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首页> 外文期刊>Placenta >Trophoblast specialisations during pregnancy in the tammar wallaby, Macropus eugenii: A morphological and lectin histochemical study
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Trophoblast specialisations during pregnancy in the tammar wallaby, Macropus eugenii: A morphological and lectin histochemical study

机译:淡色小袋鼠,优生巨猴怀孕期间的滋养层专长:形态学和凝集素组织化学研究

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Introduction The tammar wallaby has a short gestation (26.5 days) and vascular modifications to expedite transport during that brief pregnancy. Here we examine trophoblast structural attributes that would facilitate materno-fetal exchange. Materials and methods Four specimens of Macropus eugenii between days 23 and 26 gestation were examined using electron microscopy and 24 lectins to characterise glycosylated secretions and their internalisation. Results Two trophoblast phenotypes were found, flattened cells generally in contact with the underlying uterine epithelium and giant cells associated with histiotrophe. The latter appeared to penetrate uterine clefts, occasionally detach and become necrotic. Lectin histochemistry and ultrastructure indicated the presence of many lysosomes and residual bodies especially in trophoblast giant cells; these contained glycans, mainly apically, which were also detected in secretions and cell debris. Trophoblast basal membranes bore extensive filopodia. Giant cells were less common in vascular trilaminar areas and here the trophoblast barrier became thinner near term. Discussion Loss of Maackia amurensis agglutinin binding suggested cleavage of terminal sialic acid residues as an early post-internalisation event in the trophoblast. Lectin staining indicated degradation occurred in an apical-basal direction, and the heavily glycosylated basal membrane appeared specialised for transport out of the cell. Conclusion Granules seen ultrastructurally and histochemically, particularly in giant trophoblast cells of the bilaminar area, suggest that internalised histiotrophe is broken down here and nutrients transferred to the embryo via the specialised basal plasma membrane. The trilaminar vascular area contained mostly flattened trophoblast cells, supporting the suggestion that gaseous exchange is its primary function.
机译:简介淡褐色小袋鼠的妊娠期短(26.5天),血管变质,可在短暂怀孕期间加快运输。在这里,我们研究了滋养细胞的结构属性,可以促进胎儿间的交换。材料和方法使用电子显微镜和24种凝集素检查了妊娠23天至26天之间的4个优氏巨猿标本,以表征糖基化分泌物及其内在化。结果发现了两种滋养细胞表型,扁平细胞通常与下层子宫上皮接触,巨细胞与组织营养相关。后者似乎穿透子宫裂,偶尔脱落并坏死。凝集素的组织化学和超微结构表明存在许多溶酶体和残留体,特别是在滋养层巨细胞中。它们主要在顶端含有聚糖,在分泌物和细胞碎片中也检测到。滋养层基底膜有大量丝状伪足。巨细胞在血管三层区域不常见,因此滋养层屏障在短期内变薄。讨论缺损的黑莓(Maackia amurensis)凝集素结合能力的缺失表明,末端唾液酸残基的裂解是滋养细胞中早期的内在化事件。凝集素染色表明降解发生在顶端-基部方向,并且高度糖基化的基膜似乎专门用于转运出细胞。结论超微结构和组织化学观察到的颗粒,特别是在胆管腔区域的巨大滋养层细胞中,表明内在的组织营养被分解,营养物质通过特殊的基底质膜转移到胚胎中。三层血管区域主要包含扁平化的滋养层细胞,这表明气体交换是其主要功能。

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