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C Cordon-Cardo

Publications and source records attributed to C Cordon-Cardo.

At least 127 records · Page 7Linked to original sources

Microsatellite instability and deletion analysis of chromosome 10 in human prostate cancer.

Despite the clinical relevance of prostate cancer, few aspects regarding the molecular alterations involved in the process of prostate carcinogenesis are clearly understood. Cytogenetic and molecular genetic studies have identified specific abnormalities in prostate tumors, mainly on chromosomes 8, 10 and 16. On the basis of these findings, we designed a study to further characterize the altered regions on chromosome 10, using 15 microsatellite markers on a population composed of 20 paired normal and primary non-metastatic prostatic-tumor samples. Overall, 65% (13/20) of the cases analyzed showed molecular alterations, mainly rearrangements and deletions. The locus presenting the highest rate of abnormalities was D1OS221, which maps to 10q23-q24. Another region with frequent alterations was 10q21, at the DIOS109 locus. There was no statistical association between microsatellite abnormalities and Gleason grade or tumor stage in the prostate cancer cases studied. These results suggest that microsatellite alterations on the long arm of chromosome 10 are non-random events occurring in prostate cancer and that they may play a role in the process of tumorigenesis in these neoplasms.

Carcinoma↗

Role of the INK4a locus in tumor suppression and cell mortality.

The cell cycle inhibitor p16INK4a is inactivated in many human tumors and in families with hereditary melanoma and pancreatic cancer. Tumor-associated alterations in the INK4a locus may also affect the overlapping gene encoding p19ARF and the adjacent gene encoding p15I1NK4b, both negative regulators of cell proliferation. We report the phenotype of mice carrying a targeted deletion of the INK4a locus that eliminates both p16INK4a and p19ARF. The mice are viable but develop spontaneous tumors at an early age and are highly sensitive to carcinogenic treatments. INK4a-deficient primary fibroblasts proliferate rapidly and have a high colony-formation efficiency. In contrast with normal cells, the introduction of activated Ha-ras into INK4a-deficient fibroblasts can result in neoplastic transformation. These findings directly demonstrate that the INK4a locus functions to suppress neoplastic growth.

Alleles↗

Desmoid fibromatosis is a clonal process.

Desmoid fibromatosis is a locally aggressive proliferative soft tissue lesion of controversial nature. The authors investigated the clonality of this process by molecular genetic analysis of DNA methylation pattern at a polymorphic site at the human androgen-receptor gene (HUMARA) to examine the inactivation pattern of the X chromosome. Twenty desmoid fibromatoses including primary and recurrent lesions from 11 female patients were studied. Sixteen lesions from eight patients showed nonrandom X inactivation, consistent with a clonal origin and, therefore, a true neoplastic nature. Furthermore, multiple recurrent lesions from two patients exhibited the same inactivation pattern as the corresponding primary lesions, suggesting that they were derived from the same cell clone as the primary lesion. One patient was homozygous at the HUMARA locus, and two patients had the same skewed pattern in their normal and lesional tissues. The authors also found that digestion with HpaII, but not HhaI, failed to generate a nonrandom X inactivation pattern in some of the cases, suggesting that the methylation status at the HpaII sites was altered in some lesions, and that HhaI should be used to verify results and to avoid incorrect conclusions.

Adolescent↗

Overexpression of p53 protein in a high-risk population of patients with superficial bladder cancer before and after bacillus Calmette-Guérin therapy: correlation to clinical outcome.

PURPOSE: We have previously demonstrated that p53 overexpression is predictive of disease progression and survival in Ta, Tis, and T1 tumors. Instillation of Bacillus Calmette-Guérin (BCG) is now accepted to be the most efficient adjuvant therapy for superficial bladder carcinoma. The aim of this study was to determine if p53 status, assessed before and after intravesical BCG therapy, can predict clinical outcome in a high-risk population of patients with superficial bladder carcinoma. MATERIALS AND METHODS: We examined 196 tissue specimens from 98 patients, obtained immediately before and after intravesical BCG therapy. The pretherapy population was composed of 22 Ta, 57 Tis, and 19 T1 tumors. After BCG, 66 specimens were TO and 32 had residual tumors. Nuclear p53 overexpression was analyzed in relation to time to disease progression and disease-specific survival. RESULTS: The median follow-up duration was 44 months. The detection of nuclear p53 overexpression before BCG therapy did not predict response to BCG therapy. Pre-BCG p53 protein overexpression, response to BCG therapy, and pre-BCG stage were all independent markers of disease progression. In patients with residual disease after BCG therapy (nonresponders), multivariate analysis confirmed that posttherapy p53 overexpression was the only independent marker of disease progression. CONCLUSION: In this high-risk population of patients with superficial bladder tumors, patients who have p53 nuclear overexpression in the tumor and stage T1 disease before BCG therapy are at high risk of disease progression. Furthermore, in the group of patients with residual disease after BCG therapy, p53 status is a better predictor of disease progression than post-BCG stage.

Administration, Intravesical↗

Renal cell carcinoma genetic analysis by comparative genomic hybridization and restriction fragment length polymorphism analysis.

PURPOSE: To compare comparative genomic hybridization (CGH) with restriction fragment length polymorphism (RFLP) analysis in renal cell carcinoma (RCC). MATERIALS AND METHODS: Fifteen RCC specimens were analyzed by both CGH and RFLP analysis at 18 loci. RESULTS: Restriction fragment length polymorphism analysis was informative on 90 chromosomal arms. Allelic imbalance was identified on 27 chromosomal arms by RFLP and on 26 arms by CGH. Data from CGH and RFLP demonstrated a high degree of concordance (p < 0.001). Comparative genomic hybridization identified previously documented areas of interest in RCC as well as potential new areas of interest including loss of genetic material on chromosome 2 and gains of genetic material on chromosome 16p. CONCLUSIONS: Comparative genomic hybridization can successfully be performed in RCC specimens. As it surveys the entire genome simultaneously, it may be more efficient than conventional cytogenetics or RFLP analysis in analyzing RCC.

Carcinoma, Renal Cell↗

Chromosome 3 allelic losses and microsatellite alterations in transitional cell carcinoma of the urinary bladder.

A deletion analysis of chromosome 3 was conducted in 72 cases of transitional cell carcinoma of the urinary bladder using seven microsatellites spanning the 3p arm and two additional microsatellites in 3q. Results showed that 19 of 72 (26.4%) cases had deletions in one or more 3p regions. Two regions of frequent deletion were identified: 3p12-14 and 3p21-23. Less frequent deletions at 3p24.2-25 were also observed. Deletions at 3p were weakly correlated with tumor grade, but strongly with pathological stage. Among 70 cases with histological grade available, 4 of 29 (13.8%) grade 1 and 2 tumors, and 15 of 41 (36.6%) grade 3 tumors showed allelic losses in one or more of the 3p regions studied (P = 0.055). Among 69 cases with pathological stage available, none of 27 superficial carcinomas (pTa, pTis, and pT1) showed 3p deletions, whereas 18 of 42 (42.9%) muscle invasive lesions (pT2, pT3, and pT4) displayed allelic losses at 3p (P < 0.001). In addition, 12 cases showed microsatellite instability, but there was no correlation between abnormalities and tumor grade or stage. No correlation was found between deletions at 3p21-23 and microsatellite instability. In conclusion, deletions at three discrete regions of 3p were identified in bladder carcinoma, suggesting the involvement of candidate tumor suppressor genes residing in these regions. Moreover, detection of allelic losses in these regions was associated with higher tumor grade and more advanced stage, suggesting their potential involvement in bladder tumor progression.

Biomarkers, Tumor↗

Analysis of p21WAF1/CIP1 in primary bladder tumors.

The p21WAF1/CIP1 gene is regulated by p53 and encodes a cyclin-dependent kinase (Cdk)-inhibitor involved in senescence and cell quiescence. The role of p21 as a negative regulator of cell proliferation suggests that it may function as a tumor suppressor gene. However, only a few mutations of the p21WAF1/CIP1 gene have been reported to date. In order to assess potential p21WAF1/CIP1 gene alterations in human bladder cancer, we have examined this gene and its encoded product in a well-characterized cohort of 27 primary bladder tumors. Mobility shifts by single-strand conformation polymorphism in the p21WAF1/CIP1 gene were identified in 2 cases. Sequencing analyses revealed that one of these cases had point mutations in the 3' untranslated region, while the other case had a frame shift mutation at positions 322 (C to A) and a deletion of 8 nucleotides (323-->331; CCG-->ACG, codon 81 Arg-->Thr) that produced a stop signal at codon 83 (Gly--Stop). This tumor had a p21-negative phenotype by immunohistochemistry, but did not lose any allele. We further characterized these cases by the study of TP53 mutations using single-strand conformation polymorphism (PCR-SSCP) and sequencing, as well as immunohistochemical assays. Seven mobility shifts were identified and seven cases showed p53 nuclear accumulation. The two cases displaying mutated p21WAF1/CIP1 had wild-type TP53. It is concluded that p21WAF1/CIP1 gene aberrations are infrequent in bladder carcinoma but may be occasionally identified in primary bladder tumors.

Aged↗

Deletion of the p16 and p15 genes in human bladder tumors.

BACKGROUND: Two genes, p16 (also known as CDKN2, INK4A, or MTS1) and p15 (also described as INK4B or MTS2), are found in tandem at chromosome 9p21. These genes are designated as candidate tumor suppressor genes because they encode proteins that function as negative cell cycle regulators. (The encoded polypeptides inactivate specific cyclin-protein kinase complexes that are required for progression through the cell cycle.) Molecular genetic studies have revealed that deletion of the p16 and p15 genes occurs frequently in cancer cell lines and in certain malignant neoplasms. PURPOSE: We evaluated the frequency of p16 and p15 gene alterations in a well-characterized cohort of human transitional cell bladder cancers, and we explored potential associations between alterations in these genes and tumor stage and/or grade. METHODS: Tumor tissue and normal tissue from 110 patients with transitional cell carcinoma of the urinary bladder were examined. The status of the p16 and p15 genes in these tissues was determined by Southern blotting and hybridization with gene-specific probes, by coupled polymerase chain reaction and single-strand conformation polymorphism analysis (PCR-SSCP), and by sequencing DNA fragments produced during PCR. Associations between alterations in the genes and tumor stage and/or grade were evaluated using the two-tailed Fisher's exact test. RESULTS: Homozygous deletion (both alleles lost) of the p16 and the p15 genes was observed in 11 and nine bladder tumors, respectively. Eight of the 11 tumors exhibiting complete loss of the p16 gene also displayed homozygous deletion of the p15 gene. Exclusive loss of either gene was detected in only three tumors. Hemizygous deletion (one allele lost, also referred to as loss of heterozygosity [LOH] of the p16 and/or p15 genes was observed in eight tumors. Rearrangement of the two genes was indicated in three additional tumors. No point mutations were identified in either gene. The overall frequency of alteration in this cohort of bladder tumors was approximately 18% for each gene (in 20 [18.3%, 95% confidence interval (CI) = 11.1%-25.6%] of 109 informative tumors for the p16 gene and in 18 [18%, 95% CI = 10.5%-25.5%] of 100 informative tumors for the p15 gene). A statistically significant association between p16 gene alteration and bladder tumors of low stage (P < .01) and grade (P < .01) was observed; a significant association between p15 gene alteration and tumors of low stage (P < .01) was also detected. CONCLUSIONS: Alteration of the p16 and p15 genes, especially coincident homozygous deletion, appears to be a common event in bladder cancer.

Aged↗

Contrasting roles for Myc and Mad proteins in cellular growth and differentiation.

The positive effects of Myc on cellular growth and gene expression are antagonized by activities of another member of the Myc superfamily, Mad. Characterization of the mouse homolog of human mad on the structural level revealed that domains shown previously to be required in the human protein for anti-Myc repression, sequence-specific DNA-binding activity, and dimerization with its partner Max are highly conserved. Conservation is also evident on the biological level in that both human and mouse mad can antagonize the ability of c-myc to cooperate with ras in the malignant transformation of cultured cells. An analysis of c-myc and mad gene expression in the developing mouse showed contrasting patterns with respect to tissue distribution and developmental stage. Regional differences in expression were more striking on the cellular level, particularly in the mouse and human gastrointestinal system, wherein c-Myc protein was readily detected in immature proliferating cells at the base of the colonic crypts, while Mad protein distribution was restricted to the postmitotic differentiated cells in the apex of the crypts. An increasing gradient of Mad was also evident in the more differentiated subcorneal layers of the stratified squamous epithelium of the skin. Together, these observations support the view that both downregulation of Myc and accumulation of Mad may be necessary for progression of precursor cells to a growth-arrested, terminally differentiated state.

Animals↗

Quantitative studies of monoclonal antibody targeting to disialoganglioside GD2 in human brain tumors.

Iodine-131 3F8, a murine IgG3 monoclonal antibody that targets to GD2-bearing tumors, was administered intravenously to 12 patients with brain tumors. Six patients received 2 mCi (0.74 Bq) of 131I-3F8, five patients 10 mCi (3.7 Bq)/1.73 m2 of 131I-3F8, and one patient 2.6 mCi (0.96 Bq) of 124I-3F8, with no side-effects. Nine of 11 malignant gliomas and the single metastatic melanoma showed antibody localization, with the best tumor delineation on single-photon emission tomography (SPET) following 10 mCi (3.7 Bq)/1.73 m2 dose. No nonspecific uptake in the normal craniospinal axis was detected. There was no difference in the pharmacokinetics of low-dose versus the higher-dose antibody groups; plasma and total-body half-lives were 18 h and 49 h, respectively. Surgical sampling and time-activity curves based on quantitative imaging showed peak uptake in high-grade glioma at 39 h, with a half-life of 62 h. Tumor uptake at time of surgery averaged 3.5 x 10(-3) %ID/g and peak activity by the conjugate view method averaged 9.2 x 10(-3) %ID/g (3.5-17.8). Mean radiation absorption dose was 3.9 rad per mCi injected (range 0.7-9.6) or 10.5 cGy/Bq (range 1.9-26). There was agreement on positive sites when immunoscintigraphy was compared with technetium-99m glucoheptonate/diethylene triamine penta-acetic acid planar imaging, thallium-201 SPET, and fluorine-18 fluorodeoxyglucose positron emission tomography. Taken together, these data suggest that quantitative estimates of antibody targeting to intracranial tumors can be made using the modified conjugate view method.

Adolescent↗

Family history of cancer, body weight, and p53 nuclear overexpression in Duke's C colorectal cancer.

To examine the hypothesis that colorectal carcinomas with and without TP53 mutations may be characterised by aetiological heterogeneity, we analysed a group of 107 patients with primary Dukes' C colorectal cancer seen at the Memorial Sloan-Kettering Cancer Center (MSKCC) from 1986 to 1990. We assessed p53 overexpression using the monoclonal antibody PAb 1801, and identified 42 (39%) patients displaying p53-positive phenotype, defined as > or = 25% of positive cells. Patients with two or more first-degree relatives with cancer had an odds ratio (OR) of 2.9 (95% CI 1.0-8.3) for p53 overexpression in comparison with those without a family history of cancer (trend test, P = 0.11). A possible association between body weight and p53 overexpression was observed. The ORs were 1.9 for the second quartile, 1.9 for the third quartile and 3.4 for the highest quartile in comparison with the lowest quartile (trend test, P = 0.06). No association between occupational physical activity, smoking, drinking, parity and p53 overexpression was identified. The results suggest that p53 overexpression may be related to genetic predisposition to colorectal cancer, and p53-positive and p53-negative colorectal cancers may be controlled by different aetiological pathways.

Age Factors↗

Altered patterns of retinoblastoma gene product expression in adult soft-tissue sarcomas.

Altered expression of the retinoblastoma (RB) tumour-suppressor gene product (pRB) has been detected in sporadic bone and soft-tissue sarcomas. Earlier studies, analysing small cohorts of sarcoma patients, have suggested that these alterations are more commonly associated with high-grade tumours, metastatic lesions and poorer survival. This study was designed to re-examine the prevalence and clinical significance of altered pRB expression in a large and selected group of soft-tissue sarcomas from 174 adult patients. Representative tissue sections from these sarcomas were analysed by immunohistochemistry using a well-characterised anti-pRB monoclonal antibody. Tumours were considered to have a positive pRB phenotype only when pure nuclear staining was demonstrated, and cases were segregated into one of three groups. Group 1 (n = 36) were patients whose tumours have minimal or undetectable pRB nuclear staining (< 20% of tumour cells) and were considered pRB negative. Patients with tumours staining in a heterogeneous pattern (20-79% of tumour cells) were classified as group 2 (n = 99). The staining of group 3 (n = 39) was strongly positive with a homogeneous pRB nuclear immunoreactivity (80-100% of tumour cells). pRB alterations were frequently observed in both low- and high-grade lesions. Altered pRB expression did not correlate with known predictors of survival and was not itself an independent predictor of outcome in the long-term follow-up. These findings support earlier observations that alterations of pRB expression are common events in soft-tissue sarcomas; nevertheless, long-term follow-up results indicate that altered patterns of pRB expression do not influence clinical outcome of patients affected with soft-tissue sarcomas. It is postulated that RB alterations are primary events in human sarcomas and may be involved in tumorigenesis or early phases of tumour progression in these neoplasias.

Adult↗

A new polymorphic site in intron 2 of TP53 characterizes LOH in human tumors by PCR-SSCP.

Many human cancers present deletions of the short arm of chromosome 17, which includes the TP53 locus. We detected a new polymorphism in intron 2 of the TP53 gene using PCR-SSCP and used this polymorphic site as a marker to detect loss of heterozygosity in 135 human tumors (73 soft tissue sarcomas, and 48 colorectal and 14 bladder carcinomas). Heterozygosity for this site was 41.5% in this study group and tumor-specific loss of alleles occurred in 43% of informative cases. Allelic losses were more frequently detected at this site than at that in which restriction fragment length polymorphism (RFLP) is located, as detected by the pHp53B probe. It is concluded that this novel approach has several advantages, including detection of a high incidence of informative cases and minimal tissue requirements.

Base Sequence↗

Prognostic value of p53 nuclear overexpression in patients with invasive bladder cancer treated with neoadjuvant MVAC.

PURPOSE: This study sought to examine the prognostic role of p53 nuclear overexpression in muscle-invasive bladder cancer because of its correlation with progression of superficial bladder cancer. PATIENTS AND METHODS: Ninety of 111 patients treated with neoadjuvant methotrexate, vinblastine, doxorubicin, and cisplatin (MVAC) with a median follow-up duration of 5.8 years were evaluated. p53 nuclear overexpression was determined by immunohistochemistry on deparaffinized tissue sections. Patients were stratified into two groups according to the percent of tumor cells with positive nuclear reactivity. Overexpression was defined as tumors with > or = 20% cells with positive nuclear reactivity and nonoverexpression as tumors with less than 20% reactivity. RESULTS: Nuclear overexpression was observed in 47 patients and nonoverexpression in 43 patients. Patients whose tumors had p53 overexpression had a significantly higher proportion of cancer deaths. A multivariate analysis that evaluated the pretreatment variables p53 nuclear overexpression, age, sex, palpable mass, prechemotherapy tumor stage, performance status, ureteral obstruction, tumor size, multifocality, and grade showed that p53 overexpression had independent significance for survival (P = .001; relative risk ratio, 3.1). The impact of p53 overexpression on survival was predominantly in T2 and T3a tumors. Long-term survival was evident in seven of 17 patients (41%) with p53 overexpression versus 20 of 26 (77%) in whom p53 was not overexpressed (P = .007). CONCLUSION: p53 nuclear overexpression has independent prognostic value for survival in patients with invasive bladder cancer treated with neoadjuvant chemotherapy.

Adult↗

Phase I/II trial of dexverapamil plus vinblastine for patients with advanced renal cell carcinoma.

PURPOSE: The reduced cardiac toxicity of the dextro-(d-) stereoisomer of verapamil (dexverapamil; Knoll Pharmaceuticals, Whippany, NJ) warrants its study as a potential multidrug-resistance (MDR) reversal agent. PATIENTS AND METHODS: Twenty-three patients with advanced renal cell carcinoma (RCC) were treated with vinblastine at a dose of 0.11 mg/kg intravenous (IV) bolus injection on days 1 and 2 every 21 days. Dexverapamil was added to subsequent cycles after resistance had been demonstrated. Dexverapamil treatment was begun 18 hours before day 1 of vinblastine administration and was given orally every 6 hours for 12 doses. Patients in group A were treated with a dose of 120 mg/m2, and those in group B were treated with 180 mg/m2 plus dexamethasone; plasma concentrations achieved in patients were correlated with in vitro effects. RESULTS: Toxicities included hypotension, asymptomatic bradycardia, and mild atrioventricular conduction delays, although one patient had dexverapamil discontinued for grade IV congestive heart failure. There were no partial or complete responses. The mean day-1 serum dexverapamil plus norverapamil plasma concentrations were 2,575 ng/mL (range, 697 to 6,015 ng/mL) for group A and 1,654 ng/mL (range, 710 to 4,132 ng/mL) for group B at the time of vinblastine administration. These concentrations were in the range of those that reversed vinblastine resistance in vitro. CONCLUSION: The advantage of dexverapamil as an MDR reversal agent is its potential for achieving desired blood levels with substantially less toxicity than the racemic mixture of verapamil. Based on tolerability, it is a suitable drug for further study in clinical trials of malignancies other than RCC that attempt to achieve MDR reversal. The dose of 120 mg/m2 given orally every 6 hours, with dose escalation based on individual tolerance, represents a feasible schedule to be considered for such studies.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Gene transfer of wild-type p53 results in restoration of tumor-suppressor function in a medulloblastoma cell line.

The replacement of functional genes into cells that lack genes or have mutant genes is the basis of gene therapy. In cancer, where cells often have multiple genetic defects, the replacement of critical genes may suffice to suppress cell growth or induce cell death. The high frequency of mutations of the p53 tumor-suppressor gene in human cancers, including primary brain tumors, suggests that p53 plays a critical role in carcinogenesis and tumor progression. We report the successful transfer of the wild-type p53 gene using a defective herpes simplex viral vector into a human medulloblastoma cell line containing a mutant copy of p53. Upon gene transfer, we detected novel expression of wild-type p53 protein in the cells. In addition, the p53 protein was functionally active, since gene transfer resulted in increased levels of mdm2 proteins and induced cell cycle arrest of the majority of transduced cells. To our knowledge, this is the first report of the use of this vector system to carry wild-type p53. We conclude that defective herpes simplex viral vectors can transfer and express p53 in human primary brain tumor cells in vitro, restoring wild-type p53 tumor-suppressor functions.

Animals↗

Mutations of cell cycle regulators. Biological and clinical implications for human neoplasia.

Neoplastic diseases are characterized by uncoordinated cell growth. Cellular proliferation follows an orderly progression through the cell cycle, which is governed by protein complexes composed of cyclins and cyclin-dependent kinases. These complexes exert their regulatory function by phosphorylation of key proteins involved in cell cycle transitions, such as the product encoded by the retinoblastoma gene (pRB). Mutations and overexpression of cyclins and cyclin-dependent kinases, mainly cyclin D1 and Cdk4, have been reported and proposed to be oncogenic events. More recently, a new family of negative regulators functioning as Cdk-inhibitory molecules has been identified. Because of their recessive nature in cell cycle control and the fact that some of them are mutated in human tumors, it has been suggested that they may also function as tumor suppressor genes. It appears that the molecular networking of these proteins and complexes impact on two fundamental cell cycle regulators: p53 and pRB. Cross-talk pathways between these two nuclear proteins are being delineated, implying potential links between p53 and pRB in cell cycle control, apoptosis, and tumor progression. In addition, the high rate and mutation pattern of TP53 and RB in primary tumors have rendered them prototype tumor suppressor genes. Furthermore, detection of TP53 and RB mutations and altered expression of their encoded products appear to be of clinical significance, often correlating with prognosis, when identified in specific cancers. Based on these findings, new strategies are being developed in the emerging field of gene replacement-therapy.

Animals↗