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Biomedical subjects

Enrico Spera

Publications and source records attributed to Enrico Spera.

4 recordsLinked to original sources

Hormonal supplementation and erectile dysfunction.

The role of testosterone on sexual desire is well established. However, the effects of low testosterone levels in the pathophysiology of erectile mechanism in humans remains unclear. Recent evidence indicate that approximately 10-20% of men with erectile dysfunction (ED) have hormonal abnormalities, raising up to 35% over the age of sixty. It is now clear that sexual desire and erectile function in humans are both responsive to androgens, probably at different threshold values. In fact, different degrees of testosterone deficiency may determine a sequence of molecular penile events leading to reduced capacity of penile smooth muscle and endothelial cells of relaxation, without greatly affecting sexual desire. Also, androgens may directly control the expression and activity of phosphodiesterase type-5 in human corpus cavernosum. In some selected men with total testosterone below 10-13nmol/l and/or free testosterone below 200-250pmol/l, androgen supplementation may improve therapeutic efficacy of phosphodiesterase type-5 inhibitors. For ageing men with partial androgen deficiency (PADAM) who fail first-line oral treatments in whom androgens are not contraindicated, a combination of testosterone and phosphodiesterase type-5 inhibitors may be considered to improve erectile function and improve the quality of life.

Androgens↗

Pharmacogenetics of human androgens and prostate cancer--an update.

Prostate cancer is the most common non-skin cancer in the US; it is the second leading cause of death from cancer among US men, and the seventh leading cause of death in the US. This review examines the recent biochemical and pharmacogenetic literature related to prostate cancer, specifically that which focused on constitutional ('germline') single nucleotide polymorphisms at 'functional candidate' genes for prostate cancer. The investigations summarized in this review demonstrate the need to study the molecular genetics at these loci to rationally develop personalized medicine. In addition, the identification of somatic pharmacogenetic alterations in one of these loci suggests that this may also be a fruitful field of investigations with important clinical applications. Pharmacogenomic investigations of constitutional and tumor DNA may lead to significant advances in chemoprevention, presymptomatic diagnosis and improved treatment of prostate cancer.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗

Leiomyoma of the epididymis and testicular adnexa: apropos of 3 cases.

The intrascrotal benign tumours are rare and are generally defined as arising between didymis and spermatic cord. Among the benign tumours of the epididymis and testicular adnexa, leiomyoma is second most common. Three cases of intrascrotal leiomyoma are reported: two originating from the epididymis and one from the epididymis and tunica vaginalis.

Adult↗

Association of the G289S single nucleotide polymorphism in the HSD17B3 gene with prostate cancer in Italian men.

BACKGROUND: Prostate cancer is a significant public health problem in this country. Substantial data support a plausible role for androgens in the etiology of this disease. The human HSD17B3 gene encodes the testicular (or type III) 17 beta-hydroxysteroid dehydrogenase enzyme, which catalyzes testosterone biosynthesis in men. METHODS: We have investigated the G289S (glycine at codon 289 replaced by serine) polymorphism at the HSD17B3 locus as a candidate single nucleotide polymorphism (SNP) for prostate cancer risk in constitutional DNA from 103 Italian prostate cancer patients and 109 Italian disease-free centenarians to assess the role of this SNP in susceptibility to prostate cancer. RESULTS: The G289S polymorphism confers a significant increase in risk for prostate cancer (odds ratio = 2.5; 95% confidence interval, 1.03-6.07) in our study population. CONCLUSION: Our data are consistent with a plausible role of the G289S SNP in prostate cancer susceptibility. Therefore, the HSD17B3 gene may be a plausible candidate gene for prostate cancer risk.

17-Hydroxysteroid Dehydrogenases↗