Biomedical subjects
M Hadam
Publications and source records attributed to M Hadam.
CD antigens 2001.
The most recent Human Leucocyte Differentiation Antigen Workshop ("HLDA7") took place in 2000 in Harrogate, UK and the proceedings are about to be published (Leucocyte Typing VII). New Sections were introduced in this Workship (Dendritic cells, Stem/progenitor cells, Erythroid cells and Carbohydrate Structures) and monoclonal antibodies were selected for which at least some molecular data were already available (to avoid "blind" screening of reagents against known specificities). A total of more than 80 new CD specificities were established (previously the average was less than 30 new CD specificities per Workshop) and these are listed in this article. There is already evidence for the existence of many new leucocyte surface molecules for study at the next HLDA Workshop (in Adelaide in 2004), and we have listed in this article a number of such potential CD candidates (identified following the production of monoclonal antibodies or via gene cloning). There are also today an increasing number of lineage- and/or stage-restricted leucocyte-associated molecules localised within the cell cytoplasm (or nucleus): they will certainly prove of intense in the future for many laboratories studying human haematopoietic cells (regardless of whether a new "intracellular CD" categorisation scheme is devised for such molecules).
CD antigens 2001.
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CD antigens 2001: aims and results of HLDA Workshops.
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CD antigens 2001.
This paper reviews the Seventh Human Leucocyte Differentiation Antigen (HLDA7) workshop. Due to the limitations of "blind" antibody screening, which had been evident at the previous meeting in 1996, participants at HLDA7 adopted a more selective approach to the choice of antibodies by identifying new CD specificities. This resulted in the addition of more than 80 new CD specificities. Plans for the eighth and subsequent workshops are also previewed.
Measles virus infection causes transient depletion of activated T cells from peripheral circulation.
BACKGROUND: Natural measles virus infection as well as vaccination with attenuated measles virus induce temporary immunosuppression, which is responsible for part of the morbidity and mortality associated with measles. The underlying molecular mechanisms are not known. Recently, in vitro studies have revealed a marked increase of LFA-1 expression of lymphocytes in the presence of infectious measles virus. OBJECTIVES: In order to further investigate immune dysfunction in measles we analyzed the expression of leukocyte function-associated antigen 1 (LFA-1) on ex vivo derived circulating human T cells. STUDY DESIGN: Expression of LFA-1 was measured by flow cytometry using monoclonal antibodies directed against CD11a and CD18. LFA-1 expression was followed in the course of infection in four adult seronegative vaccinees and in four patients with natural measles. RESULTS: There was a remarkable loss of LFA-1-bright cells during natural measles and after measles vaccination. The number of LFA-1-bright cells reached a minimum on day 7-14 after vaccination, and at the onset of rash during natural measles infection, and approached normal levels within 3-5 weeks. CONCLUSION: It is suggested that measles virus infection interferes with lymphocyte trafficking and reallocation. Disruption of recirculation and random homing of lymphocytes might contribute to the immunosuppression, which is characteristic for measles virus infection.
Active specific immunotherapy of renal cell carcinoma: cellular and humoral immune responses.
We investigated the effect of vaccinating renal cell carcinoma (RCC) patients with irradiated autologous or allogeneic tumor cells and Newcastle disease virus (NDV) as adjuvant on cellular and humoral antitumor immunity. By Western blot analysis, we found that vaccination induced antibody formation in 33 of 34 patients against NDV proteins but not against tumor cell related antigens. NDV proteins detected had molecular weights of 53 kDa, 55-56 kDa, and 66 kDa. ADCC by patients' isolated PBMC and patients' sera against autologous or allogeneic tumor cells was not enhanced after vaccine treatment in a nonradioactive cytotoxicity assay. Target cells infected with NDV were lysed more effectively (p < 0.05) in ADCC after vaccination than noninfected targets. Natural cellular cytotoxicity of patients' isolated PBMC was not altered during vaccine treatment. Specific lysis rates against autologous and allogeneic RCC cells not exceeded 10% (effector:target ratio 50:1). Specific lysis of K-562 cells was > 20%; a slight decrease in lysis during vaccination was not significant. Numbers of lymphocyte subsets from patients' peripheral blood analyzed by FACS revealed significant expression of CD20+ (p < 0.02) and CD39+ (p < 0.03) cell numbers by vaccine therapy. Cytokine detection in patients' sera by ELISA showed significant increases (p < 0.05) for IFN-gamma and TNF-alpha but not for IFN-alpha four h post vaccination. Thus, immunomodulation with autologous or allogeneic RCC tumor cell vaccines is mainly due to cytokine induction, whereas tumor specific humoral or cellular responses are not detectable in patients' peripheral blood.
Characterization of human TUR leukemia cells: continued cell cycle progression in the presence of phorbol ester is associated with resistance to apoptosis.
Human TUR leukemia cells were generated as a subclone of U937 monoblastoid leukemia cells. There was no obvious difference in the ultrastructure of both cell lines. Like in U937 cells, the expression of monocyte-specific surface markers such as CD14 was negligible in TUR cells. U937 cells and other human myeloid leukemia cell lines (HL-60, THP-1) can be induced by the phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA) to differentiate along the monocytic pathway. In contrast, exposure to TPA had no effect on the induction of the differentiation program in TUR cells. Thus, the presence of leukocyte integrins including CD11 and CD18, which are significantly induced during TPA-induced differentiation of HL-60, U937 and THP-1 cells, remained nearly unchanged at low levels in both TUR and TPA-treated TUR cells. Furthermore, while expression of major histocompatibility complex (MHC) class II antigens on U937 and TPA-treated U937 cells is barely detectable, there was a significantly constitutive expression of MHC class II, particularly human lymphocyte antigen (HLA-DR) on the surface of TUR and TPA-treated TUR cells. Exposure of human myeloid leukemia cells to TPA is also associated with growth arrest resulting either in a retrodifferentiation process or in programmed cell death. In contrast, TUR cells continued to proliferate in the presence of TPA although the proliferative capacity was continuously reduced by increasing concentrations of TPA.(ABSTRACT TRUNCATED AT 250 WORDS)
Clinical and preclinical evaluation of recombinant PEG-IL-2 in human.
High dose interleukin-2 alone or in combination with lymphokine activated killer (LAK) cells has demonstrated antitumor activity in a variety of malignant diseases. The currently formulated recombinant human interleukin-2 (IL-2) has limited solubility and short circulatory half life resulting in limited bioavailability. To improve the bioavailability of IL-2 the protein was covalently bound to activated Polyethylenglycol (PEG). We designed a phase I/II trial to evaluate the bioactivity of PEG-IL-2 in man, given as intravenous (iv) bolus injection every two weeks, and to determine safety, efficacy, and the maximum tolerated dose (MTD) in patients with advanced malignancies. Assessment of cytokine levels, phenotypic analyses and differential blood counts were performed to investigate the effects of PEG-IL-2 in-vivo. To compare in-vitro PEG-IL-2 activity to activities of IL-2 we evaluated proliferation, cytotolytic activity, morphology, and phenotype of cytokine activated lymphocytes. Among seven patients treated with PEG-IL-2, there was no objective remission, three patients exhibited stabilisation of disease. Four patients presented with further disease progression. Treatment-related toxicity was mild to moderate (mainly WHO grades I and II) in patients receiving dose levels up to 10 x 10(6) IU/m2 (maximum tolerated single dose in the outpatient setting). No toxic deaths occurred. In comparison to IL-2, the pharmacokinetic profile of PEG-IL-2 exhibited increased plasma levels and a decreased clearance (alpha and beta half-life estimates of 4 and 14 hours, respectively). The analysis of a variety of immunologic parameters demonstrated that PEG-IL-2 has significant biologic activity both in vitro, and in man.
Low-dose interleukin-2 in combination with interferon-alpha effectively modulates biological response in vivo.
Phenotypic characterization of peripheral blood lymphocytes was performed in patients with advanced metastatic cancer receiving low-dose recombinant interleukin-2 (rIL-2) and recombinant interferon-alpha (rIFN-alpha) as subcutaneous home therapy. A total of 31 patients with progressive metastatic renal cell carcinoma, malignant melanoma, colorectal cancer, B-cell lymphoma, and Hodgkin's disease, were evaluated. Patients were treated with a combination of low-dose subcutaneous rIL-2 and rIFN-alpha, consisting of a 2-day rIL-2 pulse at 9.0 million IU/m2 twice daily, followed by 6 weeks of combined low-dose rIL-2 at 1.8 million IU/m2 twice daily, 5 days per week, and rIFN-alpha at 5.0 million U/m2 3 times per week. This treatment regimen resulted in an overall significant (p < 0.002) increase in peripheral blood lymphocyte subsets expressing CD3, CD8, CD16, CD25, and CD56. Expansion of peripheral blood natural killer (NK) cells was correlated to treatment response. Thus, treatment-related increase in CD56-positive lymphocytes was 1.8-fold higher in complete or partial responders when compared to progressive disease patients (p = 0.0). Increase in NK cells upon low-dose rIL-2 and rIFN-alpha was associated with a significant expansion (p = 0.0) of peripheral blood eosinophils (r = 0.71). Patient pretreatment using rIL-2, rIL-2 and rIFN-alpha, or chemotherapy abrogated the treatment-induced induction of NK cells and IL-2 receptor- (CD25) positive T lymphocytes, respectively. Peripheral blood NK cells were significantly decreased (p < 0.05) in patients developing neutralizing antibodies specific to rIL-2.
Expansion of peripheral blood natural killer cells correlates with clinical outcome in cancer patients receiving recombinant subcutaneous interleukin-2 and interferon-alpha-2.
Natural killer (NK) cells are believed to contribute to the clinical efficacy of cancer immunotherapy using recombinant interleukin-2 (rIL-2) in humans. In previous trials of high-dose i.v. rIL-2, however, no correlation has been established between circulating NK cells and treatment response. Between January 1989 and October 1990, we treated a total of 47 outpatients with advanced tumors using low-dose s.c. rIL-2 and interferon-alpha-2 (rIFN-alpha). Therapy consisted of a 2-day rIL-2 pulse at 18 million IU/m2/day, followed by 6 weeks of rIL-2 (3.6 x 10(6)-4.8 x 10(6) IU/m2/day x 5 days/week) and rIFN-alpha (5 x 10(6)-6 x 10(6) U/m2 x 3/week). Before and after therapy, we phenotypically evaluated circulating lymphocytes and correlated them with clinical response. During 6-week therapy, peripheral blood lymphocytes bearing the CD56 (NK-cell-associated) surface antigen were increased significantly (p < or = 0.005) in treatment responders [complete response (CR) and partial response (PR), n = 10; 3.8-fold] and stable disease (SD) patients (n = 20; 2.1-fold), while patients with progressive disease (PD, n = 17) exhibited no significant expansion of circulating NK cells (p > 0.1). After one 6-week treatment cycle, CR/PR patients had significantly more peripheral NK cells, when compared with patients in SD (1.6-fold) and PD (1.9-fold) (p < 0.04). The overall number of circulating lymphocytes was also increased upon therapy (1.6-fold; p < or = 0.001), but remained independent of response (p > 0.4). These data demonstrate that s.c. rIL-2 and s.c. rIFN-alpha produce a significant increase in peripheral blood NK cells; this expansion correlates significantly with treatment response in advanced tumor patients receiving long-term combination immunotherapy at outpatient doses.
Pretreatment natural killer antigen density correlates to clinical response in tumor patients receiving long-term subcutaneous recombinant interleukin-2 and recombinant interferon-alpha.
We evaluated density of the natural killer (NK) cell-associated CD56 antigen on circulating NK cells of 47 patients with advanced renal cell carcinoma. Patients received a combination of low-dose subcutaneous recombinant interleukin-2 (rIL-2) and recombinant interferon-alpha (rIFN-alpha) as home therapy. Antigen density of CD56 before therapy was 2.2-fold higher (P < 0.005) in patients who subsequently achieved a complete or partial remission when compared with patients who presented with progressive disease on therapy. After a 6-week treatment cycle, NK cells of treatment responders expressed significantly (2.1-fold; P < 0.005) more CD56 antigens than NK cells in nonresponding patients. These results suggested a potential role of both pre- and posttreatment NK antigen density levels as a biologic correlate to treatment response.
Biologic and therapeutic efficacy of mafosfamide in patients with metastatic renal cell carcinoma.
It is well known that oxazaphosphorines [e.g., cyclophosphamide and 4-hydroperoxycyclophosphamide (mafosfamide)] are potent immunosuppressive agents. Under the proper conditions, they can potentiate immune responses as well. Immunomodulation represents a major breakthrough in the management of chemotherapy-resistant tumors. Thus, we evaluated the clinical and laboratory sequelae of low to intermediate doses (100-1000 mg/m2) of mafosfamide administered to 16 patients. Four weeks after therapy, one patient had a complete remission, eight patients presented with stable disease, and seven patients did not respond. Clinical and laboratory toxicity was mild and totally reversible, and therapy was well tolerated in all patients. Analyses of phenotypic cell surface antigens on circulating peripheral blood mononuclear cells showed inconsistent alterations of the CD4/CD8 ratio, initial depletion with later rebound of CD8+ cells, increase of CD20+ cells, and a mafosfamide dose-dependent regulation of natural killer-like cells as characterized by CD16 and CD56 positivity. Cell-mediated cytotoxicity against K562 target cells peaked 1 day after therapy and was most pronounced in patients who had received 300 mg/m2 mafosfamide, whereas cytotoxicity against Daudi targets was essentially unchanged, consistent with an increase in natural killing activity without augmentation of lymphokine activated killing. We conclude that mafosfamide administration at low to intermediate doses can be performed with good safety and tolerance; immunophenotypic analyses and cytotoxicity assays showed most pronounced alterations in patients receiving low doses of mafosfamide. These observations support the use of mafosfamide in the attempt to augment antitumor immune responses.
Changes in rat leukocyte populations in peripheral blood, spleen, lymph nodes, and synovia during Erysipelas bacteria-induced polyarthritis.
Kinetics of leukocyte subsets were followed for several weeks in rats suffering from polyarthritis induced by experimental infection with erysipelas bacteria (Erysipelothrix rhusiopathiae, serovar 2, strain T28). A marked leukocytosis was found in peripheral blood, and, with some delay, in the synovia and draining lymph nodes of affected joints. In the lymphoid organs tested considerable blast formation of lymphoid cells with a paucity of polymorphonuclear granulocytes was found, while the latter represented the majority of leukocytes in acutely inflamed joints. Cells isolated from spleen showed only moderate and transient alterations in proportions of subpopulations during the first week after inoculation of erysipelas bacteria. In contrast, cells isolated from synovia of inflamed joints and draining lymph nodes displayed more intense and longer lasting alterations: In arthritic animals, the proportion of MHC class II-positive lymphocytes generally increased and remained elevated at least during the first three weeks of the disease. Spontaneous release of IL-2 from cells isolated up to 20 days post induction of the arthritis indicated a considerable activation of lymphocytes in vivo. Interestingly, with exception of synovia, the relative amount of T-lymphocytes including their major CD4+ and minor CD8+ subsets showed little alteration during the course of the disease. Much more pronounced were the rapidly and the extent the membrane Ig-positive B-lymphocytes increased in the synovia as well as in the lymph nodes. Thus, B-lymphocytes may be of particular relevance for elucidating pathomechanisms of erysipelas polyarthritis.
Biological monitoring of low-dose interleukin 2 in humans: soluble interleukin 2 receptors, cytokines, and cell surface phenotypes.
Different immunotherapy regimens using s.c. recombinant interleukin-2 (rIL-2) were studied in 76 patients with progressive metastatic renal carcinoma, malignant melanoma, colorectal cancer, B-cell lymphoma, or Hodgkin's disease. To assess the immunomodulatory capacity of rIL-2, we measured serum levels of soluble interleukin-2 (sIL-2) receptors, gamma-interferon, tumor necrosis factor-alpha, and various lymphocyte subsets expressing the CD25 Tac IL-2 receptor and the CD56 natural killer (NK) associated antigen. Additionally, we measured serum antibodies specific to rIL-2 in order to evaluate immunogenicity of rIL-2. In all patients, a significant increase in sIL-2 receptor levels could be observed when comparing values on day 0 and after one treatment course. Patients developing a neutralizing anti-rIL-2 antibody exhibited significantly lower serum sIL-2 receptor levels than patients without antibody. Soluble IL-2 receptors correlated with the percentage of CD25 IL-2 receptor-positive peripheral blood lymphocytes. Both soluble and cell surface IL-2 receptors exhibited a significant increase during rIL-2 therapy but did not correlate with the percentage of CD56-positive peripheral blood lymphocytes. Measurement of treatment-induced secondary cytokines showed significant increases in gamma-interferon serum levels in a proportion of patients tested, although with considerable interindividual variability. No significant increase in mean tumor necrosis factor-alpha levels was observed during rIL-2 treatment in vivo. The percentage of CD56-positive NK cells correlated with the clinical outcome of rIL-2 therapy. Thus, partial or complete responders had an increase from a mean of 20% NK cells prior to therapy up to a mean of 40% after the first treatment course. In contrast, patients with progressive disease had a mean of 22 and 24% NK cells before and after treatment, respectively.
The development of neutralizing antibodies in a patient receiving subcutaneous recombinant and natural interleukin-2.
Systemic administration of interleukin-2 (IL-2) in humans may induce antibodies specific to IL-2. The case is reported of a patient with metastatic rectal carcinoma who was treated with long-term subcutaneous IL-2 and a combination of subcutaneous IL-2 and interferon-alpha 2b (IFN-alpha 2b). This patient developed nonneutralizing and neutralizing anti-IL-2 antibodies recognizing both the recombinant and natural cytokine. Detectable serum levels of neutralizing antibodies were accompanied by the inhibition of immune responsiveness to systemic IL-2 in vivo.