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具有不同形貌的3D培养皿微模具的图案化聚乙烯醇水凝胶用于HeLa癌细胞球体形成:体外评估

Patterned PVA Hydrogels with 3D Petri Dish Micro-Molds of Varying Topography for Spheroid Formation of HeLa Cancer Cells: In Vitro Assessment.

作者信息

Moreno Valtierra Maira, Urue Corral Adriana, Jiménez-Avalos Jorge Armando, Barbosa Avalos Erika, Dávila-Rodríguez Judith, Morales Hernández Norma, Comas-García Mauricio, Toriz González Guillermo, Oceguera-Villanueva Antonio, Cruz-Ramos José Alfonso, Hernández Gutiérrez Rodolfo, Martínez Velázquez Moisés, García Carvajal Zaira Yunuen

机构信息

Biotecnología Médica y Farmacéutica, Centro de Investigación y Asistencia en Tecnología y Diseño del Estado de Jalisco (CIATEJ), Av. Normalistas # 800, Col. Colinas de la Normal, Guadalajara 44270, Mexico.

Centro de Investigación y Desarrollo Oncológico, S.A. de C.V. (CIDO), Av. Palmira # 600-A, Col. Villas del Pedregal, San Luis Potosí 78218, Mexico.

出版信息

Gels. 2024 Aug 6;10(8):518. doi: 10.3390/gels10080518.

Abstract

Cell spheroids are an important three-dimensional (3D) model for in vitro testing and are gaining interest for their use in clinical applications. More natural 3D cell culture environments that support cell-cell interactions have been created for cancer drug discovery and therapy applications, such as the scaffold-free 3D Petri Dish technology. This technology uses reusable and autoclavable silicone micro-molds with different topographies, and it conventionally uses gelled agarose for hydrogel formation to preserve the topography of the selected micro-mold. The present study investigated the feasibility of using a patterned Poly(vinyl alcohol) hydrogel using the circular topography 12-81 (9 × 9 wells) micro-mold to form HeLa cancer cell spheroids and compare them with the formed spheroids using agarose hydrogels. PVA hydrogels showed a slightly softer, springier, and stickier texture than agarose hydrogels. After preparation, Fourier transform infrared (FTIR) spectra showed chemical interactions through hydrogen bonding in the PVA and agarose hydrogels. Both types of hydrogels favor the formation of large HeLa spheroids with an average diameter of around 700-800 µm after 72 h. However, the PVA spheroids are more compact than those from agarose, suggesting a potential influence of micro-mold surface chemistry on cell behavior and spheroid formation. This was additionally confirmed by evaluating the spheroid size, morphology, integrity, as well as E-cadherin and Ki67 expression. The results suggest that PVA promotes stronger cell-to-cell interactions in the spheroids. Even the integrity of PVA spheroids was maintained after exposure to the drug cisplatin. In conclusion, the patterned PVA hydrogels were successfully prepared using the 3D Petri Dish micro-molds, and they could be used as suitable platforms for studying cell-cell interactions in cancer drug therapy.

摘要

细胞球体是用于体外测试的重要三维(3D)模型,并且因其在临床应用中的用途而受到关注。为癌症药物发现和治疗应用创建了更支持细胞间相互作用的天然3D细胞培养环境,例如无支架3D培养皿技术。该技术使用具有不同拓扑结构的可重复使用和可高压灭菌的硅胶微模具,并且传统上使用凝胶化的琼脂糖形成水凝胶以保留所选微模具的拓扑结构。本研究调查了使用具有圆形拓扑结构12 - 81(9×9孔)微模具的图案化聚乙烯醇(PVA)水凝胶形成HeLa癌细胞球体并将其与使用琼脂糖水凝胶形成的球体进行比较的可行性。PVA水凝胶显示出比琼脂糖水凝胶稍软、更有弹性和更粘的质地。制备后,傅里叶变换红外(FTIR)光谱显示PVA和琼脂糖水凝胶中通过氢键发生化学相互作用。两种类型的水凝胶都有利于在72小时后形成平均直径约为700 - 800 µm的大型HeLa球体。然而,PVA球体比琼脂糖球体更紧密,表明微模具表面化学对细胞行为和球体形成有潜在影响。通过评估球体大小、形态、完整性以及E - 钙粘蛋白和Ki67表达进一步证实了这一点。结果表明PVA促进球体中更强的细胞间相互作用。即使在暴露于顺铂药物后,PVA球体的完整性也得以维持。总之,使用3D培养皿微模具成功制备了图案化PVA水凝胶,并且它们可作为研究癌症药物治疗中细胞间相互作用的合适平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78e3/11353421/d5d83008369d/gels-10-00518-g001.jpg

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