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1.
J. venom. anim. toxins incl. trop. dis ; 19: 28, maio 2013. tab, graf, ilus
Artigo em Inglês | LILACS, VETINDEX | ID: biblio-954709

RESUMO

Background The testis-specific isoform of angiotensin-converting enzyme (tACE) is exclusively expressed in germ cells during spermatogenesis. Although the exact role of tACE in male fertility is unknown, it clearly plays a critical function in spermatogenesis. The dipeptidase domain of tACE is identical to the C-terminal catalytic domain of somatic ACE (sACE). Bradykinin potentiating peptides (BPPs) from snake venoms are the first natural sACE inhibitors described and their structure-activity relationship studies were the basis for the development of antihypertensive drugs such as captopril. In recent years, it has been showed that a number of BPPs - including BPP-10c - are able to distinguish between the N- and C-active sites of sACE, what is not applicable to captopril. Considering the similarity between tACE and sACE (and since BPPs are able to distinguish between the two active sites of sACE), the effects of the BPP-10c and captopril on the structure and function of the seminiferous epithelium were characterized in the present study. BPP-10c and captopril were administered in male Swiss mice by intraperitoneal injection (4.7 μmol/kg for 15 days) and histological sections of testes were analyzed. Classification of seminiferous tubules and stage analysis were carried out for quantitative evaluation of germ cells of the seminiferous epithelium. The blood-testis barrier (BTB) permeability and distribution of claudin-1 in the seminiferous epithelium were analyzed by hypertonic fixative method and immunohistochemical analyses of testes, respectively. Results The morphology of seminiferous tubules from animals treated with BPP-10c showed an intense disruption of the epithelium, presence of atypical multinucleated cells in the lumen and degenerated germ cells in the adluminal compartment. BPP-10c led to an increase in the number of round spermatids and total support capacity of Sertoli cell in stages I, V, VII/VIII of the seminiferous epithelium cycle, without affecting BTB permeability and the distribution of claudin-1 in the seminiferous epithelium. Interestingly, no morphological or morphometric alterations were observed in animals treated with captopril. Conclusions The major finding of the present study was that BPP-10c, and not captopril, modifies spermatogenesis by causing hyperplasia of round spermatids in stages I, V, and VII/VIII of the spermatogenic cycle.(AU)


Assuntos
Animais , Peptídeos , Epitélio Seminífero , Túbulos Seminíferos , Venenos de Serpentes , Bradicinina , Bothrops/anatomia & histologia
2.
Artigo em Inglês | LILACS-Express | LILACS, VETINDEX | ID: biblio-1484548

RESUMO

Background The testis-specific isoform of angiotensin-converting enzyme (tACE) is exclusively expressed in germ cells during spermatogenesis. Although the exact role of tACE in male fertility is unknown, it clearly plays a critical function in spermatogenesis. The dipeptidase domain of tACE is identical to the C-terminal catalytic domain of somatic ACE (sACE). Bradykinin potentiating peptides (BPPs) from snake venoms are the first natural sACE inhibitors described and their structure-activity relationship studies were the basis for the development of antihypertensive drugs such as captopril. In recent years, it has been showed that a number of BPPs - including BPP-10c - are able to distinguish between the N- and C-active sites of sACE, what is not applicable to captopril. Considering the similarity between tACE and sACE (and since BPPs are able to distinguish between the two active sites of sACE), the effects of the BPP-10c and captopril on the structure and function of the seminiferous epithelium were characterized in the present study. BPP-10c and captopril were administered in male Swiss mice by intraperitoneal injection (4.7 mol/kg for 15 days) and histological sections of testes were analyzed. Classification of seminiferous tubules and stage analysis were carried out for quantitative evaluation of germ cells of the seminiferous epithelium. The blood-testis barrier (BTB) permeability and distribution of claudin-1 in the seminiferous epithelium were analyzed by hypertonic fixative method and immunohistochemical analyses of testes, respectively. Results The morphology of seminiferous tubules from animals treated with BPP-10c showed an intense disruption of the epithelium, presence of atypical multinucleated cells in the lumen and degenerated germ cells in the adluminal compartment. BPP-10c led to an increase in the number of round spermatids and total support capacity of Sertoli cell in stages I, V, VII/VIII of the seminiferous epithelium cycle, without affecting BTB permeability and the distribution of claudin-1 in the seminiferous epithelium. Interestingly, no morphological or morphometric alterations were observed in animals treated with captopril. Conclusions The major finding of the present study was that BPP-10c, and not captopril, modifies spermatogenesis by causing hyperplasia of round spermatids in stages I, V, and VII/VIII of the spermatogenic cycle.

3.
São Paulo; s.n; 23 abr 2009. 158 p. graf, ilus, tab.
Tese em Português | LILACS | ID: lil-532283

RESUMO

Os peptídeos potenciadores da bradicinina (BPPs) presentes no veneno da serpente Bothrops jararaca são oligopeptídeos ricos em prolinas. Eles foram os primeiros inibidores naturais da enzima conversora de angiotensina (ECA) descritos. As propriedades bioquímicas e farmacológicas desses peptídeos foram essenciais para o desenvolvimento do captopril, o primeiro inibidor sítio-dirigido da ECA, usado para tratar a hipertensão humana. Recentes dados têm sugerido que a atividade farmacológica dos BPPs não pode ser explicada somente pela ação inibitória da atividade da ECA e que os efeitos dos BPPs devem envolver a participação do sistema nervoso central (SNC). Nesse trabalho foi caracterizada a sinalização de Ca2+ induzida pelo BPP-lOc [

Assuntos
Animais , Ratos , Inibidores da Enzima Conversora de Angiotensina , Anti-Hipertensivos , Bradicinina , Bothrops/fisiologia , Hipertensão/metabolismo , Sistema Nervoso , Peptídeos/isolamento & purificação , Peptídeos/síntese química , RNA Mensageiro/biossíntese , Técnicas de Cultura de Células , Meios de Cultura
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