Antitumor activity of imexon.
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Biomedical subjects
Publications and source records attributed to M Micksche.
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Several case reports suggested good effects of interferon-alpha in patients with Crohn's disease. In addition, a decreased production of interferon-alpha in Crohn's disease has been shown in vitro. Treatment with interferon-alpha may activate intestinal natural killer cells and down-regulate the overproduction of inflammatory cytokines like interleukin-6 in Crohn's disease. To evaluate the clinical efficacy of interferon-alpha, we treated 12 patients with a chronic active course of Crohn's disease with recombinant human interferon-alpha prospectively for 24 weeks. Prednisolone was continuously tapered and discontinued at week 12. The end point of the study was the prevention of worsening of clinical symptoms defined with the Crohn's disease activity index and was monitored by acute-phase proteins, interleukin-6 serum concentrations, and endoscopy. The biochemical activity of interferon-alpha was measured by 2',5'-oligo adenylate serum levels. The end point of the study was reached in four patients (33%). In these patients the final Crohn's disease activity index was above 150, which means that they did not achieve clinical remission. All other patients (66%) did not respond to interferon-alpha and had to be withdrawn prematurely. Interferon-alpha did not show any beneficial effect on interleukin-6 or acute-phase protein concentrations and on endoscopic activity. The 2',5'-oligo adenylate levels continuously increased during interferon therapy. Considerable side effects were noted. These results fail to demonstrate a therapeutic role of interferon-alpha in chronic active Crohn's disease.
Recombinant Interferon-alpha (IFN-alpha) preparations are now used for more than 10 years for treatment of hematological, oncological and viral diseases. New insights into the influence of IFN on the metabolism of cytostatic agents, i.e. biochemical modulation, opens a new spectrum of combination therapies. The efficacy of locoregional administration (intraperitoneal, -pleural, perilesional, intravesical) is probably based on a direct effect of this agent on both tumor and effector cells. Inhibition of angiogenesis is one of the proposed mechanisms responsible for the efficacy of IFN in life-threatening hemangiomas and might have also some potency in the adjuvant therapy of cancer. Presently IFN is used in combination with biological response modifiers, cytokines and especially a synergistic therapeutic effect is documented with retinoids. The possibility of direct stimulating effects of IFN on the immune system should be considered particularly in future studies.
Vitronectin is a multifunctional glycoprotein which is involved in several of the processes of inflammation and repair. In previous studies we demonstrated that increased concentrations of vitronectin can be detected in bronchoalveolar lavage fluids (BAL) of patients with interstitial lung disease (e.g. sarcoidosis). The outcome of sarcoidosis is generally favorable, however, some patients progress to pulmonary fibrosis. There is a need for markers indicating early fibrotic changes in the lung in patients with sarcoidosis. The present study was designed to evaluate the potential of BAL-vitronectin measurements for the assessment of disease activity in subjects with sarcoidosis. BAL-vitronectin concentrations were determined in 19 patients with biopsy proven sarcoidosis and sequential analysis of BAL-vitronectin levels were performed in 11 patients before and after therapy. Patients with active sarcoidosis had higher BAL-vitronectin concentrations (1.56 +/- 0.89 microgram/ml) than patients with inactive disease (0.68 +/- 0.33 microgram/ml; p < 0.01). Patients with active sarcoidosis received high-dose glucocorticoid treatment for four weeks followed by low-dose glucocorticoid therapy for eleven months. After high-dose medication BAL-vitronectin concentrations fell significantly (1.08 +/- 0.9 microgram/ml; p < 0.01). A further decrease in vitronectin levels resulted when therapy was continued for a year (0.75 +/- 0.48 micrograms/ml). Clinical deterioration correlated with an increase in BAL-vitronectin concentrations. Thus, measurement of BAL-vitronectin levels might be a useful marker for assessing disease activity and response to therapy in patients with sarcoidosis, but does not provide prognostic information.
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Interferon alfa has been demonstrated to enhance the effect of fluorouracil (5-FU) on human colon cancer cell lines as well as in clinical studies. By several authors interest in focussed on the question whether the interaction between these two agents is reflected by changes of 5-FU kinetics. In the present study the pharmacokinetic behavior of 5-FU was investigated in combination with interferon alfa (IFN-alpha-2b) and further after adding the second well-established biomodulating agent folinic acid (FA). Ten patients with advanced gastrointestinal cancer received 5-FU as a weekly bolus injection of 750 mg/m2, IFN-alpha-2b 5 million units three times per week subcutaneously and FA as a short time infusion at 200 mg/m2. 5-FU plasma levels were determined by high performance liquid chromatography as a baseline measurement on day 1 before starting IFN-alpha-2b. Analysis was repeated at the second or third cycle of 5-FU administration 1 hour after the last IFN-alpha-2b injection, and finally after also adding FA immediately infused before 5-FU injection. Biomodulation of 5-FU by IFN-alpha-2b alone resulted in a significant alteration of 5-FU kinetic parameters as demonstrated by an increase of area under the curve by 80%, and of blood concentration (co) by 65%, and a decrease of total clearance at 50%. These data may partly explain the observed enhancement of antiproliferative and toxic effects of this combination. On the other hand, when FA was added to this schedule, no significant changes of 5-FU kinetics could be documented. Therefore the theoretical benefit of such a double modulation cannot be supported by our findings. Further preclinical and clinical investigations are required to define the role of a triple combination of 5-FU with IFN-alpha-2b and FA.
The pharmacokinetics of interferon alfa-2b (IFN-alpha-2b) were determined following intraperitoneal (IP) infusion of escalating doses, ie, 5, 10, and 15 million units (MU) and intrahepatal-intraarterial (IA) (IA, bolus v 24 hours continuous infusion of 3 and 5 MU) administration in patients with metastatic cancer. Pharmacokinetic parameters show that bioavailability of IFN-alpha-2b after IP administration is 30 times higher for the peritoneal fluid (PF) than for peripheral blood (PB) explaining also the low incidence of side effects. The high affinity of IFN-alpha-2b to the peritoneal cavity is furthermore substantiated by the total compartment clearance, which is only about 1 1/minute for the PF in comparison to about 30 1/minute as determined for PB. IFN-alpha-2b is eliminated from the PF with a half life (t1/2) of elimination 10 to 32 hours and from the blood with t1/2 of 5 to 13 hours. After IA bolus, IFN is distributed from the blood with a t1/2 below, 2 hours, with dose-dependent serum peak concentrations (c = 47 IU for 3 MU and 145 IU for 5 MU). Twenty-four-hour infusion leads to a steady state within 4 to 6 hours and maximum concentration of 8.5 or 12.5 IU/mL, respectively. During infusion IFN alpha-2b is slowly eliminated with a t1/2 of 16 hours. The lower area under the curve levels after bolus injection may suggest a better tissue uptake of IFN-alpha-2b by the liver. Further studies on pharmacokinetics are warranted to establish exact dose recommendations for an optimal schedule using this route and mode of IFN-alpha-2b administration in mono- and combination therapies.
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The therapeutic and immunomodulating potential of biological response modifiers (BRM) such as OK-432 (a streptococcal preparation) and recombinant interferon gamma (rIFN-gamma) has been evaluated in 15 patients with advanced chemotherapy resistant ovarian cancer, presenting malignant ascites and/or pleural effusions. OK-432 was injected intracavitary in 10 patients in increasing doses from 0.2 up to 7.5 mg weekly. Five women were treated intracavitary with rIFN-gamma twice a week. The initial dose was 0.1 mg/m2 which was raised up to 12 mg/m2 over 6 weeks. With OK-432 a complete response was achieved for 14.1 + 8.9 months in 4 patients, a partial response for 1.7 + 0.3 months in 3 patients. The survival time of the 4 responders was significantly longer (21.1 + 8.3 months) than the survival time of the patients with partial or no response (4.9 + 2.7,4.1 + 2.3 months, respectively). In the rIFN-gamma therapy group, we found a partial response in one and no response in 4 patients. Toxicity observed under OK-432 and rIFN-gamma was minimal in all patients, suggesting a lack of systemic effect of intracavitary-applied BRM. With both agents, augmentation of certain immune responses, especially in the peritoneal cavity and to a lesser extent in the peripheral blood, has been documented. In 5 patients treated with OK-432, we found an overall augmentation of the effusion macrophage killer activity. rIFN-gamma augmented natural killer activity in 2 of 3 patients.
Activated polymorphonuclear neutrophils (PMN) and neutrophil activating mediators such as tumor necrosis factor-alpha (TNF-alpha) are thought to be involved in the pathophysiology of sepsis and multiple organ failure syndrome (MOFS). In critically ill patients at high risk for the development of septic syndrome (n = 17) peripheral blood PMN were assayed for O2- and H2O2 production after stimulation with phorbol myristate acetate (PMA, 40 nM). Serum TNF-alpha levels were determined by ELISA. At the time of admission to the intensive care unit we found significant higher levels of TNF-alpha (P = 0.0001) in the serum of patients finally developing sepsis correlating to higher respiratory burst capability in comparison to nonseptic patients. Additionally we were able to demonstrate a significant (P = 0.0016) lower dismutation rate of O2- to H2O2 in deceased patients in comparison to survivors. These results give further evidence that elevated levels of circulating TNF-alpha and activated PMN play a significant role in the pathogenesis of septic syndrome in critically ill patients.
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In a pilot study the therapeutic effect and side effect profile of low-dose interferon alfa-2b in combination with a retinoid for the treatment of cutaneous T cell lymphoma were evaluated. Seven patients (four women, three men) with histologically confirmed cutaneous T cell lymphoma were included. Four patients had received therapy previously. The treatment schedule consisted of 2 million U of interferon alfa-2b administered subcutaneously three times per week and oral 13-cis-retinoic acid, 1 mg/kg/day, with subsequent dose reduction in case of response. The combination therapy produced two complete and two partial remissions. Responses were maintained by continuous therapy for up to 15 months even after dose reduction of both agents by 50%. Side effects were negligible and did not result in discontinuation of treatment in any patient.
Interferon-alpha-2 b (IFN) was administered as an i.a. bolus at doses of 3 and 5 million international units (MIU), as an i.a. 24h long-time infusion at 3 and 5 MIU and as an i.p. 90 min short-time infusion at 5, 10 and 15 MIU. Dose escalation of IFN on i.p. administration leads to correspondingly elevated AUC values of IFN (correlating to the dose) in the peritoneal fluid (PF) and blood, with a shift of the steady-state at about 2h. Bioavailability of IFN is 30 times higher for PF than for blood. t1/2 el, Vd and total clearance are not influenced by dose escalation in both compartments due to their dose-independency. IFN is eliminated from the PF with t1/2 el = 10-32h and from the blood with t1/2 el = 5-13h. After an i.a. bolus at either dosage IFN is distributed from the blood with a half-life of below 2h. 24h infusion leads to a steady-state within 4-6h and a cmax of 8.5 or 12.5 units/ml, respectively. IFN is slowly eliminated during infusion with a t1/2 el of 16h.
Based on the encouraging results obtained with extracorporeal photochemotherapy (EP) in the treatment of the exfoliative erythrodermic form of cutaneous T-cell lymphoma (CTCL), leukemic form, as well as other T-cell-mediated diseases we evaluated the therapeutic potential of EP in patients with chronic lymphocytic leukemia (B-CLL). Three patients with B-CLL were treated for a period of 1 year. Two patients showed stabilization of disease, as demonstrated by reduction in their peripheral white blood cell count, with one patient showing lymph-node resolution. A third patient with significant intolerance to previous chemotherapy did not respond within the observed period. No significant side effects of EP were observed. Our observations suggest that EP may have a positive effect on the course of B-CLL in selected patients. Additional clinical trials are warranted to further define the role of EP alone or in combination therapy in the management of B-CLL.
Fifty-three high-risk melanoma patients in stage I and 15 patients in stage II were treated after standard surgical intervention with adjuvant therapy with recombinant interferon alpha-2b (rIFN alpha 2b) therapy for a total period of 20 months. Concomitant patients (stage I, n = 82; stage II, n = 33) with identical stages and prognostic factors without adjuvant therapy were used to evaluate the efficacy of rIFN alpha 2b therapy. No difference in 5-year relapse incidence and overall survival rates could be detected. However, it appears that patients of both stage I and stage II benefit from long-term adjuvant rIFN alpha 2b therapy, because during the treatment period (20 months), the incidence of relapses was lower in comparison to controls. After stopping treatment the incidence of relapse is equal in treated and control groups. According to the results of our study, we suggest using continuous low-dose rIFN alpha 2b therapy for adjuvant treatment of malignant melanoma.
MHC nonrestricted cytotoxic cells play an important role in the killing of tumor cells in vitro and potentially in vivo. The activity of these cells is regulated by several cytokines such as IL-2 and IFN. In the present study we provide first evidence that IL-6 significantly augments the cytotoxic activity of human NK cells. IL-6 is produced by many different cells and is also known as IFN-beta 2, B cell stimulatory factor 2, hybridoma growth factor, hepatocyte-stimulating factor, and 26 kDa protein. IL-6 stimulates the activity of human CD3- NK cells but not that of CD3+ non-MHC-restricted cytotoxic T lymphocytes. As is the case with IL-2, the IL-6-mediated augmented cytotoxicity was a result of a more efficient lysis, but was not caused by an increased effector to target cell binding. Moreover, the effect of IL-6 on NK cell activity was blocked by a mAb directed against IL-2, and IL-6 itself was found to be a potent inducer of IL-2 production in cultured human PBMC. Thus it may be concluded that IL-6 enhances the cytotoxic activity of NK cells via IL-2. This newly recognized property of IL-6, which is produced by almost any cell, may be of importance in host defense against microbes and malignancies and therefore could contribute to improve the adoptive immunotherapy by using lymphokine-activated killer cells.
The influence of immunologic parameters on the clinical course of malignant melanoma is increasingly evident. However, it is not known which factors contribute to the immunologic host reaction against malignant melanoma. Because epidermal cells and, in particular, normal as well as transformed keratinocytes recently have been demonstrated to release various immunomodulating cytokines, the capacity of melanoma cells to produce interleukin-1 (IL-1) was examined. Accordingly, supernatants derived from different melanoma cell lines contained significant levels of IL-1 activity. Upon high-performance liquid chromatography (HPLC) gel filtration, melanoma cell-derived IL-1 (MEL-IL-1) exhibited molecular weight heterogeneity, and HPLC chromatofocusing revealed major activity at pH 5.0 and minor activity at pH 7.0. A monoclonal antibody directed against monocyte-derived IL-1 blocked MEL-IL-1 activity significantly and was able to precipitate four species of biosynthetically radiolabeled MEL-IL-1 (25, 17, 6, and 4 kilodaltons), suggesting that MEL-IL-1 is identical to monocyte-derived IL-1. This was also confirmed by Northern blot analysis detecting IL-1 alpha specific mRNA in melanoma cells by hybridization with a cDNA fragment encoding for IL-1 alpha. Thus, melanoma cells, like other epidermal cells, exhibit the capacity to release the immunomodulating cytokine IL-1 and, therefore, probably have the potency to influence host defense mechanisms directed against malignant melanoma.