can be a limiting factor in the in vitro generation of CTL activity. The increase of influenza virus-specific CTL activity after addition of exogenous IL-2 does not affect the restriction pattern of the CTL response. So, the preferential use of certain HLA antigens as restriction elements is not due to a limiting amount of endogenously produced IL-2. Depletion of T4+ cells completely abrogates the generation of virus-specific CTL activity. Addition of exogenous IL-2 to T4+-cell-depleted cultures fully restores the generation of HLA-restricted virus-specific CTL activity. We conclude that in the in vitro generation of virus-specific CTL activity in bulk cultures of human PBL the sole function of T4+ cells in human virus-specific CTL generation is the production of IL-2, no cognitive cell interaction of T8+ CTL precursors with T4+ cells is required, and in bulk cultures T8+ cells themselves are not able to produce sufficient amounts of IL-2 to ascertain the maturation of virus-specific CTL precursors into cytolytic T cells. Finally, we show that exogenous IL-2 also has a stimulatory effect on the NK-like or lymphokine-activated killer activity, which is always concomitantly induced in virus-specific CTL generation cultures, but has no influence on the levels of IFN produced in such cultures.

Antigens, Differentiation, T-Lymphocyte↗

IL-2- and IFN gamma-enhanced natural cytotoxic activity: analysis of the role of different lymphoid subsets and implications for activation routes.

To elucidate the immunoregulatory mechanisms by which human recombinant interleukin 2 (r.IL-2) and human recombinant interferon (IFN)-gamma influence natural cytotoxic activity of human peripheral blood lymphocytes (PBL), experiments were performed in which we studied: the kinetics of augmentation of natural cytotoxic activity by IL-2 and IFN-gamma; the phenotypes of the natural cytotoxic precursor cells acted upon by IL-2 and IFN-gamma; the role of IL-2-induced IFN-gamma in the natural cytotoxic activity enhancing effects of IL-2 and (d) the surface phenotypes of the natural cytotoxic cells activated by IL-2 or IFN-gamma. Three phenotypical distinct precursor cells can be identified. The phenotypes of the precursor cells sensitive to r.IFN-gamma are T3-, Leu 7+or-, FcR-gamma+. The phenotypes of the precursor cells sensitive to r.IL-2 are T3-, Leu 7-, FcR-gamma+or-. It appears that during prolonged culture relatively more of the FcR-gamma- precursor cells acquire natural cytotoxic activity upon stimulation with r.IL-2. Antibodies to IFN-gamma, known to neutralize both recombinant and natural IFN-gamma, completely inhibited the IFN-gamma-induced augmentation of natural cytotoxic activity but only slightly affected the IL-2-mediated augmentation. This indicates that only part of the augmenting effect of r.IL-2 is mediated through IL-2-induced IFN-gamma. This implies that r.IL-2 augments natural cytotoxic activity predominantly through an IFN-gamma-independent pathway. The phenotype of the effector cells expressing natural cytotoxic activity after a 4-day culture period with IL-2 or IFN-gamma was analyzed by depletion experiments. Virtually all the cells that exerted the IFN-gamma-enhanced natural cytotoxic activity are FcR-gamma+, whereas a portion of the cells that exerted the IFN-gamma-enhanced natural cytotoxic activity are FCR-gamma-. Both natural killer cells and lymphokine-activated killer cells contribute to natural cytotoxic activity. The relative contributions of both activities to the natural cytotoxic activity augmented by IL-2, respectively, IFN-gamma, is discussed.

Hematopoietic Stem Cells↗

Thermal inactivation of human immunodeficiency virus in lyophilised blood products evaluated by ID50 titrations.

Inactivation of human immunodeficiency virus (HIV) in lyophilised small pool cryoprecipitate, factor VIII concentrate, prothrombin complex and C1-esterase inhibitor concentrate by prolonged heat treatment (72 h, 60 degrees C) was studied. Plasma products, inoculated prior to lyophilisation, had infectious titres ranging from 10(7) to 10(10.5). Residual infectivity (TCID50) was assessed by multiple titrations on H9 cells in a macro system and subsequent detection of virus replication by determining reverse transcriptase activity. Kinetics of inactivation showed a biphasic pattern: during the first 8 h a variable TCID50 reduction up to 10(4.3) was observed, followed by an additional loss of 10(1)-10(2.7) during the next 64 h. Heat treatment for 72 h resulted in a mean TCID50 reduction of 10(5). It is concluded that prolonged heat treatment may lead to the adequate prevention of HIV transmission by lyophilised plasma products.

Acquired Immunodeficiency Syndrome↗

Natural cytotoxic activity in multiple sclerosis patients: defects in IL-2/interferon gamma-regulatory circuit.

In order to determine the factors underlying the impaired natural cytotoxic (NC) activity in multiple sclerosis (MS) patients, we have analysed the interleukin 2 (IL-2)-interferon gamma-(IFN gamma)-NC activity regulatory circuit in 40 MS patients and 40 matched healthy controls. Exogenous recombinant IFN gamma (rIFN gamma) enhanced NC activity in peripheral blood lymphocytes (PBL) derived from MS patients and controls equally well. In contrast, PBL from MS patients showed a significantly lower increase of NC activity in response to IL-2 than healthy controls. This defect in responsiveness was independent of the dose of IL-2. Even at the highest dose of rIL-2 (1000 U/ml), MS patients showed a decreased response. PBL from MS patients required a 2 to 10 times higher dose of IL-2 to reach NC activity levels comparable to controls. In healthy individuals IL-2 can act upon both Fc gamma R+ and Fc gamma R- NC precursor cells. The decreased responsiveness to IL-2 is not confined to one subpopulation of IL-2-responsive precursor cells because depletion of Fc gamma R+ cells before culture in the presence of IL-2 revealed no significant differences in the contribution of Fc gamma R+ precursor cells to the IL-2 enhanced NC activity between MS patients and controls. Also the number of IL-2-responsive precursor cells appeared to be normal since the number of Fc gamma R+ cells in MS patients and controls was comparable. PBL from MS patients produced significantly lower amounts of IFN gamma upon stimulation with IL-2. Analysis of the different parameters of the regulatory circuit at the population level showed, both for patients and controls, a significant correlation between IFN gamma production and increase of NC activity induced by IL-2. Also the endogenous NC activity and IFN gamma production, both in patients and controls, were correlated. At the individual level, defects in NC activity could not be linked to another parameter of the regulatory circuit.

Adult↗

Asymmetry in the recognition of HLA-A3 molecules by virus-specific cytotoxic T cells.

Cytotoxic T cells specific for influenza virus A/HK or Epstein-Barr virus were used to study the heterogeneity of the HLA-A3 molecule. Variability of the recognition of HLA-A3 in both systems was observed. The hierarchy was both effector cell and target cell specific. An extreme example of the hierarchy of HLA-A3 recognition is the following. Virus-specific cytotoxic T lymphocytes of a given donor were found to recognize all HLA-A3-matched target cells, including target cells of a donor from whom the virus-specific effector cells did not recognize target cells of that given donor: Donor A recognizes target B but donor B does not recognize target A. Both will recognize a third HLA-A3-matched target cell C. Cold target inhibition studies confirmed that the recognition of target cell B by effector cell A involved the recognition of only HLA-A3. Examples of such asymmetric recognition were found in both influenza A and Epstein-Barr virus-specific cytotoxic T-lymphocyte responses but not one combination was asymmetric in both systems. This suggests that influenza virus A/HK-specific cytotoxic T lymphocytes recognize other HLA-A3 histotopes than do Epstein-Barr virus-specific cytotoxic T lymphocytes.

HLA Antigens↗

Subtypes of HLA-B27 detected by cytotoxic T lymphocytes and their role in self-recognition.

In the present study cytotoxic T lymphocytes were generated in MLC of lymphocytes from two unrelated HLA-A, B, C-identical, B27-positive, but D/DR-different, individuals. These CTL were shown to detect subtypes of HLA-B27. CTL specific for influenza virus lysed infected target cells matched for HLA-B27 only when they shared the same subtype. This indicates that the two subtypes of HLA-B27 detected by CTL function also as distinct elements in a self-restricted CTL response. Both subtypes were found among patients with ankylosing spondylitis.

Cytotoxicity, Immunologic↗

Killing of measles virus-infected cells by human cytotoxic T cells.

Lymphocytes from normal individuals were tested for the capacity to generate measles virus-specific cytotoxic T-cell responses after in vitro stimulation with measles virus. Approximately 12% (5 of 40) of the normal adults tested produced significant cytotoxic responses. The cytotoxic response was measles virus specific both at the level of stimulation and at the effector level. Studies of the specificity of cytotoxic effectors from five normal donors by direct lysis or cold target inhibition or both indicated that most, if not all, of the virus-specific activity was self-specific. A detailed analysis of one donor (W6) indicated that measles-specific cytotoxicity was largely HLA-A and -B restricted; unexplained cross-reactive lysis was observed with some targets, but this lysis appeared to be HLA related, since all of the targets expressed HLA-B12. An analysis of the cellular requirements for the production of measles-immune cytotoxic T lymphocytes demonstrated that T cells and macrophages (depleted of natural killer and K cells) were sufficient for the generation of killer cells. Most of the cytotoxic effector activity was mediated by OKT3+ OKT4- OKT8+ cells.

Adolescent↗

Cytotoxic T lymphocyte responses against alloantigens exhibit preferential effector cell activity for H-2K or H-2D region products similar to that for H-2 restricted responses.

The present study was designed to investigate the patterns of allogeneic cytotoxic T cell responses against H-2K and H-2D region products. B10.D2 anti-B10.A(2R) effector cells lysed K-end matched target cells approximately 5 times more efficiently than D-end matched target cells. In contrast, C57BL/10 anti-B10.A effector cells killed K-end or D-end matched target cells equally well, whereas C57BL/10 anti-B10.D2 CTL exhibited a slight preference for D-end matched target cells. These results demonstrate that whole H-2 disparate stimulating populations do not necessarily induce equivalent h-2K and H-2D region-specific CTL responses. The strength of the cytotoxic responses was found to correlate with the number of known serologically detectable specificities shared between the stimulating and target cell populations. The similarities between these allogeneic and MHC-restricted CTL response patterns (which are under Ir-like control) raise the possibility that this regulation reflects the number of K or D region self-antigens that can be recognized in association with a foreign antigenic determinant and suggests that allogeneic responses to major histocompatibility antigens are also self-restricted by MHC gene products. The possibility is considered that such Ir-like control is also a reflection of the amounts of H-2K and H-2D products shed from the cell surface.

Animals↗

Activation of measles virus from silently infected human lymphocytes.

Lymphocytes were incubated with measles virus for 4 days in the absence of a lymphocyte stimulating agent. Such nonstimulated lymphocytes, infected with measles virus, did not express the virus antigens that are detectable by cytotoxic antibodies. Approximately 1 out of 5,000, or even fewer, of such lymphocytes produced virus as demonstrated by the infectious center assay; in the supernate only 10--100 infectious viruses per milliliter were detected. No virus structures could be observed by means of an electron microscope. However, such lymphocytes showed no reaction to phytohemagglutinin (PHA) in terms of DNA synthesis in a subsequent culture in the presence of antibodies against measles to prevent spreading of the infection to other cells. Although stimulation by PHA did not result in a significant increase in [3H]thymidine incorporation, measles virus was activated; 32 h after the addition of PHA nearly 80% of the cells were killed by measles virus antibodies and complement. The number of virus-producing cells increased to approximately 1 in 300 or more, and at 72 h the virus titer in the supernate had risen to 10(6) infectious particles per ml. This reactivation of measles virus was still obtained when PHA was added as late as 8 or more days after the initial infection.

Antigens, Surface↗