Laboratory of Animal Cell Biology and Embryology, College of Veterinary Medicine, 210095 Nanjing Agricultural University, Nanjing, PR China.
Poult Sci. 2012 Aug;91(8):1936-40. doi: 10.3382/ps.2011-02090.
Ultrastructural characteristics of different subtypes of interstitial cells of Cajal (ICC) remain unclear in birds; however, birds have significant economical and scientific notability. Our aim was to describe and classify ICC in the chicken gut. The ileum of normal adult Three Yellow broiler chickens (n=10) were studied by transmission electron microscopy (TEM). The ICC were spindle- or stellate-shaped with ramified cell processes. They had numerous mitochondria, abundant intermediate filaments, fusiform nuclei (oval or indented), with a dense band of peripheral heterochromatin, and formed close contacts by true gap junctions with each other and with neighboring smooth muscle cells (SMC). The ICC were in close contact with enteric nerves, but true gap junctions were not found between them. A new subtype of ICC located in the lamina propria mucosae has been discovered. Some of the ICC showed typical features of SMC, including a basal lamina, caveolae, and dense bodies. Lacking intermediate filaments and caveolae distinguished them from the fibroblast-like cells showing well-developed secretory organelles, including coated vesicles and a patchy basal lamina. The ultrastructural features and distribution of ICC in chicken intestine is similar to mammals. They may play similar key regulatory roles in gastrointestinal motility. The new subtype of ICC discovered in the lamina propria mucosae may play a role in the regulation of secretion and absorption.
不同亚型的 Cajal 间质细胞 (ICC) 的超微结构特征在鸟类中尚不清楚;然而,鸟类具有重要的经济和科学意义。我们的目的是描述和分类鸡肠中的 ICC。通过透射电子显微镜 (TEM) 研究了正常成年三黄肉鸡 (n=10) 的回肠。ICC 呈纺锤形或星状,有分支的细胞突起。它们有许多线粒体,丰富的中间丝,梭形核(椭圆形或凹陷),有致密的周边异染色质带,并通过真正的缝隙连接与彼此和相邻的平滑肌细胞 (SMC) 形成紧密接触。ICC 与肠神经密切接触,但它们之间没有发现真正的缝隙连接。在黏膜固有层中发现了一种新的 ICC 亚型。一些 ICC 表现出典型的 SMC 特征,包括基膜、小窝和致密体。缺乏中间丝和小窝将它们与具有发达分泌细胞器的成纤维样细胞区分开来,包括有被小泡和斑驳的基膜。鸡肠 ICC 的超微结构特征和分布与哺乳动物相似。它们可能在胃肠道运动的调节中发挥类似的关键调节作用。在黏膜固有层中发现的新型 ICC 亚型可能在分泌和吸收的调节中发挥作用。