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R V Bowman

Publications and source records attributed to R V Bowman.

8 recordsLinked to original sources

Corticosteroids.

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Administration, Inhalation

A clonal analysis of lung T cells derived by bronchoalveolar lavage of healthy individuals.

The characteristics of the T-cell population in the healthy human lung have been investigated by analysing the properties of T-cell clones derived from bronchoalveolar lavage (BAL) samples and comparing them with T cells cloned from the blood of the same individuals. The proportions of CD4+ and CD8+ T cells in the starting populations from BAL and blood were similar although only 14% of BAL T cells were CD45RA+ compared to 70% of blood T cells. The precursor frequency of T-cell clones derived from BAL was less than from blood. The cytokine profiles [after phytohaemagglutinin (PHA) stimulation] of the clones derived from both sources were markedly different and these differences lay in the CD4+ population. BAL-derived CD4+ clones produced interferon-gamma (IFN-gamma) more frequently than did those from blood while blood-derived clones were more likely to produce interleukin-2 (IL-2) than those from BAL. IL-4 was produced by the majority of BAL- or blood-derived clones (93% and 88% respectively) either along with IFN-gamma (BAL) or IL-2 (blood). The cytokine profiles of BAL-derived T-cell clones are consistent with those derived from lung interstitium and suggest that the BAL T-cell populations reflect those in the lung wall. Whether the unique properties of lung T cells are acquired after leaving the blood or whether there is selective entry of T-cell subpopulations into the lung remains to be determined.

Adult

Interaction between dactinomycin and tumor necrosis factor in mesothelioma. Cachexia without oncolysis.

There is no effective therapy for human malignant mesothelioma, and its susceptibility to recombinant cytokines has not been studied extensively. Recombinant human tumor necrosis factor alpha (rHuTNF alpha) was evaluated for its in vitro and in vivo antitumor activity using a human malignant mesothelioma cell line [DeH128(m)], both in culture and heterotransplanted in nude mice. In vitro, rHuTNF alone had no direct antimesothelioma activity assessed using the 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyl-tetrazolium bromide assay, but in combination with the transcription inhibitor, dactinomycin (AD), mesothelioma cell metabolic activity was inhibited (80% of control). The effects of this combination of agents were studied on DeH128(m) cells heterotransplanted as subcutaneous tumors in nude mice. In vivo there was no significant inhibition of tumor growth by combined rHuTNF alpha and AD therapy, but the combination produced marked cachexia in doses at which each component (rHuTNF alone or AD alone) was well tolerated. The authors conclude that the well-described in vitro interaction between AD and rHuTNF also operates in vivo to produce cachexia and that the combination of these two agents is likely to have a low therapeutic index in malignant mesothelioma.

Animals

Chemosensitivity and cytokine sensitivity of malignant mesothelioma.

Malignant mesothelioma arises in serosal tissues, is locally invasive, and is usually resistant to chemotherapeutic agents used clinically. To determine whether resistance to cytotoxic drugs was an inherent characteristic of mesothelioma cells, we performed in vitro chemosensitivity testing on five fully characterised human malignant mesothelioma cell lines and, for comparison, on three lines representative of clinically drug-resistant solid-tissue carcinomas using the MTT (tetrazolium bromide) assay system. Mesothelioma cell lines were intrinsically resistant to eight common antineoplastic drugs, with concentrations that produced a 50% reduction in optical density (IC50 values) for all drugs being equivalent, if not higher, for mesothelioma cell lines as compared with lung and colon carcinoma cell lines. We then investigated the direct anti-mesothelioma activity of recombinant human cytokines with their antineoplastic properties. All five mesothelioma cell lines were resistant to tumour necrosis factor, but they displayed varying degrees of sensitivity to interferons (IFNs). IFN gamma directly inhibited the growth of two of five mesothelioma lines. IFN alpha displayed little activity against four of five mesothelioma lines. The mesothelioma cells that were sensitive to IFN alpha were resistant to IFN gamma, indicating that sensitivity to IFNs is not a genetic characteristic of malignant mesothelioma cells. Significant interactions between cytokines in combination were not observed.

Antineoplastic Agents

Capacity of tumor necrosis factor to augment lymphocyte-mediated tumor cell lysis of malignant mesothelioma.

Recombinant human tumor necrosis factor (rHuTNF) was evaluated both for direct anti-tumor action against human malignant mesothelioma and for its capacity to augment the generation and lytic phases of lymphocyte-mediated cytotoxicity against this tumor. rHuTNF was directly toxic by MTT assay to one of two mesothelioma cell lines evaluated, but had no effect on susceptibility to subsequent lymphocyte-mediated lysis of either line. TNF alone was incapable of generating anti-mesothelioma lymphokine-activated killer cell (LAK) activity. Furthermore, it did not augment the degree or LAK activity produced by submaximal interleukin-2 (IL-2) concentrations nor did it augment lysis of mesothelioma cells by natural killer (NK) or LAK effector cells during the 4-hr 51chromium release cytolytic reaction. The studies also suggest that mesothelioma targets are less responsive to TNF plus submaximal IL-2 concentrations than the standard LAK sensitive target Daudi, raising the possibility that intermediate LAK sensitive tumors such as mesothelioma may require separate and specific evaluation in immunomodulation studies. This in vitro study indicates that use of low-dose rHuTNF and IL-2 is unlikely to be an effective substitute for high-dose IL-2 in generation and maintenance of LAK activity in adoptive immunotherapy for mesothelioma.

Chromium Radioisotopes

Indomethacin augments lymphokine-activated killer cell generation by patients with malignant mesothelioma.

Human malignant mesothelioma (MM) cells are resistant to natural killer (NK) cell lysis but susceptible to lysis by lymphokine-activated killer (LAK) cells from control individuals. The present study was performed to determine the capacity of patients with MM (n = 22) and individuals occupationally exposed to asbestos (the major population at risk of developing this disease, n = 52) to generate LAK cells capable of effectively lysing human mesothelioma cells. Compared to controls (n = 20), both patient groups demonstrated significantly depressed LAK cell activity against mesothelioma tumor cell targets (55 +/- 3% lysis by controls vs 34 +/- 3% lysis by patients with MM, P less than 0.005; and 45 +/- 3% lysis by asbestos-exposed individuals, P less than 0.025). Addition of 10 micrograms/ml indomethacin during LAK cell generation restored normal LAK cell activity for patients with MM (52 +/- 6% lysis of cultured human MM cells, P = NS compared to controls), suggesting that the defective cytolytic cell function observed in some patients with MM is a result of prostaglandin-induced immunosuppression. The ability of indomethacin to restore suppressed LAK cell activity in patients with MM suggests that the concomitant use of this agent in ex vivo LAK cell generation and in patients undergoing interleukin/LAK cell therapy may be beneficial.

Asbestos

Lysis of human malignant mesothelioma cells by natural killer (NK) and lymphokine-activated killer (LAK) cells.

Malignant mesothelioma is an aggressive tumor of the pleura for which, at present, there is no effective therapy. As interleukin-2 (IL-2) and lymphokine-activated killer (LAK) cells lyse many solid tissue malignancies that are unresponsive to conventional forms of therapy, the aim of this study was to evaluate the susceptibility of human malignant mesothelioma cells to lysis by natural killer (NK) and LAK cells. Using a 4-h 51Cr release assay, malignant mesothelioma cell lines grown from six different patients were found to be resistant to NK cell lysis (less than 10% lysis as compared to 50 +/- 3% lysis of the standard NK-sensitive target, K562, p less than 0.001). These malignant mesothelioma cells were, however, susceptible to lysis by LAK cells (58 +/- 4% lysis, p less than 0.001 compared to NK lysis). Similar results were seen using fresh mesothelioma cell targets (4 +/- 2% and 34 +/- 12% lysis for NK and LAK cells, respectively). Optimal LAK cell activation against these targets was achieved by incubating peripheral blood mononuclear cells (2 to 4 x 10(6)/ml) in culture medium containing 1,000 units/ml IL-2 for 3 to 14 days. The degree of LAK cell activation was dependent on the serum source used in culture, with autologous serum being more effective than pooled human AB serum or fetal calf serum at generating LAK cell activity in vitro (p less than 0.05). The results of this study demonstrate that although human malignant mesothelioma cells are resistant to NK cell lysis, IL-2-activated LAK cells effectively kill these targets.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Line