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2.
Hum Reprod ; 34(6): 978-988, 2019 06 04.
Article in English | MEDLINE | ID: mdl-31125047

ABSTRACT

STUDY QUESTION: What is the diagnostic potential of next generation sequencing (NGS) based on a 'mouse azoospermia' gene panel in human non-obstructive azoospermia (NOA)? SUMMARY ANSWER: The diagnostic performance of sequencing a gene panel based on genes associated with mouse azoospermia was relatively successful in idiopathic NOA patients and allowed the discovery of two novel genes involved in NOA due to meiotic arrest. WHAT IS KNOWN ALREADY: NOA is a largely heterogeneous clinical entity, which includes different histological pictures. In a large proportion of NOA, the aetiology remains unknown (idiopathic NOA) and yet, unknown genetic factors are likely to play be involved. The mouse is the most broadly used mammalian model for studying human disease because of its usefulness for genetic manipulation and its genetic and physiological similarities to man. Mouse azoospermia models are available in the Mouse Genome Informatics database (MGI: http://www.informatics.jax.org/). STUDY DESIGN, SIZE, DURATION: The first step was to design of a 'mouse azoospermia' gene panel through the consultation of MGI. The second step was NGS analysis of 175 genes in a group of highly selected NOA patients (n = 33). The third step was characterization of the discovered gene defects in human testis tissue, through meiotic studies using surplus testicular biopsy material from the carriers of the RNF212 and STAG3 pathogenic variants. The final step was RNF212 and STAG3 expression analysis in a collection of testis biopsies. PARTICIPANTS/MATERIALS, SETTING, METHODS: From a total of 1300 infertile patients, 33 idiopathic NOA patients were analysed in this study, including 31 unrelated men and 2 brothers from a consanguineous family. The testis histology of the 31 unrelated NOA patients was as follows: 20 Sertoli cell-only syndrome (SCOS), 11 spermatogenic arrest (6 spermatogonial arrest and 5 spermatocytic arrest). The two brothers were affected by spermatocytic arrest. DNA extracted from blood was used for NGS on Illumina NextSeq500 platform. Generated sequence data was filtered for rare and potentially pathogenic variants. Functional studies in surplus testicular tissue from the carriers included the investigation of meiotic entry, XY body formation and metaphases by performing fluorescent immunohistochemical staining and immunocytochemistry. mRNA expression analysis through RT-qPCR of RNF212 and STAG3 was carried out in a collection of testis biopsies with different histology. MAIN RESULTS AND THE ROLE OF CHANCE: Our approach was relatively successful, leading to the genetic diagnosis of one sporadic NOA patient and two NOA brothers. This relatively high diagnostic performance is likely to be related to the stringent patient selection criteria i.e. all known causes of azoospermia were excluded and to the relatively high number of patients with rare testis histology (spermatocytic arrest). All three mutation carriers presented meiotic arrest, leading to the genetic diagnosis of three out of seven cases with this specific testicular phenotype. For the first time, we report biallelic variants in STAG3, in one sporadic patient, and a homozygous RNF212 variant, in the two brothers, as the genetic cause of NOA. Meiotic studies allowed the detection of the functional consequences of the mutations and provided information on the role of STAG3 and RNF212 in human male meiosis. LIMITATIONS, REASONS FOR CAUTION: All genes, with the exception of 5 out of 175, included in the panel cause azoospermia in mice only in the homozygous or hemizygous state. Consequently, apart from the five known dominant genes, heterozygous variants (except compound heterozygosity) in the remaining genes were not taken into consideration as causes of NOA. We identified the genetic cause in approximately half of the patients with spermatocytic arrest. The low number of analysed patients can be considered as a limitation, but it is a very rare testis phenotype. Due to the low frequency of this specific phenotype among infertile men, our finding may be considered of low clinical impact. However, at an individual level, it does have relevance for prognostic purposes prior testicular sperm extraction. WIDER IMPLICATIONS OF THE FINDINGS: Our study represents an additional step towards elucidating the genetic bases of early spermatogenic failure, since we discovered two new genes involved in human male meiotic arrest. We propose the inclusion of RNF212 and STAG3 in a future male infertility diagnostic gene panel. Based on the associated testis phenotype, the identification of pathogenic mutations in these genes also confers a negative predictive value for testicular sperm retrieval. Our meiotic studies provide novel insights into the role of these proteins in human male meiosis. Mutations in STAG3 were first described as a cause of female infertility and ovarian cancer, and Rnf212 knock out in mice leads to male and female infertility. Hence, our results stimulate further research on shared genetic factors causing infertility in both sexes and indicate that genetic counselling should involve not only male but also female relatives of NOA patients. STUDY FUNDING/COMPETING INTEREST(S): This work was funded by the Spanish Ministry of Health Instituto Carlos III-FIS (grant number: FIS/FEDER-PI14/01250; PI17/01822) awarded to CK and AR-E, and by the European Commission, Reproductive Biology Early Research Training (REPROTRAIN, EU-FP7-PEOPLE-2011-ITN289880), awarded to CK, WB, and AE-M. The authors have no conflict of interest.


Subject(s)
Azoospermia/congenital , Cell Cycle Proteins/genetics , Genetic Testing/methods , Ligases/genetics , Meiosis/genetics , Alleles , Animals , Azoospermia/diagnosis , Azoospermia/genetics , Azoospermia/pathology , DNA Mutational Analysis/methods , Databases, Genetic , Datasets as Topic , Disease Models, Animal , Feasibility Studies , High-Throughput Nucleotide Sequencing , Homozygote , Humans , Male , Mice , Mutation , Testis/cytology , Testis/pathology
3.
G Ital Dermatol Venereol ; 150(4): 363-7, 2015 Aug.
Article in English | MEDLINE | ID: mdl-26224230

ABSTRACT

AIM: The present work was carried out to study the prevalence of Tinea capitis (TC) in Campania over a 9-year period and also to delineate the prevalence of the causative fungus responsible and the clinical forms of tinea capitis. METHODS: This retrospective study included all the cases of TC occurring between January 2004 and December 2012 to the Mycology Laboratory at the University of Naples "Federico II" and mycologically confirmed. Samples for potassium hydroxide 20% mounts and fungal cultures were collected. Sabouraud dextrose agar were inoculated with the samples. RESULTS: TC was diagnosed by direct microscopy and culture in 143 patients. TC was found to be most common in the group including patients aged between 1-18 years; 13% of patients were over 18 years old. Non-inflammatory clinical forms were the most common type (80.4%). M. canis was the dermatophyte most frequently isolated (64.1%). Microscopic examination revealed an ectothrix pattern of hair invasion to be more common (72% cases). CONCLUSION: TC was clinical and mycologically diagnosed in 143 patients. It was prevalent in patients aged 1-18 years old; 73.2% of adults affected by TC had possible risk factors and in these patients TC often presented in atypical forms; atypical forms were also observed in children. M. canis was the most common dermatophyte species isolated in children, T. rubrum in adults. We noticed a significant increase of anthropophilic dermatophytes possibly linked to the immigration from African countries. For the diagnosis of TC, mycological examinations are essential.


Subject(s)
Hair/microbiology , Microsporum/isolation & purification , Tinea Capitis/epidemiology , Trichophyton/isolation & purification , Adolescent , Adult , Age Distribution , Aged , Aged, 80 and over , Child , Child, Preschool , Female , Humans , Infant , Italy/epidemiology , Male , Middle Aged , Prevalence , Retrospective Studies , Risk Factors , Tinea Capitis/diagnosis , Tinea Capitis/microbiology , Young Adult
4.
Andrology ; 3(2): 203-12, 2015 Mar.
Article in English | MEDLINE | ID: mdl-25755131

ABSTRACT

The aim of this study was to provide a comprehensive genetic/phenotypic characterization of subjects suffering infertility owing to sperm macrocephaly (n = 3) or globozoospermia (n = 9) and to investigate whether the patients' genetic status was correlated with the alteration of various sperm parameters. AURKC was sequenced in case of sperm macrocephaly while the DPY19L2 status has been analyzed by multiple approaches including a novel qPCR-based copy number assay in case of globozoospermia. Globozoospermic patients were also analyzed for SPACA1, a novel candidate gene herein tested for the first time in humans. The effect of the patients' genetic status was interrogated by implementing the molecular screening with the characterization of several sperm parameters: (i) routine sperm analysis, integrated with transmission electron microscopy; (ii) sperm fluorescent in situ hybridization (FISH) analysis; (iii) sperm DNA fragmentation (DF) analysis. Moreover, for the first time, we performed microsatellite instability analysis as a marker of genome instability in men with sperm macrocephaly and globozoospermia. Finally, artificial reproductive technology (ART) history has been reported for those patients who underwent the treatment. Macrocephalic patients had an AURKC mutation and >89% tetraploid, highly fragmented spermatozoa. DPY19L2 was mutated in all patients with >80% globozoospermia: the two homozygous deleted men and the compound heterozygous showed the severest phenotype (90-100%). The newly developed qPCR method was fully validated and has the potential of detecting also yet undiscovered deletions. DPY19L2 status is unlikely related to FISH anomalies and DF, although globozoospermic men showed a higher disomy rate and DF compared with internal reference values. No patient was mutated for SPACA1. Our data support the general agreement on the negative correlation between macro/globozoospermia and conventional intracytoplasmic sperm injection outcomes. Microsatellites were stable in all patients analyzed. The comprehensive picture provided on these severe phenotypes causing infertility is of relevance in the management of patients undergoing ART.


Subject(s)
Infertility, Male/complications , Spermatozoa/abnormalities , Humans , In Situ Hybridization, Fluorescence , Male , Microscopy, Electron, Transmission , Spermatozoa/ultrastructure
6.
J Med Genet ; 51(5): 340-4, 2014 May.
Article in English | MEDLINE | ID: mdl-24421283

ABSTRACT

BACKGROUND: The role of X-linked genes and copy-number variations (CNVs) in male infertility remains poorly explored. Our previous array-CGH analyses showed three recurrent deletions in Xq exclusively (CNV67) and prevalently (CNV64, CNV69) found in patients. Molecular and clinical characterisation of these CNVs was performed in this study. METHODS: 627 idiopathic infertile patients and 628 controls were tested for each deletion with PCR+/-. We used PCR+/- to map deletion junctions and long-range PCR and direct sequencing to define breakpoints. RESULTS: CNV64 was found in 5.7% of patients and in 3.1% of controls (p=0.013; OR=1.89; 95% CI 1.1 to 3.3) and CNV69 was found in 3.5% of patients and 1.6% of controls (p=0.023; OR=2.204; 95% CI 1.05 to 4.62). For CNV69 we identified two breakpoints, types A and B, with the latter being significantly more frequent in patients than controls (p=0.011; OR=9.19; 95% CI 1.16 to 72.8). CNV67 was detected exclusively in patients (1.1%) and was maternally transmitted. The semen phenotype of one carrier (11-041) versus his normozoospermic non-carrier brother strongly indicates a pathogenic effect of the deletion on spermatogenesis. MAGEA9, an ampliconic gene reported as independently acquired on the human X chromosome with exclusive physiological expression in the testis, is likely to be involved in CNV67. CONCLUSIONS: We provide the first evidence for X chromosome-linked recurrent deletions associated with spermatogenic impairment. CNV67, specific to spermatogenic anomaly and with a frequency of 1.1% in oligo/azoospermic men, resembles the AZF regions on the Y chromosome with potential clinical implications.


Subject(s)
Chromosomes, Human, X , Infertility, Male/genetics , Sequence Deletion , Azoospermia/genetics , Case-Control Studies , Gene Dosage , Genes, X-Linked , Genetic Association Studies , Humans , Male , Pedigree , Spermatogenesis/genetics
7.
Hum Reprod ; 28(11): 3155-60, 2013 Nov.
Article in English | MEDLINE | ID: mdl-24008148

ABSTRACT

STUDY QUESTION: Are Y-chromosome microdeletions associated with SHOX haploinsufficiency, thus representing a risk of skeletal anomalies for the carriers and their male descendents? SUMMARY ANSWER: The present study shows that SHOX haploinsufficiency is unlikely to be associated with Y-chromosome microdeletions. WHAT IS KNOWN ALREADY: Y-chromosome microdeletions are not commonly known as a major molecular genetic cause of any pathological condition except spermatogenic failure. However, it has been recently proposed that they are associated not only with infertility but also with anomalies in the pseudoautosomal regions (PAR), among which SHOX haploinsufficiency stands out with a frequency of 5.4% in microdeletion carriers bearing a normal karyotype. This finding implies that sons fathered by men with Y-chromosome defects will not only exhibit fertility problems, but might also suffer from SHOX-related conditions. STUDY DESIGN: Five European laboratories (Florence, Münster, Barcelona, Padova and Ancona), routinely performing Y-chromosome microdeletion screening, were enrolled in a multicenter study. PARTICIPANTS/MATERIALS, SETTING, METHODS: PAR-linked and SHOX copy number variations (CNVs) were analyzed in 224 patients carrying Y-chromosome microdeletions and 112 controls with an intact Y chromosome, using customized X-chromosome-specific array-CGH platforms and/or qPCR assays for SHOX and SRY genes. MAIN RESULTS AND THE ROLE OF CHANCE: Our data show that 220 out of 224 (98.2%) microdeletion carriers had a normal SHOX copy number, as did all the controls. No SHOX deletions were found in any of the examined subjects (patients as well as controls), thus excluding an association with SHOX haploinsufficiency. SHOX duplications were detected in 1.78% of patients (n = 4), of whom two had an abnormal and two a normal karyotype. This might suggest that Y-chromosome microdeletions have a higher incidence for SHOX duplications, irrespective of the patient's karyotype. However, the only clinical condition observed in our four SHOX-duplicated patients was infertility. LIMITATIONS, REASONS FOR CAUTION: The number of controls analyzed is rather low to assess whether the SHOX duplications found in the two men with Y-chromosome microdeletions and a normal karyotype represent a neutral polymorphism or are actually associated with the presence of the microdeletion. WIDER IMPLICATIONS OF THE FINDINGS: Men suffering from infertility due to the presence of Y-chromosome microdeletions can resort to artificial reproductive technology (ART) to father their biological children. However, infertile couples must be aware of the risks implied and this makes genetic counseling a crucial step in the patient's management. This study does not confirm previous alarming data that showed an association between Y-chromosome microdeletions and SHOX haploinsufficiency. Our results imply that deletion carriers have no augmented risk of SHOX-related pathologies (short stature and skeletal anomalies) and indicate that there is no need for radical changes in genetic counseling of Yq microdeletion carriers attempting ART, since the only risk established so far for their male offspring remains impaired spermatogenesis. STUDY FUNDING/COMPETING INTEREST(S): This work was supported by the Italian Ministry of University (grant PRIN 2010-2012 to C.K.), Tuscan Regional Health Research Program ('Progetto Salute 2009') to G.F., the Spanish Ministry of Health (grant FIS-11/02254) and the European Union 'Reprotrain' Marie Curie Network (project number: 289880 to C.K.). The authors declare that no conflicting interests exist.


Subject(s)
Chromosomes, Human, Y , Haploinsufficiency/genetics , Homeodomain Proteins/genetics , Comparative Genomic Hybridization , Gene Duplication , Humans , Infertility, Male/genetics , Karyotype , Male , Phenotype , Sequence Deletion , Short Stature Homeobox Protein
8.
G Ital Dermatol Venereol ; 148(6): 639-48, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24442044

ABSTRACT

Photodynamic therapy (PDT) is a constantly evolving treatment modality consisted of a chemical reaction activated by light energy that is used to selectively destroy tissue; it may be considered a particular form of photochemotherapy that uses a photosensitizer, light and oxygen. The combination of the possibility of ablation of lesion with an excellence aesthetic result has allowed the photodynamic therapy an increasing role in the treatment of skin disease, that ranges from skin cancer to cosmetic treatment. Particular attention is paid in the last years to a developing area of research, the antifungal photodynamic therapy. The growing resistance against antifungal drugs has renewed the search for alternative therapies and PDT seems to be a potential candidate. This article provides an extensive review of antifungal photodynamic therapy, its mechanisms and applications in the treatment of superficial mycoses.


Subject(s)
Dermatomycoses/drug therapy , Photochemotherapy , Photosensitizing Agents/therapeutic use , Skin Neoplasms/drug therapy , Evidence-Based Medicine , Humans , Photochemotherapy/methods , Quality of Life , Treatment Outcome
9.
J Endocrinol Invest ; 34(5): 376-82, 2011 May.
Article in English | MEDLINE | ID: mdl-21422806

ABSTRACT

Since the first definition of the AZoospermia Factor (AZF) regions, the Y chromosome has become an important target for studies aimed to identify genetic factors involved in male infertility. This chromosome is enriched with genes expressed exclusively or prevalently in the testis and their absence or reduction of their dosage is associated with spermatogenic impairment. Due to its peculiar structure, full of repeated homologous sequences, the Y chromosome is predisposed to structural rearrangements, especially deletions/ duplications. This review discusses what is currently known about clinically relevant Y chromosome structural variations in male fertility, mainly focusing on copy number variations (CNVs). These CNVs include classical AZF deletions, gr/gr deletion and TSPY1 CNV. AZF deletions are in a clear-cut causeeffect relationship with spermatogenic failure and they also have a prognostic value for testis biopsy. gr/gr deletion represents the unique example in andrology of a proven genetic risk factor, providing an eight-fold increased risk for oligozoospermia in the Italian population. Studies on TSPY1 CNV have opened new perspectives on the role of this gene in spermatogenic efficiency. Although studies on the Y chromosome have importantly contributed to the identification of new genetic causes and thus to the improvement of the diagnostic work-up for severe male factor infertility, there is still about 50% of infertile men in whom the etiology remains unknown. While searching for new genetic factors on other chromosomes, our work on the Y chromosome still needs to be completed, with special focus on the biological function of the Y genes.


Subject(s)
Chromosomes, Human, Y/genetics , DNA Copy Number Variations , Infertility, Male/genetics , Cell Cycle Proteins/genetics , Gene Deletion , Genetic Loci , Genetic Testing , Humans , Infertility, Male/diagnosis , Male , Oligospermia/genetics , Seminal Plasma Proteins/genetics
10.
G Ital Med Lav Ergon ; 26(1): 12-8, 2004.
Article in Italian | MEDLINE | ID: mdl-15134394

ABSTRACT

The importance to correctly address continuing education among occupational health professionals in Italy has been particular in the focus of the Scientific and Professional Medical Community also in consideration of the recent regulations implemented in the field of Continuing Medical Education (CME). The Italian Society of Occupational Medicine recently developed an advanced programme of Continuing Medical Education for Occupational Physician. In order to correctly asses the education needs and collect valid information of Occupational Physicians in Italy we administered a target questionnaire among a group of them. The results are analyzed and discussed.


Subject(s)
Education, Medical, Continuing , Occupational Health , Occupational Medicine/education , Adult , Chi-Square Distribution , Curriculum , Female , Humans , Italy , Male , Middle Aged , Surveys and Questionnaires
11.
Toxicol In Vitro ; 17(5-6): 603-7, 2003.
Article in English | MEDLINE | ID: mdl-14599451

ABSTRACT

It has been suggested that Nickel is involved in oxidative damage and inhibition of DNA repair. We studied the effects of NiSO4 on oxidative stress and DNA repair in Jurkat cells to elucidate its mechanism of action. Cells were treated with H2O2 and ROS generation (by flow cytometry), and oxidative DNA damage (as tail moment by Fpg-enzyme comet test), were evaluated immediately and after 4 and 24 h of DNA damage recovery occurred in presence or absence of NiSO4 (0.017 and 0.17 microM) to clarify possible interactions of Ni with DNA repair processes. Moreover, cells were exposed to the same doses of NiSO4 for 4 and 24 hours to evaluate its direct oxidative effect. The results of the comet test showed high tail moment immediately after oxidative burst with a decreasing after 4 h of DNA recovery, and a slight increase after 24 h of recovery. The decreases were more limited for cells treated with NiSO4 0.17 microM indicating an inhibition of oxidative DNA damage repair by this substance. An induction of ROS was observed after 4 h of incubation with higher dose of NiSO4. Cells treated with H2O2 showed the highest level of ROS after 4 h of recovery in presence of NiSO4 0.17 microM that remained at elevated levels also after 24 h of recovery suggesting a synergistic action of Ni with H2O2 in the reduction of cellular anti-oxidative defence activities.


Subject(s)
Carcinogens/toxicity , DNA Repair/drug effects , Jurkat Cells/drug effects , Nickel/toxicity , Oxidative Stress/drug effects , Comet Assay , Dose-Response Relationship, Drug , Humans , Hydrogen Peroxide/pharmacology , Jurkat Cells/metabolism , Reactive Oxygen Species/metabolism , Time Factors
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