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PC12 Cell Line: Cell Types Coating of Culture Vessels Differentiation and Other Culture Conditions

机译:PC12细胞系:细胞类型培养皿的涂层分化和其他培养条件

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摘要

The PC12 cell line is one of the most commonly used in neuroscience research, including studies on neurotoxicity, neuroprotection, neurosecretion, neuroinflammation, and synaptogenesis. Two types of this line are available in the ATCC collection: traditional PC12 cells grown in suspension and well-attached adherent phenotype. PC12 cells grown in suspension tend to aggregate and adhere poorly to non-coated surfaces. Therefore, it is necessary to modify the surface of culture vessels. This paper aims to characterise the use of two distinct variants of PC12 cells as well as describe their differentiation and neuronal outgrowth with diverse NGF concentrations (rat or human origin) on various surfaces. In our study, we evaluated cell morphology, neurite length, density and outgrowth (measured spectrofluorimetrically), and expression of neuronal biomarkers (doublecortin and NeuN). We found that the collagen coating was the most versatile method of surface modification for both cell lines. For adherent cells, the coating was definitely less important, and the poly- -lysine surface was as good as collagen. We also demonstrated that the concentration of NGF is of great importance for the degree of differentiation of cells. For suspension cells, we achieved the best neuronal characteristics (length and density of neurites) after 14 days of incubation with 100 ng/mL NGF (change every 48 h), while for adherent cells after 3–5 days, after which they began to proliferate. In the PC12 cell line, doublecortin (DCX) expression in the cytoplasm and NeuN in the cell nucleus were found. In turn, in the PC12 Adh line, DCX was not expressed, and NeuN expression was located in the entire cell (both in the nucleus and cytoplasm). Only the traditional PC12 line grown in suspension after differentiation with NGF should be used for neurobiological studies, especially until the role of the NeuN protein, whose expression has also been noted in the cytoplasm of adherent cells, is well understood.
机译:PC12细胞系是神经科学研究中最常用的细胞系之一,包括神经毒性,神经保护,神经分泌,神经炎症和突触形成的研究。 ATCC集合中有两种类型的细胞系:悬浮生长的传统PC12细胞和附着良好的粘附表型。在悬浮液中生长的PC12细胞趋于聚集,并难以粘附在未涂覆的表面上。因此,有必要修饰培养容器的表面。本文旨在表征PC12细胞两种不同变体的用途,并描述它们在各种表面上具有不同NGF浓度(大鼠或人类起源)的分化和神经元生长。在我们的研究中,我们评估了细胞的形态,神经突的长度,密度和生长(通过荧光光谱法测量)以及神经元生物标记物的表达(doublecortin和NeuN)。我们发现胶原涂层是两种细胞系表面修饰的最通用的方法。对于贴壁细胞,涂层的重要性绝对不那么重要,而且聚赖氨酸表面与胶原蛋白一样好。我们还证明了NGF的浓度对于细胞的分化程度非常重要。对于悬浮细胞,在与100 ng / mL NGF孵育14天后(每48小时改变一次),我们获得了最佳的神经元特征(神经突的长度和密度),而对于贴壁细胞,经过3-5天后,它们开始达到最佳的神经元特性。增生。在PC12细胞系中,在细胞质中发现了双皮质素(DCX)表达,在细胞核中发现了NeuN。反过来,在PC12 Adh细胞系中,DCX不表达,而NeuN表达位于整个细胞中(在细胞核和细胞质中)。只有用NGF分化后悬浮在悬浮液中生长的传统PC12细胞系才能用于神经生物学研究,尤其是直到NeuN蛋白的作用得到充分了解之前,NeuN蛋白的表达也已经在粘附细胞的细胞质中得到了证实。

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