Predictors of clinical response of non-small cell cancer to gefitinib.
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Biomedical subjects
Publications and source records attributed to Andrea Ardizzoni.
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Protein microarrays offer the possibility to circumvent most of the current limitations in the serodiagnosis of allergy, autoimmune, and infectious disease by allowing the simultaneous, multiparametric determination of specific subclasses of antibodies directed against many pathogenic antigens. Microarray immunoassays have been developed with these characteristics. A first-generation assay, for the serodiagnosis of infectious disease, allows the determination of IgG and IgM antibodies to various viral and bacterial antigens. In addition, a second-generation assay, designed for the serodiagnosis of allergic disease, permits the determination of IgE antibodies to various allergens implicated in allergic disease. Slides printed with antibody dilution curves and antigen are first incubated with serum samples and then subsequently with secondary antibodies. For detection of human IgG and IgM, fluorescently labeled secondary antibodies are employed. However, because of low-level concentrations of circulating IgE antibodies, a more sensitive protocol is required for human IgE detection. Here, fluorescence is delivered via the coupling of the secondary antibody to tyramide signal-amplification reagentry. Human IgG, IgM, or IgE bound to the printed antigens can then be revealed by confocal scanning microscopy and quantified with internal calibration curves. Generation of analytical and clinical data have demonstrated that the microarray test format provides equivalent performance to enzyme-linked immunosorbent assay (ELISA) tests and offers a significant advantage in convenience and cost when compared to traditional test formats.
Small cell lung cancer (SCLC) is an aggressive malignancy with a high propensity for early regional and distant metastasis. Response rates to first-line chemotherapy are typically high, but short lived. The outlook for patients with recurrent SCLC is poor. A variety of single- and multi-agent chemotherapy regimens have met with limited success in patients with recurrent SCLC, and survival is generally measured in weeks. Until recently, further chemotherapy was not widely considered appropriate for patients with relapsed SCLC. The choice of chemotherapy at relapse is dependent on many factors, including type of and response to first-line therapy, the treatment-free interval, and the patient's performance status. Intravenous topotecan (Hycamtin; GlaxoSmithKline; Philadelphia, PA) has provided oncologists and patients in many countries with an effective and tolerable therapeutic option for recurrent SCLC. The clinical profile of topotecan was established in several phase II studies and confirmed in a randomized, phase III trial versus cyclophosphamide, doxorubicin (Adriamycin; Bedford Laboratories; Bedford, OH), and vincristine (Oncovin; Eli Lilly and Company; Indianapolis, IN)--CAV. In those studies, topotecan exhibited antitumor activity in both chemosensitive and refractory disease. Further, topotecan therapy is associated with significant symptom palliation in this patient population. Because the toxicity profile of topotecan is predictable, generally manageable, and noncumulative, the agent also has potential utility in patients with a poor prognosis and/or a poor performance status. Alternative dosing regimens (lower dose, weekly) and the introduction of an oral formulation may expand the use of topotecan as a single agent and in combination therapy in the second- and first-line treatment of this disease.
The knowledge that Ras was readily prenylated by protein FTase and that the inhibition of this reaction has the ability to revert the transformed phenotype, provided the rationale for the development of FTIs as anticancer drugs. Studies have shown that farnesylation of Ras is the first, obligatory first step in a series of post-translational modifications leading to membrane association, which, in turn, determines the switch from an inactive to an active Ras-GTP bound form. Based on the theorical assumption that preventing Ras farnesylation might result in the inhibition of Ras functions, a range of FTIs have been synthesized. Their biology is fascinating since after substantial investigation and their use in several phase II studies and at least two phase III trials, the exact mechanism of action remains unclear. FTIs can block the farnesylation of several additional proteins, such as RhoB, prelamins A and B, centromere proteins (CENP-E, CENP-F), etc. While the FTIs clearly do not or only partly target Ras, these agents appear to have clinical activity in leukemia and in some solid tumors regardless of their Ras mutational status. Although inhibition of FTase by these compounds has been well documented also in normal tissues, their toxic effects seem to be manageable. However, preliminary results of early Phase II-III studies suggest that the activity of FTIs, as a single-agent, is modest and generally lower than that obtained by standard cytotoxic drugs. Ongoing clinical studies are assessing the role of FTIs for early stage disease or in combination with cytotoxic agents or with other molecular targeted therapies for advanced stage tumors. Further insights in the molecular mechanism of action of FTIs might help in better define their optimal use in combination with standard therapies in the treatment of cancer patients.
K-ras alterations have been reported in 20-30% of non-small cell lung cancer (NSCLC) and represent a suitable target for the development of novel anticancer agents, such as Farnesyl transferase inhibitors (FTi), a new class of agents inhibiting the post-translational modification of the K-ras proteins. The effectiveness of FTi SCH66336 in inhibiting cell proliferation and deranging cell cycle of NSCLC cell lines as well as its interaction with chemotherapy or radiation have been evaluated. The activity of FTi SCH66336, alone or in combination with paclitaxel, gemcitabine, and radiotherapy, was examined in 3 cell lines, A-549, LX-1 and CaLu-6, by colorimetric MTT assay. Cell cycle perturbation and apoptosis were also assessed by cytofluorimetric analysis. The activity of SCH 66336 was found to be concentration- and time-dependent. The effect of SCH 66336, as demonstrated by cell growth recovery experiments, resulted cytostatic and it was superimposable in both cell lines bearing 2 different K-ras mutations (A-549 and LX-1) and in K-ras wild-type Ca-Lu-6. In all cell lines the combination of SCH 66336 and paclitaxel resulted in a synergism of action when SCH 66336 followed paclitaxel treatment, whereas, antagonism was found when SCH 66336 preceded paclitaxel treatment. No significant synergism or addition with SCH 66336 followed by radiation treatment was noted. Different cell cycle phase blocks at various drug concentrations were observed. In conclusion, SCH 66336 displays concentration-dependent cytostatic antitumour activity and schedule-dependent synergy with 2 commonly used anticancer agents in NSCLC cell lines. Further clinical testing of these combinations is warranted.
The purpose of this study was to examine the antiproliferative potentialities of a pool of new generation compounds (Paclitaxel, Docetaxel, Gemcitabine, Topotecan, SN-38) together with fenretinide, a synthetic derivative of retinoic acid, in comparison with the current first choice treatment cisplatin molecule, on a pool of human malignant pleural mesothelioma cell lines derived from either bioptic and pleural effusions samples. To evaluate the chemosensitivity features of malignant mesothelioma cells in vitro, we resorted to a rapid and reproducible colorimetric assay, a useful widely recognized tool for preclinical drug screening. In addition, by DNA content analysis and cellular morphologic assessment, we focused on the apoptosis as a potential mechanism of drug activity. The main results clearly indicate that, in all the models of malignant mesothelioma we handled in vitro, each tested antineoplastic agent is more powerful than cisplatin in inhibiting cell proliferation. Moreover, on experimental evidences basis, we can assume that the cytotoxic activity of tested compounds could be related, at least partially, to the drug-induced programmed cell death. This experimental study gives substance to the expected pharmacologic worth of the second generation antineoplastic drugs even if, in order to afford the most satisfactory biopharmacological approach, allowing to bypass the refractoriness to chemotherapy of this highly lethal tumour, further investigations at preclinical level are required.
PURPOSE: We report four cases of Brain Metastases (BM) from non-small cell lung cancer (NSCLC) responding to ZD 1839 therapy after standard therapy failure. PATIENTS AND METHODS: Four patients with BM from NSCLC, pretreated with two or more lines of chemotherapy, received ZD 1839 (Iressa), on a compassionate use basis, at the daily dose of 250 mg until disease progression. Three patients received Iressa after whole brain radiotherapy (WBRT) failure. RESULTS: After 3 months of ZD 1839 therapy, one patient had complete response on the brain with stabilization of extracranial disease, while the other three patients had partial response both on the brain and on extracranial sites. At the time of this analysis, two patients discontinued the treatment after 5 and 7 months for disease progression, while two patients are still on treatment with no evidence of treatment failure after 3+ and 12+ months. ZD 1839 was generally well tolerated, with skin toxicity recorded in two patients. CONCLUSION: ZD 1839 may be effective in NSCLC patients with pretreated BM. Large and prospective trials need to clarify the role of ZD 1839 in the treatment of BM from NSCLC.
The objective of the present study was to evaluate the activity and the toxicity of an original combination of paclitaxel (Taxol), ifosfamide, and carboplatin in patients with stage IIIB-IV non-small-cell lung cancer (NSCLC). Sixty-one patients with previously untreated stage IIIB-IV NSCLC were enrolled by five institutions. Paclitaxel was given at the dose of 200 mg/m iv in 3 hours, ifosfamide (with mesna) at the dose of 3 g/m and carboplatin at an area under the curve 5, on day 1, every 21 days for a total of six cycles in responding or stabilized patients. Among the 59 patients evaluable for response, 2 complete remissions and 25 partial remissions were achieved for an overall response rate of 45.7% (95% CI = 32.7-59.2). According to an intention-to-treat analysis, the response rate was 44.2%. Thirteen patients had a stable disease, whereas 19 progressed. The median time to progression was 7.7 months (range: 1-18), whereas the median overall survival was 10 months (range: 1-30+). The 1-year survival rate was 43%. Hematologic toxicity was exceptionally mild, and peripheral neurologic toxicity of grade III was experienced by only three patients. There was one toxic death. This original triplet regimen based on paclitaxel, ifosfamide, and carboplatin has proved active, safe, and easy to deliver on an outpatient basis for patients with advanced NSCLC. Randomized studies both versus carboplatin-paclitaxel and other triplets are clearly warranted.
PURPOSE: The purpose of this study was to assess the activity and toxicity of a combined regimen of topotecan and cisplatin in "sensitive" (s) and "refractory" (r) small-cell lung cancer (SCLC) patients treated previously. EXPERIMENTAL DESIGN: Patients with measurable SCLC and progressive disease after one first-line regimen were eligible for the study. Patients were enrolled in two separate groups: r group (patients who failed first-line treatment <3 months from treatment discontinuation) and s group (patients who responded to first-line treatment and progressed >or=3 months after treatment discontinuation). Cisplatin was given i.v. at the dose of 60 mg/m(2) on day 1, and topotecan was administered as a daily i.v. infusion at the dose of 0.75 mg/m(2) from day 1 to 5, every 3 weeks. RESULTS: A total of 110 eligible (68 s and 42 r) patients were enrolled from 24 institutions. The main patient characteristics were as follows: median age 60 (s) and 55 (r) years, median performance status 1 for both (s) and (r). Seventy-four percent (s) and 67% (r) had extensive stage disease, including 22% and 36%, respectively, with brain metastases. A total of 398 chemotherapy courses were administered [median 4 (s) and 3 (r) per patient]. The most frequent and serious toxicity was myelosuppression. Grade IV neutropenia occurred in 62% (s) and 49% (r) of patients, with a 19% (s) and 15% (r) incidence of febrile neutropenia, and grade IV thrombocytopenia in 54% (s) and 44% (r). Most of these toxicities occurred during the first chemotherapy course and led to topotecan dose reduction and/or delay in the following courses. Grade III-IV nonhematological toxicity was uncommon. Five deaths possibly related to toxicity occurred among s patients only. Objective responses have been documented in 20 s patients, 19 partial responses and 1 complete response, (29.4% response rate; 95% confidence interval, 19-42), whereas, among r patients, 10 partial responses have been observed (23.8% response rate; 95% confidence interval, 12-39). Median survival for s and r was 6.4 and 6.1 months, respectively. CONCLUSIONS: The combination of cisplatin and topotecan, at this dose and schedule, shows activity and promising results in patients with refractory SCLC, with reversible myelosuppression being the main side effect. Additional development of this regimen, using better-tolerated schedules, is warranted in patients with refractory SCLC.
PURPOSE: To assess the impact on survival of increasing dose-intensity (DI) of cyclophosphamide, doxorubicin, and etoposide (CDE) in small-cell lung cancer (SCLC). PATIENTS AND METHODS: Previously untreated SCLC patients were randomized to standard CDE (cyclophosphamide 1,000 mg/m(2) and doxorubicin 45 mg/m(2) on day 1, and etoposide 100 mg/m(2) on days 1 to 3 every 3 weeks, for five cycles) or intensified CDE (cyclophosphamide 1,250 mg/m(2) and doxorubicin 55 mg/m(2) on day 1, and etoposide 125 mg/m(2) on days 1 to 3 with granulocyte colony-stimulating factor [G-CSF] 5 micro g/kg/d on days 4 to 13 every 2 weeks, for four cycles). Projected cumulative dose was almost identical on the two arms, whereas projected DI was nearly 90% higher on the intensified arm. Two hundred forty-four patients were enrolled. The first 163 patients were also randomized (2 x 2 factorial design) to prophylactic antibiotics or placebo to assess their impact on preventing febrile leukopenia (FL). This report focuses on chemotherapy DI results. RESULTS: With a median follow-up of 54 months, 216 deaths have occurred. Actually delivered DI on the intensified arm was 70% higher than on the standard arm. Intensified CDE was associated with more grade 4 leukopenia (79% v 50%), grade 4 thrombocytopenia (44% v 11%), anorexia, nausea, and mucositis. FL and number of toxic deaths were similar on the two arms. The objective response rate was 79% for the standard arm and 84% for the intensified arm (P =.315). Median survival was 54 weeks and 52 weeks, and the 2-year survival rates were 15% and 18%, respectively (P =.885). CONCLUSION: A 70% increase of CDE actual DI does not translate into an improved outcome in SCLC patients.
PURPOSE: To evaluate the activity and toxicity of gemcitabine, ifosfamide and Navelbine (GIN) in advanced NSCLC. PATIENTS AND METHODS: Stage IIIB/IV NSCLC, WHO performance status <2 and bidimensionally measurable disease were required to enter the study. Gemcitabine 1000 mg/m(2) day 1 and 1000 or 800 mg/m(2) day 4, ifosfamide 3 g/m(2) day 1 (with mesna), Navelbine 25 mg/m(2) day 1 and 25-20 mg/m(2) day 4 were administered on an outpatient basis every 3 weeks for a maximum of six courses. Objective remissions (ORs) were evaluated every two courses. According to Simon's optimal two-stage design, more than 18 ORs out of 54 patients were required to establish the activity of this regimen. RESULTS: The study group comprised 50 patients. Most patients had metastatic disease (79%) and nonsquamous histology (71%). The total number of courses administered was 200, with a median per patient of 4 (range 1-6). Myelosuppression, in particular leukopenia, was the most frequent toxicity: grade 3-4 neutropenia (WHO) occurred in 47% of the courses, while grade 3-4 thrombocytopenia and anemia affected, respectively, 6.6% and 3.5% of the courses only. Twelve episodes of febrile neutropenia were recorded, and three patients required hospital admission. No toxic deaths were reported. Nonhematological toxicity was generally mild and not clinically relevant. A total of 25 ORs (1 complete response and 24 partial responses) were obtained for a response rate of 52% (95% CI 37.4-66.5%). One-year survival was 46.5%. CONCLUSIONS: The GIN combination showed promising activity against NSCLC with myelosuppression, in particular neutropenia, being dose limiting. This non-platinum-based triplet may be a valuable alternative to standard platinum-containing regimens and it is under evaluation in an ongoing randomized trial.
We determined c-erbB-2 protein level in serum of 86 primary lung cancer patients (78 non-small cell lung carcinomas (NSCLC), 3 small cell carcinomas, 5 not histologically defined) and in 61 controls. Aim of this study was to evaluate the clinical usefulness of c-erbB-2 as marker for lung cancer diagnosis. The protein was measured with a commercially available sandwich enzyme immunoassay. Mean levels of c-erbB-2 were 72.8 +/- 122.3 fmol/ml in lung cancers and 64.6 +/- 17.5 fmol/ml in controls (P = 0.2). No association was found between c-erbB-2 levels and histotype, tumor stage, sex and smoking habits. Among NSCLC, only four patients showed a c-erbB-2 concentration higher than the selected cut-off value of 99.6 fmol/ml. Subjects with levels higher than the 75th percentile in tumors (73 fmol/ml) had a shorter median survival than those with lower levels (6.3 months versus 10.0 months, P = 0.003). Our results indicated that serum c-erbB-2 protein is not a reliable diagnostic marker. There is, however, a suggestion of a possible clinical usefulness in terms of survival prediction.
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PURPOSE: To evaluate the clinical features of breast cancer patients with genetic susceptibility to this disease and to investigate the contribution of BRCA1 germline mutations to the phenotype of these tumors. PATIENTS AND METHODS: We reviewed the clinical and pathological records of 102 women with suspected inherited susceptibility to breast cancer consecutively seen at the Genetic Oncology Service of Parma, Italy. Sixty-two patients with a high probability of harboring a germline, cancer-predisposing mutation were tested for BRCA1 mutations. Exon 11 was screened using the protein truncation test and detected mutations were confirmed by direct sequencing (DS). All other exons were analyzed by DS. RESULTS: Among the 62 patients with a completed mutation analysis, 48 (77.4%) had wild-type BRCA1, six (9.6%) had variants of unclear significance, eight (13%) had deleterious mutations. BRCA1-associated breast cancers (BABC) were significantly less likely to be diagnosed at stage I than breast cancers in women without mutations (12.5% vs 51%; P = 0.045), more likely to have a high proliferation rate (100% vs 24%, P < 0.001), and more likely to be histological grade 3 (100% vs 14%, P < 0.001), estrogen and progesterone receptor negative (87.5% vs 13%, P < 0.001; 75% vs 23%, P = 0.004), and p53 positive (87.5% vs 30%, P = 0.023). All tumors with BRCA1 mutations were HER-2/neu negative compared with 57% of the non-BRCA1 tumors (P = 0.04). There were no significant differences between BABC and non-BABC in 20-year relapse-free survival, 20-year event-free survival, and 20-year overall survival. CONCLUSION: In this population-based study, BABC seems to present with adverse molecular features when compared with non-BABC, although the prognosis appears to be similar.
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