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D M Peehl

Publications and source records attributed to D M Peehl.

At least 73 records · Page 4Linked to original sources

Keratin expression: a measure of phenotypic modulation of human prostatic epithelial cells by growth inhibitory factors.

Expression of certain cytokeratins can be indicative of the state of differentiation of epithelial cells. The basal cells in the normal adult human prostatic epithelium are characterized by the expression of cytokeratins 5 and 14, whereas the secretory luminal cells contain cytokeratins 8 and 18. Cells cultured from the prostatic epithelium expressed cytokeratins 5, 8, and 18, and thus had features of both basal and luminal cells. Certain growth-inhibitory conditions altered keratin expression in conjunction with growth modulation. Deletion of peptide factors and hormones from the culture medium induced the expression of cytokeratins 1 and 10, associated with a squamous phenotype. These same squamous keratins were found in very dense, stratified cultures that were maintained at confluency in standard, complete medium for extended periods. Retinoic acid enhanced the expression of secretory luminal cell-associated cytokeratins 8 and 18 in semi-confluent cultures. Other growth inhibitory factors such as suramin, transforming growth factor-beta, and interferon-gamma had no effect on keratin expression. These observations indicate that the differentiation of prostatic epithelial cells can be directed toward alternate pathways, either squamous or secretory, by different growth-inhibitory conditions. However, not all growth inhibitory factors altered differentiation, demonstrating that growth inhibition in itself is not a sufficient inducer of differentiation.

Cell Division↗

The IGF axis in the prostate.

The insulin-like growth factor (IGF) axis is a multi-component network of molecules involved in the regulation of cell growth. The axis includes two major ligands, (IGF-I and IGF-II), cell surface receptors, (the type I IGF receptor family as well as the type II IGF receptor), a family of high affinity binding proteins which regulate IGF availability to the receptors, (the IGFBPs), and a group of IGFBP proteases which cleave IGFBBPs and modulate IGF action. Human seminal plasma contains IGF-I and -II, IGFBP-2 and -4, as well as IGFBP-3 fragments and IGFBP-3 protease activity. A prostatic source for these IGF-axis molecules is likely. We have demonstrated the human prostate to contain all the elements of a functional IGF system. Prostate fibroblasts in primary culture (PC-F) express mRNA for IGF-II and produce IGF-II peptide in biologically active concentrations. This IGF-II appears to be of a high molecular weight (15 kD) species. Prostate epithelial cells in primary culture (PC-E) express the type I IGF receptor. These cells also produce IGFBP-2 and -4, (on both mRNA and peptide levels), while PC-F secrete IGFBP-2, -3 and -4. PC-E are exquisitely sensitive to the mitogenic effects of IGFs. Finally, prostate specific antigen (PSA), secreted from PC- and found in seminal plasma, can function as a potent IGFBP-3 protease. This IGFBP-3 protease activity can remove the inhibitory effects of IGFBP-3 on IGF-I induced PC-3 growth.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Identification of insulin-like growth factor-binding protein-3 (IGFBP-3) fragments and IGFBP-5 proteolytic activity in human seminal plasma: a comparison of normal and vasectomized patients.

Previous studies have demonstrated that insulin-like growth factor (IGF) peptides, IGF-binding proteins (IGFBPs), and IGFBP-3 proteolytic activity, are present in human seminal plasma (SP). In this study, we have further characterized the IGFBPs in SP using immunoprecipitation and Western ligand blotting, Western immunoblotting, affinity cross-linking and immunoprecipitation, and RIA of IGFBP-3 using two different assays and have identified additional proteolytic activities for IGFBP-4 and IGFBP-5 in SP. Immunoprecipitation with antibodies to IGFBP-2, IGFBP-3, and IGFBP-4, before and after affinity cross-linking, demonstrated that intact IGFBP-2 and IGFBP-4 are present in SP, but intact IGFBP-3 is absent. Low mol wt fragments of IGFBP-3, which did not bind to IGF-I or IGF-II on Western ligand blot and did not cross-link to IGF-II, were demonstrated on Western immunoblot and were measurable by two different RIAs. Proteolytic activities for IGFBP-4 and IGFBP-5 were demonstrated in SP by incubation with the respective iodinated IGFBPs. On comparing the proteolytic activity for IGFBP-4 by purified prostate-specific antigen (PSA; a known IGFBP-3 protease in SP) or by SP with measured equivalent concentrations of PSA, the dose response and fragment patterns were identical. With IGFBP-5, however, proteolysis by purified PSA was different from that by SP with measured equivalent concentrations of PSA: 1) proteolysis by pure PSA was less efficient than matched concentrations of SP; 2) the pattern of fragments after proteolysis by pure PSA was different from that after proteolysis by matched concentrations of SP; and 3) proteolysis by purified PSA was significantly inhibited by phenylmethylsulfonylfluoride and aprotinin, but proteolysis by SP was not. We conclude that human SP contains intact IGFBP-2 and IGFBP-4, but has only IGFBP-3 fragments with low affinity for IGF peptides; that PSA is able to proteolyze IGFBP-4 and IGFBP-5 (as well as IGFBP-3); and that an additional IGFBP-5 protease is probably present in SP. There was no significant difference in any of these findings in SP from normal volunteers, vasectomized patients, or patients with idiopathic azoospermia. The roles of IGFBPs and IGFBP proteases in the male reproductive system and male infertility remain to be further elucidated.

Blotting, Western↗

Insulin-like growth factor axis abnormalities in prostatic stromal cells from patients with benign prostatic hyperplasia.

Benign prostatic hyperplasia (BPH) is a common proliferative disorder of unknown etiology. To assess whether patients with BPH have alterations in their prostatic IGF axis, we measured the expression (by Northern blotting) and the production (by Western ligand blotting and RIA) of insulin-like growth factor-II (IGF-II) and IGF-binding proteins (IGFBPs) in prostatic epithelial and stromal cell strains grown from normal (n = 7), hyperplastic (n = 7), and malignant (n = 5) surgical specimens. Levels of IGF-II messenger ribonucleic acid (mRNA; normalized for actin expression) were 10-fold higher in BPH stromal cell strains compared to those in normal stromal cell strains (P < 0.0001). Western ligand blotting of conditioned medium (CM) from normal stromal cells demonstrated the presence of IGFBP-2, -3, and -4. In the CM of BPH stromal cells, IGFBP-2 levels were dramatically reduced to less than 20% of normal (P < 0.001). Additionally, IGFBP-5, which was not observed in significant amounts in normal stromal cell-CM, was found in large quantities in BPH stromal cell-CM. Northern blot analysis of mRNA from normal and BPH stromal cells demonstrated a 5-fold decrease in IGFBP-2 mRNA (P < 0.001) and a 4-fold increase in IGFBP-5 mRNA (P < 0.01) in BPH compared to normal cells. In prostate stromal cells from cancer specimens, no abnormalities were found. No abnormalities were observed in the IGF axis parameters evaluated in prostate epithelial cells from BPH or cancer strains. We conclude that prostatic stromal cell strains isolated from patients with BPH hyperexpress the mRNA for IGF-II and IGFBP-5 while expressing reduced amounts of IGFBP-2 mRNA. IGFBP, but not IGF-II, peptide levels in CM correspond to the mRNA differences. This is the first documentation of altered gene and protein expression in this common disease. We speculate that these abnormalities in the IGF axis may be important in the pathogenesis of BPH.

Blotting, Northern↗

Biological effects of prostate specific antigen as an insulin-like growth factor binding protein-3 protease.

Prostate specific antigen (PSA) is an insulin-like growth factor (IGF) binding protein-3 (IGFBP-3) protease found in seminal plasma and produced by prostatic epithelial cells (PC-E) in vivo. We examined the effects of PSA-proteolysis of IGFBP-3 on the affinity of IGFBP-3 fragments for IGFs and on the mitogenic action of IGFs on PC-E. Recombinant human IGFBP-3 was cleaved by PSA, then incubated with 125I-IGF-I or -II in the presence of varying concentrations of unlabelled peptides, and then cross-linking electrophoresis and densitometric analysis were performed. While the affinity of IGF-II for the PSA-generated IGFBP-3 fragments fell slightly compared to intact IGFBP-3, the affinity of the PSA-generated IGFBP-3 fragments for IGF-I fell by ten fold. The addition of IGF-I or -II to PC-E in serum-free culture conditions resulted in a two-fold stimulation of cell number compared to control. The presence of IGFBP-3 in the media blocked the IGF-induced stimulation, but had no independent effect in the absence of IGFs. When PSA was added to PC-E cultures to which both IGF-I or -II and IGFBP-3 were added, the inhibitory effects of IGFBP-3 on IGF mitogenesis were reversed. We conclude that PSA decreases the affinity of IGFBP-3 for IGF and can potentiate IGF action in the presence of inhibitory IGFBP-3. This phenomenon may contribute to normal and malignant prostate growth.

Carrier Proteins↗

PR1--a monoclonal antibody that reacts with an antigen on the surface of normal and malignant prostate cells.

BACKGROUND: The principal treatment for prostate cancer is surgery; prostate cancer is resistant to the common anticancer drugs. The only useful therapy for metastases involves diminishing testosterone levels by orchiectomy or administration of drugs, either of which may increase survival time. One approach to prostate cancer treatment is to use a monoclonal antibody (MAb) to target cytotoxic substances to these cancer cells. The MAbs available either do not react uniformly with prostate cancer cells or react with normal tissues. Thus, a new MAb is needed. PURPOSE: The goal of this study was to isolate an MAb that reacts with an antigen present on the surface of prostate cancer cells. METHODS: A strain of prostate cancer cells was isolated from a prostate cancer specimen, grown for 2-4 weeks in short-term culture, and used to immunize BALB/c mice. Hybridomas were then prepared by using spleen cells from the immunized mice. One hybridoma produced an MAb (PR1) that reacted with prostate cancers. RESULTS: MAb PR1 is an IgMK subtype that reacts uniformly with the surface of most (25 of 26) adenocarcinomas of the prostate. It also reacts with the surface antigen on normal prostate epithelial cells and on cells from benign prostatic hyperplasia. MAb PR1 reacts with a limited number of normal tissues including a subset of principal cells located in the collecting ducts of the kidney. CONCLUSION: We conclude that MAb PR1 reacts with a differentiation antigen present in normal prostate and that this antigen continues to be expressed on almost all adenocarcinomas of the prostate. IMPLICATIONS: This antibody may be useful for the diagnosis of or therapy for prostate cancer.

Adenocarcinoma↗

Oncogenes in prostate cancer. An update.

Oncogenes have been implicated in the carcinogenic development of many diverse types of human malignancies. For some cancers, the expression of specific oncogenes has been shown to have diagnostic or prognostic value. By contrast currently, no oncogene has been correlated conclusively with the initiation or progression of prostate cancer. The ras oncogene has been investigated the most thoroughly for its involvement in prostate cancer, but ras does not appear to play a significant role in the development of this malignancy. Several years ago, limited studies hinted at the possibility of overexpression of the myc oncogene and aberrant expression of the sis oncogene in prostate cancer, but additional studies to clarify the involvement of these oncogenes have not been done. Oncogenic activity of growth factors or growth factor receptors in prostate cancer has been suggested but not amply demonstrated. Current dogma indicates that oncogenes exist in prostate cancer, but these will be identified only by more intensive investigation.

Epidermal Growth Factor↗

Vitamin A regulates proliferation and differentiation of human prostatic epithelial cells.

The response of cultured human prostatic epithelial cells to vitamin A was measured by clonal growth assay in serum-free medium. Retinoic acid at 3 nM or higher inhibited the proliferation of cell strains derived from normal, benign hyperplastic and malignant tissues, while lower levels (0.03 nM) were stimulatory. Reduced proliferation induced by retinoic acid was accompanied by a marked change in morphology, as intercellular adhesion decreased. In conjunction, the expression of keratins 8 and 18, associated with the differentiated luminal phenotype of prostatic epithelia, was increased. In post-confluent cultures, retinoic acid prevented the appearance of keratin 1, which accompanied the development of a squamous phenotype by cells maintained under these conditions. The findings of this study indicate a role for vitamin A as a modulator of the growth and differentiation of prostatic epithelial cells.

Cell Differentiation↗

Vitamin D and prostate cancer: 1,25 dihydroxyvitamin D3 receptors and actions in human prostate cancer cell lines.

It has been suggested that vitamin D deficiency may promote prostate cancer, although the mechanism is not understood. In this study three human prostate carcinoma cell lines, LNCaP, DU-145, and PC-3, were examined both for the presence of specific 1,25 dihydroxyvitamin D3 [1,25(OH)2D3] receptors (VDRs) and also employed to study the effects of hormone on cell proliferation and differentiation. Ligand binding experiments demonstrated classical VDR in all three cell lines examined with an apparent dissociation constant of 7.5, 5.4, and 6.3 x 10(-11) M for LNCaP, DU-145, and PC-3 cells, respectively. Corresponding binding capacity for the three prostate carcinoma cell lines were 27, 31, and 78 fmol/mg protein, respectively. The presence of VDR in the three cell lines was also confirmed by immunocytochemistry. In addition, one major 4.6-kilobase messenger RNA transcript hybridizing with a specific human VDR complementary DNA probe was identified in all three cell lines. Interestingly, both DU-145 and PC-3 but not LNCaP cell lines exhibited 1,25(OH)2D3-stimulated induction of 24-hydroxylase messenger RNA employed as a marker of 1,25(OH)2D3 action. Physiological levels of 1,25(OH)2D3 dramatically inhibited proliferation of the LNCaP and PC-3 cell lines. However, in spite of the presence of high affinity VDR, proliferation of DU-145 cells was not inhibited by 1,25(OH)2D3 at the doses tested. Treatment with 1,25(OH)2D3 caused a dose-dependent stimulation of prostate-specific antigen secretion by LNCaP cells. In conclusion, these results demonstrate that these three human prostate carcinoma cell lines all possess specific VDR and that 1,25(OH)2D3 treatment can elicit both an antiproliferative and a differentiating action on these cancer cells. The findings lend support to the hypothesis that vitamin D might exert beneficial actions on prostate cancer risk.

Blood↗

Elevated levels of insulin-like growth factor-binding protein-2 in the serum of prostate cancer patients.

We have previously documented the presence of specific insulin-like growth factor (IGF)-binding protein (IGFBPs) in seminal plasma and prostate epithelial cell-conditioned medium IGFBP-2 is the prevalent IGFBP in both fluids. To assess whether patients with prostate carcinoma have alterations in serum IGFP levels related to the production of IGFBPs by their tumors, we performed Western ligand blots (WLB) and IGFBP-2 RIA on serum samples from 32 patients with prostate carcinoma of various degrees of clinical severity and compared them to results in 16 healthy age-matched controls. We have also measured serum IGF-I and -II by RIA. The mean level of IGFBP-2 in the prostate cancer patients was 170% of control levels by WLB analysis and 195% of control levels by RIA (P < 0.01). The degree of elevation of IGFBP-2 was related to the stage of the tumor and the levels of the serum tumor marker, prostate-specific antigen. Serum IGFBP-3 levels determined by WLB and serum IGF-I and IGF-II levels measured by RIA after acid chromatography were not different among the subjects with cancer and the normal controls. We conclude that IGFBP-2, which is the main IGFBP produced by prostate epithelial cells, is elevated in the serum of patients with prostate carcinoma, and that the degree of this elevation is related to serum prostate-specific antigen levels and the stage of the tumor. We speculate that prostate-derived IGFBPs may be secreted by prostate tumors and could e of value in understanding the pathophysiology of prostatic tumor growth as well as provide potential diagnostic markers.

Blotting, Western↗

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↗