The Formation of Stable Lung Tumor Spheroids during Random Positioning Involves Increased Estrogen Sensitivity.

IF 4.8 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Biomolecules Pub Date : 2024-10-12 DOI:10.3390/biom14101292
Balkis Barkia, Viviann Sandt, Daniela Melnik, José Luis Cortés-Sánchez, Shannon Marchal, Bjorn Baselet, Sarah Baatout, Jayashree Sahana, Daniela Grimm, Markus Wehland, Herbert Schulz, Manfred Infanger, Armin Kraus, Marcus Krüger
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Abstract

The formation of tumor spheroids on the random positioning machine (RPM) is a complex and important process, as it enables the study of metastasis ex vivo. However, this process is not yet understood in detail. In this study, we compared the RPM-induced spheroid formation of two cell types of lung carcinoma (NCI-H1703 squamous cell carcinoma cells and Calu-3 adenocarcinoma cells). While NCI-H1703 cells were mainly present as spheroids after 3 days of random positioning, Calu-3 cells remained predominantly as a cell layer. We found that two-dimensional-growing Calu-3 cells have less mucin-1, further downregulate their expression on the RPM and therefore exhibit a higher adhesiveness. In addition, we observed that Calu-3 cells can form spheroids, but they are unstable due to an imbalanced ratio of adhesion proteins (β1-integrin, E-cadherin) and anti-adhesion proteins (mucin-1) and are likely to disintegrate in the shear environment of the RPM. RPM-exposed Calu-3 cells showed a strongly upregulated expression of the estrogen receptor alpha gene ESR1. In the presence of 17β-estradiol or phenol red, more stable Calu-3 spheroids were formed, which was presumably related to an increased amount of E-cadherin in the cell aggregates. Thus, RPM-induced tumor spheroid formation depends not solely on cell-type-specific properties but also on the complex interplay between the mechanical influences of the RPM and, to some extent, the chemical composition of the medium used during the experiments.

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在随机定位过程中形成稳定的肺肿瘤球体涉及雌激素敏感性的增加
肿瘤球体在随机定位机(RPM)上的形成是一个复杂而重要的过程,因为它有助于研究体内转移。然而,人们对这一过程尚未有详细的了解。在本研究中,我们比较了两种肺癌细胞类型(NCI-H1703 鳞状细胞癌细胞和 Calu-3 腺癌细胞)在 RPM 诱导下形成球形体的情况。随机定位 3 天后,NCI-H1703 细胞主要呈球状,而 Calu-3 细胞则主要呈细胞层状。我们发现,二维生长的 Calu-3 细胞粘蛋白-1 较少,在 RPM 上的表达进一步下调,因此表现出更高的粘附性。此外,我们还观察到 Calu-3 细胞可以形成球体,但由于粘附蛋白(β1-整合素、E-cadherin)和抗粘附蛋白(粘蛋白-1)的比例失调,球体并不稳定,很可能在 RPM 的剪切环境中解体。暴露于 RPM 的 Calu-3 细胞显示出雌激素受体α基因 ESR1 的强烈表达上调。在 17β-estradiol 或酚红存在的情况下,Calu-3 球形细胞的形成更加稳定,这可能与细胞聚集体中 E-cadherin 数量增加有关。因此,RPM 诱导的肿瘤球形成不仅取决于细胞类型的特异性,还取决于 RPM 的机械影响以及在一定程度上与实验中所用培养基的化学成分之间复杂的相互作用。
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来源期刊
Biomolecules
Biomolecules Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
9.40
自引率
3.60%
发文量
1640
审稿时长
18.28 days
期刊介绍: Biomolecules (ISSN 2218-273X) is an international, peer-reviewed open access journal focusing on biogenic substances and their biological functions, structures, interactions with other molecules, and their microenvironment as well as biological systems. Biomolecules publishes reviews, regular research papers and short communications.  Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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