Distribution of acetylcholinesterase activity in the rat embryonic heart with reference to HNK-1 immunoreactivity in the conduction tissue |
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Authors: | Tsuguto Nakamura Takayoshi Ikeda Isao Shimokawa Yasuhisa Inoue Takashi Suematsu Hiroyuki Sakai Keisuke Iwasaki Takeshi Matsuo |
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Affiliation: | (1) First Department of Pathology, Nagasaki University School of Medicine and of Dentistry, 852 Nagasaki, Japan;(2) Department of Oral Histology, Nagasaki University School of Medicine and Dentistry, 852 Nagasaki, Japan;(3) Central Division of Electron Microscopy, Nagasaki University School of Medicine and Dentistry, 852 Nagasaki, Japan |
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Abstract: | Acetylcholinesterase (AChE) activity was topographically investigated in the presumptive cardiac conduction tissue regions visualized by HNK-1 immunoreactivity in rat embryos, and AChE-positive cells were examined with the electron microscope. On embryonic day (ED) 14.5, when HNK-1 was most intensely visualized, AChE activity could not be detected enzyme-histochemically in the conduction tissue regions, except in the ventricular trabeculae and part of the AV node. On ED 16.5, however, the AChE activity was clearly demonstrated in some parts of the developing conduction tissue. One exception was the AV node region, where an AChE-positive area was in close proximity to an area showing HNK-1 immunoreactivity but did not overlap. Furthermore, AChE activity was demonstrated predominantly in the ventricular trabeculae, including cardiac myocytes, but was rather weak in the atrium. With the electron microscope, AChE reaction products were observed predominantly intracellulary in both developing conduction tissue cells and developing ordinary myocytes, and no reactivity was found in neuronal components. From ED 18.5 until birth, both AChE activity and HNK-1 immunoreactivity faded away in the conduction tissue. Thus, transient AChE activity in the embryonic heart seems to be different from the developing adult form and may be related to a morphogenetic function in embryonic tissues, as proposed by other authors. |
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Keywords: | Acetylcholinesterase HNK-1 Heart Morphogenesis Rat |
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