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生成活体彩色转基因斑马鱼以追踪表达生长抑素的细胞和内分泌胰腺组织。

Generation of living color transgenic zebrafish to trace somatostatin-expressing cells and endocrine pancreas organization.

作者信息

Li Zhen, Wen Chaoming, Peng Jinrong, Korzh Vladimir, Gong Zhiyuan

机构信息

Department of Biological Sciences, National University of Singapore, Singapore 119260, Singapore.

出版信息

Differentiation. 2009 Feb;77(2):128-34. doi: 10.1016/j.diff.2008.09.014. Epub 2008 Oct 22.

Abstract

In the present study, both gfp and rfp transgenic zebrafish lines using a 2.5-kb zebrafish somatostatin2 (sst2) promoter were generated. During embryonic development, expression of GFP/RFP in the endocrine pancreas of transgenic embryos was initiated at approximately 20 hpf and the number of GFP/RFP positive cells in the pancreas increased in subsequent stages; thus, our newly generated Tg(sst2:gfp) and Tg(sst2:rfp) lines faithfully recapitulated sst2 expression in endocrine pancreatic cells and provided a useful tool in analyzing the development of Sst2-producing delta-cells in the pancreas. By crossing these new transgenic lines with previously available transgenic lines targeted in insulin (Ins)-producing beta-cells, Tg(ins:gfp) and Tg(ins:rfp), in combination with immunodetection of glucagon (Gcg)-producing alpha-cells and pancreatic polypeptide (PP)-producing PP-cells, the organization and composition of endocrine islets were investigated in both embryonic and adult pancreas. We found that there was always a big cluster of endocrine cells (principal islet) in the anterior-dorsal pancreas, followed by numerous smaller clusters (variable in size) of endocrine cells (secondary islets) along the anterior-posterior axis of the pancreas. All four types of endocrine cells were found in the principal islet, but secondary islets may or may not contain PP-cells. In addition, there were also discrete endocrine cells throughout the pancreas. In all co-localization experiments, we did not find any endocrine cells positive for more than one hormone markers, suggesting that these endocrine cells produce only a single hormone. In both principal and secondary islets, we found that beta-cells were generally located in the center and non-beta cells in the periphery; reminiscent of the "mantel-core" organization of islets of Langerhans in mammals where beta-cells form the core and non-beta-cells the mantel. In zebrafish primary islet, beta-cells constitute most of the mass (approximately 50%), followed by delta-cells and alpha-cells (20-25% each), and PP-cells (1-2%); this is also similar to the composition of mammalian islets.

摘要

在本研究中,构建了使用2.5 kb斑马鱼生长抑素2(sst2)启动子的绿色荧光蛋白(gfp)和红色荧光蛋白(rfp)转基因斑马鱼品系。在胚胎发育过程中,转基因胚胎内分泌胰腺中GFP/RFP的表达在受精后约20小时开始,随后胰腺中GFP/RFP阳性细胞数量增加;因此,我们新构建的Tg(sst2:gfp)和Tg(sst2:rfp)品系忠实地重现了内分泌胰腺细胞中sst2的表达,并为分析胰腺中产生Sst2的δ细胞的发育提供了有用的工具。通过将这些新的转基因品系与先前可用的靶向产生胰岛素(Ins)的β细胞的转基因品系Tg(ins:gfp)和Tg(ins:rfp)杂交,并结合对产生胰高血糖素(Gcg)的α细胞和产生胰多肽(PP)的PP细胞进行免疫检测,研究了胚胎期和成体胰腺中内分泌胰岛的组织结构和组成。我们发现,在胰腺的前背侧总是有一大簇内分泌细胞(主胰岛),随后沿着胰腺的前后轴有许多较小的内分泌细胞簇(大小不一)(副胰岛)。在主胰岛中发现了所有四种类型的内分泌细胞,但副胰岛可能含有也可能不含有PP细胞。此外,在整个胰腺中也有离散的内分泌细胞。在所有共定位实验中,我们没有发现任何一种内分泌细胞对一种以上的激素标记呈阳性,这表明这些内分泌细胞只产生一种激素。在主胰岛和副胰岛中,我们发现β细胞通常位于中心,非β细胞位于外周;这让人联想到哺乳动物胰岛的“mantel-core”组织结构,其中β细胞形成核心,非β细胞形成mantel。在斑马鱼的主胰岛中,β细胞构成了大部分细胞团(约50%),其次是δ细胞和α细胞(各占20-25%),以及PP细胞(1-2%);这也与哺乳动物胰岛的组成相似。

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