Steroidogenic activity and morphological characterization of prenatal testes and epididymis of guinea pig (Cavia porcellus)

IF 2.2 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Reproduction Science Pub Date : 2024-01-02 DOI:10.1016/j.anireprosci.2023.107407
G.A.A. Lemos , A.C. Santos , D.C.C. Brito , M.A.S. Novaes , A.C. Assis Neto
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Abstract

The present study aims to establish the morphological, morphometric, and immunostaining patterns of the steroidogenic enzymes 17β-HSD and 5α-reductase and androgen receptors (AR) during the prenatal development of the male gonad and epididymis of Cavia porcellus. Fetuses at 22, 25, 30, 40, 45, 50, and 60 days of gestation (DG) were used. Specimens were dissected and subjected to macroscopic, histological, histomorphometric, and immunohistochemical analyses. Genital and scrotal protrusions were identified in 22 DG embryos. Gonocytes were identified at 25 DG and the formation of primary testicular cords was observed at 30 DG. Through anatomical evaluation, we observed differentiation of the epididymis into the head, body, and tail at 45 DG. During development, there is a progressive decrease in the diameters of the testicular cords and epididymal ducts. 17β-HSD enzyme immunostaining was observed in Leydig cells at all ages, while 5α-reductase was observed in Leydig cell cytoplasm and gonocytes at 40, 50, and 60 DG. AR shows gonocyte labeling at 30 DG. Thus, from the second trimester of pregnancy, it is possible to observe patterns of anatomical development, such as genital and scrotal prominence (22 DG), the appearance of gonocytes in the testicular cords at 25 DG, and the beginning of the organization of primary testicular cords at 30 DG, suggesting sexual differentiation. The 17β-HSD, 5α-reductase, and ARs play an essential role in sexual development and differentiation, presenting immunostaining at different reproductive process times.

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豚鼠产前睾丸和附睾的类固醇生成活性及形态特征
本研究旨在确定猪笼草(Cavia porcellus)雄性性腺和附睾产前发育过程中类固醇生成酶 17β-HSD、5α-还原酶和雄激素受体(AR)的形态学、形态计量学和免疫染色模式。研究对象为妊娠 22、25、30、40、45、50 和 60 天的胎儿。解剖标本并进行宏观、组织学、组织形态计量学和免疫组化分析。在 22 个 DG 胚胎中发现了生殖器和阴囊突起。在25 DG时发现了生殖腺细胞,在30 DG时观察到初级睾丸索的形成。通过解剖学评估,我们观察到附睾在 45 DG 时分化为头部、身体和尾部。在发育过程中,睾丸索和附睾管的直径逐渐减小。在所有年龄段的睾丸中都能在Leydig细胞中观察到17β-HSD酶免疫染色,而在40、50和60 DG时则能在Leydig细胞胞浆和性腺细胞中观察到5α-还原酶。在 30 DG 时,AR 显示出生殖腺细胞标记。因此,从妊娠的后三个月开始,就可以观察到解剖学的发育模式,如生殖器和阴囊突出(22 DG)、25 DG时睾丸索出现性腺细胞、30 DG时初级睾丸索开始组织,这表明了性分化。17β-HSD、5α-还原酶和ARs在性发育和性分化中起着重要作用,在不同的生殖过程时间出现免疫染色。
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来源期刊
Animal Reproduction Science
Animal Reproduction Science 农林科学-奶制品与动物科学
CiteScore
4.50
自引率
9.10%
发文量
136
审稿时长
54 days
期刊介绍: Animal Reproduction Science publishes results from studies relating to reproduction and fertility in animals. This includes both fundamental research and applied studies, including management practices that increase our understanding of the biology and manipulation of reproduction. Manuscripts should go into depth in the mechanisms involved in the research reported, rather than a give a mere description of findings. The focus is on animals that are useful to humans including food- and fibre-producing; companion/recreational; captive; and endangered species including zoo animals, but excluding laboratory animals unless the results of the study provide new information that impacts the basic understanding of the biology or manipulation of reproduction. The journal''s scope includes the study of reproductive physiology and endocrinology, reproductive cycles, natural and artificial control of reproduction, preservation and use of gametes and embryos, pregnancy and parturition, infertility and sterility, diagnostic and therapeutic techniques. The Editorial Board of Animal Reproduction Science has decided not to publish papers in which there is an exclusive examination of the in vitro development of oocytes and embryos; however, there will be consideration of papers that include in vitro studies where the source of the oocytes and/or development of the embryos beyond the blastocyst stage is part of the experimental design.
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