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The structural characteristics of the heart ventricle of the African lungfish Protopterus dolloi: freshwater and aestivation

机译:非洲肺鱼浮游动物心形心室的结构特征:淡水和培养

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摘要

This paper reports on the structure and ultrastructure of the ventricular myocardium of the African lungfish Protopterus dolloi in freshwater (FW), in aestivation (AE), and after the AE period. The myocardium shows a conventional myofibrillar structure. All the myocytes contain large intracytoplasmic spaces occupied by a pale material that could contain glycosaminoglycans and/or glycogen, which may be used as food and water reservoirs. In FW, the myocytes in the trabeculae associated with the free ventricular wall show structural signs of low transcriptional and metabolic activity (heterochromatin, mitochondria of the dense type). These signs are partially reversed during the AE period (euchromatin, mitochondria with a light matrix), with a return to the FW appearance after arousal. The myocytes in the septum show, in FW conditions, nuclear polymorphism (heterochromatin, euchromatin), and two types (colliquative and coagulative) of necrosis. In AE, all the septal myocytes show euchromatin, and the number of necrotic cells increases greatly. Cell necrosis appears to be related to the septal architecture. After arousal, the septal myocytes exhibit a heterochromatin pattern, the number of necrotic cells decreases, cell debris accumulates under the endocardium, and phagocytosis takes place. Despite being a morphologic continuum, the trabeculae associated with the free ventricular wall appear to constitute a different compartment from that formed by the trabeculae in the ventricular septum. Paradoxically, AE appears to trigger an increase in transcriptional and synthetic myocardial activities, especially at the level of the ventricular septum. This activity may be involved in mechanisms of autocrine/paracrine regulation. Aestivation cannot be regarded as the result of a general depression of all cellular and organic activities. Rather, it is a much more complex state in which the interplay between upregulation and downregulation of diverse cell activities appears to play a fundamental role.
机译:本文报道了在淡水(FW),培养(AE)和AE期后非洲肺鱼Protopterus dolloi的心室心肌的结构和超微结构。心肌显示常规的肌原纤维结构。所有的心肌细胞都含有被淡色物质占据的较大的胞质内空间,其中可能含有糖胺聚糖和/或糖原,可以用作食物和水的储库。在FW中,与自由心室壁相关的小梁中的肌细胞显示出低转录和代谢活性的结构征象(异染色质,致密型线粒体)。这些症状在AE期间被部分逆转(常染色质,具有光矩阵的线粒体),唤醒后恢复为FW外观。在FW条件下,间隔中的心肌细胞显示出核多态性(异染色质,常染色质)和两种类型的坏死(胶合和凝结)。在AE中,所有的间隔肌细胞都显示常染色质,坏死细胞的数量大大增加。细胞坏死似乎与中隔结构有关。唤醒后,间隔肌细胞呈现异染色质模式,坏死细胞数量减少,细胞碎片积聚在心内膜下,并发生吞噬作用。尽管是形态连续体,但与自由心室壁相关的小梁似乎构成了与小梁在室间隔中形成的小室不同的隔室。矛盾的是,AE似乎触发了转录和合成心肌活性的增加,尤其是在心室间隔的水平上。该活动可能参与自分泌/旁分泌调节机制。陶醉不能被认为是所有细胞和有机活动普遍下降的结果。相反,它是一种更为复杂的状态,其中多种细胞活动的上调和下调之间的相互作用似乎起着基本作用。

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