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南极小须鲸(Balaenoptera bonaerensis)胎盘的结构与类固醇生成

Structure and steroidogenesis of the placenta in the Antarctic minke whale (Balaenoptera bonaerensis).

作者信息

Sasaki Motoki, Amano Yoko, Hayakawa Daisuke, Tsubota Toshio, Ishikawa Hajime, Mogoe Toshihiro, Ohsumi Seiji, Tetsuka Masafumi, Miyamoto Akio, Fukui Yutaka, Budipitojo Teguh, Kitamura Nobuo

机构信息

Laboratory of Veterinary Anatomy, Department of Basic Veterinary Medicine, Obihiro University of Agriculture and Veterinary Medicine, Hokkaido 080-8555, Japan.

出版信息

J Reprod Dev. 2013;59(2):159-67. doi: 10.1262/jrd.2012-132. Epub 2012 Dec 27.

Abstract

There are few reports describing the structure and function of the whale placenta with the advance of pregnancy. In this study, therefore, the placenta and nonpregnant uterus of the Antarctic minke whale were observed morphologically and immunohistochemically. Placentas and nonpregnant uteri were collected from the 15th, 16th and 18th Japanese Whale Research Programme with Special Permit in the Antarctic (JARPA) and 1st JARPA II organized by the Institute of Cetacean Research in Tokyo, Japan. In the macro- and microscopic observations, the placenta of the Antarctic minke whale was a diffuse and epitheliochorial placenta. The chorion was interdigitated to the endometrium by primary, secondary and tertiary villi, which contained no specialized trophoblast cells such as binucleate cells, and the interdigitation became complicated with the progress of gestation. Furthermore, fetal and maternal blood vessels indented deeply into the trophoblast cells and endometrial epithelium respectively with fetal growth. The minke whale placenta showed a fold-like shape as opposed to a finger-like shape. In both nonpregnant and pregnant uteri, many uterine glands were distributed. The uterine glands in the superficial layer of the pregnant endometrium had a wide lumen and large epithelial cells as compared with those in the deep layer. On the other hand, in the nonpregnant endometrium, the uterine glands had a narrower lumen and smaller epithelial cells than in the pregnant endometrium. In immunohistochemical detection, immunoreactivity for P450scc was detected in most trophoblast cells, but not in nonpregnant uteri, suggesting that trophoblast epithelial cells synthesized and secreted the sex steroid hormones and/or their precursors to maintain the pregnancy in the Antarctic minke whale.

摘要

随着妊娠进展,关于鲸类胎盘结构与功能的报道较少。因此,在本研究中,对南极小须鲸的胎盘和未孕子宫进行了形态学和免疫组织化学观察。胎盘和未孕子宫取自日本东京鲸类研究所组织的第15次、第16次和第18次南极特别许可日本鲸类研究项目(JARPA)以及第一次JARPA II。在大体和显微镜观察中,南极小须鲸的胎盘为弥散型上皮绒毛膜胎盘。绒毛膜通过初级、次级和三级绒毛与子宫内膜相互交错,这些绒毛中不包含双核细胞等特化的滋养层细胞,并且随着妊娠进展,这种交错变得更加复杂。此外,随着胎儿生长,胎儿和母体血管分别深深嵌入滋养层细胞和子宫内膜上皮。与指状胎盘不同,小须鲸胎盘呈褶皱状。在未孕和孕子宫中均分布有许多子宫腺。与深层相比,孕子宫内膜表层的子宫腺管腔较宽,上皮细胞较大。另一方面,在未孕子宫内膜中,子宫腺管腔比孕子宫内膜中的更窄,上皮细胞更小。在免疫组织化学检测中,大多数滋养层细胞检测到P450scc免疫反应性,但未孕子宫中未检测到,这表明滋养层上皮细胞合成并分泌性类固醇激素和/或其前体以维持南极小须鲸的妊娠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fd5/3934202/7f7d825739c8/jrd-59-159-g001.jpg

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