• Title/Summary/Keyword: 수컷 생식기관

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Microanatomical Structure of Male Reproductive Organ in the Common Squid, Todarodes pacificus (Cephalopoda: Ommastrephidae) (살오징어 Todarodes pacificus 수컷 생식기관의 미세해부학적 구조)

  • So Ryung Shin;Jung Sick Lee
    • Journal of Marine Life Science
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    • v.8 no.1
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    • pp.1-7
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    • 2023
  • This study was performed to understand the reproductive ecology of cephalopods, described the microanatomical structure of the male reproductive organs and spermatophore in the common squid, Todarodes pacificus, a major cephalopods in Korea. The common squid was gonochorism and had sexual dimorphism, the color of the reproductive organs reflected on the mantle and the presence of the hectocotylus. Male reproductive organs were composed of testis, primary vas deferens, spermatophoric gland (seminal vesicle), spermatophoric sac (Needham's sac) and secondary vas deferens. The male has specialized reproductive organs such as the spermatophore forming organ, spermatophoric gland. Testis was histologically a seminiferous tubule type. The primary vas deferens was a thin and inverted triangular spring-like form that connected from the rear of the testis to the spermatophoric gland. Inside, it was filled with sperm of basophilic in H-E stain. The spermatophoric gland is an irregular oval connected to the primary vas deferens and spermatophoric sac, and there were a number of tubular glands. The spermatophoric sac is a tubular structure located between spermatophoric gland and secondary vas deferens, and a number of spermatophores have been identified in the lumen. The secondary vas deferens was connected to the posterior of the spermatophoric sac and had a spermatophore inside. The spermatophore was a long, transparent tube about 22 mm long, with a sperm mass inside.

Estrogen Function in Male Rodents Fertility (설치류 수컷 생식력에 미치는 에스트로겐의 효과)

  • Kim, Ji-Hyang;Kim, Jin-Kyu;Yoon, Yong-Dal
    • Development and Reproduction
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    • v.9 no.2
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    • pp.85-93
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    • 2005
  • Estrogens are known as the steroid hormones and essential regulators of developments, differentiations, and fertility in animals including humans. Recently, classic focus on estrogens which are considered as female hormone is changing in the whole field of reproductive endocrinology. Especially, interest in estrogen functions in male reproduction is increasing more and more, as numerous studies about the endocrine disruptors, interrupting the endocrine system, are being carried out. To understand exactly the function of estrogen in a male reproductive system, a summary for estrogen receptors upon developmental distributions in testis will be useful. In addition to the regulatory roles of estrogen in male, unexpected exposure to exogenous estrogens causes defects of differentiation of male reproductive system and an injury of spermatogenesis. Also, this review highlights the indicator of exogenous estrogens to perturb male fertility. These approaches would give tile practical information about estrogen roles in male development and reproduction.

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Microscopic Anatomy of Male Reproductive Organ in the Long Arm Octopus Octopus minor (Cephalopoda: Octopodidae) (낙지 Octopus minor 수컷 생식기관의 미세해부학적 구조)

  • Seong Jin Kim;Hyeon Jin Kim;So Ryung Shin;Myeong Gyo Seo;Pyeong Woo Kim;Eun Ha Kim;Jung Sick Lee
    • Journal of Marine Life Science
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    • v.8 no.2
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    • pp.178-185
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    • 2023
  • This study was described the microscopic anatomy of male reproductive organs and spermatophore necessary for understanding the reproductive ecology of the long arm octopus Octopus minor. The long arm octopus was a species that has sexual dimorphism that can distinguish between sex based on the presence of hectocotylus. Male reproductive organs consisted of testis, primary spermatic duct, spermatic gland, secondary spermatic duct, spermatophoric gland and spermatophoric sac. Histologically, the testis was testicular tubule type and male germ cells showed a layered arrangement. The primary spermatic duct was a tube connecting the testis and spermatic gland, and consisted with epithelial layer and connective tissue. The spermatic gland was located between the primary and secondary spermatic duct, and the epithelial layer was composed of epithelial cells and mucous cells. Mucous cells reacted blue in the AB-PAS (pH 2.5) reaction and purple in the AF-AB (pH 2.5) reaction. The secondary spermatic duct was a short tube connecting spermatic gland and spermatophoric gland, and folds were developed in lumen. The spermatophoric gland consisted of numerous tubular glands and secretory cells had eosinophilic granules. The spermatophoric sac was shape of pouch, folds were developed in lumen, and vacuolar secretory cells were present in the epithelial layer. The spermatophore was 83.5 mm long and consisted of cap thread in anterior portion, ejaculatory apparatus and cement body in medial portion, sperm mass in posterior portion.

수컷 흰쥐 생식기관에서의 5-HT 수용체 아형의 유전자 발현과 조절

  • Lee, Jong-Hwa;Lee, Gyeong-Yeop;Jeon, Yun;Lee, Seong-Ho
    • Proceedings of the Korean Society of Developmental Biology Conference
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    • 2003.10a
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    • pp.65-65
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    • 2003
  • Serotonin(5-hydroxytriptamine, 5-HT)은 biogenic amlne류 신경전달물질로써, 다양한 생리조절활성을 갖고있다. 생식과 관련된 5-HT 기능으로 최근 사정 기능의 조절 가능성이 제시되었는데, 항우울제로 흔히 사용되는 selective serotonin reuptake inhibitor(SSRI) 계 약물을 장기 투여할 때 Premature ejaculation이 개선된다는 임상적인 증거들이 보고되었다. 본 연구는 수컷 흰쥐를 사용하여 생식기관, 특히 사정과 관계되는 기관들에서의 5-HT 수용체 아형들의 유전자 발현 여부와 그 조절 기작을 조사하였다. 흰쥐 수컷의 생식장기들인 고환, 부정소, 정관, 정낭에서 사정현상에 관여하리라 추정되는 세로토닌 수용체 아형들(type 1A, 1B, 2C)의 유전자 발현을 RT-PCR과 Southern blot으로 확인하였다. SSRI(sertraline)을 흰쥐에 매일 투여하는 모델(25mg/개체, 2주간)에서 1A 아형의 발현의 경우 정낭에서는 감소하였으나 정관에서는 증가하였고, 1B 아형의 발현은 두 장기에서 공히 증가하였다. 고환 제거후 testosterone(T) 보충 실험 모델을 사용한 실험에서, 정낭에서의 1A와 1B 발현은 T 보충에 의해 감소하였고, 정관에서는 큰 변화가 없었다. 한편 고환, 정낭과 정관에서의 세로토닌 수용체 아형 1A와 1B의 발현은 사춘기의 개시와 함께 증가하였다가 이후 점차 감소하는 경향을 보였다. 본 연구 결과는 사정 현상에 있어서 말초성 세로토닌 시스템이 중요한 역할을 담당할 가능성을 시사하는 것으로써, (i) 고등 포유동물에서의 사정 기작의 조절에 대한 과학적인 이해를 증진시키고, (ⅱ) 세로토닌 수용체 아형간의 특이한 발현과 작용에 대한 이해를 통해 보다 효과적인 사정 부전 치료법 개발을 시도할 수있고, (ⅲ) ontogeny와 sex steroid 의존성에 관련된 연구 시도는 노화와 관련된 사정능력의 변화와 같은 남성과학 분야로의 접목을 기할 수 있다고 사료된다.

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Effects of Estrogen Receptor $\alpha$-Selective Agonist Propyl Pyrazole Triol on the Morphology of Accessory Genital Glands of Male Mouse (수컷 생쥐 부속 생식샘의 형태에 미치는 에스트로겐 수용체 $\alpha$의 선택적 효능제 propyl pyrazole triol의 영향)

  • Han, Ji-Yeon;Cho, Hyun-Wook
    • Applied Microscopy
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    • v.39 no.1
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    • pp.17-25
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    • 2009
  • This study investigated that exposure of male mice to estrogen receptor $\alpha$-selective agonist, 4,4',4"-(4-propyl-[1H]-pyrazole-1,3,5-triyl)tris-phenol (PPT) induce morphological changes of accessory genital glands. The male reproductive organs were fixed and processed for light microscopy. The PPT induced decreases of ventral prostates, seminal vesicles and preputial glands weights with experimental time. The glandular lumen of ventral prostate was atrophied compared with control group. Type of epithelial tissues in the prostate was changed from simple columnar epithelium to stratified cuboidal or squamous epithelium. Treated group with the agonist showed that increased connective tissue underlying epithelium in the prostate and seminal vesicle. Especially, the glandular lumen of the seminal vesicle was contracted when PPT-treated animals were compared with control group. Secretion cells of preputial gland were smaller than that of control group. On week 8, PPT treatment caused decrease of epithelial cell height lining the lumen of preputial gland. These results provide information useful in researching the physiological function of estrogen mediated by estrogen receptor $\alpha$ in male accessory genital gland.

Roles of Estrogen in the Reproductive Organs of Male Rodents : Focus on ERKO Mice Model (설치류 수컷 생식기관에서의 에스트로겐 기능 : 에스트로겐 수용체 녹아웃(ERKO) 생쥐 모델을 중심으로)

  • Lee, Sung-Ho;Choi, Don-Chan
    • Development and Reproduction
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    • v.8 no.2
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    • pp.69-75
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    • 2004
  • It has been known for many years that administration of estrogen, a so-called female hormone, has harmful effects on male fertility. However, studies employing transgenic mice deficient in estrogen receptors reveal substantial roles for estrogen in male fertility. The aim of this article is to review and summarize the current knowledge on the estrogen receptor localization in male reproductive organs including male germ cells of rodents. Also, informations about the mice models with disrupted estrogen signaling and associated phenotypes will be provided.

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수캐와 고양이의 번식력에 관한 검사

  • 권춘수
    • Journal of the korean veterinary medical association
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    • v.34 no.8
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    • pp.547-550
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    • 1998
  • 수의사들은 수캐와 고양이를 구입하기전 수캐의 번식력에 대한 검사를 요청 받을 때가 가끔 있다. 미국의 경우 Kennel club 지침에서는 7개월 보다 어린 개 또는 12세 이상된 개를 종견으로 등록할때는 번식력에 대한 소견서 혹은 증명서를 제출하여야만 한다고 되어있다. 번식력 검사에는 수캐의 완전한 병력을 수집해야하며 병력으로 과거 상처, 질병, 예방접종, 투약상태, 고환이 음낭으로 하강한 상태, 년령, 음낭부종 또는 외상의 발생상태 등이 포함되어야한다. 또한 애완동물의 가계에 대한 번식력에 대해서도 찾아보도록 노력해야 한다. 환축을 검사하기전 병력을 축주에 문의하는 것도 하나의 좋은 방법이다. 건강한 수컷이 암캐와 교미를 하지 못할 경우에는 번식관리의 검사에 세심한 주의를 기우려야 한다. 또한 산자의 최종출생일, 산자수, 교미회수, 번식시킨 암컷의 수, 교미형태, 수컷의 성욕 및 승가행위 등에 과한 것들을 조사해야 할 것이다. 이러한 병력으로 수컷은 항상 불임성을 최초에 불임성을 보였는지 또는 저임성을 보였는지를 알수있게 된다. 새끼를 낳아보지 못한 개와 고양이는 선천적으로 불임이 되고 이러한 수컷도 예후는 불량하다. 개와 고양이가 과거에 새끼를 임신한 경험이 없다면 생식기의 전염성 또는 염증과 관련이 있을 수도 있다. 축주는 개 인공수정을 하기 위하여 정액을 채취할 때 물, 소독약 및 윤활제 등으로 인하여 정자의 사멸을 의식하지 못하고 있기 때문에 채취방법을 상세하게 설명하여 주어야 한다. 또한 암컷의 번식문제에 대해서도 상세하게 검사하여야 하며 개와 고양이가 불임되는 가장 흔한 이유는 번식관리에 문제점이 있으며, 이와 같은 경우에는 암컷을 검사하기 전에 수컷을 검사하는 것이 중요하다. 수컷의 검사는 사진으로도 용이하므로 비용도 절감되나 암컷은 생식기관을 검사하여야 되기 때문에 많은 경비가 든다. 그러나 번식력의 유일한 증거는 태아를 생산하는 것이며 많은 다른 검사 방법으로 평가 할 수도 있으나 번식력을 증명할 수는 없다.

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Concentration Effect of Estrogen Receptor-${\alpha}$ Selective Agonist on the Morphology of Reproductive Organs of the Male Mice (수컷 생쥐 생식기관의 형태에 미치는 에스트로겐 수용체 알파의 선택적 촉진제의 농도별 영향)

  • Han, Ji-Yeon;Cho, Young-Kuk;Cho, Hyun-Wook
    • Applied Microscopy
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    • v.41 no.1
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    • pp.37-45
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    • 2011
  • Known as a female hormone, estrogen, has an effect on the male reproductive organs. The estrogen has to combine with the estrogen receptor to communicate a signal. Propyl pyrazole triol (PPT) is an estrogen receptor alpha selective agonist with a 410-, or 1,000-fold relative binding affinity for estrogen receptor alpha versus estrogen receptor beta. In this study, adult male mice were treated weekly with subcutaneously injections of PPT (0.01 mg, 0.1 mg, 1mg and 4 mg) suspended in castor oil (as control) for 8 weeks and observed histologically changes in testis, efferent ductule and epididymis. In the high concentrations of PPT 4 mg treatment group, a remarkable reduction was observed in the weight of the body, testis and epididymis. Microscopic examination revealed a reduction in seminiferous tubular diameter of the testis, and epithelial cell height of the epididymis in treated group during the experiment. In addition, as the diameter of the efferent ductule increased gradually, the height of epithelial cells was decreased. PPT 4 mg treatment group caused inhibition of spermatogenesis due to atrophied germinal epithelium in the testis, and decrease of adipocyte size attached to the epididymis. Sperm was not observed in the caudal epididymis of PPT 4 mg treated group. In conclusion, the injection of high concentrations of PPT into adult male mice induced physiological changes, such as an inhibition of spermatogenesis, and also histological changes within the reproductive organs.

Effects of the Antiestrogen on Morphologic Changes of efferent ductules of the Adult Male Mouse (항에스트로겐이 성체 수컷 마우스 수출소관의 형태적 변화에 미치는 효과)

  • Kim, Myung-Hoon
    • Journal of Korean Physical Therapy Science
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    • v.10 no.1
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    • pp.190-197
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    • 2003
  • This study was designed to investigate the function of estrogen in related with the effects of the antiestrogen on morphologic changes of efferent ductules of the adult male mouse. Estrogen is synthesized in the male reproductive system and is found in high concentrations in rete and seminal fluids. Adult male mice, 30 days old, were injected subcutaneously with ICI(5mg/mouse) once per week for 8 weeks. Tissues were fixed by vascular perfusion on days 8, 10, 12, 14, 16, 25 and 59 post-treatment. The lumen of efferent ductules began to dilate from the day 8 and continued to the day 59 post-treatment. Epithelial cell height in the efferent ductules of the treated mice decreased all the time periods, compared to the control. Cell height in proximal region of the efferent ductules in the treated groups decreased most by 38%. Supranuclear cytoplasmic height in epithelial cell of the ducts also showed the decrease of 46%, 39% and 33% in proximal, conus and common regions in the treated groups, respectively. ICI 182,780 treatment in the male mouse reproduced a similar morphological abnormalities that were observed in the efferent ductules of the ${\alpha}ERKO$ mouse.

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