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首页> 外文期刊>Cell and Tissue Research >In vitro cultures of ectodermal monolayers from the model sea anemone Nematostella vectensis
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In vitro cultures of ectodermal monolayers from the model sea anemone Nematostella vectensis

机译:模型海葵线虫Nematostella vectensis的外胚层单层体外培养

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We report here a novel approach for the extraction, isolation and culturing of intact ectodermal tissue layers from a model marine invertebrate, the sea anemone Nematostella vectensis. A methodology is described in which a brief exposure of the animal to the mucolytic agent N-acetyl-L-cysteine (NAC) solution triggers the dislodging of the ectodermis from its underlying basement membrane and mesoglea. These extracted fragments of cell sheets adherent to culture-dish substrates, initially form 2D monolayers that are transformed within 24 h post-isolation into 3D structures. These ectodermal tissues were sustained in vitro for several months, retaining their 3D structure while continuously releasing cells into the surrounding media. Cultures were then used for cell type characterizations and, additionally, the underlying organization of actin filaments in the 3D structures are demonstrated. Incorporation of BrdU and immunohistochemical labeling using p-histone H3 primary antibody were performed to compare mitotic activities of ectodermal cells originating from intact and from in vivo regenerating animals. Results revealed no change in mitotic activities at 2 h after bisection and a 1.67-, 1.71- and 3.74-fold increase over 24, 48 and 72 h of regeneration, respectively, depicting a significant correlation coefficient (p < 0.05; R (2) = 0.74). A significant difference was found only between the control and 3-day regenerations (p = 0.016). Cell proliferation was demonstrated in the 3D ectodermis after 6 culturing days. Moreover, monolayers that were subjected to Ca++/Mg++ free medium for the first 2 h after isolation and then replaced by standard medium, showed, at 6 days of culturing, profuse appearance of positive p-histone H3-labeled nuclei in the 3D tissues. Cytochalasin administered throughout the culturing period abolished all p-histone H3 labeling. This study thus depicts novel in vitro tissue culturing of ectodermal layers from a model marine invertebrate, demonstrating the ease with which experiments can be performed and cellular and molecular pathways can be revealed, thus opening studies on 2D tissue organizations and morphogenesis as well as the roles of cellular components in the formation of tissues in this organism.
机译:我们在这里报告了一种新的方法,用于从模型无脊椎动物,海葵Nematostella vectensis中提取,分离和培养完整的外胚层组织层。描述了一种方法,其中将动物短暂暴露于粘液溶解剂N-乙酰基-L-半胱氨酸(NAC)溶液会触发外胚层从其下面的基底膜和中胚层脱落。这些提取的粘附在培养皿底物上的细胞片片段最初形成2D单层,在分离后24小时内转化为3D结构。这些外胚层组织在体外维持了几个月,保留了它们的3D结构,同时不断将细胞释放到周围的培养基中。然后将培养物用于细胞类型表征,此外,还证明了3D结构中肌动蛋白丝的潜在组织。进行BrdU的掺入和使用p-组蛋白H3一抗的免疫组化标记,以比较源自完整动物和体内再生动物的外胚层细胞的有丝分裂活性。结果显示,两等分后2 h的有丝分裂活动无变化,分别在24、48和72 h的再生过程中分别增加了1.67、1.71和3.74倍,表现出显着的相关系数(p <0.05; R(2) = 0.74)。仅在对照和3天再生之间发现了显着差异(p = 0.016)。培养6天后,在3D外胚层中证明了细胞增殖。此外,在分离后的最初2 h内接受不含Ca ++ / Mg ++的培养基的单层,然后用标准培养基代替,在培养6天后,在3D组织中大量出现阳性p-组蛋白H3标记的核。在整个培养期间施用细胞松弛素取消了所有对-组蛋白H3标记。因此,本研究描述了来自模型海洋无脊椎动物的表皮层的新型体外组织培养,表明可以轻松进行实验以及揭示细胞和分子途径,从而开启了对二维组织和形态发生及其作用的研究。这种生物体组织形成过程中细胞成分的变化。

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