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Erschienen in: Journal of Assisted Reproduction and Genetics 4/2013

01.04.2013 | Gamete Biology

Caspase signalling pathways in human spermatogenesis

verfasst von: Carolina Almeida, Sofia Correia, Eduardo Rocha, Ângela Alves, Luís Ferraz, Joquina Silva, Mário Sousa, Alberto Barros

Erschienen in: Journal of Assisted Reproduction and Genetics | Ausgabe 4/2013

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Abstract

Purpose

Little is known about the apoptotic mechanisms involved in abnormal spermatogenesis. In order to describe the significance of apoptosis in azoospermia, testicular tissue from abnormal spermatogenesis was analysed.

Methods

Testicular treatment biopsies were obtained from 27 men. Five presented oligozoospermia, 9 obstructive azoospermia (4 congenital bilateral absence of the vas deferens; 5 secondary azoospermia) and 13 non-obstructive azoospermia (5 hypospermatogenis; 3 maturation arrest; 5 Sertoli-cell-only syndrome). Immunohistochemical staining was performed for active caspases-3, −8 and −9. The presence of active caspases in Sertoli cells and germ cells was analyzed using stereological tools.

Results

Increased active caspase-3 was found in Sertoli-cell-only syndrome. No significant differences were found in maturation arrest. In hypospermatogenesis, primary spermatocytes were the germ cells with higher active caspases. Oligozoospermia and secondary obstruction showed significant differences among germ cells for the presence of all active caspases. In oligozoospermia, spermatogonia presented significant increased active caspase-9 in relation to active caspase-8. In primary obstruction and hypospermatogenesis, germ cells presented significant increased active caspases-3 and −9.

Conclusions

Results suggest that increased active caspase-3 might be involved in Sertoli-cell-only syndrome etiology. In cases of hypospermatogenesis, intrinsic lesions at the meiotic stage seem to be related to the pathology. In secondary obstruction apoptosis is suggested to be initiated due to extrinsic and intrinsic lesions, whereas in primary obstruction only the intrinsic apoptotic pathway seems to be present. Finally, in oligozoospermic patients spermatogonia death by mitochondrial damage additionally to meiosis malfunctioning, might be on the origin of the decreased sperm output.
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Metadaten
Titel
Caspase signalling pathways in human spermatogenesis
verfasst von
Carolina Almeida
Sofia Correia
Eduardo Rocha
Ângela Alves
Luís Ferraz
Joquina Silva
Mário Sousa
Alberto Barros
Publikationsdatum
01.04.2013
Verlag
Springer US
Erschienen in
Journal of Assisted Reproduction and Genetics / Ausgabe 4/2013
Print ISSN: 1058-0468
Elektronische ISSN: 1573-7330
DOI
https://doi.org/10.1007/s10815-013-9938-8

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