Human Papillomavirus (HPV) in semen represents a controversial topic. Recent evidence suggests a correlation with poor semen quality, but its detection is still unstandardized in this biological fluid. Thus, the aims of this study were to verify the ability of nested PCR to reveal HPV-DNA in semen; to evaluate association of seminal HPV with sperm parameters and risk factors for infection; to investigate the rate of HPV-DNA positivity in patients with and without risk factors; to assess HPV transcriptional activity. We enrolled sexually active men and collected clinical and anamnestic data during andrological and sexually transmitted infections (STIs) evaluation. For each patient, we performed semen analysis and nested PCR to detect HPV-DNA in semen. In positive semen samples, we proceeded with genotyping and RNA quantification to detect HPV transcriptional activity. We enrolled 185 men (36.0 ± 8.3 years), of which 85 with (Group A) and 100 without HPV risk factors (Group B). Nested PCR was able to reveal HPV-DNA in semen, discovering a prevalence of 8.6
The immune environment represents a new, but little explored, tool for understanding neuroendocrine neoplasms (NENs) behavior. An immunosuppressed microenvironment is hypothesized to promote NENs progression. A missing profiling of circulating leukocyte and peripheral blood mononuclear cells (PBMCs) subpopulations would open new perspectives in the still limited diagnostic-therapeutic management of NENs. A cross-sectional case-control pilot study was performed recruiting 30 consecutive subjects: 15 patients naïve to treatment, with histologically proven gastroenteropancreatic (GEP) neuroendocrine tumors (NETs) and 15 healthy controls, matched for age and sex. PBMCs subpopulations were studied by flow cytometry. Soluble Tie2 (sTie2), Angiopoietin-1 (Ang-1), Angiopoietin-2 (Ang-2) were evaluated by ELISA. Immune cell profiling revealed a significant lower CD3−CD56+ natural killer (NK) cell count in NETs vs controls (p = 0.04). NK subset analysis showed a reduced relative count of CD56+CD16+ NK cells (p =0.002) in NETs vs controls. Patients with NET showed a higher percentage of CD14+CD16++ non-classical monocytes (p = 0.01), and a lower percentage of CD14+CD16+ intermediate monocytes (p = 0.04). A decrease in percentage (p = 0.004) of CD4+ T-helper lymphocytes was found in NET patients. Evaluation of cellular and serum angiopoietin pathway mediators revealed in NET patients a higher relative count of Tie2-expressing monocytes (TEMs) (p < 0.001), and high levels of Ang-1 (p = 0.003) and Ang-2 (p = 0.002). Patients with GEP-NET presented an immunosuppressed environment characterized by a low count of cytotoxic NK cells, a high count of anti-inflammatory non-classical monocytes, and a low count of T-helper lymphocytes. Higher levels of TEMs and angiopoietins suggest a crosstalk between innate immunity and angiogenic pathways in NETs.
Human body is colonized by trillions of microbes, influenced by several factors, both endogenous, as hormones and circadian regulation, and exogenous as, life-style habits and nutrition. The alteration of such factors can lead to microbial dysbiosis, a phenomenon which, in turn, represents a risk factor in many different pathologies including cancer, diabetes, autoimmune and cardiovascular disease, and infertility. Female microbiota dysbiosis (vaginal, endometrial, placental) and male microbiota dysbiosis (seminal fluid) can influence the fertility, determining a detrimental impact on various conditions, as pre-term birth, neonatal illnesses, and macroscopic sperm parameters impairments. Furthermore, unprotected sexual intercourse creates a bacterial exchange between partners, and, in addition, each partner can influence the microbiota composition of partner’s reproductive tracts. This comprehensive overview of the effects of bacterial dysbiosis in both sexes and how partners might influence each other will allow for better personalization of infertility management.
Background: A severe SARS-CoV-2 related immunopathology may be the driver cause underlying the deleterious clinical manifestations observed in COVID-19 patients. To identify possible tissue-specific immune responses patterns, a compartmental immunophenotyping analysis of CD4+ and CD8+ T lymphocytes and IFN response has been performed in SARS-CoV-2 infected subjects with acute respiratory distress syndrome. Methods: Bronchoalveolar lavage (BAL) and Peripheral Blood Mononuclear Cells (PBMC) samples were collected from 13 SARS-CoV-2 infected subjects (9 males and 4 females) consecutively admitted to intensive care unit (ICU) of Policlinico Umberto I, Sapienza University Hospital in Rome (Italy). The frequencies of CD4+, CD8+ T lymphocytes and those expressing immune activation markers (CD38, HLADR), naive, central memory (CMEM), and effector memory (TEM) T cell subsets were evaluated in both anatomical sites by multiparametric flow cytometry. Gene expression levels of Interferon regulatory factor 7 (IRF7) and the Interferon Stimulated Gene 15 (ISG15) were evaluated in BAL and PBMC by Real-time PCR. Results: Critically SARS-CoV-2 infected patients exhibited a lung compartmentalization of CD8+ T cells (p=0.003), with a lower CD4/CD8 ratio in BAL compared to blood district (p<0.01). However, higher frequencies of CD8+ T cells were recorded in PBMC of female SARS-CoV-2 infected patients (p=0.04) and the same trend was observed in the lung compartment. By contrast, a trend of increasing CD4+ T cells frequencies was observed in BAL samples of male patients, as opposed to blood compartment. Additionally, an increased expression of immune activation markers CD38 and HLADR has been detected in BAL CD8+ T cells (p<0.01) as well as in blood CD4+ T cells (p=0.03). An increased frequency of CD4+ and CD8+ TEM cells has been documented in BAL of SARS-CoV-2 infected patients (p<0.05), as opposed to higher frequencies of CD4+ and CD8+ TCM cells recorded in the blood compartment (p<0.01). Notably, higher levels of ISG15 and IRF7 found in BAL were inversely associated to activated CD8+ T cell frequencies in the lung compartment compared to blood district (ISG15: r=-0.570, p<0.05) (IRF7: r=-0.683, p=0.01). Conclusion: Our findings provide new insight into a distinct T cells profile and IFN genes expression in the lung and in the blood compartment of SARS-CoV-2 infected patients, that might be highly relevant for the clinical course of COVID-19.
Adrenal and gonadal disorders are very often coupled, due to common etiology or pathophysiology. We present the development, validation and application of a liquid chromatography tandem mass spectrometry (LC-MS/MS) method for the simultaneous analysis of androgens (androstenedione (A4), testosterone (T), dihydrotestosterone (DHT), and dehydroepiandrosterone sulfate (DHEA-S)), estrogens (estrone (E1), estradiol (E2), estriol (E3)), glucocorticoids (cortisol (F), cortisone (E), corticosterone (B), 11-deoxycortisol (S), 21-deoxycortisol (21DF), 11-deoxycorticosterone (11DB)), and progestagens (progesterone (P4), 17-hydroxyprogesterone (17OHP4) and 17-hydroxypregnenolone (17OHP5)) in human serum for clinical use. Samples (250 L of matrix) spiked with isotopic labelled internal standards were extracted with tert-butylmethyl ether (TBME) prior to LC-MS/MS analysis. The chromatographic separation of the underivatized endogenous steroids was achieved on a reversed-phase column (C18 Zorbax Eclipse Plus) using a methanol-water gradient. The LC column was coupled to a triple quadrupole mass spectrometer equipped with an electrospray (ESI) source operating both in positive and in negative mode, with acquisition in multiple reaction mode. The method was validated using surrogated matrices and human serum samples. The proposed method was proven to be specific for all the considered steroids; and linearity was also assessed (R2 > 0.99) in the ranges of quantification investigated. The lower limits of quantification (LLOQs) were in the range of 10 - 400 pg/mL depending on the target steroid. Accuracy was in the range 80 - 120% for all the target compounds, the extraction recovery was higher than 65% for all the steroids considered and no remarkable matrix effect, expressed in terms of ion enhancement and ion suppression, was observed. To test the reliability of the developed and validated method, the analysis of serum samples collected from ten healthy subjects (5M/5F) was performed. In the clinical settings there is a growing need to develop accessible methods for full steroid hormone profiling. The dynamic link between steroidogenic glands and liver enzymatic processing (activation and clearance) attributes to the profile a much greater clinical meaning than a set of individually measured hormones. The presented method can be used to identify trajectories of deviation from the concentration normality ranges applied to disorders of the gonadal and adrenal axes.
Purpose The aim of this study was to study the incidence of Y chromosome microdeletions in a Caucasian population of Klinefelter syndrome (KS) patients and to investigate the possible association between Y chromosome microdeletions and KS. Materials and methods We conducted a retrospective study on 118 KS patients, 429 patients with non-obstructive azoospermia (NOA), and 155 normozoospermic men. Eight of the 118 KS patients had undergone testicular sperm extraction (TESE). All patients underwent semen examination and Y chromosome microdeletions evaluated by PCR, using specific sequence tagged site (STS) primer sets, which spanned the azoospermia factor AZFa, AZFb, and AZFc regions of the Y chromosome. Results Semen analysis of the KS group revealed: 1 patient with oligozoospermia, 1 with severe oligoasthenoteratozoospermia, 2 with cryptozoospermia, and 114 with azoospermia. Eight of the 114 azoospermic KS patients underwent TESE, and spermatozoa were recovered from three of these, all of whom had non-mosaic karyotype 47, XXY. 10.7% of the NOA patients presented AZF microdeletions. In 429 cases with NOA, 8 cases had AZFa + b + c deletion, 6 cases had AZF b + c deletion, 4 cases had AZFa microdeletion, 8 cases had AZFb microdeletion, and 20 cases had AZFc microdeletion. Just one KS patient (0.8%) presented microdeletion in the AZFc region. Conclusion The percentage of microdeletions in KS patients was lower than in NOA patients, suggesting that AZF microdeletions and KS do not have a causal relationship and that Y chromosome microdeletions are not a genetic factor linked to KS.
Benign prostatic hyperplasia (BPH) is an androgen-dependent disease; it originates exclusively in the inner prostate, which includes tissue surrounding the urethra. Stromal-epithelial interaction has a pivotal role in the regulation of the development and growth of the prostate, and locally produced peptide growth factors are considered important mediators of this interaction. Insulin-like growth factor I (IGF-I) and IGF-II, acting mainly through type 1 IGF receptor (IGFR1), have mitogenic and antiapoptotic effects on epithelial and stromal prostatic cells. In this study the expression of IGF-I, IGF-II, and IGFR1 messenger ribonucleic acid (mRNA), the immunoreactive content of IGF-I (irIGF-I) and IGF-II (irIGF-II) were determined in periurethral, intermediate, and subcapsular regions of BPH tissue to verify their possible regional variation; a correlation to the tissue levels of dihydrotestosterone (DHT) and 3 alpha -androstanediol (3 alpha Diol) was also determined to verify their possible androgen dependence.Prostates were removed by suprapubic prostatectomy from 14 BPH patients and sectioned in the periurethral, intermediate, and subcapsular regions. Gene expression of IGF-I, IGF-II, and IGFR1 was evaluated by semiquantitative RT-PCR. using beta -actin as a control. irIGF-I was measured by RIA, and irIGF-II was measured by IRMA after acidification and chromatography on Sep-Pak C-18 cartridges. DHT and 3 alpha Diol concentrations were evaluated by RIA after extraction and purification on Celite microcolumns.IGF-II and IGFR1, but not IGF-I, mRNA was higher in the periurethral than in the intermediate (P < 0.05) and subcapsular (P < 0.01) region. Also, prostatic levels of rIGF-II, expressed as picomoles per g tissue, were higher in the periurethral (20.84 +/- 1.84) than in the intermediate (14.81 +/- 2.11; P < 0.05) and subcapsular (10.88 +/- 1.21; P < 0.001) region. No significant differences were found in irIGF-I content. Considering prostatic androgen levels, DHT and 3 alpha Diol presented a regional variation, with the highest concentrations in the periurethral region. IGF-II mRNA and irIGF-II levels were positively correlated with both DHT and 3 alpha Diol content.These results demonstrate that in BPH tissue a greater IGF-II activity is present in the periurethral region, the site of origin ofBPH. Moreover, we can hypothesize that the tissue androgen content may modulate prostatic production of IGF-II, acting at the transcriptional and probably the posttranscriptional level. Therefore, even though further studies will need to confirm this hypothesis, DHT may increase IGF-II activity, mainly in the periurethral region, which, in turn, induces, through IGFR1, benign proliferation of both epithelial and stromal cells, characteristic of BPH.
Some analogues of gonadotropin-releasing hormone (GnRH) influence the in vitro proliferation of cultured human cells by complex interactions that are only partially understood. This study explored the effect of Triptorelin, a GnRH agonist, on the LNCaP and PC3 prostatic cell lines, which are, respectively, responsive and unresponsive to androgen stimulation. The toxicity and cell cycle modifications induced by the drug were investigated by FACScan analysis; the effect on cell proliferation in different culture conditions was determined by counting in a Burker chamber; and the expression of binding sites for 125I-Triptorelin was revealed by displacement experiments. PC3 cell growth was completely unaffected by Triptorelin. The drug caused a double stimulatory-inhibitory action on the growth of actively proliferating LNCaP cells, depending upon the dose and environment. A significant inhibitory effect on proliferation, ranging from 25% to 65% compared with controls, was observed at a high dose (10(-4) M) according to the culture conditions; and a proliferative effect (42% compared with controls) was observed at a lower dose (10(-7) M) only in fetal bovine serum-supplemented medium. Displacement experiments revealed the expression of moderately high affinity and low affinity binding sites in LNCaP cells (Kd = 2.6 x 10(-8) and 7.7 x 10(-6) M) but only low affinity binding sites in PC3 cells (Kd = 2.7 x 10(-6) M), which suggests that the expression of binding sites with different affinity could be associated with a biological response to the drug. Proliferation studies in the presence of Cetrorelix, a GnRH antagonist, confirmed the different sensitivity of the 2 cell lines to GnRH analogues and showed that the proliferative effect of Triptorelin on LNCaP cells can be inhibited by the antagonist. Data confirm the cell specificity of Triptorelin's action and the peculiarity of its effects on prostatic cell proliferation in our experimental conditions.
In prostatic tissue, androgen action may be mediated by growth factors such as insulin-like growth factor-I (IGF-I) and II (IGF-II), which are mitogenic for prostatic cells and modulate the stroma–epithelium interaction. IGF-binding proteins (IGFBPs) have an autocrine and/or paracrine role in regulating the local actions of the IGFs. In this study, testosterone, dihydrotestosterone (DHT), 3αandrostanediol (3αdiol), IGF-I, IGF-II, IGFBP2, and IGFBP3 concentrations were evaluated in human benign prostatic hyperplasia (BPH) tissue. Samples of prostate tissue were removed by suprapubic prostatectomy from twelve BPH patients. Androgen tissue levels were determined by radioimmunoassay after purification on celite microcolumns. IGF-I, IGFBP2, and IGFBP3 were measured by radioimmunoassay, and IGF-II by immunoradio metric assay, after acidification and chromatography on Sep-pak C18 Cartridges for IGF-I and IGF-II. Androgen concentrations, expressed in ng/g tissue (mean ± SE), were 0.51 ± 0.05 for testosterone, 5.3 ± 0.16 for DHT, and 1.1 ± 0.07 for 3αdiol. IGF-I, IGF-II, IGFBP2, and IGFBP3 levels were 24 ± 3.7, 121 ± 14 ng/g tissue and 0.44 ± 0.05 and 1.2 ± 0.17 μg/g tissue, respectively. No correlation between IGF-I, androgens, and IGFBPs was found. IGF-II was positively correlated with DHT (r = 0.78; p = 0.003) and 3αdiol (r = 0.66; p = 0.021) but not with IGFBPs. These data suggest that in BPH, DHT modulates the IGF system by increasing IGF-II without modifying IGFBPs. Therefore, the stroma–epithelium interaction, which plays an important role in prostatic growth, may be regulated by DHT through IGF-II.
Benign prostatic hyperplasia (BPH) is an androgen-dependent disease that initially develops in the inner prostate, where the highest concentrations of testosterone (T) and dihydrotestosterone (DHT) are found. In this study, we have evaluated the cytosolic androgen receptors (ARc), the nuclear androgen receptors (ARn), and the concentrations of T, DHT, and 3alpha-androstanediol (3alphaDiol) in BPH tissue to verify the existence of a possible correlation between androgens and their receptor concentrations. Prostatic samples, removed by suprapubic prostatectomy in 15 untreated patients, were sectioned in periurethral, intermediate, and subcapsular zones. Testosterone, DHT, and 3alphaDiol were evaluated by radioimmunoassay after extraction and purification on celite microcolumns, and ARc and ARn were evaluated by means of dextran-coated charcoal method. In total tissue, mean levels of DHT, T, and 3alphaDiol were 2,531+/-308, 260+/-36, and 403+/-35 pg/mg of DNA (mean+/-SE), respectively. Cytosolic androgen receptors, detectable in all cases, were 16+/-2.8 fmol/mg of protein (mean+/-SE), and ARn, detectable in 12 cases, were 108+/-15 fmol/mg of DNA (mean+/-SE). A linear correlation between DHT and 3alphaDiol, T and DHT, and 3alphaDiol and ARn was found. If the different regions are considered, the periurethral zone, site of the primitive BPH nodule, presents the highest levels of androgens and ARn with respect to the other regions. This relative hyperandrogenism may be responsible for the growth-promoting processes of this area, leading to urinary obstruction.
The number of epidermal growth factor (EGF) binding sites was determined by competitive binding assays in a series of 46 pituitary macroadenomas. A single concentration of 125I-EGF (1 nM) was used for all experiments. In four cases, a displacement curve was obtained by adding increasing concentrations of cold EGF, and Scatchard analysis showed the presence of two classes of EGF binding sites, with Kd1 = 0.62 +/- 0.23 nM and Kd2 = 53.8 +/- 8.2 nM for the high- and low-affinity binding sites respectively. The distribution of EGF binding sites was studied in 42 cases by a single-point assay, in the presence and in the absence of a 100-fold cold EGF excess. A non-parametric distribution of EGF binding sites was observed (median 10.2 fmol/mg membrane protein, range 0.0-332.0). EGF-receptor positivity, defined as EGF binding > or = 10.0 fmol/mg protein, was observed in 23 samples (54.8%), especially in prolactinomas (76.5%, P < 0.05 vs other tumors taken together) and in gonadotrope adenomas (62.5%). EGF binding was higher in invasive than in non-invasive adenomas (median: 12.8 vs 0.0 fmol/mg membrane protein, P = 0.047), and especially in adenomas invading the sphenoid sinus (median 26.7 fmol/mg membrane protein, P = 0.008 vs other adenomas). EGF binding also tended to increase with the grade of supra/extrasellar extension according to Wilson (P = 0.15). Sex steroid receptors (SSRs) were simultaneously determined in both cytosolic and nuclear fractions of 31 pituitary adenomas. Estrogen and progesterone receptors were determined by an enzyme-linked immunoassay and androgen receptors by a competitive binding assay with [3H]methyltrienolone. No correlation could be found between EGF binding and either the gender and gonadal status of the patients, or the expression of SSRs by the adenomas. We conclude that the EGF family of growth factors may play a role in the evolution of a significant subset of human pituitary adenomas, especially in their invasiveness, and that a high EGF binding capacity may represent an additional marker of aggressiveness for these tumors. Sex steroids do not appear to have a significant role in the regulation of EGF binding in vivo in these tumors.
Hirsutism in adolescent girls commonly starts as an esthetic problem in young women and is later complicated by the development of infertility and polycystic ovary syndrome, which are frequent consequences of prolonged hyperandrogenism. To ascertain whether particular prepubertal clinical manifestations may predict the development of adolescent hirsutism, we followed 70 girls with precocious pubarche (PP) with or without prepubertal hypertrichosis (PH) until 3 years (mean age 14.8 +/- 0.9 years) after menarche. Similar follow-up was carried out in six girls with PP secondary to 21 hydroxylase deficiency (NC-CAH), treated with hydrocortisone. In addition, a retrospective study on the incidence of precocious pubarche was performed in 139 hirsute teenagers (mean age 17 +/- 1.8 years). Testosterone, androstenedione, dehydroepiandrosterone sulphate, 17 alpha-hydroxyprogesterone (basal and after ACTH), luteinizing hormone and follicle-stimulating hormone were evaluated by radioimmunoassay or immunoradio metric assay in the early follicular phase, in cycling subjects. Pelvic ultrasonography was also performed. In the 139 hirsute teenagers, 29 had a history of PP (21% vs. 0.6% in the general Italian population). Of these 139 patients, NC-CAH was diagnosed in 8 (6%), 5 of whom (63%) had PP. Of the 70 girls with PP, hirsutism was present in 44 (63%). PH was present in 37 of 44 patients (84%) with hirsutism, but only in 9 of 26 (35%) without hirsutism. Our results showed that 1) PP represents a risk factor for the development of postpubertal hirsutism; 2) the association with PH seems to increase the risk probability; and 3) patients with hirsutism due to NC-CAH have a higher incidence of PP compared with other hirsute patients, but glucocorticoid treatment in such patients prevents the development of hirsutism. Whether early treatment in the other PP patients may prevent the development of hirsutism remains to be established.
The aim of the present investigation is to verify whether treatment with Finasteride or Flutamide influences the regional distribution of testosterone (T), dihydrotestosterone (DHT), and epidermal growth factor (EGF) in benign prostatic hyperplasia (BPH) tissue. Thirty seven BPH patients were studied: 15 untreated, 9 treated with Flutamide (750 mg/day for 2 months), and 13 treated with Finasteride (5 mg/day for 3 months). Testosterone and DHT were evaluated by radioimmunoassay (RIA) after purification of the extracts on celite columns, and EGF was evaluated by RIA after purification on Sep-pak C18 cartridges in total tissue and in periurethral, subcapsular, and intermediate zone. In the untreated group, T, DHT, and EGF of the periurethral region are higher than those of the subcapsular zone (P < 0.01 for T and P < 0.001 for DHT and EGF). In the Flutamide group, DHT is not modified, T is increased (P = 0.045), and EGF is decreased in total tissue (P < 0.02) and in the periurethral zone (P < 0.01). In the Finasteride group, T is increased (P < 0.001), and DHT and EGF are decreased (P < 0.001), particularly in the periurethral zone. A positive linear correlation between DHT and EGF is observed in the Finasteride and in the untreated groups. In conclusion, in BPH the production of EGF is a DHT-dependent receptor-mediated function. The reduction of this growth factor during both treatments, associated with a fall of DHT in only the Finasteride group, is particularly evident in the periurethral zone. Since Finasteride reduces prostatic volume, mainly of the periurethral zone, we can speculate that DHT is responsible, either directly or indirectly through growth factors such as EGF for the enlargement of this region and thus responsible for urinary obstruction.
Androgen resistance in genetic males occurs when gonadotropins and testosterone are normal, but the physiological androgen response in androgen target organs is absent or decreased. In androgen-dependent target tissues two main defects may be found: 1) defective testosterone metabolism (5α-reductase type 2 deficiency) and 2) anomalies in androgen receptors (androgen insensitivity syndrome (AIS)). The clinical manifestations of these defects vary from subjects with female external genitalia to subjects with mild forms of impaired masculinization. In particular, in the complete form of AIS (CAIS) the phenotype is feminine, and in the partial form (PAIS) the external genitalia are ambiguous with an extremely variable phenotype. The diagnosis requires clinical, hormonal, genetic, and molecular investigation for appropriate gender assignation and treatment. In AIS, cloning of androgen receptor cDNA using the polymerase chain reaction, denaturing gradient gel electrophoresis, and nucleotide sequencing have enabled a variety of molecular defects in the androgen receptor to be identified. The complexity of phenotypic presentation of AIS probably reflects the heterogeneity of androgen receptor gene mutations, but to date a relationship between genotype/phenotype has been difficult to establish, with the same point mutation reported to be associated with different phenotypic expressions. Other factors must therefore also contribute to the clinical presentation of AIS, although none have yet been identified. Establishing the functional consequences of androgen receptor mutations in in vitro systems and correlating them with clinical presentation may ultimately provide an explanation for the variable clinical presentation of AIS and perhaps enable prediction of the response to androgen therapy in infants with PAIS.
The aim of the present investigation is to verify in BPH patients the effect of the treatment with Finasteride, Flutamide or Serenoa repens (Permixon(R)*) on the intraprostatic concentrations of Testosterone (T), Dihydrotestosterone (DHT) and Epidermal Growth Factor (EGF). 31 BPH patients were studied: 9 untreated, 9 treated with Finasteride, 9 with Flutamide and 4 with Permixon(R). Prostatic specimens were sectioned in periurethral, subcapsular and intermediate zone. T, DHT and EGF were determined by RIA after purification of the extract. In the untreated group a regional distribution of T, DHT and EGF with the highest levels in the periurethral and the lowest in the subcapsular area are observed, as found by others for bFGF. After the androgen receptor blocking agent, Flutamide, prostatic T and DHT remain unchanged whilst EGF falls to very low levels. Following therapy with the 5 alpha reductase inhibitor Finasteride, DHT and EGF decrease significantly: similar results are obtained with Permixon(R), acting on the 5 alpha-reductase and on steroid receptors. The particular regional distribution of the three analytes found in the untreated group is lost under these medical treatments. Flutamide, Finasteride and Permixon(R), decreasing the local androgen support and the production of growth factors mainly in the periurethral zone, reduce the obstructive symptoms: these findings further support the assumption that DHT and EGF are involved in the development of clinical BPH.
Both androgen and antiandrogen treatments enhance the proliferation rate of the hormone‐dependent prostate cancer cell line LNCaP, expressing a mutated androgen receptor (AR). We studied the modification of the expression of epidermal growth factor (EGF), of its receptor (EGF‐R), and of androgen receptor (AR) in the LNCaP cell line, under basal conditions and during androgen (R1881) and antiandrogen hydroxy‐flutamide (OH‐FLU) treatment. After prolonged R1881 administration, a marked increase of EGF release was observed, completely blocked by the addition of OH‐FLU. The Scatchard plot analysis of EGF‐R binding revealed two classes of binding sites with high and low affinity. The administration of OH‐FLU alone or combined with R1881 did not modify the affinity constants, while the low‐affinity component disappeared after androgen administration. Both androgen and antiandrogen administration led to a significant increase of the EGF‐R high‐affinity component. AR mRNA and protein levels were downregulated by R1881 treatment. Following OH‐FLU administration, AR mRNA was slightly downregulated, and there was not a strict parallelism between AR mRNA levels and AR binding capacity. When combined with R1881, OH‐FLU partially counteracted the androgen‐induced AR downregulation. Our data show that EGF‐R binding capacity is the only parameter constantly raised in cell proliferation with respect to quiescent cells, and highlights the nonunivocal action of OH‐FLU on androgen‐induced effects.
Androgens provide the primary signal for the onset of DNA synthesis and cell division in normal prostate and benign prostatic hyperplasia (BPH). It is possible, however, that androgen mitogenic activity is in part indirect and mediated by peptide growth factors. In LNCaP cell lines, R1881 added to DCC-FCS medium increases DNA, epidermal growth factor (EGF) and EGF receptor (EGFR) levels: the antiandrogen hydroxy-flutamide prevents the increase of the growth factor and increases its receptor. In BPH tissue removed by transvesical prostatectomy, DHT, testosterone, 3 alpha-androstanediol and nuclear androgen receptors (AR) show a positive linear correlation with EGF: treatment with flutamide decreases significantly the EGF production. Androgens, therefore, represent important modulatory factors of prostatic EGF release. Moreover, androgens and EGF downregulate EGFR, which is probably internalized into the cell and degraded by lisosomes: in fact, a negative linear correlation between EGF, nuclear AR and the high- and low-affinity binding of EGFR is observed. These findings support the hypothesis that the growth-promoting effects of androgens in the prostate are in part mediated by peptide growth factors. The inhibitory effect of antiandrogens on prostatic cell proliferation may be the result of the decreased androgenic support and decreased EGF release and expression.
Oestrogen receptor (ER) and epidermal growth factor receptor (EGFR) gene methylation was evaluated in neoplastic and perineoplastic breast tissues from 20 patients. In both tissues, ER gene methylation was inversely correlated with protein levels, while EGFR gene methylation was not. A preferential ER gene hypomethylation was found in neoplastic tissues, suggesting a significant role in neoplastic transformation.
In benign prostatic hyperplasia (BPH), basic fibroblast growth factor (bFGF) is found to have a regional distribution, with concentrations in the periurethral zone (where the primitive fibrostromal nodule originates) higher than those of the peripheral subcapsular zone. The aim of the present investigation was to verify whether androgens and epidermal growth factor (EGF) are uniformly distributed from the periurethral to the peripheral zone or whether they show regional differences. Tissue samples, removed by transvesical resection from nine untreated BPH patients, sectioned in periurethral, subcapsular, and intermediate zones, were examined. In the periurethral zone, dihydrotestosterone (DHT), testosterone, and EGF, determined by radioimmunoassay (RIA) techniques after purification on Celite microcolumns and Sep-pak C18 cartridge, showed values significantly higher (mean+/-SD: 1121+/-482 pg, 250+/-129 pg, and 6.89+/-3.28 ng/mg DNA, respectively; P < 0.01) than those of the subcapsular zone (489+/-190 pg, 114+/-70 pg, and 3.40+/-1.90 ng/mg DNA, respectively). A positive linear correlation between EGF, testosterone, and DHT was also observed. The regional distribution of EGF, testosterone, and DHT was similar to that found for bFGF: the highest levels of these factors in the periurethral region allow us to hypothesize on their possible involvement in the rewakening of mesenchymal tissue, leading to the formation of the primitive fibrostromal nodule and then to BPH development.