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C Cordon-Cardo

Publications and source records attributed to C Cordon-Cardo.

At least 145 records · Page 8Linked to original sources

Risk factors and p53 nuclear overexpression in early stage intestinal-type adenocarcinoma of the stomach.

In order to investigate the relationship between altered patterns of p53 expression and risk factors for stomach cancer, we have analyzed a group of 35 patients with early stage intestinal-type adenocarcinoma of the stomach. We assessed p53 nuclear overexpression by immunohistochemistry, using monoclonal antibody PAb 1801, and identified 15 out of 35 patients (43%) displaying nuclear overexpression of p53 protein. Significantly elevated odds ratios (O.R.) were observed for greater body mass index (highest quartile versus lowest quartile: O.R. = 7.9; 95% confidence interval (CI): 1.1 to 56.1) and younger age (< 60 vs. > or = 70 years: O.R. = 10; 95% CI, 1.43 to 50). The odds ratio for p53 overexpression in cigarette smokers was 2.8 (95% CI: 0.7 to 11.6) but not statistically significant. These data indicate that p53 mutations may be involved in the early stages of gastric carcinogenesis, especially in the development of intestinal-type adenocarcinoma.

Adenocarcinoma↗

Changing pattern of expression of the epidermal growth factor receptor and transforming growth factor alpha in the progression of prostatic neoplasms.

The autocrine/paracrine interaction of the epidermal growth factor receptor (EGFr) and transforming growth factor alpha (TGF-alpha) has been implicated in prostate cancer cell growth and proliferation. To evaluate the role of EGFr and TGF-alpha in prostate cancer progression, we studied the immunohistochemical staining pattern of EGFr and TGF-alpha in malignant primary and hormone-independent metastatic prostate lesions. The specimens evaluated included 37 primary carcinomas (34 hormone-naive and 3 hormone-refractory tumors) and 22 metastases. For each specimen, the pattern of expression was evaluated and staining reactivities graded from 0-3, with 0 representing no staining and 3 representing homogeneous and intense staining. Primary malignant prostate epithelial cells in areas with discrete gland formation showed strong EGFr immunostaining, while stromal cells were generally nonreactive. In untreated primary tumors, TGF-alpha expression was primarily in the stroma, while epithelial cells were weakly positive in several cases. Malignant epithelial cells adjacent to neural elements that stained positive for TGF-alpha was frequently observed. A homogeneous staining pattern for EGFr was noted in 17 (89%) of 19 evaluable androgen-independent-refractory metastases, while TGF-alpha expression was found in 14 (78%) of 18 evaluable cases. Overall, 14 of 18 androgen-independent metastases coexpressed the receptor and the ligand. These results suggest that, unlike primary prostate tumors where a paracrine relationship between EGFr and TGF-alpha appears to predominate, the potential for autocrine stimulation may exist in the majority of metastatic androgen-independent tumors. Furthermore, the changing pattern of expression as the disease evolves from the localized hormone-naive to metastatic androgen-independent condition suggests that strategies aimed at blocking this growth factor pathway may be of therapeutic importance for androgen-independent disease.

Adrenal Gland Neoplasms↗

Altered patterns of MDM2 and TP53 expression in human bladder cancer.

BACKGROUND: The TP53 gene maps to the short arm of chromosome 17 (17p13.1) and encodes for a nuclear phosphoprotein of 53 kd (p53) involved in cell cycle control. The MDM2 gene is located on the long arm of chromosome 12 (12q13-14), and it encodes for a nuclear protein (Mdm2) of 90 kd of molecular mass. Genetic alterations in the TP53 gene have been reported as frequent events in bladder cancer and are associated with disease progression. The MDM2 gene has been shown to be amplified and overexpressed in sarcomas; however, these changes have not yet been analyzed in neoplastic lesions of the urinary bladder. PURPOSE: We undertook the present study in order to determine the frequency of MDM2 and TP53 abnormalities in bladder tumors, as well as to examine the clinical relevance of identifying their altered patterns of expression in patients affected with bladder cancer. METHODS: We analyzed a cohort of 87 patients affected by bladder tumors. Altered patterns of expression of Mdm2 proteins were determined using an immunohistochemical assay with monoclonal antibody 2A10, and MDM2 gene amplifications were studied by Southern blotting. Mutant p53 proteins were identified using monoclonal antibody PAb1801. The presence of intragenic mutations in the TP53 gene were assessed utilizing single-strand conformation polymorphism and further characterized by sequencing. Associations were assessed statistically by the two-tailed Fisher's exact test. RESULTS: Twenty-six of 87 cases had abnormally high levels of Mdm2 proteins; however, only one case showed an MDM2 amplification. Thirty-six of 87 cases displayed p53 nuclear overexpression. Sixteen cases had abnormally high levels of both Mdm2 and p53 proteins. There was a strong statistical association between Mdm2 and p53 overexpression (Fisher's exact test: P = .018). Moreover, there was a striking association between Mdm2 overexpression and low-stage, low-grade bladder tumors (Fisher's exact test: P = .0005). CONCLUSIONS: The results suggest that aberrant Mdm2 and p53 phenotypes are frequent events in bladder cancer and may be involved in tumorigenesis or tumor progression in urothelial neoplasias. IMPLICATIONS: This study is the first to report altered patterns of MDM2 expression in human bladder tumors and demonstrates that aberrant Mdm2 and p53 phenotypes may be important diagnostic and prognostic markers in patients affected by bladder cancer.

Aged↗

Chromosome 9 allelic losses and microsatellite alterations in human bladder tumors.

Chromosome 9 allelic losses have been reported as a frequent and early event occurring in bladder cancer. It has been postulated that a candidate tumor suppressor gene may reside on this chromosome, alterations of which may lead to the development of a subset of superficial bladder tumors. More recently, the involvement of two different regions harboring suppressor loci, one on each of both chromosome 9 arms, has been proposed. We undertook the present study with the objectives of better defining the deleted regions of chromosome 9 in bladder tumors, as well as evaluating the frequency of microsatellite alterations affecting certain loci on this chromosome in urothelial neoplasia. Seventy-three primary bladder tumors were analyzed using a set of highly polymorphic markers, and results were correlated with pathological parameters associated with poor clinical outcome. We observed that, overall, 77% of the tumors studied showed either loss of heterozygosity for one or more chromosome 9 markers and/or microsatellite abnormalities at chromosome 9 loci. Detailed analyses showed that two regions, one on 9p at the interferon cluster, and the other on 9q associated with the q34.1-2 bands, had the highest frequencies of allelic losses. Furthermore, Ta lesions appeared to present mainly with 9q abnormalities, while T1 tumors displayed a mixture of aberrant 9p and 9q genotypes. These observations indicate that loss of heterozygosity of 9p may be associated with the development of superficial tumors with a more aggressive biological behavior or, alternatively, they may be related to early disease progression. In addition, microsatellite alterations were documented in over 40% of amplified cases. Taken together, these data suggest that two different tumor suppressor gene loci on chromosome 9 are involved as tumorigenic events in bladder cancer and that chromosome 9 microsatellite alterations are frequent events occurring in urothelial neoplasia.

Alleles↗

Basic fibroblast growth factor protects endothelial cells against radiation-induced programmed cell death in vitro and in vivo.

Apoptosis (programmed cell death) serves as a common mechanism of interphase cell death after radiation exposure in thymic, lymphoid, and hematopoietic cells but has infrequently been documented in other adult mammalian cell types. The present study demonstrates that apoptotic interphase cell death occurs in endothelial cells after exposure to clinically relevant radiation doses and that basic fibroblast growth factor (bFGF) protects endothelial cells against this mode of the lethal effects of radiation. Radiation exposure produced heterologous double-stranded DNA breaks in endothelial cells, but the cells exhibited a similar competence for repair of this damage in the presence or absence of bFGF. However, subsequent to the completion of this repair process, a second process of DNA fragmentation became apparent, which was detected only in the absence of bFGF and was associated with a DNA ladder of oligonucleosomal fragments characteristic of apoptosis. The apoptotic DNA degradation occurred mainly in G0-G1 phase cells and was inhibited by bFGF stimulation. C3H/HeJ mice exposed to lethal doses of whole lung irradiation exhibited similar apoptotic changes in the endothelial cell lining of the pulmonary microvasculature within 6-8 h after radiation exposure. bFGF given i.v. immediately before and after irradiation inhibited the development of apoptosis in these cells and protected mice against the development of lethal radiation pneumonitis. These findings suggest that interphase apoptosis may represent a biologically relevant mechanism of radiation-induced cell kill in nonlymphoid mammalian cells both in vitro and in vivo and that natural protection mechanisms against this effect may be associated with the level of radiation resistance in normal and malignant tissues in vivo.

Animals↗

Prognostic implications of p53 nuclear overexpression and high proliferation index of Ki-67 in adult soft-tissue sarcomas.

BACKGROUND: Morphologically similar soft-tissue sarcomas may behave in very different fashions, making it difficult to predict clinical outcomes and to properly design therapeutic interventions. In a preliminary study, we observed that TP53 mutations and nuclear overexpression of p53 protein were frequent events in soft-tissue sarcoma, and we noticed an association between p53-positive phenotype and poor clinical outcome. PURPOSE: We examined the potential clinical relevance of p53 overexpression in adults with soft-tissue sarcomas. We also studied the clinical implications of a high proliferation index. METHODS: A cohort of 174 adults with soft-tissue sarcomas were analyzed using anti-p53 and anti-Ki-67 antibodies and immunohistochemical assays on consecutive fresh frozen tissue samples. RESULTS: We observed a significant association between p53 nuclear overexpression and tumor grade (P = .001) and tumor size (P = .01). Patients displaying a p53-positive phenotype had significantly reduced survival (P = .02). Similarly, a significant difference was observed between high proliferation index and tumor grade (P < .001) and reduced patient survival (P = .03). A high Ki-67 proliferation index was detected in association with p53 nuclear overexpression. CONCLUSIONS: Overexpression of p53 protein and a high proliferation index strongly correlate with poor clinical outcome and reduced survival in patients having soft-tissue sarcomas.

Adult↗

The role of IL-2 secreted from genetically modified tumor cells in the establishment of antitumor immunity.

Although the importance of CD4+ T cells for the induction of an effective CD8+ cytolytic T cell response is well documented, the mechanism by which MHC class II-negative tumor cells recruit CD4+ T help is not well understood. We have previously shown that IL-2 or IFN-gamma gene-modified CMS-5 tumor cells do not grow in syngeneic mice; however, mice which rejected the cytokine-secreting tumor cells develop a protective immune response against a challenge with parental tumor cells. Here we show that rejection of IL-2-secreting CMS-5 cells is not mediated by T cells. However, establishment of a protective immune response against CMS-5 tumor cells requires the presence of both CD4+ and CD8+ T cell subsets during the period of immunization with IL-2-secreting CMS-5 cells as well as during the effector phase. Extensive histologic analysis has failed to detect the presence of T cells at the site of immunization with either IL-2- or IFN-gamma-secreting CMS-5 cells. The main infiltrate at the site of inoculation with IL-2-secreting CMS-5 cells consisted of NK cells that appeared to play a role in their rejection. The predominant infiltrate at the site of inoculation with IFN-gamma-secreting CMS-5 cells consisted of macrophages. These observations argue against a direct role for the intact tumor cell in presenting either T helper or CTL epitopes to the immune system, and support the view that specialized APC are responsible for the in vivo priming of a T cell response against MHC class I-restricted Ag.

Animals↗

p53 mutations in human bladder cancer: genotypic versus phenotypic patterns.

The objective of this study was to characterize the pattern of p53 mutations in bladder cancer. The sensitivity and specificity to detect these mutations using clinical material was assessed for the following assays: immunohistochemistry, restriction-fragment-length polymorphism, single-strand-conformation polymorphism, and sequencing. Discrepancies of reported results aimed at the identification of genetic alterations in the p53 gene may be due to differences in methodology, as well as to deficient morphological evaluation of the source of tissue utilized. In order to address these critical issues, we have implemented a novel experimental design that permits analysis by molecular genetics and immunopathology techniques in any given tissue specimen, allowing morphological correlation with genotypic and phenotypic characteristics of the tissue analyzed. Forty-two patients affected with bladder tumors in whom paired normal and tumor tissues were available were used for the present study. Nuclear immunoreactivities were observed in 26 out of 42 bladder tumors analyzed. Abnormal shifts in mobility were noted in 14 of the 42 cases in distinct exons, with one tumor revealing 3 mutations. There was a strong association between p53 nuclear over-expression and 17p LOH, as well as p53 nuclear over-expression and detection of mutations by SSCP and sequencing. According to receiver-operating-curve statistical analysis, the accuracy of detecting p53 mutations by IHC was estimated to be 90.3%. It is our conclusion that, when properly used, this is a highly sensitive and specific method with simple application using clinical material.

Antibodies, Monoclonal↗

Molecular abnormalities of mdm2 and p53 genes in adult soft tissue sarcomas.

Genetic alterations in the p53 and mdm2 genes have been reported to occur in soft tissue sarcomas. This study was designed to determine the prevalence and potential clinical value of detected molecular abnormalities and altered patterns of expression of mdm2 and p53 genes in adult soft tissue sarcomas. A cohort of 211 soft tissue sarcomas from adults that were both clinically and pathologically well characterized was analyzed. Monoclonal antibodies directed against mdm2 and p53 proteins were used to measure overexpression of these proteins in the nuclei of cells from sections of these tumors. Seventy-six of 207 tumors had abnormally high levels of mdm2 proteins and 56 of 211 tumors overexpressed p53 protein. Twenty-two cases had abnormally high levels of both mdm2 and p53 proteins based upon immunoreactivity with these antibodies. There was a striking statistically significant correlation between the overexpression of p53 and mdm2 proteins in the same tumor and poor survival (P < 0.05) of the patients. A group of 73 soft tissue sarcomas was chosen for analysis using Southern blots, single strand conformation polymorphisms, and direct DNA sequencing to confirm mdm2 gene amplifications and p53 mutations and correlate these with the results of the immunoreactivities. The overexpression of p53 and mdm2 proteins in the nuclei of tumor cells did not always correlate well with gene amplification at the mdm2 locus or mutation at the p53 gene. The possible reasons for these discrepancies are discussed.

Adult↗

Bladder cancer: advances in biology and treatment.

Integrating systemic chemotherapy in the treatment of patients with invasive bladder cancer is essential to improve survival because the majority of deaths are from systemic relapse. However, as experience with invasive tumors evolves, it is clear that treatment recommendations need to be tailored to an individual patient based on metastatic risk and, ideally, sensitivity to treatment. For those with tumors that do not extend through the bladder wall, standard therapy remains radical surgery. Nevertheless, encouraging results are being reported with increasing frequency using strategies designed to preserve bladder function through a variety of means. Crucial to the recommendation of a specific approach for an individual is improving our ability to define prognosis prior to initiating treatment. Patients with a high risk of systemic recurrence generally require chemotherapy, although the optimal route of integration, pre vs. post-operatively, remains controversial. In those patients who require it, chemotherapy can be administered more safely with the concomitant administration of hematopoietic growth factors. These factors alone, however, are unlikely to improve overall survival. Crucial to the latter effort will be the identification of more active agents, improving our understanding of intrinsic and acquired resistance to chemotherapy, and better delivery of the chemotherapeutic agents currently available. Of equal importance, is the enrollment of patients in clinical trials. These can include large scale randomized comparisons with using a survival end-point, as well as new therapies in high risk populations. The latter would include patients with advanced T3b, T4 and N+ disease, with a high risk of metastatic failure, and low complete response proportions to presently available regimens.

Antineoplastic Agents↗

Expression of transforming growth factor-alpha and the epidermal growth factor receptor in human prostate tissues.

Cells respond to certain soluble factors that bind to cell surface receptors possessing intrinsic tyrosine kinase activity. Overexpression of these molecules has been associated with tumor progression. Enhanced prostatic cancer cell growth in vitro has been reported in the presence of certain growth factors. To characterize the patterns of expression of the epidermal growth factor receptor (EGFr) and transforming growth factor-alpha (TGF alpha), we studied tissue from 107 prostate specimens using immunohistochemistry. We observed that epithelial cells of normal (n = 4) and benign prostatic (n = 56) tissues express EGFr but were unreactive for TGF alpha, while stroma cells in these tissues express TGF alpha but not EGFr. However, coexpression of EGFr and TGF alpha was identified in 22 of 46 prostatic adenocarcinomas studied. These results suggest that the major mode of action of EGFr/TGF alpha in normal and benign prostate is that of a paracrine or juxtacrine loop, the ligand being expressed in the stroma cells and the receptor in the epithelial cells. Since a subset of prostatic carcinomas coexpressed the ligand and the receptor in their tumor cells, it is suggested that an independent autocrine signaling mechanism may occur and grant a selective advantage for the growth of prostate cancers.

Adenocarcinoma↗

Association of P53 nuclear overexpression and tumor progression in carcinoma in situ of the bladder.

We investigated the prevalence and clinical relevance of p53 nuclear overexpression, as detected by antibody PAb1801 and immunohistochemistry, in 33 patients with carcinoma in situ of the bladder. Median followup was 124 months. Disease progressed in 16 patients (48%) during followup. The association between p53 nuclear overexpression and tumor progression was assessed by multivariate analysis, controlling for possible confounding variables, such as patient age and sex, presence of associated stage Ta bladder tumor and adjuvant bacillus Calmette-Guerin therapy. Patients were stratified into 2 groups according to the per cent of tumor cells displaying p53 nuclear overexpression: group 1-18 with less than 20% tumor cells positive and group 2-15 with 20% or more tumor cells positive. Disease progressed in 3 patients (16.7%) in group 1 and in 13 (86.7%) in group 2 (p < 0.0001). Detection of p53 nuclear overexpression in 20% or more tumor cells was the only independent marker of tumor progression in univariate and multivariate analyses (p = 0.004, adjusted relative risk 8.6, 95% confidence interval 2 to 40). Death specifically from bladder cancer was also associated with this altered pattern of p53 expression (p = 0.01, Fisher's exact test). We conclude that p53 nuclear overexpression is an early event in bladder cancer, occurring in 48% of cases of carcinoma in situ of the bladder. Our results also suggest that p53 nuclear overexpression offers significant clinical information and may be a useful tool in the selection of therapy for patients with carcinoma in situ of the bladder.

Aged↗

Neuroendocrine differentiation in metastatic prostatic adenocarcinoma.

Neuroendocrine differentiation of prostatic adenocarcinoma has received considerable attention in recent years. The objectives of this study were to characterize the incidence, pattern of distribution and peptide hormone immunoreactivities of neuroendocrine differentiated tumor cells in prostatic carcinoma metastases; determine the correlation of neuroendocrine differentiation and deoxyribonucleic acid content in lymph node metastases, and determine the prognostic role of neuroendocrine differentiation of metastases in stage D1 cancer. We examined immunohistochemically 62 metastatic lesions (41 pelvic lymph nodes and 21 bone metastases) for the presence of chromogranin-A expressing tumor cells. Of 41 lymph nodes and 21 bone metastases 19 (46%) and 11 (52%), respectively, contained chromogranin-A immunoreactive cells. These cells were commonly found to comprise the minority of tumor cells in the metastases and typically were distributed in a dispersed pattern. Serotonin and peptide hormone immunocytochemistry in 19 cases (12 lymph nodes and 7 bone metastases) demonstrated neuroendocrine cells containing thyroid-stimulating hormone and serotonin in 17 (89%) and 10 (53%), respectively. All 7 bone metastases contained thyroid-stimulating hormone immunoreactive cells. The presence of chromogranin-A positive cells did not correlate statistically with deoxyribonucleic acid content of lymph node metastases nor with disease specific survival in patients with stage D1 prostate cancer. Our results indicate that a substantial proportion of prostate cancer metastases contain a subpopulation of cells expressing a neuroendocrine phenotype similar to primary tumors. These cells are capable of elaborating certain biogenic amines and peptide hormones. However, in stage D1 prostate cancer nodal lesions expressing neuroendocrine differentiation do not appear to have significant prognostic value.

Adenocarcinoma↗

Immunohistochemical determination of p53 protein nuclear accumulation in prostatic adenocarcinoma.

Abnormalities of the TP53 gene are currently the most common genetic alterations associated with human malignancy. The study of altered patterns of p53 protein expression in primary prostate cancer has to date yielded a much lower incidence of alteration compared to bladder, colon, lung and breast cancer. However, the analysis of prostate cancer metastases has been limited. The objective of our study was to determine the prevalence of p53 nuclear accumulation in primary, metastatic and hormone refractory prostatic adenocarcinoma, and to characterize its relationship with conventional clinicopathological variables. We used 2 antibodies (mouse monoclonal PAb 1801 and rabbit polyclonal CM-1) and an immunohistochemical method in 93 paraffin embedded tumors (48 primary tumors, 29 lymph node metastases and 16 bone metastases) to assess p53 nuclear accumulation. Overall, p53 nuclear accumulation was observed in 19 tumors (20%), including 17 with PAb 1801 and CM-1 immunoreactivities, and 2 with CM-1 immunoreactivity only. The pattern of p53 immunoreactivity was heterogeneous in most tumors, with only 3 cases exhibiting homogeneous staining. Primary, lymph node and bone metastases exhibited p53 nuclear staining in 9 of 48 (19%), 2 of 29 (7%) and 8 of 16 (50%) cases, respectively (p = 0.003). In 6 of 10 primary hormone refractory tumors (60%) and in 3 of 38 primary hormone naive tumors (8%) p53 nuclear immunoreactivity was expressed (p = 0.002). P53 nuclear accumulation was significantly more common in higher grade primary tumors (p = 0.007). Our results suggest that p53 nuclear accumulation is relatively uncommon in prostate cancer. However, p53 nuclear accumulation appears to be associated with advanced stages of disease, as illustrated by its relatively higher occurrence in hormone refractory tumors and bone metastases. Furthermore, the significantly greater prevalence of p53 accumulation in bone metastases is currently the highest reported for prostate cancer.

Adenocarcinoma↗

P-glycoprotein expression in primary and metastatic transitional cell carcinoma of the bladder.

BACKGROUND: To determine the expression of P-glycoprotein in pre- and post-chemotherapy tumor tissue samples from patients with transitional cell carcinomas treated with M-VAC (methotrexate, vinblastine, adriamycin and cisplatin). PATIENTS AND METHODS: Fresh frozen tissue sections of primary and metastatic urothelial tumors were stained with mouse monoclonal antibody HYB-241 which recognized an external epitope of P-glycoprotein, using an avidin-biotin immunohistochemical technique. Immunoreactivity was scored separately in tumor cells and endothelial cells. RESULTS: Untreated primary lesions showed immunostaining in 6 of 46 cases (13%), while 6 of 16 (38%) post-therapy primary tumors were immunoreactive. None of the untreated metastases (0 of 17) were positive, however, 6 of 11 (55%) post-therapy specimens showed varied percentages of positivity for p-glycoprotein (p = 0.002). The highest percentage, 50%-70% of tumor cells stained, was observed in metastatic lesions from patients who had received 6 or more chemotherapy cycles. No difference in the proportion of endothelial cells stained was observed in pre- and post-therapy specimens. However, 3 of 6 post-therapy samples obtained from 5 individual patients showed MDR1 up-regulation on endothelial cells. CONCLUSIONS: The data show that an increase in the proportion of cells expressing P-glycoprotein occurs after exposure to a combination chemotherapy program containing drugs known to select for P-glycoprotein expression in vitro. The observation of increased immunoreactive endothelial cells suggests transactivation of the MDR1 in these cells. While data are preliminary, P-glycoprotein expression in capillary endothelial cells may contribute to drug resistance. Taken together, these mechanisms may contribute to therapeutic failure in patients with bladder tumors treated with chemotherapy.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Clinical and pathobiological effects of neoadjuvant total androgen ablation therapy on clinically localized prostatic adenocarcinoma.

Neoadjuvant total androgen ablation therapy leads to involutional changes in prostatic carcinoma and may have the potential to downstage operable prostate cancers. We studied 27 clinically localized prostatic carcinomas after 3 months of combined treatment with a luteinizing hormone-releasing hormone agonist, goserelin acetate, and the antiandrogen flutamide, followed by radical retropubic prostatectomy, for changes in the serum prostate-specific antigen (PSA) level, changes in prostatic volume, therapy-induced histopathologic changes, DNA ploidy, and proliferative activity. Ten hormonally untreated, grade-matched prostatic adenocarcinomas served as controls. The mean pretherapy serum PSA level was 17.5 ng/ml, and posttherapy PSA levels were all < 4.0 ng/ml, with 18 men having undetectable levels. The mean reduction in prostatic volume following hormonal therapy was 37% (range 16-52%). Pathologic staging confirmed 20 pT2N0, six pT3N0, and one pT3N1. All prostates showed residual adenocarcinoma (extremely focal in seven cases [26%] with loss of glandular architecture, cytoplasmic vacuolization, and nuclear pyknosis. High-grade adenocarcinoma was nondiploid in 25% of hormonally treated prostates and 80% of 10 untreated controls. Immunostaining for proliferating cell nuclear antigen showed > 10% nuclear reactivity in 33% of treated carcinomas and 90% of untreated carcinomas. In conclusion, 3 months of neoadjuvant androgen ablation for localized prostatic carcinoma significantly lowers serum PSA and prostatic volume and produces involutional changes in residual carcinomas that mimic high-grade disease. However, pretreated carcinomas have predominantly a diploid DNA content and low proliferative activity as opposed to untreated carcinomas. Thus, grading of pretreated adenocarcinomas by conventional methods may be misleading. Preoperative total androgen ablation has a profound effect on a subset of prostatic carcinoma cells, possibly by facilitating programmed cell death.

Adenocarcinoma↗

Expression of c-kit and kit ligand proteins in normal human tissues.

The c-kit receptor and its cognate ligand, KL, play a critical role in melanogenesis, gametogenesis, and hematopoiesis. Studies on the expression of c-kit and KL have been primarily focused on mouse development. We undertook the present study to characterize the pattern of expression of these molecules in normal adult human tissues. Using immunohistochemistry and consecutive tissue sections from the same block, we evaluated a variety of well-preserved normal tissues for c-kit and KL microanatomic distribution. c-kit protein was identified in tissue mast cells, melanocytes, glandular epithelial cells of breast, parotid, dermal sweat, and esophageal glands. Scattered c-kit immunoreactivity was also observed for testicular and ovarian interstitial cells. A striking regional distribution of c-kit was detected in the central nervous system, particularly in the cerebellum, hippocampus, and dorsal horn of the spinal cord. KL protein was identified in cells complementary to staining for the receptor, such as glandular myoepithelium of breast and sweat glands. Intense KL immunoreactivity was observed in smooth muscle cells of the bladder, cervix, uterus, and gastrointestinal tract, as well as in striated and cardiac muscle. Strong KL staining was also detected in prostate fibromuscular stroma cells. In the central nervous system, KL expression was confined to Golgi and Purkinje cells in the cerebellum. These results suggest a role for this receptor and its ligand in the maintenance of a variety of fully differentiated tissues.

Brain Chemistry↗