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D F Gleason

Publications and source records attributed to D F Gleason.

38 records · Page 3Linked to original sources

The relationship of cathepsin B and stefin A mRNA localization identifies a potentially aggressive variant of human prostate cancer within a Gleason histologic score.

Cathepsin B (CB) is involved in degradation of extracellular matrix proteins during tumor progression in human solid organ tumors (such as colorectal, bladder, and breast cancers), including human prostate cancer. Its activities are regulated by endogenous inhibitors (such as stefins or cystatins). Increased expression of cathepsin B message, protein, and membrane association have been linked to malignancy, but there are very few studies of their mRNA expression in prostate cancer using in situ hybridization techniques. Our objective was to determine the relationship of CB and stefin A (cystatin A) mRNA localization to the Gleason grading system for histologic scores in the hope of distinguishing aggressive and less aggressive variants of prostate cancer. We used a 25-base biotinylated oligonucleotide CB cDNA antisense probe to localize CB message and a 27-base biotinylated oligonucleotide stefin A cDNA antisense probe to localize stefin A message. Prostate samples from 41 prostatectomy patients were collected along with their pre-surgery serum PSA levels and clinical stage of the disease. Sections prepared from frozen prostate tissue samples were hybridized with the CB and stefin A and control pBR 322 probes using techniques reported by Sinha et al. [1] and their distribution quantitated by an image analysis system. Prostate sections treated with RNAse before hybridization or incubated with the pBR 322 control probe showed little or no reaction products, confirming that localization of CB and stefin A probes was specific. In prostate cancer, the reaction products were found in neoplastic and invasive cells and occasionally in stromal cells. The ratios of CB to stefin A were similar in normal prostate and benign prostatic hyperplasia (BPH) whereas they varied consistently within and between Gleason histologic scores for prostate cancer. These variations showed three localization patterns; namely, prostate cancers with higher levels of CB than stefin A, lower levels of CB than stefin A, and similar levels of CB and stefin A. All three patterns and ratios for CB and stefin A were found in prostate samples (22/41) represented by the Gleason histologic score 6 tumors. In these tumors, serum PSA levels ranged from 1 to 78 ng/ml and prostate cancers showed B, C, and D clinical stages. There was no correlation of CB/stefin A ratio and serum PSA values or clinical stage in a limited number of prostate cancer cases. Our data showed that there were prostate cancer cases within Gleason histologic scores which expressed high, similar, and low levels of CB when compared to stefin A. We postulate that prostate cancer cases showing higher levels of CB compared to stefin A probably represent an aggressive variant of this cancer within any one Gleason histologic score. If this is the case, aggressive variants of prostate cancer would occur within Gleason scores 3 to 10 even though higher scores are usually considered more aggressive forms of prostate cancers. Since our study is based upon a very limited number of frozen prostate samples, we emphasize that a larger series of archival prostate cancer samples along with their survival data should be analyzed to establish any relationship of CB/stefin A ratio and aggressive variants of this cancer. Therefore, our conclusion is tentative. Our study provides a partial explanation for differences in the clinical course of prostate cancer in patients. This is the first study to show that determination of CB and stefin A mRNA ratios may lead to identification of aggressive and less aggressive variants of prostate cancer within a Gleason histologic score.

Adenocarcinoma↗

Immunocytochemical localization of an immunoconjugate (antibody IgG against prostatic acid phosphatase conjugated to 5-fluoro-2'-deoxyuridine) in human prostate tumors.

Current chemotherapeutic and/or endocrine treatments for adenocarcinoma of the prostate (CaP) do not selectively target neoplastic prostate cells. Therefore, new approaches are needed to improve treatment for prostate tumors. We hypothesized that because of the specific binding of antibody immunoglobulin G (IgG) against human prostatic acid phosphatase (PAcP), PAcP-IgG could function as a carrier protein for the conjugated chemotherapeutic drugs and that the immunoconjugate would then selectively localize (bind) to epithelial cells of human prostate tumors, but not to epithelial cells of other solid organs. Our objective was to test this hypothesis using human prostate, colon, and kidney tissue samples and human prostate pieces incubated in short-term organ culture. We used derivatives of 5-fluorouracil labeled with fluorescein isothiocyanate (FITC) and rabbit anti-PAcP-IgG tagged with CY3/rhodamine alone or as an immunoconjugate. Localization of PAcP-IgG alone and the immunoconjugate in prostate produced similar and specific immunostaining in prostate epithelial cells and their tumors, but not in epithelia of colon and kidney tissue sections or in prostate sections-treated with normal rabbit serum. Confocal microscopy showed co-localization of CY3 and FITC of the immunoconjugate in the same group of prostate epithelial cells and their tumors. Organ culture studies showed that human prostate tissue samples incubated with normal rabbit serum did not show any fluorescence whereas those cultured with PAcP-IgG immunoconjugate showed fluorescence in glandular epithelial cells. The later study also showed that in organ culture the immunoconjugate had penetrated and labeled prostate glands internal to the cut surfaces. Drug labeled with FITC did not localize specifically in the prostatic epithelium. Analysis of our data has shown that PAcP-IgG was needed for specific localization of the immunoconjugate in prostate glands. We conclude that PAcP-IgG was essential for delivery and binding of the drug in human prostate. This is the first report to show that PAcP-IgG-5-Fu-2'-d-based immunoconjugate was selective and specific to epithelial cells of human prostate and its tumors, as revealed by organ culture, immunocytochemical, and confocal microscopic techniques.

Acid Phosphatase↗