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Biomedical subjects

A Ardizzoni

Publications and source records attributed to A Ardizzoni.

At least 73 records · Page 4Linked to original sources

Mitomycin-ifosfamide-cisplatinum (MIP) vs MIP-interferon vs cisplatinum-carboplatin in metastatic non-small-cell lung cancer: a FONICAP randomised phase II study. Italian Lung Cancer Task Force.

The FONICAP group is screening, with randomised phase II studies, the activity of new chemotherapy programmes for advanced non-small-cell lung cancer (NSCLC) looking for regimens with > 30% activity. In the present study, three regimens were tested: MIP (mitomycin 6 mg m-2, ifosfamide 3 g m-2, cisplatinum 80 mg m-2 on day 1 every 28 days); MIP-IFN (MIP and interferon alpha-2b 3 MU s.c. three times a week); and PC (cisplatinum 60 mg m-2 and carboplatin 400 mg m-2 on day 1 every 28 days). Overall 93 chemotherapy-naive patients were enrolled: 23 received MIP, 27 received MIP-IFN and 43 received PC. Eighty per cent of the patients had stage IV and 20% stage IIIb disease (positive pleural effusion or supraclavicular nodes). Response rates were as follows: MIP = 9% (95% CI 1-28%), MIP-IFN = 7% (95% CI 1-24%) and PC = 14% (95% CI 5-28%). The overall median survival was 183 days. Grade III-IV leucopenia was observed in 36% of patients treated with MIP-IFN vs 10% in the other two arms, and thrombocytopenia grade III-IV was reported in nearly 10% of patients overall. In conclusion, (1) all three regimens investigated have poor activity (< 30%); (2) when tested in multicentre randomised phase II trials, MIP displays lower activity than in phase II trials; (3) PC has similar activity to other platinum-containing regimens; (4) randomised phase II studies are a reliable and quick method of determining the anti-tumour activity of novel chemotherapeutic regimens in NSCLC.

Adult↗

Teniposide for brain metastases of small-cell lung cancer: a phase II study. European Organization for Research and Treatment of Cancer Lung Cancer Cooperative Group.

PURPOSE: Here we report the results of a phase II study of teniposide, one of the most active drugs against small-cell lung cancer (SCLC), in patients with brain metastases. PATIENTS AND METHODS: Patients with SCLC who presented with brain metastases at diagnosis (n = 11) or during follow-up evaluation after treatment (n = 69) were treated with teniposide at a dose of 150 mg/m2 intravenously on days 1, 3, and 5 at 3-week intervals in an outpatient setting. Response in the brain was evaluated by brain computed tomography (CT) after two, six, and 12 courses. RESULTS: In 26 of 80 assessable patients, an intracranial response was seen, with a response rate of 33% (95% confidence interval, 22% to 44%). The median response duration was 5.4 months for patients with a complete response (CR) and 4.2 months for patients with a partial response (PR). Patients who required corticosteroids for peritumoral edema had a significantly lower response rate than patients who did not receive corticosteroids. Neurologic function at the start of treatment had a significant influence (neurologic function 1 better than 2, respectively, better than 3 and 4; P < .001), as did the number of cycles of previous chemotherapy (0 better than 1 to 5 cycles, respectively, better than > 5 cycles; P = .043). Grade 3/4 leukocytopenia and thrombocytopenia were seen in 3% and 39%, respectively, of 80 patients. Toxicity-related death was seen in eight patients, seven of whom were previously treated with chemotherapy. CONCLUSION: Teniposide is active against brain metastases of SCLC. It is a suitable drug for palliation, especially of patients without extensive pretreatment and with a good neurologic function and performance status. Patients previously treated with cranial radiotherapy are also candidates for this therapy. If systemic chemotherapy is considered for tumor progression outside the brain, radiotherapy of brain metastases might be omitted or delayed pending the effect of chemotherapy. The use of corticosteroids in patients with brain metastases treated with chemotherapy might influence the efficacy of the chemotherapy.

Adult↗

Suramin interferes with auto/paracrine insulin-like growth factor I-controlled proliferative loop on human lung cancer cell lines.

Human non-small cell lung cancer (N-SCLC), a common malignancy generally unmanageable by conventional cytotoxic chemotherapy, represents a major world health burden. Suramin, a polyanionic drug which appears to interfere with growth-factor/receptor interaction, has recently been shown to be cytostatic for small cell lung cancer cells; it may also be effective for N-SCLC. As insulin-like growth factor I (IGF-I) is a known progression agent for N-SCLC, we have examined the effects of suramin on the 'IGF-I system' in a panel of human N-SCLC cell lines. Colorimetric and thymidine incorporation assays were used to assess cell chemosensitivity whereas a radio-receptor assay was employed to evaluate IGF-I/receptor binding. Suramin reversibly reduced, in a concentration- and time-dependent manner, the growth of each N-SCLC cell line examined either cultured in serum-containing or serum-free medium. Furthermore, suramin caused a concentration-related inhibition of labeled IGF-I peptide specific binding on all cell lines studied. Suramin caused a significant reduction in the Bmax values with only weak variations in the affinity constants (Kd). We hypothesize that suramin interference with IGF-I mitogenic activity is a pathway by which this drug produces its effect in vitro. These data indicate further studies on the mechanism of action and pharmacology of suramin in vivo are warranted.

Adenocarcinoma↗

Expression and function of the insulin-like growth factor I system in human non-small-cell lung cancer and normal lung cell lines.

In order to analyze the presence and the function of the "insulin-like growth factor I (IGF-I) system" in human non-small-cell lung cancer (N-SCLC) we tested 5 cell lines of different histological sub-types: A549, Ca-Lu-6, SK-Lu-1 (adenocarcinoma); Ca-Lu-1, SK-Mes-1 (squamous carcinoma) and one normal fibroblast-like fetal lung cell line (IMR-90) for expression of the IGF-I peptide and its RNA transcribed from the IGF-I gene; IGF-binding proteins (IGF-BP); IGF-I receptor (IGF-I-R) and its mRNA. In addition, we examined the capacity of exogenous human recombinant IGF-I to enhance the in vitro cell proliferation. In medium conditioned from cell cultures, we detected immunoreactive IGF-I material by radioimmunoassay. Western ligand blot and affinity labelling demonstrated the presence of several molecular species of IGF-BPs (IGF-BP-4, -1, -2, -3) as well. Northern blot analysis of polyA+ RNA from all cell lines examined revealed the presence of IGF-I and IGF-I-R mRNA. Moreover, binding studies on cultured cell lines showed one class of high-affinity, operative type-I IGF cell-surface binding sites. Finally, by thymidine uptake and colorimetric metabolic MTT assays, we found that most neoplastic cell lines react mitogenically to IGF-I and that its physiological effect is abolished by an anti-IGF-I-receptor antibody. These data indicate the importance of the IGF-I system in N-SCLC growth. Furthermore, they suggest that this mitogenic complex should be appraised as a possible target for anti-neoplastic drugs, antibodies or growth-factor analogues offering potential new approaches to therapy.

Binding, Competitive↗

Biologic and clinical effects of continuous infusion interleukin-2 in patients with non-small cell lung cancer.

BACKGROUND: Interleukin-2 (IL-2) has shown antitumor activity in some neoplasms, such as melanoma and renal carcinoma, but toxicity derived from bolus administration is significant, particularly at the cardiorespiratory level. METHODS: To test feasibility, antitumor activity, pulmonary and systemic immunologic effects, and pulmonary function changes of continuous-infusion recombinant IL-2 given to patients with non-small cell lung cancer, eleven subjects with Stage III-IV disease were treated in a standard pulmonary medicine unit with a dose of 18 million IU/m2/day from day 1 to day 13 with 1-day rest on day 7. A second induction course was given after a 3-week rest. In patients with nonprogressive disease, four maintenance courses of 6 days' duration at the same dose were planned. Immunologic tests, including lymphocyte phenotype analysis and assays for the detection of tumor necrosis factor (TNF) and of anti-IL-2 antibodies, were performed before and after treatment in serum and bronchoalveolar lavage fluid (BAL). Cardiopulmonary function tests, including spirometry, arterial blood gas analysis, diffusion capacity, and echocardiography, were obtained before, during, and after treatment. RESULTS: Twenty-one cycles (15 induction courses plus 6 maintenance courses) were administered. No patient was able to complete the six planned courses, and only 3 patients entered the maintenance phase. Reasons for discontinuation included progressive disease in five cases, toxicity in three cases, and patient request in three cases. The most common side effects were fever, hypotension, oliguria, and elevated serum creatinine and liver enzyme levels. No patient required intubation or intensive care. No objective response was seen, and the median survival time was 10 months. Lymphocytosis and eosinophilia were observed in all patients. Surface marker analysis revealed a statistically significant increase in the percentage of CD3+, CD4+, CD25+ and DR+ cells in peripheral blood. Lymphoid cells derived from BAL disclosed an increased natural killer activity after IL-2 treatment, and TNF was increased in BAL fluid. Pulmonary function tests evidenced an increased alveolar-arterial difference for oxygen allied with a decrease of forced expiratory volume in 1 second, forced vital capacity, and carbon monoxide transfer coefficient consistent with a significant, albeit not clinically relevant, interstitial lung defect. CONCLUSION: Continuous-infusion IL-2 is feasible in patients with advanced lung cancer even outside an intensive care unit, but overall compliance is poor. Although clinical pulmonary toxicity is negligible, small but statistically significant alterations of the pulmonary function are evident. In addition, this regimen produces a significant activation of the immune system at the pulmonary level.

Antibodies↗

Granulocyte-macrophage colony-stimulating factor (GM-CSF) allows acceleration and dose intensity increase of CEF chemotherapy: a randomised study in patients with advanced breast cancer.

A randomised study was conducted in 62 patients with advanced breast cancer to assess whether granulocyte-macrophage colony-stimulating factor (GM-CSF) would yield an increase in the dose intensity of a standard-dose CEF regimen through an acceleration of chemotherapy administration. Patients received CEF (cyclophosphamide 600 mg m-2, epidoxorubicin 60 mg m-2 and fluorouracil 600 mg m-2) i.v. on day 1 or the same chemotherapy, plus GM-CSF 10 micrograms kg-1 s.c. starting from day 4, repeated as soon as haematopoietic recovery from nadir occurred. Patients in the CEF + GM-CSF group received chemotherapy at a median interval of 16 days compared with 20 days in the control group. This led to a significant increase (P = 0.02) in the dose intensity actually administered in the third, fourth and sixth cycles: +28%, +25%, +20% respectively. Non-haematological toxicity was mild. GM-CSF had to be reduced or suspended in 50% of patients because of toxicity. Haematological toxicity, mainly cumulative anaemia and thrombocytopenia, was manageable. An increase in response rate for patients with measurable disease, of borderline statistical significance (P = 0.088, P for trend = 0.018), from 42% in the CEF group to 69% in the CEF + GM-CSF group, was observed. This randomised trial indicates that GM-CSF is useful for chemotherapy acceleration. Accelerated CEF + GM-CSF is a moderately dose-intensive regimen that can be administered in an outpatient clinic and is associated with a high objective response.

Adolescent↗

Recombinant interferon alpha-2b in the treatment of diffuse malignant pleural mesothelioma.

Fourteen patients with diffuse malignant pleural mesothelioma (DMPM) were enrolled in a Phase II study to assess activity and toxicity of the systemic administration of recombinant (r)-alpha-interferon (IFN)-2b. The IFN schedule was: 3 x 10(6) IU i.m. days 1-4, 6 x 10(6) IU days 5-8, 10 x 10(6) IU days 9-12; then IFN was administered at 10 x 10(6) IU 3 days/week. If grades II-III toxicity occurred, IFN dose was reduced and drug continued at the previous dose level. All patients were evaluated by CT scan. Only one patient was not evaluable for response and toxicity because of inadequate follow-up. Of 13 evaluable patients, we observed 1 objective response, 6 stable disease, and 6 failures (3 progressive disease and 3 early interruptions due to subjective toxicity). The median time to progression was 19 weeks, and the median overall survival was 62 weeks. Toxicity was mild: of 13 patients evaluable for toxicity we observed fever (9 patients), flu-like syndrome (3 patients), fatigue (4 patients), anorexia (2 patients), myelosuppression (3 patients), and muscle pain (1 patient). The results of this study indicate only marginal activity of r-alpha-IFN in the treatment of DMPM.

Aged↗

Combination of chemotherapy and recombinant alpha-interferon in advanced non-small cell lung cancer. Multicentric Randomized FONICAP Trial Report. The Italian Lung Cancer Task Force.

BACKGROUND: Preclinical data suggested that alpha-interferon (IFN) may potentiate chemotherapy cytotoxicity. METHODS: A prospective multicentric randomized trial was initiated to assess the clinical benefit of adding recombinant alpha-2-IFN to combination chemotherapy in patients with metastatic non-small cell lung cancer. A total of 182 patients were randomized to receive either cisplatin-epidoxorubicin-cyclophosphamide (CEP) combination chemotherapy (cisplatin, 60 mg/m2; epidoxorubicin, 50 mg/m2; and cyclophosphamide, 400 mg/m2 intravenously) alone on day 1 or the same chemotherapy plus recombinant alpha-2-IFN at the dose of 5 MU intramuscularly from day -2 to +4, then 3 times weekly. RESULTS: The median survival was 6 months in the CEP plus IFN arm versus 5.5 months in the control arm. The log-rank test showed a marginal statistically significant difference (P = 0.045) in favor of CEP chemotherapy, which disappeared when survival curves were adjusted for prognostic factors. Progression-free survival was similar in the two treatment arms. Considering all eligible patients, the response rate was 7.6% in the CEP arm versus 18.9% in the CEP plus IFN arm (P = 0.042). Nearly 40% of the patients receiving IFN had grade 3-4 nadir leukopenia versus 15% in the control arm (P = 0.01) and 12.5% versus 4.2% had grade 3-4 thrombocytopenia. Apart from the usual constitutional symptoms, IFN was also responsible for increased emesis and mucositis. CONCLUSIONS: This study indicates that the addition of recombinant alpha-IFN to CEP chemotherapy can increase response rate and toxicity to treatment without a positive effect on progression-free survival and survival.

Aged↗

Phase II study of vinorelbine (Navelbine) in previously treated small cell lung cancer patients. EORTC Lung Cancer Cooperative Group.

26 previously treated patients with progressive recurrent small cell lung cancer (SCLC) were given vinorelbine (Navelbine), 30 mg/m2 weekly. All patients had responded to first-line chemotherapy and were off therapy for at least 3 months. Partial response was observed in 4 out of 25 eligible patients (16%; 95% confidence interval 4-36%), stable disease in 7 patients and progression in 12 patients. The limiting toxicity was a non-cumulative leucopenia (80%, 32% WHO grade 3-4). Reaction at the site of injection was observed in 5 patients, causing treatment discontinuation in 2 cases. Other non-haematological toxicities were moderate. These results suggest acceptable toxicity and some antitumour activity of vinorelbine in pretreated SCLC patients.

Adult↗

High dose-intensity chemotherapy, with accelerated cyclophosphamide-doxorubicin-etoposide and granulocyte-macrophage colony stimulating factor, in the treatment of small cell lung cancer.

15 patients with small-cell lung cancer were treated with an "accelerated" chemotherapy consisting of standard-dose cyclophosphamide-doxorubicin-etoposide administered every 15 days (as opposed to the usual 21-day intervals) along with granulocyte-macrophage colony stimulating factor (10 micrograms/kg/day) administered prophylactically subcutaneously from day 4 to 13. The primary objective of this study was to examine the possibility of achieving a 50% dose-intensity increase by a shortening of chemotherapy intervals. 9 patients were not able to complete the planned six courses of chemotherapy owing to cumulative haematological toxicity. In fact, while leukopenia was acceptable and constant during treatment, both thrombocytopenia and anaemia progressively worsened with subsequent courses, becoming particularly severe after the 4th cycle when interruption of the treatment was often required. 13 patients who completed four courses of chemotherapy received a median of 96% of the planned dose-intensity. This corresponded with an average relative dose-intensity actually delivered of 1.44 compared with the planned dose-intensity of a standard cyclophosphamide-doxorubicin-etoposide every 21 days. In conclusion, acceleration of cyclophosphamide-doxorubicin-etoposide chemotherapy combined with granulocyte-macrophage colony stimulating factor can lead to a significant increase of dose-intensity but it is feasible only for a limited number of courses.

Antineoplastic Combined Chemotherapy Protocols↗

[Feasibility of a cyclophosphamide methotrexate and 5-fluorouracil regime intravenously administered with and without granulocyte-colony stimulating factor in surgically treated breast carcinoma].

The aim of this study was to evaluate the feasibility of CMF 1.8-28 regimen, with all three drugs administered intravenously (IV), and to compare the hematologic toxicity of this regimen with or without G-CSF. Patients aged 18 to 65 years with histologically proven breast cancer treated by surgery and without distant metastases were eligible for the study. All patients had to have normal white blood cells (WBC) count (WBC > or = 3000/mm3 and/or neutrophils > or = 2000), and platelets (Plt) counts (> or = 100,000/mm3), and adequate renal and hepatic function. The toxicity was recorded according to World Health Organization Scale. CMF 1.8 regimen was: cyclophosphamide 600 mg/m2, methotrexate 40 mg/m2, 5-fluorouracil 600 mg/m2. The drugs were given IV on day 1 and 8, and cycles repeated every 28 days. G-CSF (5 micrograms/kg/day) was administered subcutaneously from day 9 to 20, starting from the second cycle of chemotherapy. A complete blood count with white-cell differential and platelet count was obtained twice a week. For each patient bone marrow toxicity variables recorded during the first cycle (without G-CSF) were compared with values during the second cycle (with G-CSF). One of 10 entered patients, 1 was not evaluated due to missing data on hematologic toxicity. All patients received chemotherapy with or without G-CSF at the scheduled 28th day. Treatment with G-CSF after CMF 1.8 regimen resulted in a significantly WBC's earlier nadir (average day of nadir 14 vs 17; p = 0.0005), while there was no difference in the average values of WBC at the nadir. Moreover, the average value of platelets recorded at the nadir was significantly lower with the use of G-CSF (average No. of platelets/mm3; 185,111 vs 116,000; p = 0.001). Complete hematologic recovery without and with G-CSF was reached on day 25 and 20 respectively (p = 0.001). CMF 1.8 with IV cyclophosphamide is a feasible regimen with and without G-CSF and can be used in adjuvant setting instead of "classic" CMF in order to improve the low compliance observed when cyclophosphamide is given by mouth. As reported by others, we observed that after standard chemotherapy G-CSF anticipated the nadir of WBC and hastened hematologic recovery (WBC > 3000 and Plt > or = 100,000).(ABSTRACT TRUNCATED AT 400 WORDS)

Adolescent↗

Phase II study of ACNU as second-line treatment in small-cell lung cancer. EORTC Lung Cancer Cooperative Group.

A total of 24 patients presenting with small-cell lung cancer either resistant to or relapsing within 3 months after first-line treatment were entered in a phase II study of 1-(4-amino-2-methyl-5-pyrimidinyl)-methyl-(2-chloroethyl)-3- nitrosourea hydrochloride (ACNU). ACNU was given i.v. at a dose of 75 mg/m2 every 6 weeks. We observed a partial response of 7 months' duration in one patient and one case of stable disease that lasted for 6 months; all other subjects exhibited progressive disease. Two patients developed brain metastases during treatment. The toxicity of ACNU consisted mainly of bone marrow suppression, especially thrombocytopenia. At this dose and on this schedule, ACNU shows minimal activity as second-line treatment in small-cell lung cancer.

Carcinoma, Small Cell↗

A pilot study of mitomycin, ifosfamide and cisplatin as outpatient combination chemotherapy for advanced non-small cell lung cancer.

Twenty-one patients with advanced stage, non-small-cell lung carcinoma were treated with a chemotherapy regimen including: mitomycin (6 mg/m2), ifosfamide (3 g/m2), cisplatin (80 mg/m2). The regimen was administered on an outpatient basis. Two patients were lost to follow-up. Among the 29 patients evaluable for response we registered a response rate of 36.8%; 36.8% of patients had stable disease, and 15.7% progressed during treatment. Median duration was 8.7 months and median survival was 11 months. Toxicity was low and easily manageable on an out-patient basis.

Aged↗

Activity of doxorubicin and cisplatin combination chemotherapy in patients with diffuse malignant pleural mesothelioma. An Italian Lung Cancer Task Force (FONICAP) Phase II study.

Twenty-six symptomatic patients with diffuse malignant pleural mesothelioma (DMPM) were enrolled in a Phase II Italian Lung Cancer Task Force (FONICAP) study to assess the activity and toxicity of doxorubicin and cisplatin combination chemotherapy. The drug schedule was as follows; 60 mg/m2 of doxorubicin and 60 mg/m2 of cisplatin both given intravenously (IV) on day 1 every 3 to 4 weeks. Of the 24 evaluable patients, 6 objective partial responses (25%; 95% confidence limits, 9.77% to 46.71%) were observed. Twelve of 24 patients (50%), including 6 with no radiologic evidence of response, had a clinical improvement as demonstrated by an objective reduction of symptom or performance status scores along treatment. The overall median survival time was 10 months. Toxicity was mild and dose reductions or suspensions were not required. The combination of doxorubicin and cisplatin is effective and well tolerated. It might be considered for palliation of symptomatic patients with DMPM.

Adult↗

Phase II study of ACNU in non-small-cell lung cancer: EORTC study 08872.

A total of 62 patients with metastatic or locally advanced non-small-cell lung cancer were entered in a phase II study of ACNU. Initially, the drug was given i.v. at a dose of 100 mg/m2 every 6 weeks, but due to observed haematological side effects in chemotherapy-pretreated patients, the dose was lowered in this group to 75 mg/m2. We observed one complete response in a subject exhibiting multiple lung metastases and a partial response in two patients, one showing brain metastases and one who experienced local disease recurrence. The toxicity of ACNU mainly consisted of bone marrow suppression especially thrombocytopenia, with one toxic death occurring due to intracerebral haemorrhage. We concluded that at this dose and on this schedule, ACNU has limited activity in non-small-cell lung cancer.

Adult↗