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C Cordon-Cardo

Publications and source records attributed to C Cordon-Cardo.

At least 163 records · Page 9Linked to original sources

p53 nuclear overexpression: an independent predictor of survival in lymph node--positive colorectal cancer patients.

PURPOSE: This study was performed to determine the prognostic significance of p53 gene overexpression in a homogeneous group of node-positive colorectal cancer patients. MATERIALS AND METHODS: Paraffin sections from the primary tumors in 107 colorectal cancer patients who had preoperative serum carcinoembryonic antigen (CEA) levels less than five were examined for the expression of p53 nuclear protein by immunohistochemical staining using the monoclonal antibody PAb 1801. The nuclear p53 overexpression was compared with clinicopathologic variables and follow-up data. RESULTS: Positive staining was not observed in normal colorectal mucosal cells. Specific p53 nuclear staining was detected in primary tumor from 50 patients (46.7%). p53 nuclear overexpression was not significantly correlated with patients' sex, age, tumor location, differentiation, T stage, N stage, and lymphatic and/or vascular vessel invasion. With a median follow-up of 61.7 months, 60% of the p53-positive patients have had disease recurrence, versus only 35% of the p53-negative group (P = .02). Forty-two percent of the p53-positive patients died of colorectal cancer compared with 21.1% of the p53-negative patients (P = .03). By multivariate analysis, p53 overexpression was found to be an independent predictor for disease-free and disease-specific survival. CONCLUSION: In node-positive colorectal cancer patients with low preoperative CEA levels, nuclear p53 overexpression as determined by immunohistochemistry on archived tissue is an independent predictor for prognosis.

Adult↗

Biological study of R24 mouse monoclonal antibody in patients undergoing thoracotomy for pulmonary metastases from soft tissue sarcoma.

The disialoganglioside GD3 is expressed on the surface of soft tissue sarcoma, malignant melanoma, and other malignant cells and is, therefore, a potential target for therapeutic monoclonal antibodies. Intravenously administered R24, a murine IgG3 monoclonal antibody to GD3, induces inflammation and tumor regression at sites of metastatic malignant melanoma. R24 5 mg/m2 was given intravenously every other day for six doses to 10 patients with pulmonary metastases from a primary soft tissue sarcoma of the extremity for whom thoracotomy was planned. Resected tissue was available from 7 patients. All metastases expressed GD3; however, expression was heterogeneous within tumors, and in no tumor were more than 80% of the cells GD3 positive. A mild to moderate infiltrate consisting of mononuclear cells with T-cell markers was identified around or within pulmonary metastases in 6 patients. Tolerable acute allergic reactions occurred in all patients, but 3 patients had severe chest tightness and bronchospasm that limited the planned therapy. The setting of thoracotomy for metastatic disease provides an ideal system for studies on the pharmacology and biological effects of monoclonal antibodies that target soft tissue sarcoma antigens.

Adult↗

Preselection of patients with high TAG-72 antigen expression leads to targeting of 94% of known metastatic tumor sites with monoclonal antibody I-131-CC49.

We studied 18 consecutive patients with advanced colorectal cancer where primary tumors were preselected for high expression of TAG-72 antigen and who underwent a phase I radioimmunotherapy trial with an intravenously administered monoclonal antibody CC49, 20 mg, labeled with I-131 in amounts varying from 15 mCi/m2 to 75 mCi/m2. Whole-body images and SPECT of the abdomen obtained 1 week after infusion were compared with pretreatment CT scans. A total of 66 lesions were evaluated. SPECT revealed 2/66 lesions (3%) that were not detected by CT; 4/66 were only detected by CT: lungs (1.8 cm and < 1 cm), axilla (1.5 cm), adrenal (2.5 cm). Thus, based on immunohistopathological testing in paraffin-embedded tissue blocks of primary tumors stained for TAG-72 antigen, we have selected a subset of patients (about 70% of referrals) with colorectal cancer for whom I-131-CC49 was shown to target to 62/64 CT positive lesions (97%) and 62/66 (94%) of all known positive lesions. We conclude that in patients with significant TAG-72 tumor expression there is excellent targeting of I-131-CC49 in therapeutic doses to colorectal cancer with respect to lesions detected with CT scanning. It should be noted that this study was not designed as a comparison of the sensitivity of CT versus I-131-CC49 SPECT/planar imaging. Instead, the observed results are consistent with a biological hypothesis that in general, the primary tumor histology vis-à-vis TAG-72 expression reflects the TAG-72 expression of the metastatic sites.

Aged↗

The pathology of low-grade adenosquamous carcinoma of the breast. An immunohistochemical study.

Low-grade adenosquamous carcinoma of the breast is a variant of metaplastic mammary carcinoma characterized by a locally invasive growth pattern and a low risk for metastases. In this study none of the carcinomas exhibited greater than 5 percent nuclear immunoreactivity for estrogen or progesterone receptors, and as a result they were classified as negative for these receptors. Reactivity for cathepsin D was found in 39 percent of the tumors, largely limited to areas of epidermoid differentiation. Membrane immunoreactivity for HER-2/neu oncogenes was present in glandular components of 46 percent of the carcinomas. Immunoreactivity for p53 (greater than 10 percent of nuclei) was present in 13 percent of the tumors, also in glandular elements. Six different patterns of coexpression of p53, HER-2/neu and cathepsin D were found, the most frequent being the following: HER-2/neu(+), p53(-), cathepsin D(-) (9 cases, 39%); cathepsin D(+), p53(-), HER-2/neu(-) (5 cases, 22%); and the three markers negative (5 cases, 22 percent). Coexpression of the two oncogenes was found in only one tumor which was also positive for cathepsin D. These results indicate that the expression of various immunohistochemical prognostic markers may be heterogeneous and that there may not be a specific pattern of marker coexpression within a carefully defined histologic subtype of mammary carcinoma. Furthermore, characteristics reported to be associated with an unfavorable prognosis (negative hormone receptors, presence of cathepsin D, and expression of oncogenes such as HER-2/neu) may be found in a substantial proportion of tumors that comprise this clinically and histologically low-grade variant of mammary carcinoma. This disassociation between expected prognosis based on expression of current prognostic markers and observed prognosis occurs in other forms of mammary carcinoma. Medullary carcinoma, when diagnosed on the basis of rigorously defined criteria, has an excellent prognosis despite the fact that these tumors are characterized by absence of estrogen and progesterone receptors and a high proliferative rate. The histological classification of mammary carcinomas is itself an important prognostic variable that may take precedence over selected biochemical markers.

Adult↗

Chromosome 17 abnormalities and TP53 mutations in adult soft tissue sarcomas.

This study was designed to determine the frequency of structural genetic abnormalities of chromosome 17 and the incidence of TP53 mutations as they relate to the biological behavior of adult soft tissue sarcomas. We analyzed a group of 73 soft tissue sarcomas of adults that were clinically and pathologically well characterized using molecular genetic techniques and expression studies. We then correlated genotype and phenotype with pathological parameters. Overall, allelic loss of 17p and 17q was identified in 53 and 29% of informative cases, respectively. p53 nuclear overexpression was detected in 34% of the tumors analyzed. We observed an association between 17p deletions and tumor presentation being more frequent in recurrent and metastatic tumors than primary lesion. p53 nuclear overexpression was associated with tumor grade, size, and more frequently detected in metastatic than primary sarcomas. The 11 intragenic mutations characterized included 10 cases of single base substitution and one single base deletion; 8 were of the missense type and 3 were nonsense. It is concluded that 17p deletions and TP53 mutations are common events in adult soft tissue sarcomas and that due to the trends observed with the cohort of patients analyzed they may become prognostic markers for patients affected with these tumors.

Alleles↗

Expression of the retinoblastoma protein is regulated in normal human tissues.

The nuclear phosphoprotein encoded by the retinoblastoma gene (pRB) appears to play a central role in control of cell division and differentiation. It is generally accepted that pRB is ubiquitously expressed. We investigated the expression of pRB in normal human tissues using immunochemical techniques to determine the expression of pRB in specific cell types. Maturing cells, both proliferating and nonproliferating, rather than their progenitors possess the highest levels of pRB. Cells of stratified epithelia, such as those from cervix, display strong immunostaining in the nondividing maturing suprabasal layer, whereas basal cells showed low to undetectable levels of pRB. Similar patterns of expression were observed in simple epithelia and hematopoietic cells contained within distinguishable proliferating compartments and in germ cell development. These studies are crucial to our understanding of processes involved in control of differentiation (tumorigenesis) as well as tumor progression.

Cell Differentiation↗

Myogenic regulatory protein expression in adult soft tissue sarcomas. A sensitive and specific marker of skeletal muscle differentiation.

Myogenic regulatory protein (MyoD1) is a DNA-binding nuclear protein that initiates myogenesis in mesenchymal stem cells. Its expression has proved a very sensitive marker of myogenic differentiation in malignant tumors of childhood. In this study, the reliability of MyoD1 expression as marker of skeletal muscle differentiation has been tested in 38 cases of adult-type sarcomas. Frozen sections were stained with the monoclonal antibody 5.8A (MAb 5.8A) developed against recombinant wild-type murine MyoD1. Routinely processed formalin-fixed sections from the same cases were reviewed and immunostained with a panel of antibodies commonly used to detect muscle differentiation: myoglobin, fast-myosin, desmin, muscle-specific actin, alpha-smooth muscle actin. Four cases positively stained with MAb 5.8A: three were high-grade spindle cell sarcomas, the fourth case was an alveolar soft-part sarcoma. Only tumors in which skeletal muscle histogenesis was inferred on the basis of histology and/or immunohistochemistry with conventional muscle markers stained positively for MAb 5.8A. All the other tumors tested, including leiomyosarcomas (11), liposarcomas, (10, including four dedifferentiated liposarcomas), fibrosarcomas (three), malignant fibrous histiocytomas (two), synovial sarcomas (two), and malignant peripheral nerve sheath tumors (two), were negative for MAb 5.8A. The high level of sensitivity and specificity of MyoD1 expression indicates the value of this marker in the diagnosis of soft tissue sarcomas.

Adolescent↗

Allelic deletions in renal tumors: histopathological correlations.

Allelic loss on the short arm of chromosome 3 (3p) is considered to be one of the early detectable events in the pathogenesis of renal cell carcinoma (RCC). Conflicting reports, however, suggest that this event may be absent in some renal tumors. The present study attempts to further define subgroups of renal tumors associated with 3p deletions. In addition, we have also attempted to identify late genetic events associated with tumorigenesis and tumor progression. Eighty-two primary renal tumors (69 RCC and 13 oncocytic tumors) were analyzed by restriction fragment length polymorphism analysis directed at chromosomes 3, 11p, 17p, and 18q. Results were correlated with histopathological information. Deletions of 3p were seen in nonpapillary RCC of all cell types, but were absent in oncocytic and most papillary tumors. Among the 60 nonpapillary RCC, significant correlations were seen between deletion of 17p and tumor grade (P = 0.037), P stage (P = 0.027), and nodal metastases (P = 0.042). We therefore conclude that 3p deletions, although not specific to any cell type or histological pattern of RCC, are seen in a majority of clear cell nonpapillary RCC but are absent in oncocytic and most papillary tumors. Additional allelic losses on chromosome 17p are associated with advanced disease and, therefore, may be related to tumor progression. Further studies on larger series of patients with extended follow-up will be necessary to investigate the prognostic value of molecular genetic markers in RCC.

Alleles↗

Genetic alterations in bladder cancer.

To see whether genetic alterations follow a sequence of events leading to bladder cancer progression, 60 paired bladder tumours and normal tissues were analysed with polymorphic DNA markers, correlating loss of heterozygosity (LOH) at candidate tumour suppressor gene sites with pathological indices of poor clinical outcome. Distinct genotypic patterns were associated with early and late stages of bladder cancer. 9q deletions were observed in all superficial papillary tumours (Ta) and almost all tumours invading the lamina propria (T1), suggesting that this event associates with the development of superficial bladder tumours. However, 3p, 5q, and 17p deletions were absent in the Ta tumours but were identified in invasive bladder cancers. Two genetic pathways characterise the evolution of superficial bladder tumours. 9qLOH was detected in most Ta tumours, but in only 43% of muscle invasive neoplasms. Our hypothesis is that certain chromosomal abnormalities have a defined role in bladder tumour development, whereas others correlate with pathological indices of poor clinical outcome.

Alleles↗

Characterization of neuroendocrine differentiation in human benign prostate and prostatic adenocarcinoma.

BACKGROUND: This report describes an immunohistopathologic analysis characterizing the incidence, pattern of distribution, and hormonal content of neuroendocrine (NE) cells in human benign prostate and prostatic adenocarcinoma. METHODS: Formaldehyde-fixed, paraffin-embedded material from 15 benign prostates, 31 primary prostatic adenocarcinomas, 16 metastatic lesions, 21 primary tumors treated with short-course diethylstilbestrol (DES), and 10 specimens from hormone-refractory patients were examined. NE cells were identified using silver histochemistry and a panel of immunohistochemical NE markers (chromogranin-A, serotonin, neuron-specific enolase), and specific peptide hormone antibodies. RESULTS: NE cells were identified in all benign prostates. NE cells were identified in 77% of primary untreated adenocarcinomas with no significant differences with respect to pathologic stage. NE cells were found isolated and dispersed in the tumor, composing the minority of malignant cells. Double-labeling and serial section immunohistochemistry demonstrated the coexpression of prostate-specific antigen (PSA) in NE cells. In addition to serotonin, some tumors expressed multiple hormone immunoreactivities. NE cells were identified in 56% of metastatic deposits, with a similar pattern of distribution. In DES-treated cases, NE cells were found consistently in the adjacent benign epithelium, whereas 52% of tumors contained NE cells. Hormone-refractory tumors contained NE cells in 60% of cases. CONCLUSIONS: This analysis demonstrates that a significant proportion of primary and metastatic prostatic adenocarcinomas contain a subpopulation of NE cells, the expression of which does not appear to be suppressed with androgen ablation and does not correlate with pathologic stage. Furthermore, NE cells coexpress PSA, suggesting a common precursor cell of origin. The elaboration of biogenic amines and neuropeptides suggests that NE cells dispersed in prostatic carcinoma may play a paracrine growth-regulatory role.

Adenocarcinoma↗

Differential expression of the epidermal growth factor receptor and its ligands in primary non-small cell lung cancers and adjacent benign lung.

The epidermal growth factor receptor (EGFR) and one of its ligands, transforming growth factor alpha (TGF-alpha), are thought to function as a potential autocrine loop in non-small cell lung cancer (NSCLC). However, the expression pattern of EGFR and the TGF-alpha-related ligands have not been fully characterized in primary NSCLC and adjacent benign lung tissue. For this reason, we comprehensively examined the coexpression and differential expression of EGFR and its ligands, TGF-alpha, epidermal growth factor (EGF), and amphiregulin (AR), by Northern analysis, in paired samples of primary tumors and uninvolved lung. For those RNA species overexpressed in malignant lung, single cell expression patterns were studied by immunohistochemistry. Specimens were obtained from 57 consecutive patients who underwent resection of carefully staged resectable NSCLC and were followed prospectively. Most (112 of 114) tissue samples yielded high-quality RNA. EGFR was expressed in 82 of 88 (93%) tissue samples, while TGF-alpha was expressed in 62 of 72 (86%) samples, and AR was expressed in 64 of 70 (92%) samples. EGF was unexpressed in total cellular RNA in both tumor and uninvolved lung. In a comparison of RNA expression patterns in tumors and uninvolved lung, overexpression of EGFR was found in 45% (22 of 44) of tumors, while overexpression of TGF-alpha was seen in 61% (22 of 36) of tumors, and decreased expression of AR was seen in 63% (22 of 35) of tumors. Cell type and stage did not influence differential expression, indicating that this is a frequent event in primary NSCLC. Simultaneous overexpression of EGFR and TGF-alpha was seen in only 38% of tumors. Simultaneous overexpression of EGFR and decreased expression of AR were seen in only 21% of tumors. Thus far, the differential expression of EGFR, TGF-alpha, and AR does not correlate with either disease-free or overall survival. These findings indicate that histologically dissimilar tumors can express similar components of autocrine or paracrine growth factor loops. Differential expression of EGFR and its ligands in tumor specimens compared to uninvolved lung is a common event in NSCLC and may participate in tumor growth without necessarily influencing tumor progression or histology.

Adenocarcinoma↗

Nuclear overexpression of p53 protein in transitional cell bladder carcinoma: a marker for disease progression.

BACKGROUND: Approximately one third of the patients with superficially infiltrative transitional cell (T1-TNM pathological staging system) bladder carcinoma who are treated with transurethral resection alone have disease progression. Despite precise pathologic staging and grading, clinical outcome in these patients is not predictable. Recent reports reveal that mutations of the p53 tumor suppressor gene (also known as TP53) occur commonly in bladder cancers. PURPOSE: The aim of this study was to investigate the hypothesis that altered patterns of expression of the protein product(s) of the mutated p53 tumor suppressor gene are associated with tumor progression in patients with T1 bladder cancer. METHODS: We examined deparaffinized tumor tissue specimens from transurethral resection in 43 patients with T1 bladder cancer who had not received adjuvant therapy. Nuclear overexpression of p53 protein was detected by immunohistochemical analysis using the mouse monoclonal antibody PAb1801, which stains both wild-type and mutant p53 proteins. The data were then correlated with the following conventional prognostic variables: age, sex, histologic presence of associated carcinoma in situ, and vascular invasion of tumor. Disease progression rates per 100 person-years were calculated. RESULTS: Median follow-up was 119 months. None of the urothelial and stromal cells from normal bladder specimens showed nuclear overexpression of p53 protein, but patients with T1 bladder tumors could be stratified into two groups with different patterns of staining for p53 protein. Eighteen patients (42%) had no more than 20% tumor cells with positive nuclear staining (group A), while the remaining 25 patients (58%) had 20% or more tumor cells with nuclear immunoreactivity (group B). Patients in group B had a significantly lower progression-free interval (P < .001). Disease progression rates were 20.5% per year for group B and 2.5% for group A. CONCLUSION: These results suggest that T1 bladder cancers exhibiting nuclear overexpression of p53 protein have a higher probability of disease progression. This study also suggests that p53 overexpression is an important prognostic factor in these patients and may be useful in selecting appropriate therapy. IMPLICATIONS: Large prospective studies are needed to confirm these results and to evaluate nuclear overexpression of p53 protein as a prognostic marker in bladder cancer.

Adult↗

Molecular genetic alterations of chromosome 17 and p53 nuclear overexpression in human bladder cancer.

We set out to define the alterations of chromosome 17 in human bladder tumors and to correlate p53 nuclear over-expression with 17p deletions in those neoplasms. We studied 60 bladder tumors by restriction fragment-length polymorphism analysis directed at five different loci on chromosome 17. The same tumors were studied with a panel of mouse monoclonal antibodies (PAb1801, PAb240, and PAb1620) to mutant and wild-type p53 proteins using immunohistochemistry. Deletion of 17p correlated with grade (p = 0.039), stage (p = 0.004), and the presence of vascular invasion (p = 0.056). None of the pathologic parameters correlated with 17q deletions. p53 nuclear overexpression correlated with grade (p = 0.027), stage (p = 0.008), vascular invasion (p = 0.021), and the presence of nodal metastases (p = 0.007). In superficial (Ta) lesions, 17p was not deleted, whereas 55% of T1 and T2-T4 tumors showed a loss of heterozygosity. Mutations of p53 as detected by immunohistochemistry were seen in superficial as well as invasive tumors, whereas loss of heterozygosity was seen only in invasive tumors. A strong correlation was found between the presence of mutation and the loss of heterozygosity of the remaining allele (p = 0.0003). Additional follow-up and further studies are required to better define the role of p53 nuclear overexpression and 17p deletions as markers of tumor progression in human bladder cancer.

Alleles↗

Inactivation of the retinoblastoma susceptibility gene in non-small-cell lung cancer. The Lung Cancer Study Group.

Mutations that prevent the normal expression of the retinoblastoma susceptibility gene (RB) have been linked to the pathogenesis of several human malignancies. Mutational inactivation of this tumor-suppressor gene appears to initiate the development of retinoblastoma, and may also contribute to the pathogenesis of osteosarcomas, soft-tissue sarcomas, small-cell lung cancer and other malignancies. In cooperation with the Lung Cancer Study Group, we studied the structure and expression of the RB gene in a cohort of 219 primary non-small-cell lung cancers (NSCLCs). RB gene structure was studied at the DNA level by Southern blot and chromosome 13 restriction fragment length polymorphism analyses. Expression of the RB gene was evaluated by Northern analysis of the transcript and immunohistochemical analysis of the protein (p105RB). Immunohistochemistry of the RB protein proved to be the most sensitive method for the detection of Rb gene inactivation. Absent or abnormal RB protein staining was detected in 53/163 (32%) evaluable cases studied, while Northern analysis showed 22/219 cases to have an altered or absent RB transcript. Southern analysis revealed only two cases of structural alteration of the gene, but loss of heterozygosity from chromosome 13 was common in tumors that failed to express the protein. Analysis of the clinical outcomes of the patients whose tumors were studied did not show any correlation of RB inactivation with time to relapse or death. The data from this study indicate that the RB gene is inactivated in a significant number of NSCLCs. The role that these mutations may play in the development of NSCLC remains to be defined.

Base Sequence↗