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Biomedical subjects

M Malkovský

Publications and source records attributed to M Malkovský.

At least 19 recordsLinked to original sources

Tumour immunotherapy.

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Bone Marrow Transplantation↗

Infection of B lymphocytes by the human immunodeficiency virus and their susceptibility to cytotoxic cells.

The T4 molecule (CD4) is an important component of the human immunodeficiency virus (HIV) receptor. As yet, no other component has been demonstrated. We report here that two cell lines, a B lymphoblastoid cell line (Gupta) and a glial cell line (HEB) derived from human embryonal brain tissue, are productively infectable with two distinct isolates of HIV as judged by electron microscopy and immunological and virological studies. These two cell lines do not display detectable surface CD4 glycoprotein. However, using S1 nuclease analysis, we have found that both cell lines do express low levels of CD4 mRNA. Neither of them produced syncytia formation upon HIV infection, a recognized feature of HIV-infected cells strongly expressing the CD4 glycoprotein. It is conceivable that the CD4 mRNA is translated, resulting in meager surface expression of CD4 molecules undetectable by conventional techniques. Therefore, infection with HIV may be one of the most sensitive methods of demonstrating low levels of CD4 expression by human cells. Furthermore, HIV-infected Gupta cells have here been shown to be more susceptible to the lytic activity of natural killer (NK) cells than their uninfected counterparts. These phenomena may be important for pathogenesis of HIV-associated disorders.

Antibodies, Monoclonal↗

Interleukin 2 and its receptor: structure, function and therapeutic potential.

In this review, salient molecular, biochemical and functional features of human interleukin 2 (IL-2), its membrane receptor, and its clinical relevance are outlined. We also describe experimental systems, where observed biological or pharmacological effects of IL-2 could be applied to corresponding clinical situations. In particular, IL-2 has been intensively studied in the context of cancer therapy. We discuss the rationale for the use of IL-2 in cancer treatment and our experience in this area. A better understanding of the IL-2 system and, specifically, the nature of signals transduced through it will allow us to manipulate the immune response in a variety of different ways, resulting in new approaches to investigation of immune responsiveness in general. This may have a profound impact on clinical medicine.

Amino Acid Sequence↗

Generation of lymphokine-activated killer cells does not require DNA synthesis.

We studied the role of DNA synthesis in the induction of lymphokine-activated killer (LAK) cells by recombinant interleukin-2 (IL-2) and the dependence of this phenomenon on DNA synthesis. Doses of gamma-irradiation (1000-5000 rads) that profoundly reduced DNA synthesis in human peripheral blood mononuclear leucocytes (PBL) also effectively suppressed the development of cytotoxic activity in the absence of IL-2. However, the same doses of irradiation affected the induction of LAK activity by IL-2 to a much lesser extent. Blocking the formation of deoxyribonucleotides by hydroxyurea, which resulted in a complete inhibition of DNA synthesis in PBL or purified T lymphocytes, had virtually no effect on the generation of LAK cells. These results indicate that the expression of LAK activity is not dependent on DNA synthesis.

Cytotoxicity, Immunologic↗

Lymphokine-activated killer cell activity in rheumatoid arthritis.

The lymphokine-activated killer (LAK) cell activity in the peripheral blood of 23 patients with rheumatoid arthritis has been studied. Two control groups comprised (a) nine patients with another chronic inflammatory disease (sarcoidosis) and (b) 19 normal healthy volunteers. The LAK activity induced by human recombinant IL-2 was very similar in controls and patients with rheumatoid arthritis but was significantly decreased in patients with sarcoidosis, although the frequency of LAK-cell precursors measured using a limiting dilution assay was comparable in all three groups. The DNA synthetic response of peripheral blood mononuclear (PBM) cells to IL-2 was slightly decreased in patients with both rheumatoid arthritis and sarcoidosis as compared to controls, but this decrease was not statistically significant. Spontaneous DNA synthesis in PBM cells cultured in the absence of IL-2 was essentially identical in all three groups. We conclude on the basis of these results that the higher risk of non-Hodgkin's lymphomas in patients with rheumatoid arthritis cannot be attributed to an impairment of LAK activity. Furthermore, the doses of gamma-irradiation, which abolished the 'background' cytotoxicity of PBM cells cultured without IL-2 and also blocked effectively both spontaneous and exogenous IL-2-dependent DNA synthesis, had little effect on the generation of LAK activity. These observations are discussed in regard to the role of non-specific cytotoxic cells and the therapeutic efficacy of antiproliferative drugs in rheumatoid arthritis.

Adult↗

Regulation of accessory cell function by retinoids in murine immune responses.

This study examines the effects of in-vivo immune regulation by vitamin A acetate (VAA) and 13-cis-retinoic acid (13-CRA) on in-vitro accessory cell function. Mice were fed a control diet, or diet containing VAA or 13-CRA, and monitored by body weight gains and diet consumptions at weekly intervals. At 4, 7 and 12 weeks mice were killed, differential blood counts performed and accessory cells isolated from lymphomedullary tissues. Histology confirmed that the chief feature of the lymphomedullary organs of the VAA-fed animals was an expansion of the splenic marginal zone and the paracortical region of the lymph nodes. There was an increase in the number of accessory cells present, and this included both dendritic cells and macrophages. The accessory cell function of these cells was also increased, as evidenced by both alloproliferative and allocytotoxic responses in vitro. In 13-CRA-fed animals the effects were similar to those seen with VAA, but were less pronounced. We suggest that the primary effects of these compounds on in-vivo immunoregulation could be due to their promotion of accessory cell function.

Animals↗

T-cell depletion of allogeneic bone marrow prevents acceleration of graft-versus-host disease induced by exogenous interleukin 2.

Highly purified human recombinant interleukin 2 (IL-2) markedly accelerated lethal GVHD in the H-2-identical B10.BR----CBA combination, but had no effect when the donor cells were depleted of mature (Thy-1.2-positive) T lymphocytes, indicating a strong immunopotentiating effect of IL-2 on mature T cells causing GVHD. In the same donor-host combination, IL-2 did not influence the recovery from the post-transplantation bone marrow aplasia. The results suggest that IL-2 could be considered for adjuvant hormonal therapy to enhance immune recovery in recipients of T-cell-depleted allogeneic marrow.

Animals↗

Nonspecific inhibitor of DNA synthesis elaborated by T-acceptor cells. II. Requirements for its production and action.

The production of a nonspecific inhibitor of DNA synthesis (nsINH) appears to be one of the final events in the T-suppressor cell circuit in mice exposed to contact sensitizers. We report here that: The nsINH suppresses the proliferative response to a polyclonal T-cell mitogen, concanavalin A (Con A), regardless of the dose of Con A used. It also suppresses DNA synthesis in lymphoid cells stimulated with alloantigens. This suppression can be completely eliminated by adding exogenous interleukin 2 (IL-2). DNA synthesis in lymphoid cells exposed to nsINH before the proliferative stimulus is uninfluenced so that activation of the lymphoid cells at the same time as exposure to nsINH seems to be a requirement for its action. Since the activity of nsINH can be absorbed by activated Lyt-1+ or Lyt-2+ lymphocytes, the early activated T cell appears to be a target of the action of nsINH. The production of nsINH is abolished or severely reduced by adult thymectomy. Natural killer (NK) cells are resistant to nsINH action and no interferon (IFN)-like activity can be demonstrated in nsINH preparation using a conventional assay for IFN.

Animals↗

Autologous lymphoid cells exposed to recombinant interleukin-2 in vitro in the absence of antigen can induce the rejection of long-term tolerated skin allografts.

The intraperitoneal (i.p.) administration of autologous spleen cells treated with recombinant interleukin-2 (IL-2) in vitro resulted in the rejection of C57BL/10ScSn (B10) skin grafts that had survived for 18 months on CBA/Ca mice tolerant to B10 alloantigens. Cytotoxic lymphocytes specific for the graft alloantigens, assayed by limiting dilution analysis, appeared after the breaking of this immunological tolerance, whereas they were not detectable in tolerant mice. In these mice the frequencies of precursor cytotoxic cells specific for third-party alloantigens were unaffected by the IL-2 treatment.

Animals↗

Acquired immunological tolerance of foreign cells is impaired by recombinant interleukin 2 or vitamin A acetate.

The susceptibility of newborn mice to the inception of tolerance after exposure to antigen is associated with their deficiency in the production of endogenous interleukin 2 (IL-2). As further evidence of the complicity of IL-2 in the inception and maintenance of tolerance, it is shown here that a solid and long-lasting state of tolerance induced by the intravenous injection into newborn CBA mice of lymphoid cells from (CBA X C57BL/10ScSn)F1 hybrids can be brought to an end by the administration of exogenous IL-2 or by supplementing an otherwise normal diet with vitamin A acetate, the effect of which is to increase the proportion of the moiety of the T-cell population that produces IL-2. These results indicate that certain nonspecific stimuli can influence whether immunological tolerance is maintained.

Animals↗