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Biomedical subjects

W K Hong

Publications and source records attributed to W K Hong.

At least 19 recordsLinked to original sources

Expression of DMBT1, a candidate tumor suppressor gene, is frequently lost in lung cancer.

DMBT1 is a candidate tumor suppressor gene located at 10q25.3-26.1. Homozygous deletion of the gene was found in a subset of medulloblastoma and glioblastoma multiforme; lack of expression was noted in the majority of these tumors. In adult tissues, DMBT1 is highly expressed only in lung and small intestine tissues, indicating its important role in these organs. By analyzing lung cancer cell lines and primary lung tumors using reverse transcription-PCR, we found that 100% (20 of 20) of small cell lung cancer (SCLC) cell lines and 43% (6 of 14) of non-small cell lung cancer (NSCLC) cell lines lacked DMBT1 expression. Furthermore, 45% (9 of 20) of the primary NSCLCs exhibited a markedly low level of gene expression compared with corresponding normal lung tissues, indicating that lack of gene expression also occurs in primary lung cancers. To determine the potential mechanisms for lack of DMBT1 expression in lung cancer, we analyzed tumor cell lines for potential intragenic homozygous deletions of the gene and found such homozygous deletions in 10% (4 of 40) of SCLC cell lines but in none of 14 NSCLC cell lines. Moreover, the loss of expression could not be rescued by treatment with a demethylation agent (5-azacytidine) in two NSCLC cell lines lacking DMBT1 expression, suggesting that de novo methylation of the promoter region of the gene is unlikely to play a role in inactivation of the gene. We then sequenced the whole coding region of DMBT1 in 8 NSCLC cell lines that expressed DMBT1 and 20 primary NSCLCs. A potential point mutation at codon 52 was detected in a NSCLC cell line and resulted in an amino acid change from serine to tryptophan. Three common polymorphisms were also detected in tissues analyzed. Our data demonstrate that DMBT1 expression is frequently lost in lung cancer due to gene deletion and to other not yet identified mechanisms, suggesting that inactivation of DMBT1 may play an important role in lung tumorigenesis.

Agglutinins

Plasma levels of insulin-like growth factor-I and lung cancer risk: a case-control analysis.

BACKGROUND: Insulin-like growth factors (IGFs), in particular IGF-I and IGF-II, strongly stimulate the proliferation of a variety of cancer cells, including those from lung cancer. To examine the possible causal role of IGFs in lung cancer development, we compared plasma levels of IGF-I, IGF-II, and an IGF-binding protein (IGFBP-3) in patients with newly diagnosed lung cancer and in control subjects. METHODS: From an ongoing hospital-based, case-control study, we selected 204 consecutive patients with histologically confirmed, primary lung cancer and 218 control subjects who were matched to the case patients by age, sex, race, and smoking status. IGF-I, IGF-II, and IGFBP-3 plasma levels were measured by enzyme-linked immunosorbent assay and then divided into quartiles, based on their distribution in the control subjects. Associations between the IGF variables and lung cancer risk were estimated by use of odds ratios (ORs). Reported P values are two-sided. RESULTS: IGF and IGFBP-3 levels were positively correlated (all r>.27; all P<.001). High plasma levels of IGF-I were associated with an increased risk of lung cancer (OR = 2.06; 95% confidence interval [CI] = 1.19-3.56; P = .01), and this association was dose dependent in both univariate and multivariate analyses. Plasma IGFBP-3 showed no association with lung cancer risk unless adjusted for IGF-I level; when both of these variables were analyzed together, high plasma levels of IGFBP-3 were associated with reduced risk of lung cancer (OR = 0.48; 95% CI = 0.25-0.92; P = .03). IGF-II was not associated with lung cancer risk. CONCLUSIONS: Plasma levels of IGF-I are higher and plasma levels of IGFBP-3 are lower in patients with lung cancer than in control subjects. If these findings can be confirmed in prospective studies, measuring levels of IGF-I and IGFBP-3 in blood may prove useful in assessing lung cancer risk.

Analysis of Variance

All-trans-retinoic acid inhibits Jun N-terminal kinase by increasing dual-specificity phosphatase activity.

Jun N-terminal kinases (JNKs) are serine-threonine kinases that play a critical role in the regulation of cell growth and differentiation. We previously observed that JNK activity is suppressed by all-trans-retinoic acid (t-RA), a ligand for retinoic acid nuclear receptors (RARs), in normal human bronchial epithelial cells, which are growth inhibited by t-RA. In this study, we investigated the mechanism by which t-RA inhibits JNK and the possibility that this signaling event is blocked in non-small cell lung cancer (NSCLC) cells. Virtually all NSCLC cell lines are resistant to the growth-inhibitory effects of t-RA, and a subset of them have a transcriptional defect specific to retinoid nuclear receptors. We found that in NSCLC cells expressing functional retinoid receptors, serum-induced JNK phosphorylation and activity were inhibited by t-RA in a bimodal pattern, transiently within 30 min and in a sustained fashion beginning at 12 h. Retinoid receptor transcriptional activation was required for the late, but not the early, suppression of JNK activity. t-RA inhibited serum-induced JNK activity by blocking mitogen-activated protein (MAP) kinase kinase 4-induced signaling events. This effect of t-RA was phosphatase dependent and involved an increase in the expression of the dual-specificity MAP kinase phosphatase 1 (MKP-1). t-RA did not activate MKP-1 expression or inhibit JNK activity in a NSCLC cell line with retinoid receptors that are refractory to ligand-induced transcriptional activation. These findings provide the first evidence that t-RA suppresses JNK activity by inhibiting JNK phosphorylation. Retinoid receptor transcriptional activation was necessary for the sustained inhibition of JNK activity by t-RA, and this signaling event was disrupted in NSCLC cells with retinoid receptors that are refractory to ligand-induced transcriptional activation.

Calcium-Calmodulin-Dependent Protein Kinases

Differential responses of normal, premalignant, and malignant human bronchial epithelial cells to receptor-selective retinoids.

Using an in vitro lung carcinogenesis model consisting of normal, premalignant, and malignant human bronchial epithelial (HBE) cells, we analyzed the growth inhibitory effects of 26 novel synthetic retinoic acid receptor (RAR)- and retinoid X receptor (RXR)-selective retinoids. RAR-selective retinoids such as CD271, CD437, CD2325, and SR11364 showed potent activity in inhibiting the growth of either normal or premalignant and malignant HBE cells (IC50s mostly <1 microM) and were much more potent than RXR-selective retinoids. Nonetheless, the combination of RAR- and RXR-selective retinoids exhibited additive effects in HBE cells. As the HBE cells became progressively more malignant, they exhibited decreased or lost sensitivity to many retinoids. The activity of the RAR-selective retinoids, with the exception of the most potent retinoid, CD437, could be suppressed by an RAR panantagonist. These results suggest that: (a) RAR/RXR heterodimers play an important role in mediating the growth inhibitory effects of most retinoids in HBE cells; (b) CD437 may act through an RAR-independent pathway; (c) some of the RAR-selective retinoids may have the potential to be used in the clinic as chemopreventive and chemotherapeutic agents for lung cancer; and (d) early stages of lung carcinogenesis may be responsive targets for chemoprevention by retinoids, as opposed to later stages.

Antineoplastic Agents

A pilot clinical laboratory trial of paclitaxel and endobronchial brachytherapy in patients with non-small cell lung cancer.

Paclitaxel enhances microtubule assembly and causes a cell cycle arrest in mitosis, the most radiosensitive phase. We conducted this study to improve our understanding of paclitaxel effects in vivo and to determine the maximum tolerated dose of paclitaxel preceding endobronchial radiation therapy (brachytherapy). The treatment consisted of two cycles of paclitaxel infused over 24 hours followed by 192Ir brachytherapy; cycles were repeated every 3 weeks. Tumor samples were obtained at baseline, after each paclitaxel infusion, and 3 weeks after completion of therapy. Twenty-two non-small cell lung cancer patients with a documented endobronchial lesion were enrolled in the study and 20 patients received the therapy with different doses of paclitaxel, initially without and then later with granulocyte colony-stimulating factor (G-CSF) support (5 microg/kg subcutaneously on days 3 to 10). With the starting paclitaxel dose of 135 mg/m2, five of seven patients developed neutropenia and fever, which mandated a dose reduction to 120 mg/m2. At this dose level, three of three patients had neutropenic fever; thus, 120 mg/m2 of paclitaxel was considered above the maximum tolerated dose without G-CSF support. However, with G-CSF support the therapy was well-tolerated without dose-limiting toxicity and accrual is continuing at the paclitaxel 175-mg/m2 dose level. While no patient had achieved systemic tumor response, 11 patients achieved partial response of the endobronchial lesion, which represents 68.8% of 16 patients who received two courses of therapy and 91.8% of 12 patients who had full evaluation by bronchoscopy after completion of therapy. The in vivo paclitaxel effects were studied using the pre- and post-paclitaxel therapy tumor samples in eight patients. Four (50%) patients had a significant increase in mitotic cells after paclitaxel, as assessed by MPM-2 immunostaining that recognizes a large family of mitotic phosphoproteins. A substantial increase in the number of micronucleated apoptotic cells, another paclitaxel effect, was also found in six patients. These results clearly indicate that patients with endobronchial lesions from recurrent NSCLC could not tolerate this combined modality regimen without G-CSF support. However, this group of patients provided a unique opportunity to study in vivo paclitaxel effects in a clinical trial setting.

Aged

Dysregulated cyclin D1 expression early in head and neck tumorigenesis: in vivo evidence for an association with subsequent gene amplification.

Cyclin D1 proto-oncogene is a key regulator of the mammalian cell-cycle acting at the restriction point in late G1. Amplification of the cyclin D1 locus, located on chromosome 11q13, as well as cyclin D1 protein overexpression have been reported in several human malignancies. The purpose of this study was to evaluate cyclin D1 gene copy status and protein expression during the multistep process of head and neck tumorigenesis, using a combination of fluorescence in situ hybridization and immunohistochemistry techniques. From 29 selected patients presenting with head and neck squamous carcinoma and whose tumor cytospins had been previously screened for presence (16 cases) or absence (13 cases) of amplification at the 11q13 band, we analysed 46 paraffin-embedded tissue specimens that demonstrated, besides the primary tumor, the presence of contiguous adjacent normal tissue and/or premalignant lesions. Of the 16 amplified cases, nine demonstrated a continuous progression from premalignant to invasive carcinoma and seven (77.7%) of these cases showed cyclin D1 gene amplification in premalignant lesions prior to development of invasive carcinoma. Increased cyclin D1 protein expression was observed in all 16 amplified tumors and five of the 13 (38.4%) non-amplified tumors. Interestingly, dysregulated cyclin D1 expression was also found in the premalignant lesions adjacent to all 16 amplified tumors, and it appeared to precede cyclin D1 gene amplification. In contrast no dysregulated expression was detected in the premalignant lesions of the non-amplified tumors. In conclusion, these findings provide strong evidence for early dysregulation of cyclin D1 expression during the tumorigenesis process and suggest that dysregulated increased expression precedes and possibly enables gene amplification.

Carcinoma, Squamous Cell

Phenotype and genotype of advanced premalignant head and neck lesions after chemopreventive therapy.

BACKGROUND: The goal of chemoprevention is to reduce the risk of cancer development by reversing or blocking the tumorigenic process through the use of pharmacologic or natural agents. To determine the potential role of genetic alterations in assessing cancer risk and in evaluating the efficacy of chemopreventive agents, we studied 22 patients with advanced premalignant lesions of the head and neck who were part of a prospective cancer prevention trial that is investigating a regimen of 13-cis-retinoic acid, interferon alfa, and alpha-tocopherol administered for 12 months or until disease progression. METHODS: We used polymerase chain reaction analysis of microsatellite DNA sequences in cells from precancerous lesions to determine the frequencies of genetic alterations--namely, loss of heterozygosity (LOH) and microsatellite instability--at chromosomal loci that are commonly deleted in head and neck cancer. RESULTS: Prior to treatment, 17 (81%) of 21, eight (44%) of 18, and eight (42%) of 19 patients who were informative (i.e., heterozygous) at chromosomes 9p21, 3p14, and 17p13, respectively, exhibited LOH in at least one of their lesion biopsy specimens. Among nine patients who exhibited LOH at chromosome 9p21 in pretreatment biopsy specimens and who had completed at least 5 months of therapy, the genetic loss persisted in eight--including three of the four patients who exhibited complete histologic responses (i.e., no evidence of dysplasia in their biopsy specimens). IMPLICATION: Our data suggest that clinical and histologic assessments of the response to chemopreventive agents may be insufficient to determine their efficacy and that critical genetic alterations could be used as independent biomarkers to augment the ability to evaluate the efficacy of such agents.

Antineoplastic Agents

Overexpressed activated retinoid X receptors can mediate growth inhibitory effects of retinoids in human carcinoma cells.

Retinoic acid receptors (RARs) and retinoid X receptors (RXRs) mediate the effects of retinoids on gene expression by binding to response elements in retinoid-sensitive genes. RAR- but not RXR-selective retinoids were found in many previous studies to suppress the growth of various cells, implicating RXR-RAR in these effects. Using a co-expression vector for identifying cells that expressed retinoid receptors transiently and 5'-bromo-2'-deoxyuridine incorporation for labeling DNA-synthesizing cells, we found that RXR-selective retinoids inhibited DNA synthesis in squamous carcinoma 1483 cells transfected with RXRalpha but not with RARs. Ligand-induced transcription of the reporter luciferase gene via the activation of RXR-RXR but not RXR-RAR correlated with growth suppression. Studies with RXRalpha deletion mutants indicated that the DNA binding and the ligand binding domains are essential for mediating growth inhibition. A point mutation in the ligand binding domain (L430F) that decreased RXRalpha homodimerization compromised its growth inhibitory function. Further, RXRalpha mutant (F313A), which functions as a constitutively active receptor, inhibited DNA synthesis in the absence of ligand. These results demonstrate that RXR homodimer activation leads to growth inhibition and suggest that transfection of RXRalpha and treatment with RXR-selective retinoids or the transfection of constitutively activated RXRalpha mutant alone may have a therapeutic potential.

Alitretinoin

A pilot trial of hyperfractionated thoracic radiation therapy with concurrent cisplatin and oral etoposide for locally advanced inoperable non-small-cell lung cancer: a 5-year follow-up report.

PURPOSE: To improve the outcome of patients with locally advanced inoperable non-small cell lung cancer (NSCLC), we conducted a pilot trial of concurrent chemoradiation therapy using a cisplatin and oral etoposide regimen given concurrently with hyperfractionated radiation therapy. METHODS AND MATERIALS: In this single-institution pilot trial, we enrolled 23 patients with inoperable Stage IIIa (4) and IIIb (19) NSCLC. Treatment consisted of two cycles of chemotherapy with oral etoposide 50 mg one day alternating with 50 mg b.i.d. (50 mg/day if BSA is < 1.70 m2) on days 1-21 and intravenous cisplatin (40 mg/m2) on days 1 and 8 of a 28-day cycle. Radiation therapy was given twice a day (1.2 Gy per fraction), 5 days a week, to a total dose of 69.6 Gy in 58 fractions over 6 weeks. RESULTS: Overall, 18 (78%) of the 23 patients completed the chemotherapy as planned and 21 (91%) received thoracic irradiation per protocol. One patient died of radiation pneumonitis. Fourteen (78%) of 18 evaluable patients achieved objective responses. The median survival duration was 9.3 months for all patients and 20.2 months for 15 patients who had no more than 5% weight loss. After a minimum follow-up of 5 years, five patients (1 IIIa, 4 IIIb) are still alive and disease-free, which gives an actual 5-year survival rate of 22%. Four of the five 5-year survivors were among those who completed the treatment as planned. CONCLUSION: This long-term survival outcome compares favorably with that of other chemoradiation therapy trials and even with those reported in multimodality trials including surgery. These results suggest that intensive concurrent chemoradiation therapy is feasible, and some patients with locally advanced inoperable NSCLC may enjoy long-term survivorship following nonsurgical therapy.

Adult

Identification of two distinct tumor-suppressor loci on the long arm of chromosome 10 in small cell lung cancer.

Recent cytogenetic studies indicated that loss of the long arm of chromosome 10 is a frequent event in small cell lung cancer (SCLC) and that a common region of the deletion is at 10q24-qter, which suggests the presence of a tumor-suppressor gene there. To map precise tumor-suppressor loci on the chromosome arm for further positional cloning efforts, we tested 46 primary SCLCs using microsatellite analysis. By analysing 11 highly polymorphic microsatellite markers located in 10q23-q26, we found that at least 78% (36/46) of the tumors exhibited loss of heterozygosity (LOH) at 10q with at least two distinct minimally deleted regions. LOH at one region (10q24) was found in at least 74% (32/43) of informative cases with a minimally deleted region between D10S198 and D1OS192 (about 2 cM); LOH at another region (10q24-q25) was observed in at least 66% (29/44) of informative tumors with a minimally deleted region between D10S221 and D10S587 (about 11 cM). LOH at both regions or across both regions was observed in at least 52% (24/46) of the tumors tested. However, no mutations or homozygous deletions were found in the coding region of MXI1, a candidate tumor suppressor gene at 10q24-q25, in a panel of SCLC cell lines. Our data demonstrate that at least two tumor-suppressor loci exist on 10q and that they may play an important role in SCLC tumorigenesis.

Adult

Benzo[a]pyrene diol epoxide and bleomycin sensitivity and susceptibility to cancer of upper aerodigestive tract.

BACKGROUND: Tobacco smoking is an established risk factor for cancers of the upper aerodigestive tract, and measurement of chromosomal aberrations, i.e., chromatid breaks, induced in lymphocytes in vitro by bleomycin has been shown to be a predictor of risk for these cancers. In a case-control study, we recruited case subjects who were previously treated with surgery and/or radiotherapy for stage I or stage II squamous cell carcinoma of the head and neck to test the hypothesis that lymphocytic chromatid breaks induced by benzo[a]pyrene diol epoxide (BPDE), a tobacco mutagen, may also be associated with risk of developing cancers of the upper aerodigestive tract. METHODS: Case subjects were matched to control subjects on the basis of age, sex, ethnicity, and smoking status. Primary lymphocytes from 67 case subjects and 81 control subjects were treated with 2 microM BPDE for 24 hours, and the frequency of induced chromatid breaks was determined. All statistical tests were two-sided. RESULTS: Lymphocytes from case subjects compared with lymphocytes from control subjects showed significantly more breaks per cell induced by BPDE (mean+/-standard deviation, 0.77+/-0.38 versus 0.49+/-0.25; P<.001). Lymphocytes from 64.2% of case subjects were sensitive to BPDE (using a cutoff value of > or =0.60 break per cell). Subjects in the highest quartile of chromatid breaks had an approximately 20-fold increased risk of cancer compared with those in the lowest quartile after adjustment for age, sex, ethnicity, and smoking status. The association between BPDE sensitivity and cancer risk was higher in former smokers than in current smokers and higher in younger patients than in older patients. Subjects with sensitivity to both BPDE and bleomycin were at a 19.2-fold increased risk of cancer compared with those who were not sensitive to either agent. CONCLUSIONS: Mutagen sensitivity assays may aid in identifying individuals at risk of cancer, and use of parallel assays with two mutagens may improve risk predictability.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide

A parallel study of in vitro sensitivity to benzo[a]pyrene diol epoxide and bleomycin in lung carcinoma cases and controls.

BACKGROUND: Because only a fraction of smokers develop neoplastic lesions, host factors may affect their susceptibility to the carcinogenic effects of tobacco smoke. Benzo[a]pyrene diol epoxide (BPDE) is the metabolic product of benzo[a]pyrene (B[a]P), a constituent of tobacco smoke. Therefore, BPDE sensitivity may shed some light on smoking-related carcinogenesis. METHODS: First, differential BPDE sensitivity was tested in five lymphoblastoid cell lines. Then sensitivity to BPDE and bleomycin (an excellent lung carcinoma risk predictor) was tested in parallel in the lymphocytes of 57 lung carcinoma cases and 82 controls. RESULTS: The optimal BPDE treatment duration was 24 hours. The xeroderma pigmentosum cell line was the most sensitive, followed by head and neck cancer, ataxia telangiectasia, and normal cells. The mean breaks per cell for cases and controls were 0.78 and 0.46, respectively (P < 0.0001). BPDE sensitivity was significantly associated with lung carcinoma, with an odds ratio (OR) of 7.26, compared with an OR of 4.56 for bleomycin sensitivity. There was also a dose-response correlation between the quartiles of BPDE-induced breaks and lung carcinoma risk, with ORs of 2.39, 3.12, and 15.03. It is noteworthy that individuals who were sensitive to both BPDE and bleomycin had a significantly increased OR of 38.36. CONCLUSIONS: BPDE sensitivity may be a biologic marker to identify individuals who are susceptible to the carcinogenic effects of tobacco smoke. BPDE and bleomycin sensitivity might represent different repair or sensitivity pathways; however, when these assays are used in parallel, they might refine our ability to identify high risk individuals.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide

TSG101 is not mutated in lung cancer but a shortened transcript is frequently expressed in small cell lung cancer.

TSG101 is a candidate tumor suppressor gene whose deletion in NIH3T3 cells leads to spontaneous lung metastases in nude mice. Aberrant transcripts of TSG101 have been identified in 47% of primary breast carcinomas, without evidence of intragenic deletions at the TSG101 locus on 11p15. To investigate the possible role of TSG101 in lung cancer, which often shows 11p allele loss, we performed transcript analysis and mutational analysis of TSG101 in lung cancer cell lines. Reverse transcriptase RT-PCR and Northern analysis detected a common TSG101 transcript, shortened because of an internal deletion, which was expressed simultaneously with the wild-type transcript in 89% of small cell lung cancer (SCLC) lines. In contrast, the wild-type transcript was expressed alone in normal tissues, primary non-small cell lung cancer (NSCLC) specimens, and the majority of NSCLC cell lines. Sequence of the shortened SCLC transcript was identical to that of the most common aberrant transcript identified in breast cancer, consisting of a deletion of exons 2-4 and part of 1 and 5. Southern analysis of SCLC lines expressing the shortened transcript did not detect any intragenic deletions. Single strand conformational polymorphism (SSCP) analysis and direct sequencing of TSG101 cDNAs also identified no mutations or deletions. These results suggest that TSG101 is not mutated in lung cancer but that aberrant splicing of TSG101 occurs in SCLC.

Blotting, Northern

Effective treatment of early endobronchial cancer with regional administration of liposome-p53 complexes.

BACKGROUND: Lung cancer originates in a diffusely damaged bronchial epithelium as a result of sequential and cumulative genetic alterations. We investigated the feasibility of in vivo gene replacement in endobronchial precancerous and cancerous cells by a regionally administered nonviral delivery system. METHODS: After evaluating the in vitro transfection efficiency and cytotoxicity of a variety of cationic liposome-p53 formulations, a specific formulation, DP3-p53, was selected for further in vitro and in vivo evaluation. The ability of DP3-p53 to introduce the p53 gene in the normal bronchial epithelium was studied in transgenic mice that lack the p53 gene. The therapeutic effect of DP3-p53 administered intratracheally was studied in two nude mouse models of endobronchial human lung cancer by use of H358 (p53-null) and H322 (p53-mutant) cells. RESULTS: DP3-p53 was able to effectively introduce and express the p53 gene and induce G1 arrest and apoptosis in H358 cells in vitro and to introduce and transcribe the p53 gene in the bronchial epithelium of transgenic mice that lack the p53 gene in vivo. In therapeutic experiments using groups of four or five mice each, administration of five intratracheal doses of DP3-p53 (2 microg or 8 microg DNA per dose) on days 4, 8, 12, 16, and 20 after intratracheal tumor inoculation significantly inhibited lung tumor formation and prolonged by approximately twofold the survival of mice bearing H358 or H322 endobronchial tumor cells in contrast to the survival among untreated mice and mice treated with the DP3-empty vector (P = .007 [two-sided logrank test] for mice bearing H358 cells and P = .008 [two-sided logrank test] for those bearing H322 cells). CONCLUSIONS/IMPLICATIONS: Liposome-based p53 delivery through the airways is a potentially effective strategy for the treatment of early endobronchial cancer. These results have important implications for the gene therapy and prevention of human lung cancer.

Animals

A multidisciplinary approach to therapy for unresectable malignant thymoma.

BACKGROUND: The therapeutic outcome for unresectable, locally advanced, malignant thymoma has been poor. OBJECTIVE: To improve tumor resectability and patient survival rates by studying a multimodal approach to therapy for unresectable malignant thymoma. DESIGN: Prospective cohort study. SETTING: Tertiary care cancer center. PARTICIPANTS: All eligible patients had newly diagnosed, histologically proven, unresectable malignant thymoma. INTERVENTION: The treatment regimen consisted of induction chemotherapy (three courses of cyclophosphamide, doxorubicin, cisplatin, and prednisone), surgical resection, postoperative radiation therapy, and consolidation chemotherapy (three courses of cyclophosphamide, doxorubicin, cisplatin, and prednisone). Tissue samples were taken at the time of surgical resection for assessment of tumor necrosis and Ki-67 expression. MEASUREMENTS: Tumor response and resectability (both overall and after induction chemotherapy) and disease-free survival rate in patients who received multimodal therapy. RESULTS: 13 patients were consecutively enrolled from February 1990 to December 1996, and 12 evaluable patients were assessed for response. Disease responded to induction chemotherapy completely in 3 patients (25%) and partially in 8 patients (67%); 1 patient had a minor response (8%). Eleven patients had surgical resection; 1 refused surgery. Tumors were removed completely in 9 (82%) and incompletely in 2 (18%) of 11 patients who had been receiving radiation therapy and consolidation chemotherapy. All 12 patients are alive (100% at 7 years), with a median follow-up of 43 months, and 10 patients are disease free (73% disease-free survival at 7 years). A high correlation was seen between tumor necrosis after induction chemotherapy and Ki-67 expression (r=-0.88). CONCLUSIONS: Aggressive multimodal treatment is highly effective and may cure locally advanced, unresectable malignant thymoma.

Adult

Autofluorescence bronchoscopy in the detection of squamous metaplasia and dysplasia in current and former smokers.

BACKGROUND: New methods are needed to detect precancerous lesions in lung tissue. We conducted a study to determine the utility of LIFE (laser-induced fluorescence emission) autofluorescence bronchoscopy for the detection of squamous metaplasia and dysplasia in current and former smokers. METHODS: In this prospective, single-center study, 53 participants underwent standard white-light bronchoscopy and 39 underwent both white-light and LIFE bronchoscopy. Bronchial biopsy specimens were obtained from all participants at six pre-determined sites using white-light bronchoscopy and from all other sites that appeared to be abnormal in participants who underwent LIFE bronchoscopy. Relationships between LIFE imaging and histologic findings were examined for 245 biopsy specimens obtained from those participants who had undergone LIFE bronchoscopy. RESULTS: LIFE imaging revealed abnormalities designated as either class II or class III in 89 (36.3%) and 16 (6.5%) of the 245 sites examined, respectively, and histopathologic examination showed dysplasia and metaplasia in eight (3.3%) and in 52 (21.2%) of the 245 specimens, respectively. Among the 105 biopsy specimens obtained from sites with abnormal LIFE imaging, only 26 (24.8%) exhibited squamous metaplasia and/or dysplasia, similar to the findings for sites with normal LIFE imaging (34 [24.3%] of 140). Comparison of individuals examined by LIFE imaging with those who underwent white-light bronchoscopy alone revealed no increase in the detection of dysplasia or metaplasia with LIFE bronchoscopy. CONCLUSION: In this population of current and former smokers, abnormalities detected by LIFE bronchoscopy did not improve the detection of squamous metaplasia or dysplasia.

Adult

Localization of chromosome 8p regions involved in early tumorigenesis of oral and laryngeal squamous carcinoma.

We analysed 30 primary invasive oral and laryngeal squamous carcinomas (SC), with concurrent dysplastic lesions, for genetic alterations at 15 microsatellite loci on the short arm of chromosome 8. Overall, loss of heterozygosity (LOH) was observed, in at least one informative locus, in 27% of the dysplastic lesions and in 67% of the invasive carcinomas. The highest frequency of allele losses in dysplasia (20% and 17%), and invasive carcinoma (40% and 48%) were detected in the same D8S298 and LPL-tet loci located on chromosomes 8p21 and 8p22 respectively. The minimal region with LOH was limited to 4.6 megaBases (mBs) at 8p22 and 7.1 mBs at 8p21. In addition, allelic losses in both dysplastic and corresponding invasive specimens were noted at the same loci in some tumors suggesting their emergence from a common preneoplastic clone. Allele losses correlated significantly with male gender, oral and laryngeal sites and high proliferative index. The data suggest that inactivation of tumor suppressor gene(s), within these loci, may constitute an early event in the evolution of oral and laryngeal SC.

Adult

Suppression of c-Fos gene transcription with malignant transformation of human bronchial epithelial cells.

The Activator Protein-1 (AP-1) complex is a dimeric transcription factor composed of fos and jun proteins that regulates cellular growth and differentiation. We previously demonstrated a reduction in basal AP-1 transcriptional activity associated with the malignant transformation of human bronchial epithelial (HBE) cells that was, in part, a consequence of decreased c-fos expression. In this study, we investigated the mechanisms underlying the reduction in c-fos expression associated with the malignant transformation of HBE cells. c-Fos gene transcription was lower in tumorigenic HBE cells than in normal HBE cells, and the reduction in transcription involved c-fos gene promoter elements from -327 to +40. DNaseI footprinting and band shift analyses of motifs within this c-fos promoter region, including a cyclic AMP response element (CRE), serum response element (SRE), sis-inducible element (SIE), and a YY1 site, revealed that binding to these motifs was greater in tumorigenic HBE cells than in normal HBE cells. Site-directed mutagenesis of the CRE partially relieved the repression of c-fos promoter activity in tumorigenic HBE cells. Further, the activity of the Jun N-terminal Kinase (JNK)-dependent pathway, which was a positive regulator of the c-fos promoter, was greater in normal HBE cells than in tumorigenic HBE cells. These findings demonstrate a transcriptionally-mediated suppression of c-fos gene expression associated with the malignant transformation of HBE cells. The decreased activity of the c-fos promoter in tumorigenic 1170I cells appeared to involve suppression through a CRE site and reduced activation by JNK-dependent pathways.

Bronchi