The treatment of advanced non-small-cell lung cancer (NSCLC) has improved over the past two decades with the availability of new agents such as gemcitabine, the taxanes and vinorelbine. Despite these advances, survival prospects remain disappointingly low for most patients. Further improvements in response rate and survival requires the development of new agents with novel mechanisms of action, such as molecularly targeted therapies, which are currently being tested in clinical trials. The conventional treatment approach to NSCLC is beginning to shift towards the application of specific strategies and techniques, such as pharmacogenomics, to tailor treatment to individual patients. Many efforts are in progress to identify the clinical predictors of outcome. The discovery of prognostic molecular markers, such as the putative suppressor gene (RRM1), represents a novel and potential parameter to help guide clinical treatment decisions.
A case of posttransfusion purpura is reported in a 90‐year‐old patient whose PlA1 antibody (anti‐HPA‐1a) was found to bind better to HPA‐1a in the presence of captopril, a drug the patient had taken. Initially, IgG antibodies were found in the serum that reacted with normal platelets, but the binding of the antibody was increased in vitro by captopril, which suggested that captopril was responsible for the thrombocytopenia. However, in vitro studies demonstrated that the patient's platelets were negative for HPA‐1a and that anti‐HPA‐1a was present in the serum, both of which findings were consistent with the diagnosis of posttransfusion purpura. The binding of this antibody was enhanced 50 percent by captopril in vitro, and increased binding in the presence of captopril did not occur when the anti‐HPA‐1a was removed. Similar results were obtained with serum containing anti‐HPA‐1a from another patient with posttransfusion purpura. Thus, captopril may increase the binding of anti‐HPA‐1a and confuse the determination of the cause of acute thrombocytopenia.
Twelve human small cell lung cancer (SCLC) cell lines and 6 non-SCLC cell lines were analysed with respect to expression of the c-myc, c-myb, and c-raf1 protooncogenes at the protein level. Analysis of p64c-myc protein expression in 12 SCLC cell lines resulted in the observation that it is present at high levels not only in cells with low, but also in those with moderate neuroendocrine differentiation. Neuroendocrine differentiation was based on parameters such as growth rate, colony formation, L-Dopa decarboxylase (DDC) activity, bombesin, and neurotensin described before. Surprisingly, in two cell lines with low neuroendocrine differentiation but without c-myc protein expression (SCLC-86M1 and NCI-H526) p75c-myb expression was observed which may therefore be able to substitute for the p64c-myc protein. Analysis of p74c-raf1 expression did not result in correlation with any growth or differentiation parameter since it was expressed at low levels in 11 out of 12 cases. We conclude that SCLC in vitro can be classified in three rather than two previously defined subclasses. In addition to the classic subclass with slow growth, high neuroendocrine differentiation, and absent or very low p64c-myc expression and the variant subclass with fast growth, absent to very low neuroendocrine differentiation, and high p64c-myc expression, we suggest a third subclass designated as transitional with moderate growth, moderate neuroendocrine differentiation, and high p64c-myc expression. Data on a small number of non-SCLC cell lines tested showed that high levels of p64c-myc correlate with high in vitro growth rates. This indicates that high p64c-myc levels may be associated with high proliferative activity, and lack of differentiation in lung cancer in general. The p74c-raf1 protein was found in all non-SCLC cell lines. Whether this classification of SCLC cell lines is applicable to SCLC in vivo remains to be determined.
Histopathologic specimens from 249 patients with small cell lung cancer (SCLC) were reviewed and classified into oat cell-type, pure intermediate cell-type (excluding specimens with mixed small cell/large cell features), and small cell/large cell-type. One hundred seventy (68%) specimens displayed oat cell features (including 30 with mixed oat cell/intermediate cell features), 66 (27%) displayed intermediate cell features, and 13 (5%) displayed mixed small cell/large cell features. No differences among these subtypes were found with respect to stage of disease, sex, age, performance status, and number and distribution of metastases. Complete and partial remission rates for the oat cell-type were, respectively, 31% and 38%, for the intermediate cell-type 20% and 45%, and for the small cell/large cell-type 38% and 31%. Two-year survival rates were 7%, 11%, and 15%, respectively. These data were all statistically insignificant, and comparisons of log-rank analyses of survival curves for these SCLC subtypes also showed no statistically significant differences. We thus conclude that histologic subtypes of SCLC are not distinct entities of clinical relevance, and that prognostic as well as therapeutic decisions cannot be based on histologic subtyping.
Fifteen small cell lung cancer (SCLC) cell lines and 249 histopathological specimens from patients with SCLC were investigated for carcinoembryonic antigen (CEA) expression. Quantitative determinations of CEA in cell line homogenates correlated significantly (p less than 0.001) with L-DOPA decarboxylase (DDC) activities and population doubling times (PDT). Using monoclonal antibodies specific for CEA (BW 431/31) and crossreactive with non-specific crossreacting antigens (NCA) 55 and 95 (BW 250/183 and BW 374/14), the CEA-reactive moiety in SCLC was immunologically identified as CEA. In vivo studies demonstrated CEA by immunohistochemistry in 57% (141/249) of newly diagnosed SCLC. The presence of CEA and the degree of immunostaining did not correlate with clinical parameters.
Non-small cell lung cancer (NSCLC) and small cell lung cancer (SCLC) cell lines were studied for epidermal growth factor (EGF) receptor expression. All NSCLC cell lines tested (eight of eight) had specific EGF binding sites, whereas only five of 11 SCLC cell lines bound EGF. NSCLC and SCLC cell lines expressed the same type of high affinity EGF binding sites with a Kd of 0.5 to 4.5 nM; however, NSCLC cells bound significantly more EGF than SCLC cell lines. The amount of binding sites in NSCLC cells ranged between 71 and 1,000 fmol/mg of protein and in SCLC cells, between 26 and 143 fmol/mg of protein. The two SCLC cell lines with EGF binding values within the range of NSCLC belonged to the variant subtype of SCLC. By means of an anti-erbB serum and indirect radioimmunoprecipitation, a strong Mr approximately 170,000 protein band could be detected in the NSCLC cell lines. This protein corresponds to the EGF receptor molecule. Its identity was proven by competition with excess erbB antigen for the antibody during the radioimmunoprecipitation. Furthermore, this Mr 170,000 protein exhibited protein kinase activity as evidenced by in vitro autophosphorylation. The radioactivity incorporated into the Mr 170,000 band in radioimmunoprecipitation and protein kinase assays was 10 to 100 times lower in these SCLC cell lines which were positive in the EGF binding assay compared to the NSCLC cell lines. We conclude that NSCLC in contrast to SCLC expresses high levels of EGF receptors which may be used to facilitate the differential diagnosis in some cases of lung cancer. These data suggest that EGF may play a role in growth and differentiation of NSCLC.
Carcinoembryonic antigen (CEA), neuron-specific enolase (NSE), and the BB isoenzyme of creatine kinase (CK-BB) were evaluated before therapy in the sera of 195 patients with histologically confirmed small cell lung cancer (SCLC) in a prospective multicenter trial. Forty-four percent (84 of 193) of all patients had CEA levels higher than 5 ng/ml, 66% (111 of 168) had NSE levels higher than 12.5 ng/ml, and 32% (40 of 123) had CK-BB levels higher than 10 ng/ml. Clear pathologic levels were less frequently observed. Significantly higher pretreatment titers for CEA, NSE, and CK-BB were found in patients with bone marrow and/or liver metastases. The most elevated marker levels were observed in the group of nonresponding patients with bone marrow and/or liver metastases. Only a slight correlation between the pretreatment CEA level and survival time could be observed. Patients with pathologic NSE (greater than or equal to 30 ng/ml) levels and, in particular, those with pathologic CK-BB (greater than or equal to 25 ng/ml) levels had a significantly shorter median survival than those with normal or elevated levels. In addition, a positive linear correlation between pretreatment NSE and CK-BB (n = 116, r = 0.54) levels was found, but CEA levels did not correlate with other marker levels. From these data it is concluded that pretreatment CEA, NSE, and CK-BB levels are helpful in the clinical management of a subset of patients with SCLC, i.e., those with bone marrow and/or liver metastases.
Six new non-small-cell lung cancer (NSCLC) cell lines were established directly from human tissue or indirectly via nude mouse xenografts in serum-supplemented media with success rates of 8% and 13%, respectively. They comprised one adenocarcinoma (ADLC-5M2), two squamous cell carcinomas (EPLC-32M1, EPLC-65H), two large cell carcinomas (LCLC-97TM1, LCLC-103H), and one malignant biphasic mesothelioma (MSTO-211H). All cell lines grew adherent to culture vessels with population doubling times (PDT) of 16-40 h, formed colonies in soft agarose with efficiencies of 0.1%-5.1%, and all grew in athymic nude mice. Xenograft histologies appeared as follows: (a) undifferentiated carcinomas with feeble resemblance to the original tumors in the case of adenocarcinomas and squamous cell carcinomas; (b) large cell carcinoma with high resemblance to the original tumor; (c) an undifferentiated tumor with predominance of large epithelial cells and few fibrous cells in the case of mesothelioma. Human chorionic gonadotropin (HCG) was found by radioimmunoassay and high-affinity binding sites for epidermal growth factor (EGF) by radio-receptor assay in 4/4 cell lines. A very low activity of L-DOPA decarboxylase (DDC) was detectable only in the adenocarcinoma cell line. All cell lines overexpressed the c-myc protooncogene, and no gene rearrangement or amplification was observed. Chromosome analysis revealed modal chromosome numbers of 70-73 in ADLC-5M2, EPLC-32M1, EPLC-65H, and MSTO-211H. Cell lines derived from large cell carcinoma had modal values of 65 and 170 and a wider chromosome distribution than all other cell lines. A NSCLC specific chromosomal aberration has been undetectable until now. These cell lines may aid in elucidating the biology of NSCLC and its interrelationship to other lung tumors.
This report concerns a 17-year-old male patient with atypical mycosis fungoides (m.f.). Initial examination revealed generalized lymphoma and uncharacteristic livid skin efflorescence. The patient developed bone marrow involvement and meningeal leukaemia 6 months later. Diagnosis was confirmed by immunohistochemistry and electron microscopy. Aggressive chemotherapy yielded no response.