Casco V H, Paz D, Ruiz G, Maldonado C, Pisano A, Aoki A
Departamento de Microscopía Electrónica, Facultad de Bioingeniería, Universidad Nacional de Entre Ríos, Argentina.
Int J Dev Biol. 1992 Dec;36(4):537-42.
The differentiation of endocrine myocardiocytes was investigated in the heart of developing toad Bufo arenarum Hensel, combining ultrastructural and immunocytochemical procedures. The distribution of immuno-reactive atrial natriuretic peptide (ANP) in the whole heart was appraised by light microscopy, applying biotin-streptavidin and immunofluorescence techniques. With the latter procedures ANP was first recognized at embryonic stage 22, in both atrium and ventricle. In the ensuing stages the ANP-reactivity became stronger in the atrium, while it became dimmer in the ventricle. At the end of the larval prometamorphic stage, atrial myocardiocytes acquired almost all the features of adult myoendocrine cells. At electron microscope level, small inclusions, about 110-120 nm in diameter, resembling secretory granules were found in myoendocrine cells beginning at embryonic stage 22. However, no immunogold labeling of ANP occurred until stage 25. The number of secretory granules diminished in the ventricles and increased in the atrium of the larval heart and at the end of the prometamorphic stage the atrial myoendocrine cells presented the ultrastructural characteristics of active secretory cells. The synthesis of ANP in larvae is enhanced at a critical period of development when the developing toad switches from an aquatic environment to terrestrial life. The cardiac hormones seem to play a key role in the regulation of the osmolarity of body fluids at this developmental stage.
结合超微结构和免疫细胞化学方法,对发育中的蟾蜍(Bufo arenarum Hensel)心脏中内分泌心肌细胞的分化进行了研究。采用生物素-链霉亲和素和免疫荧光技术,通过光学显微镜评估了免疫反应性心房利钠肽(ANP)在整个心脏中的分布。通过后一种方法,在胚胎第22阶段首次在心房和心室中识别出ANP。在随后的阶段,ANP反应性在心房中变得更强,而在心室中变得更弱。在幼虫前变态阶段结束时,心房心肌细胞获得了成年心肌内分泌细胞的几乎所有特征。在电子显微镜水平上,从胚胎第22阶段开始,在心肌内分泌细胞中发现了直径约110-120 nm的小包涵体,类似于分泌颗粒。然而,直到第25阶段才出现ANP的免疫金标记。幼虫心脏心室中的分泌颗粒数量减少,心房中的分泌颗粒数量增加,在前变态阶段结束时,心房心肌内分泌细胞呈现出活跃分泌细胞的超微结构特征。当发育中的蟾蜍从水生环境转变为陆地生活时,幼虫期ANP的合成在发育的关键时期增强。心脏激素似乎在这个发育阶段的体液渗透压调节中起关键作用。