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D M Peehl

Publications and source records attributed to D M Peehl.

At least 19 recordsLinked to original sources

Analysis of prostatic tumor cultures using fluorescence in-situ hybridization (FISH).

Analysis of ten primary prostatic tumor cultures using fluorescence in-situ hybridization (FISH) with pericentromeric probes for chromosomes 7, 8, 10, 16, 17, and 18 revealed aneusomies in nine of these specimens. Classical cytogenetics by G-banding indicated that only four of those same ten specimens had any (but not consistent) clonal abnormalities. This preliminary study suggests that aneusomy is a common event in early-stage prostatic tumors, and also supports the notion that multiple chromosomes are involved. In combination with routine cytogenetic analysis, FISH is thus likely to be a powerful tool in the evaluation of prostatic cancer.

Chromosome Aberrations

Prostate-specific antigen (PSA) is an insulin-like growth factor binding protein-3 protease found in seminal plasma.

Insulin-like growth factor binding protein-3 (IGFBP-3), the major serum carrier protein for the IGFs, is absent from Western ligand blots of seminal plasma, but is detectable by RIA. IGFBP-3 protease activity has recently been described in pregnancy serum. We investigated the possibility that seminal plasma contains an IGFBP-3 protease, by incubating seminal plasma with 125I-labeled human IGFBP-3. Seminal plasma was found to have potent IGFBP-3 protease activity with a cleavage pattern different from that of pregnancy serum. Prostate-specific antigen (PSA) is a serine protease found in semen. Autoradiographs measuring IGFBP-3 protease activity demonstrated that purified PSA cleaved IGFBP-3, yielding a cleavage pattern identical to that of seminal plasma. IGFBP-2 and -4 in seminal plasma were not degraded by PSA. Cleavage of IGFBP-3 by PSA resulted in a marked reduction in the binding affinity of the fragments to IGF-I, but not IGF-II. We speculate that PSA may serve to modulate IGF function within the reproductive system or in prostate cancer by altering IGF-IGFBP-3 interactions.

Autoradiography

Culture of prostatic epithelial cells from ultrasound-guided needle biopsies.

A protocol which was developed for the culture of epithelial cells from radical prostatectomy specimens was slightly modified to permit the culture of cells from ultrasound-guided prostatic needle biopsies. The collagenase digestion step of the standard protocol was omitted, and biopsies were simply minced and allowed to attach to collagen-coated dishes in serum-free medium. Cell outgrowths from biopsies were free of fibroblasts, and expression of keratin, prostate specific antigen, and prostatic acid phosphatase was maintained in vitro. The establishment of a bank of frozen cells from primary cultures permitted repetitive studies with individual cell strains, which could be serially passaged and were capable of clonal growth. The ability to derive cultures from biopsies will facilitate the biological characterization of cells from primary prostate tumors of high malignant grade, which are not commonly available from radical prostatectomy specimens.

Acid Phosphatase

Cytogenetic evaluation of 20 cultured primary prostatic tumors.

We report the cytogenetic evaluation of 20 cultured cell strains derived from primary prostatic adenocarcinomas obtained from radical prostatectomies. The majority of the strains contained cells with only normal male karyotypes (46,XY), but cytogenetically abnormal clonal populations were found in five strains. Two of those strains contained aberrations involving the Y chromosome, one with a -Y and one with a +Y. Three strains (one of which also had the XYY karyotype) exhibited cells with double-minute chromosomes and four strains contained near tetraploid cells.

Adenocarcinoma

Cytostatic effects of suramin on prostate cancer cells cultured from primary tumors.

Suramin is currently undergoing clinical trials as a chemotherapeutic agent for prostate cancer. The effects of suramin on cultured human epithelial cells derived from normal, benign hyperplastic, and malignant prostate tissues were examined. In serum-free medium, suramin inhibited the clonal growth of prostate cells at a half-maximal dose of approximately 10 micrograms/ml. Growth inhibition by suramin was completely reversible even after 24 hours of exposure. In conjunction, suramin did not alter cellular phenotype with regard to expression of keratins and prostate-specific antigens. Although suramin is reportedly an antagonist of growth factor-mediated mitogenesis, ten-fold excesses of growth factors did not appreciably suppress the cytostatic activity of suramin. In comparison to the activities of other possible chemotherapeutic agents, suramin would appear suboptimal because its inhibitory effects are reversible and it does not induce a terminally differentiated cellular phenotype.

Cell Division

Insulin-like growth factors (IGFs), IGF receptors, and IGF-binding proteins in primary cultures of prostate epithelial cells.

Insulin-like growth factors (IGFs) are potent mitogens that bind with high affinity and specificity to IGF receptors and IGF-binding proteins (IGFBPs). We studied the roles of these three groups of proteins in prostate epithelial cells (PEC) in primary culture grown under serum-free conditions. Affinity cross-linking of IGF-I and IGF-II to crude membranes prepared from PEC revealed an abundance of type 1 IGF receptors and no evidence of type 2 IGF receptors. Western ligand blots of conditioned media (CM) from PEC demonstrated the presence of two specific IGFBP bands similar to those previously demonstrated in seminal plasma, with approximate mol wt of 31 and 24 kDa. The 31-kDa band was immunoprecipitable with an antibody to IGFBP-2, and neither band could be deglycosylated with endoglycosidase-F. Northern blot analysis of poly(A)+ RNA prepared from PEC with cDNAs for hIGFBP-1, -2, and -3 documented the expression of mRNA for hIGFBP-2 only. Modifications of the serum-free conditions of PEC did not significantly alter the IGFBP profile of PEC CM. The ability of IGF-I, IGF-II, and insulin to stimulate clonal growth of PEC was examined. IGF-I stimulated PEC growth with an ED50 of 0.1 ng/mL. IGF-II and insulin, respectively, were 1 and 3 orders of magnitude less effective than IGF-I in stimulating the growth of PEC. Radioimmunoassayable IGF-I and IGF-II levels in PEC CM were below the assay detection levels. In conclusion, we suggest that IGFs are important growth stimulators of PEC in culture, that their actions are mediated through the type 1 IGF receptor, and that PEC produce hIGFBP-2 and a 24-kDa IGFBP which may modulate IGF action in these cells.

Blotting, Western

Searching for suppressor genes in prostate cancer.

Prostate cancer poses many challenges for clinicians. Methods for early detection are not satisfactory, and in fact more efficient detection will lead to even further dilemmas. We know from necropsy studies that the occurrence of prostate cancer is much higher than the clinical incidence (Yatani et al, 1982). Obviously, only some of the prostate cancers detected early would progress to a health threatening state if left untreated--the question is, which ones? This is a question that must be addressed, because prostate cancer has the highest occurrence rate of any cancer among males in the US, and current approaches to eradicating early stage prostate cancers involve expensive surgical or irradiation techniques. Even for primary prostatic tumours of more advanced stages, current prognostic indicators are not ideal. What is the potential of specific suppressor genes lost in prostate cancer for identifying useful prognostic indicators? Even though numerous molecular events, including loss as well as gain of gene activity, have been delineated for colon cancer, no single genetic change has proven prognostic. Rather, increasing malignant potential of colon cancer seems to be correlated with an accumulation of several genetic events. On the other hand, a specific chromosomal abnormality, a deletion of chromosome 17p, does appear to be a prognostic indicator for distinguishing high grade from low grade transitional cell carcinoma (Olumi et al, 1990). Whether loss of chromosome 17p will prove to be a better prognostic marker than other parameters, however, is still unknown. At present, no consistent genetic changes have been associated with any stage of prostate cancer, so we are a long way from determining whether such changes will prove their hypothetical usefulness as new and improved prognostic indicators. The other clinical realm in which the identification of loss of suppressor genes in prostate cancer might prove a resource is therapy. Suppressor gene products obviously provide key regulatory functions, perhaps linked to differentiation, in normal cells. Restoration of these regulatory functions in cancer cells, either by directly supplying the lost regulatory element or by circumventing the missing element by other means, is a novel therapeutic approach that might offer hope even in metastatic disease. Realization of this dream will require much more knowledge of the precise nature of the suppressor gene products lost in cancer, and a detailed understanding of the hierarchy of regulation of growth and differentiation in normal cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Cell Transformation, Neoplastic

Frequency and pattern of karyotypic abnormalities in human prostate cancer.

The cytogenetic evaluation of 30 cultured primary prostatic cancer specimens obtained during radical prostatectomies of patients with relatively early stage disease is reported. The majority of specimens examined showed a normal male karyotype, 46,XY. Nine samples contained clonally abnormal populations including five specimens which were hyperdiploid (modal range, 65-92 chromosomes), one specimen containing double minute chromosomes, and three containing structural aberrations. Loss of the Y chromosome and a partial trisomy for chromosome 4 was observed in a sample from one patient. Another sample showed a translocation between the long arms of chromosomes 5 and 7. The only tumor obtained from a previously irradiated patient contained no normal cells, a modal chromosome number of 45, loss of chromosomes 2 and Y, and multiple structural rearrangements. The appearance of any clonal cytogenetic abnormality correlated in general with a poorly differentiated state of cancer. A survey of all available previous cytogenetic data on human prostate adenocarcinoma indicated that the loss of chromosomes 1, 2, 5, and Y, the gain of chromosomes 7, 14, 20, and 22, and rearrangements involving chromosome arms 2p, 7q, and 10q are the most common changes observed. This suggests that, although the assignment of a single chromosomal aberration as a marker for early stage prostatic cancer is unlikely, several consistent "hotspots" might be of significance in the etiology of this disease.

Chromosome Aberrations

Analysis of somatic cell hybrids derived from normal human prostatic epithelial cells fused with HeLa cells.

Somatic cell hybrids have been instrumental in the recognition of specific chromosomes containing genes capable of suppressing the malignant phenotype. As a first step towards the identification of possible suppressor genes in prostate cells, we created hybrids by fusing normal prostate cells with malignant HeLa cells. Similar to hybrids made with other combinations of normal and malignant cells, the normal phenotype was dominant and the malignant phenotype was suppressed. The phenotype of the nontumorigenic hybrids after injection into nude mice resembled that of normal keratinocyte X HeLa hybrids, and tiny, nonprogressive keratinized nodules were produced. One hybrid clone was tumorigenic, possible due to the loss of a normal suppressor gene, and displayed glandular as well as squamous elements. Further characterization of these hybrids should permit isolation of specific suppressor genes, as well as promote recognition of elements that regulate the glandular phenotype.

Acid Phosphatase

Down-regulation of a calmodulin-related gene during transformation of human mammary epithelial cells.

A human cDNA library obtained from cultured normal mammary epithelial cells (HMECs) was searched by subtractive hybridization for genes whose decrease in expression might be relevant to epithelial transformation. One clone identified by this procedure corresponded to a 1.4-kilobase mRNA, designated NB-1, whose expression was decreased greater than 50-fold in HMECs tumorigenically transformed in vitro after exposure to benzo[a]pyrene and Kirsten sarcoma virus. Sequence analysis of NB-1 cDNA revealed an open reading frame with a high degree of homology to calmodulin. NB-1 expression could be demonstrated by polymerase chain reaction amplification in normal breast, prostate, cervix, and epidermal tissues. The presence of NB-1 transcripts was variable in primary breast carcinoma tissues and undetectable in tumor-derived cell lines of breast, prostate, or other origins. NB-1 mRNA expression could be down-regulated in cultured HMECs by exposure to reconstituted extracellular matrix material, while exposure to transforming growth factor type beta increased its relative abundance. The protein encoded by NB-1 may have Ca2+ binding properties and perform functions similar to those of authentic calmodulin. Its possible roles in differentiation and/or suppression of tumorigenicity in epithelial tissues remain to be examined.

Base Sequence

Transformation of human neonatal prostate epithelial cells by strontium phosphate transfection with a plasmid containing SV40 early region genes.

Neonatal human prostatic epithelial cells (NP-2s) were transfected by strontium phosphate coprecipitation with a plasmid (pRSV-T) containing the SV40 early region genes. The cells transfected with pRSV-T, but not the sham-transfected controls, formed rapidly growing, multilayered colonies within 2 weeks at a frequency of 1 x 10(-4) in a serum-free medium (P4-8F). In all, 28 colonies of transformed cells were isolated. Three of these have been cultured for a sufficient length of time to show that their growth potentials are well beyond that of the normal progenitor cells (NP-2s). There is also little or no indication of the culture "crisis" commonly seen in SV40-transformed cells in these transfected lines. All contain cytokeratins and SV40 T-antigen as revealed by immunofluorescence, have ultrastructural features of epithelial cells, and are pseudodiploid. None have produced tumors within 1 year after s.c. injection into nude mice. The transformed as well as the parental NP-2s cells require bovine pituitary extract for growth in serum-free medium and are stimulated by transforming growth factor beta 1 (TGF-beta 1) and epidermal growth factor in clonal growth assays. In contrast, a prostatic carcinoma cell line (PC-3) is inhibited by TGF-beta 1. This serum-free system and immortalized transfected clones will be useful for studying the action of putative prostatic carcinogens and tumor-promoting agents.

Cell Division

Clonal growth of human prostatic epithelial cells is stimulated by fibroblasts.

The interaction of fibroblasts with adult human prostatic epithelial cells was studied in vitro. Stimulation of epithelial cell proliferation, measured by clonal growth assay, was demonstrated when prostatic epithelial cells were grown in coculture with fibroblasts. Epithelial growth in cocultures with fibroblasts was greater than could be obtained in isolated culture in an "optimized," serum-free medium previously described. Fibroblasts were able to compensate for the deletion of several growth factors from this "optimized" medium, including epidermal growth factor and insulin, but were notably unable to replace bovine pituitary extract. Epithelial growth stimulation identical to that achieved in coculture was produced by medium conditioned by fibroblasts. Similar results were obtained by using fibroblasts of adult human prostate origin, adult human skin, human fetal lung fibroblasts (IMR-90), and mouse 3T3 cells. No difference in response was demonstrated between prostatic epithelial cells derived from normal or malignant tissues. Fixed fibroblast monolayers and extracellular matrix prepared from fibroblast cultures failed to stimulate prostatic epithelial growth. These results suggest that a soluble growth factor is secreted by prostatic fibroblasts and other human fibroblasts of nonprostatic origin, as well as by embryonic mesenchymal cells from nonhuman species, which is capable of producing a marked proliferative response in vitro from adult human prostatic epithelium. This proliferative response could not be reproduced by the addition of a variety of known growth factors to prostatic epithelial cell cultures.

Cell Communication

In vitro studies of human prostatic epithelial cells: attempts to identify distinguishing features of malignant cells.

Recent advances in culture techniques have enabled routine establishment and propagation of epithelial cells derived from normal and malignant tissues of the human prostate. Comparative studies of the responses of normal and cancer-derived cell populations to various growth and differentiation factors in vitro were undertaken to examine the possibility that cancer cells might respond differentially. Clonal growth assays in serum-free medium demonstrated that optimal proliferation of normal as well as cancer cell strains was generally dependent on the presence of cholera toxin, epidermal growth factor, pituitary extract, hydrocortisone, insulin, and high levels of calcium in the culture medium, and on the use of collagen-coated dishes. Only one cancer strain responded aberrantly to epidermal growth factor and hydrocortisone. Putative differentiation factors (transforming growth factor-beta and vitamin A) inhibited the growth of all normal and cancer strains. The origin of a cancer-derived cell strain that responded similarly to normal strains was verified by positive labeling with a prostate cancer-specific antibody, validating the conclusion from these studies that normal and cancer prostatic epithelial cells are not distinguishable on the basis of responses to the tested factors.

Antibodies, Neoplasm

Clonal growth characteristics of adult human prostatic epithelial cells.

The ability of human epithelial cells derived from adult prostatic tissues to undergo clonal growth in culture was examined. In a previously described serum-free culture system, such cells exhibited a density-dependent growth requirement. It was found that raising the level of one of the constituents of the culture medium, bovine pituitary extract, to 100 micrograms/ml permitted excellent clonal growth when as few as 100 cells were inoculated/60-mm2 dish. Raising the levels of supplements other than pituitary extract (cholera toxin, epidermal growth factor, hydrocortisone, or insulin) did not produce this result. The average colony-forming efficiency of cells derived from primary or early passage cultures was approximately 25%. When single cell suspensions were prepared from tissue isolates and directly analyzed for clonal growth, colony-forming efficiencies were approximately 5%, perhaps indicating the proportion of stem cells with proliferative potential in the original isolates. The colony-forming efficiency of a cell population derived from cancer tissue was not significantly different from those of populations derived from normal tissues.

Cell Division

Molecular biology of proto-oncogenes in genitourinary cancers.

The application of molecular biology to oncology has allowed the recognition of altered genes in cancer cells. The DNA sequences most commonly altered belong to the family of proto-oncogenes, which are homologous to the cancer-causing genes of RNA tumor viruses. In the normal cell, proto-oncogenes apparently have important functions in regulation of growth and differentiation. When altered by mutation, deletion, translocation or amplification in cancer cells, proto-oncogenes may disrupt fundamental cellular processes. Such aberrant functioning by abnormal proto-oncogenes may play crucial and even causative roles in cancer development. Altered proto-oncogenes have been identified in cancers of the human urogenital tract. Studies on the expression of proto-oncogenes in genitourinary cells will increase understanding of basic biological properties of these cells, and may yield information relevant to staging, diagnosis, risk factors, and markers of pathologic classification.

Chromosome Deletion

Activated Ki-ras oncogene in human prostatic adenocarcinoma.

The role of cellular oncogenes in the development of human prostate cancer has not been extensively studied. A search for activated oncogenes was undertaken by testing DNA isolated from prostatic adenocarcinoma tissues for transforming activity in a 3T3 transfection assay. A transforming sequence homologous to Ki-ras was detected in one of the samples. DNA from the other cancers was negative in the transformation assay, suggesting that the activation of oncogenes, at least those detectable by the 3T3 transfection assay, is not a frequent event in prostate cancer. Amplification of genomic oncogene sequences in prostatic tissues was also examined, but amplification of Ki-ras, Ha-ras, c-myc, N-myc, c-sis, or c-fos was not detectable in any of the samples.

Adenocarcinoma

Growth responses of normal, benign hyperplastic, and malignant human prostatic epithelial cells in vitro to cholera toxin, pituitary extract, and hydrocortisone.

Normal, benign hyperplastic (BPH), and malignant prostatic epithelial cells from adult humans can be serially passaged in medium PFMR-4 supplemented with 20% whole serum, cholera toxin, and epidermal growth factor (EGF). Improved growth of these cells has been achieved by optimizing the concentrations of the components of the basal medium. In the new modified medium, PFMR-4A, the only supplements required are 5% dialyzed serum, cholera toxin, EGF, pituitary extract, and hydrocortisone. Comparative studies of the growth responses of prostatic cells derived from normal central zone, normal peripheral zone, BPH nodules, and adenocarcinomas did not reveal any qualitative differences; all respond positively to the addition of cholera toxin, pituitary extract, and hydrocortisone to the culture medium. Cells of one cancer strain, however, were much less density-dependent for growth than were the other strains of normal, BPH, or malignant cells.

Adult