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Biomedical subjects

P A Abrahamsson

Publications and source records attributed to P A Abrahamsson.

At least 19 recordsLinked to original sources

Long-term testosterone stimulation induces hyperplasia in the guinea-pig prostate.

The relation between supraphysiologic circulating testosterone levels and prostatic diseases is unclear and difficult to study in men. Animal models may be advantageous. Based on a pilot study, testosterone enantate 50 mg (n=12) or 25 mg (n=12) was administered to guinea-pigs intramuscularly every 3 weeks, for either 7 or 14 months. The histopathology of the prostate was described. Epithelial hyperplasia was found in 14/21 animals receiving testosterone and in 7/12 very old animals, but no such changes were found in the sham or castrated animals. Testosterone stimulation seems to induce epithelial hyperplasia, but not cancer, in the guinea-pig prostate.

Animals↗

Neuroendocrine cells and nerves in the prostate of the guinea pig: effects of peripheral denervation and castration.

BACKGROUND: Neuroendocrine (NE) cells and nerves in the prostate gland are thought to play a central role in the regulation of growth, cellular differentiation and homeostasis of secretory activity. The objective of this experimental study was to describe the effects of peripheral denervation and castration on NE cells and nerves in the guinea pig prostate. METHODS: Guinea pigs underwent sham-operation, unilateral and bilateral hypogastric nerve resection, extirpation of the right anterior major pelvic ganglion (AMPG), autotransplantation of prostatic tissue and castration. Cryostat sections of prostatic tissue were examined with immunohistochemistry by using serotonin (5-HT) and chromogranin A (CgA) and various neuropeptides. RESULTS: The number of 5-HT-IR NE cells was four-fold higher than CgA-IR NE cells. The innervation pattern was uniform throughout the gland with subepithelial nerves in close proximity to NE cells. Autotransplants of prostatic tissue showed total loss of nerves, but the number and morphology of 5-HT-IR NE cells were unaltered. Extirpation of the right AMPG showed significant reduction in prostate weight, decreased density of nerve terminals in the superior part of the ipsilateral prostate, whereas the number and morphological feature of 5-HT-IR NE cells remained unaffected in the entire prostate. Castration induced atrophy of the gland with a significant reduction in weight (unpaired t-test, P < 0.001), but without effect upon 5-HT-IR NE cells. CONCLUSIONS: The guinea pig seems to be a useful animal model for studies on the role of the NE cells in the prostate. NE cells seem to be independent of innervation and androgens. It seems that other factors influence the NE cell population to a greater extent.

Animals↗

Semiquantitative morphology of human prostatic development and regional distribution of prostatic neuroendocrine cells.

BACKGROUND: The neuroendocrine cells of the human prostate have been related to proliferative disorders such as prostatic cancer. Their origin, distribution, and development have therefore been studied and discussed in terms of current stem cell concepts in the prostate. METHODS: Prostatic tissue specimens (n = 20) from human fetuses (n = 8), prepubertal and pubertal children (n = 8) and mature men (n = 4) were studied immunohistochemically using antibodies directed against neuroendocrine, epithelial as well as secretory markers. Semiquantitative computer-assisted evaluation of different epithelial and stromal components based on stereological principles was performed on azan-stained sections representative of all developmental stages. RESULTS: By the end of gestational Week 9, neuroendocrine (NE) cells appear in the epithelium of the urogenital sinus and are subsequently closely associated with the formation of urethral prostatic buds. The fetal and postnatal distribution pattern of NE cells within the gland is characterized by a relatively constant number of cells per gland similar to prostatic smooth muscle cells. Likewise, a density gradient exists with the highest density in the large collicular ducts and almost no NE cells in subcapsular peripheral acini. In peripheral ducts, the distribution is random. Maturation of the NE cells precedes that of the secretory cells by about 10-16 years. CONCLUSIONS: A second prostatic stem cell lineage, different from the urogenital sinus (UGS)-lineage is hypothesized originating from immature neuroendocrine cells. Being morphologically indistinguishable from the UGS-derived prostatic secretory cell lineage, it gives rise to neuroendocrine cells. Their presence is apparently important for proliferation regulation of the UGS-derived lineage of the prostate.

Adolescent↗

Determination of serum prostate-specific antigen-alpha1-antichymotrypsin complex for diagnosis of prostate cancer in Japanese cases.

OBJECTIVE: The clinical utility of the determination of serum prostate-specific antigen-alpha1-antichymotrypsin complex (PSA-ACT) for the diagnosis of prostate cancer, especially in cases in the diagnostic gray zone, is still unclear. MATERIAL AND METHODS: With the use of a newly approved enzyme immunoassay for the detection of PSA-ACT, 907 sera, including those from non-urological benign and malignant diseases, were analysed. RESULTS: Serum values of PSA-ACT in non-prostate cancer males increased according to age from the 40s to 70s. The serum values were high only in the patients with prostatic diseases and, in prostate cancer patients, the values became high as the clinical stage progressed. By receiver-operating characteristic analysis significantly better results in PSA-ACT than total PSA were observed. In the group with a total PSA of 2-20 ng/ml, the detection of PSA-ACT showed better results, although not significantly so, than the free-to-total PSA ratio. CONCLUSIONS: The detection of PSA-ACT showed a high clinical utility in the diagnosis of prostate cancer. Therefore, it may replace total PSA determination.

Adult↗

Neuroendocrine pathogenesis in adenocarcinoma of the prostate.

BACKGROUND: In the prostate, the importance of sex hormones for its normal development and function is well known. However, it has been proposed that various neuroendocrine (NE) hormones and growth factors may be involved in the pathogenesis of prostatic carcinoma (CaP). Neuroendocrine differentiation appears to be associated with tumour progression and the androgen-independent state, for which there is currently no successful therapy. Therefore, we need to improve our understanding of NE cells, their regulatory products and influence on the prostate gland. Finally, new therapeutic protocols need to be developed. METHODS: Information is presented on prostatic NE cells and neuroendocrine differentiation (NED) in prostatic carcinoma. Neuroendocrine secretory products and interactions with epithelial prostate cells are investigated in order to understand their significance for the pathogenesis of the prostate gland, prognosis and therapy. RESULTS: Recent research suggests that NE-secreted products. such as serotonin, somatostatin and bombesin, may influence growth, invasiveness, metastatic processes and angiogenesis in CaP. During recent years. new experimental models for NED have been developed to provide evidence that NE products may promote proliferation and confer antiapoptotic capabilities on non-neuroendocrine cells in close proximity to NE cells. Cancerous epithelial cells may become more responsive to NE factors by upregulation of receptors for neuropeptides, or may induce NE cells to upregulate the secretion and synthesis of NE factors. In the androgen independent state, neuropeptides and their intracellular signals may activate the androgen receptor. Furthermore, androgen ablation may lead to downregulation of neural endopeptidase 24.11 (a zinc-dependent metalloproteinase) and PSA, which would lead to increased levels of NE products becoming available. These studies confirm that NE cells and NED may have a significant impact on prostate cancer, especially in the androgen independent state. CONCLUSIONS: Recent developments in molecular biology and pathophysiology of prostate cancer have increased our understanding of the NE regulatory mechanisms. Hopefully, this will lead to the development of entirely new therapeutic modalities. For example, somatostatin agonists may suppress angiogenesis and proliferation, and simultaneously promote apoptosis in prostate cancer cells. Somatostatin may thus have an important role in tumour biology, and in the future there may be a potential role for somatostatin analogues in the treatment of prostate cancer, but also for serotonin and bombesin receptor antagonists. However, a review of the accumulated knowledge in this field suggests that we still need to improve our understanding of NE cells and their regulatory products and influence on the prostate gland. and that clinical trials are needed, to test drugs based on neuroendocrine hormones and their agonists/antagonists.

Adenocarcinoma↗

Treatment of locally advanced prostate cancer--a new role for antiandrogen monotherapy?

Men with locally advanced prostate cancer face a high risk of disease progression and cancer-related death. The traditional active treatment options for locally advanced disease, either following failure of treatment of primary curative intent or newly diagnosed, are radiotherapy and castration. Radiotherapy alone has a high failure rate, although outcome can be improved by adjuvant hormonal therapy. Castration is associated with loss of libido, sexual dysfunction, osteoporosis and hot flushes, which are significant drawbacks when patients may receive treatment for several years. Monotherapy with a non-steroidal antiandrogen offers potential benefits with respect to quality of life. Studies in the adjuvant setting are in progress. In the setting of previously untreated locally advanced disease, pooled mature data (56% deaths) from two major studies indicate no significant difference in survival outcome between bicalutamide ('Casodex') 150 mg and castration. Bicalutamide 150 mg offers quality of life benefits with respect to sexual interest and physical capacity. Preliminary data suggest that bicalutamide maintains bone mineral density. Bicalutamide 150 mg is well tolerated; gynaecomastia and breast pain, common side effects of antiandrogen monotherapy, may be managed by prophylactic irradiation or surgery. Bicalutamide 150 mg monotherapy is an alternative to castration for locally advanced prostate cancer.

Androgen Antagonists↗

Calcitonin and calcitonin gene-related peptide in the human prostate gland.

BACKGROUND: Calcitonin-related peptides have been found in the human prostate, and calcitonin (CT) and calcitonin gene-related peptide (CGRP) have been demonstrated in subpopulations of neuroendocrine (NE) cells. The purpose of this study was to determine the concentrations of CT and CGRP as well as the densities of NE cells in normal prostates, benign prostatic hyperplasia (BPH), and carcinoma of the prostate (CAP). METHODS: In 42 specimens of radical prostatectomy, the number of CT- and CGRP-immunoreactive NE cells in areas of normal and BPH tissue was determined, and compared with CAP tissue using immunocytochemistry. In addition, by radioimmunoassay (RIA), tissue levels of CT and CGRP were analyzed in extracts from areas of normal, BPH, and CAP tissue, as verified by adjacent histologic sections. RESULTS: A significant decrease in CT-immunoreactive NE cells was observed in hyperplastic nodules of BPH in comparison to normal tissue. These findings were in parallel with a significant reduction in tissue CT level in BPH compared to normal tissue. There was also a marked, but statistically nonsignificant, reduction in CT levels in CAP tissue. In contrast, levels of CGRP in BPH and CAP tissue did not show any significant differences compared to normal tissue. CONCLUSIONS: CT and CGRP are present in NE cells of the human prostate. Calcitonin levels are significantly reduced in BPH, in parallel with a decreased number of CT-immunoreactive NE cells, whereas no significant changes in tissue levels of CGRP were observed. The functional significance of these findings is discussed.

Aged↗

Regressive changes and neuroendocrine differentiation in prostate cancer after neoadjuvant hormonal treatment.

BACKGROUND: We studied the extent of neuroendocrine (NE) tumor cell differentiation and its relation to regressive changes in prostate cancer after 3-month hormonal treatment. METHODS: Radical prostatectomy specimens from 103 patients, randomized to 3-month neoadjuvant LH-RH-analogue treatment (neoadjuvant group) or to surgery alone (control group), were available for analysis. The effects of hormonal treatment in terms of positive surgical margins, the degree of histopathological changes, and tumor cell proliferation were evaluated in relation to NE-differentiation assessed with antibodies against chromogranin A (CGA). RESULTS: Both the number of CGA-positive cells/cm(2) (P < 0.003) and the proportion of NE-positive tumors (P = 0.07) were greater in the neoadjuvant group than in the control group. No correlation existed between NE-differentiation and the effects of the neoadjuvant hormonal treatment; nor did NE-differentiation correlate to the decrease in serum PSA. CONCLUSIONS: Neuroendocrine differentiation in prostate cancer increases after 3 months of neoadjuvant hormonal treatment but does not correlate to the effects of hormonal treatment.

Antineoplastic Agents, Hormonal↗

Palliative radiation with a radiolabeled diphosphonate (rhenium-186 etidronate) in patients with hormone-refractory disseminated prostate carcinoma.

MATERIAL AND METHODS: The present study investigates the safety and efficacy of 2590 MBq rhenium-186 (186Re) etidronate (i.e. twice the activity normally used) administered intravenously in 15 patients with disseminated prostatic carcinoma and bone pain. RESULTS: Pain relief was observed in 11 of 14 evaluable patients (79%), 4 of whom became completely free from pain. Five of the responding patients also noted an improvement in daily activity and two found it possible to reduce or discontinue morphine medication. Pain relief occurred within one week in four patients, and within two weeks in eight of the responding patients. The mean duration of pain relief after the first course of 186Re-etidronate was 6 weeks (range 4-10). The toxicity was mild (< or = grade 2), transient, and restricted to hematological toxicity. CONCLUSIONS: 186Re-etidronate provided rapid pain-relief and had mild toxicity in most patients with disseminated hormone-refractory prostatic carcinoma, but doubling the activity did not markedly improve the efficacy.

Bone Neoplasms↗

Localization of protein gene product 9.5 immunoreactivity in derivatives of the human Wolffian duct and in prostate cancer.

BACKGROUND: Protein gene product 9.5 (PGP 9.5) has been considered to be a neuronal marker, but it is also present in extraneuronal tissues, e.g., the human mammary gland and rat epididymis. Its presence and distribution in the developing and adult male human genital tract have been unknown. METHODS: Immunohistochemical reactions were performed on human embryonic and postnatal specimens of the male genital tract, using commercial monoclonal and polyclonal antibodies. RESULTS: PGP 9.5 immunoreactivity was found in the Wolffian duct of human embryos (55-85 mm crown-rump length). Strong reactivity was observed in mesonephric tubular cells and at the apical rim of Wolffian duct cells. Owing to their PGP 9.5 immunoreactivity, these cells could also be identified on the surface of the embryonic verumontanum, extending from the orifices of the Wolffian duct to a small stretch of the urogenital sinus. There they contrasted sharply against non-Wolffian cells. In the adult human genital tract, PGP 9.5 immunoreactive material was present in the supranuclear portion of some epithelial cells of the epididymal efferent ductules, in isolated cells of the ejaculatory ducts, and in prostate cancer specimens. In the ejaculatory ducts, the PGP 9.5-immunoreactive cells were free of immunoreactivity for semenogelin, the major secretory product of the ejaculatory-vesicular-ampullary complex, and they also lacked chromogranin A-immunoreactivity. In prostate cancer specimens, PGP 9.5 immunoreactivity was never observed in secretory cells (immunoreactive for prostate-specific antigen), but was restricted to neuroendocrine cells, where it occurred either alone or coexpressed with chromogranin A-immunoreactivity. CONCLUSIONS: PGP 9.5-immunoreactivity is prenatally distributed in the Wolffian duct and its derivations; postnatally, it is restricted to a few cells derived from the initial and terminal segment of the Wolffian duct, and to neuroendocrine cells in prostate cancer specimens.

Adult↗

Neuroendocrine differentiation in prostatic carcinoma.

BACKGROUND: Information is presented on prostatic neuroendocrine cells and neuroendocrine differentiation in prostatic carcinoma. The prognostic and therapeutic implications of neuroendocrine differentiation in prostatic carcinoma are reviewed. METHODS: Data are presented that support the intriguing link between neuroendocrine differentiation, tumor progression, and androgen-independent prostate cancer. The hormones, and the receptors, expressed by prostatic neuroendocrine cells are investigated in order to elucidate their significance for prognosis and therapy. RESULTS: The prognostic significance of neuroendocrine differentiation in prostatic malignancy has been controversial, but recent studies employing markers such as chromogranin A and neuron-specific enolase suggest that neuroendocrine differentiation, as reflected by increased tissue expression and/or blood levels of these neuroendocrine secretory products, correlates with poor prognosis, tumor progression, and androgen-independence. Since all malignant neuroendocrine cells are devoid of androgen receptors and since neuroendocrine phenotypic expression is not suppressed by androgen ablation, clonal propagation of androgen receptor-negative neuroendocrine cells may play an important role in the pathway towards the androgen-independent state of prostatic carcinoma. This would have significant implications for the treatment of prostate cancer, as several of the hormones known to be expressed by neuroendocrine-differentiated, malignant prostatic cells are potential candidates for drug therapy. A limited number of hormones have been tested in this context, in particular somatostatin, bombesin, and serotonin. CONCLUSIONS: Neuroendocrine differentiation in carcinoma of the prostate appears to be associated with poor prognosis, tumor progression, and the androgen-independent state, for which there is currently no successful therapy. Therefore, new therapeutic protocols and trials need to be developed to test drugs based on neuroendocrine hormones and/or their antagonists. An evaluation of this new therapeutic approach against prostatic carcinoma with neuroendocrine differentiation, including hormone-refractory cancer, is easily justified, since these tumors are unresponsive to current modes of therapy.

Adenocarcinoma↗

Neurogenic origin of human prostate endocrine cells.

OBJECTIVES: To determine the histogenetic origin of prostate neuroendocrine cells in human embryos. METHODS: Prostatic tissue in human fetuses, ranging in gestational age from early week 10 to term, and infantile and pubertal glands were studied immunohistochemically. The distribution of neuroendocrine cells within the developing gland was semiquantitatively determined. Antibodies against the neuroendocrine markers chromogranin A (CgA) and protein gene product 9.5 (PGP), along with markers of prostatic secretion (prostate-specific antigen [PSA], prostatic acid phosphatase [PAP]), were used. They were applied either individually or in double-labeling experiments, as well as in experiments combining CgA immunohistochemical analysis with in situ hybridization or in situ end-labeling. RESULTS: In embryos of less than 65-mm crown-rump length (CRL) (ie, younger than 12 weeks of gestation), the epithelium of the urogenital sinus was free of endocrine cells. On either side of the future prostatic mesenchyme, paraganglia containing CgA-immunoreactive cells are present, which start to penetrate the urogenital mesenchyme. In the late 10th week, these CgA-immunoreactive cells are found dispersed in the urogenital mesenchyme. In embryos of 65-mm CRL, when prostatic anlagen start to sprout from the urogenital epithelium, very few (but typically shaped) neuroendocrine cells appear in the urogenital sinus epithelium. Later, after the 12th week, when solid prostatic ducts have started forming, CgA-immunoreactive neuroendocrine cells are also present in these buds. The number of neuroendocrine cells in the urethral epithelium is considerably increased, and with the continuous sprouting and lumen formation of prostatic anlagen, neuroendocrine cells are transported into the future gland. Neuroendocrine cells observed in stroma of prenatal and postnatal prostates may also contribute to the neuroendocrine cell population of the gland. CONCLUSIONS: Our results provide the first evidence that human prostate neuroendocrine cells represent a cell lineage of their own, being of neurogenic origin and therefore distinct from the urogenital sinus-derived prostate secretory and basal cells.

Adolescent↗

Diagnostic value of percent free prostate-specific antigen: retrospective analysis of a population-based screening study with emphasis on men with PSA levels less than 3.0 ng/mL.

OBJECTIVES: To retrospectively investigate the use of percent free prostate-specific antigen (PSA) compared with total PSA in serum as predictor of prostate cancer in men selected randomly from the general population who underwent biopsy on the basis of abnormal findings on digital rectal examination (DRE) or transrectal ultrasound (TRUS) and/or serum PSA levels greater than 10 ng/mL. METHODS: A single intervention, population-based screening study was undertaken in 1988 and 1989. Of the 2400 men aged 55 to 70 years invited to participate, 1782 men responded and were examined with DRE, TRUS, and PSA testing (Tandem-Hybritech). In 1995, frozen serum samples from 1748 men were analyzed for percent free PSA (Prostatus, Wallac OY). Five-year follow-up data on new cancers in the screened population were obtained from the Swedish Cancer Registry (SCR). RESULTS: Of the 1748 men, 367 underwent TRUS-guided biopsies because of abnormal findings on either DRE or TRUS or serum PSA levels of greater than 10 ng/mL. This resulted in the diagnosis of 64 cases of prostate cancer (3.7%). PSA levels of 3.0 ng/mL or greater were found in 55 (86%) of 64 cancer cases and in 399 (24%) of the 1684 benign cases. Among the 1294 men with PSA less than 3.0 ng/mL, 9 prostate cancers were diagnosed (14% of all prostate cancers). All 9 patients with cancer and with PSA less than 3.0 ng/mL had a percent free PSA of 18% or less. In the group of 1109 patients with PSA less than 3.0 ng/mL and a percent free PSA greater than 18%, 159 biopsies were performed because of abnormal DRE or TRUS. However, no prostate cancer was diagnosed in this category of patients. Five years after the screening intervention, 7 more cases of prostate cancer were clinically diagnosed in the screened population according to the SCR. CONCLUSIONS: The combination of PSA levels less than 3.0 ng/mL and percent free PSA greater than 18% defines a large part of the population at a very low risk of cancer of the prostate both at the time of screening and during the following 5 years. Men in this group may be spared DRE, and longer screening intervals may be considered. However, the risk of having prostate cancer is not negligible in men with PSA less than 3.0 ng/mL and percent free PSA of 18% or less. The results of this study indicate that biopsy should be recommended to men fulfilling these criteria, although these results should be confirmed in larger prospective studies because of the limited number of patients with prostate cancer in the present series.

Aged↗

Tumor cell proliferation in prostate cancer after 3 months of neoadjuvant LHRH analogue treatment is a prognostic marker of recurrence after radical prostatectomy.

OBJECTIVES: To evaluate tumor cell proliferation in relation to histopathologic regressive changes and failure after radical prostatectomy after a 3-month course of neoadjuvant luteinizing hormone-releasing hormone (LHRH) analogue treatment. METHODS: We evaluated slides from 103 radical prostatectomy specimens of the 111 patients participating in a randomized trial of a 3-month course of neoadjuvant LHRH analogue treatment before radical retropubic prostatectomy (n = 50) versus surgery alone (n = 53). The histopathologic regressive changes in the specimens were scored by two pathologists. Sections were stained with the anti-Ki-67 monoclonal antibody MIB-1. The proliferation index (PI) was defined as the proportion of Ki-67-positive cells in a random cell count. The patients were followed up until treatment failure or for a mean of 39 months among those without failure. RESULTS: In the neoadjuvant group, increasing histopathologic regressive changes correlated with a decrease in capsular penetration, positive surgical margins, and tumor cell proliferation but did not correlate with Gleason score in biopsies. Treatment failure was not related to the histopathologic regressive changes. In the neoadjuvant treatment group, progression-free survival was longer in the subgroup of patients with tumors with a PI less than 1.2% compared with those with tumors with a PI greater than 1.2% (P = 0.02). Multivariate analysis of PI and histopathologic and clinical features showed the PI (P = 0.002) and the pretreatment serum prostate-specific antigen level (P = 0.003) to be significant prognostic markers of failure in the neoadjuvant group. CONCLUSIONS: Tumor cell proliferation after 3 months of neoadjuvant hormonal treatment is a prognostic marker of failure after radical prostatectomy without correlation to Gleason score or the histopathologic regressive changes resulting from hormonal treatment.

Cell Division↗

Intermittent androgen suppression. Too good to be true?

The progression of metastatic prostate cancers to an androgen-independent state removes the possibility of further androgen therapy. In response to this, new treatments that do not cause the loss of androgen sensitivity have been sought. Intermittent androgen suppression therapy, an adaptation of the previously used androgen ablation techniques, has shown great promise, comparing favourably with continuous androgen deprivation in pilot studies. It may, therefore, prove to be an excellent treatment, both individually and in combination, although further studies are required.

Androgen Antagonists↗

Factors of the plasminogen activator system in human testis, as demonstrated by in-situ hybridization and immunohistochemistry.

A growing body of evidence suggests that the plasminogen activator (PA) system is crucially involved in reproductive physiology in both sexes. Certain factors of the PA system have been found to be present in organs of the male reproductive tract in various species, and the presence of several of the factors was recently demonstrated in monkey testis. The present morphological study was therefore designed to investigate the occurrence and distribution of the tissue and urokinase plasminogen activators (t-PA and u-PA), the u-PA receptor (u-PAR) and the plasminogen activator inhibitors (PAI-1 and PAI-2) in normal human testis. Intraoperative specimens from seven patients undergoing orchidectomy or testicular biopsy were studied using in-situ hybridization (ISH) and immunohistochemistry (IHC). All five factors studied could be detected with both the ISH and IHC procedures. The ISH signals were localized to sites in the testicular tubules in a stage-specific manner. There was good correlation between results obtained with the two methods, though in IHC the tubules were stained more uniformly. The findings provide support for the involvement of the PA system in human male reproductive physiology.

Animals↗

Evaluation of DNA ploidy combined with a cytometric proliferation index of imprints from core needle biopsies in prostate cancer.

OBJECTIVE: To evaluate if DNA ploidy analysis with a proliferation index (PI) derived from DNA cytometry of imprints from core needle biopsies predicts disease progression in patients with prostate cancer. METHODS: Touch imprints were done on a consecutive series of core needle biopsies taken by the same urologist from 240 patients with suspected prostate cancer, 137 (46%) of whom were found to have prostate cancer and included in the study. Scattered cells to the right of the image cytometry (ICM) ploidy-establishing peak, the S-phase fraction, and those in the G2M area of the ICM DNA histograms, were counted in percent of the total number of tumor cells, this value being designated the ICM PI. Based on previous results in archival fine needle aspiration material, the following classification was used: DNA group I, diploid tumor with a low PI; DNA group II, diploid tumor with an intermediate PI and tetraploid tumor with a low or intermediate PI, and DNA group III, diploid or tetraploid tumor with high PI and all tumors with an aneuploid pattern. RESULTS: Correlation was found to exist between DNA groups I-III and Gleason score (GS) (p < 0.0001), T-stage (p = 0.006), M-stage (p = 0.009) and disease progression (p < 0.0001). Among the 39 patients who had curative treatment and GS 5-7, the progression-free survival rate was 100% in DNA group I, as compared with only 38% in DNA group II and 55% in DNA group III within the follow-up period (p = 0.008). CONCLUSION: DNA ploidy combined with a PI derived from image cytometry of imprints from core needle biopsies yields additional prognostic information in patients with GS 5-7. Diploid tumors with a low PI (DNA group I) are associated with a low risk of disease progression.

Aged↗

Neuroendocrine cells in tumour growth of the prostate.

The prognostic significance of neuroendocrine differentiation in prostatic malignancy is controversial, but the results of recent studies with markers such as chromogranin A and neurone-specific enolase suggest that neuroendocrine differentiation, as reflected by increased tissue expression or blood concentrations of these neuroendocrine secretory products, is associated with a poor prognosis, tumour progression, and androgen independence. As all malignant neuroendocrine cells are devoid of androgen receptors and the expression of neuroendocrine cells is not suppressed by androgen ablation, clonal propagation of androgen receptor-negative neuroendocrine cells may have an important role in the development of androgen-independent prostatic carcinoma. This has significant implications for the treatment of prostate cancer, because several of the hormones that are secreted by neuroendocrine differentiated, malignant prostatic cells are potential candidates for use in drug treatment. A limited number of hormones have been tested in this context, in particular somatostatin, bombesin, and serotonin. As there is currently no successful treatment for differentiated prostate cancer, new therapeutic procedures and trials need to be developed to test drugs based on neuroendocrine hormones or their antagonists.

Cell Differentiation↗