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首页> 外文期刊>Cellular and Molecular Bioengineering >Cutting and Bonding Parafilm (R) to Fast Prototyping Flexible Hanging Drop Chips for 3D Spheroid Cultures
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Cutting and Bonding Parafilm (R) to Fast Prototyping Flexible Hanging Drop Chips for 3D Spheroid Cultures

机译:切割和粘合Parafilm(R)到快速原型设计灵活悬挂碎片,用于3D球状培养物

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摘要

A fast and low-cost fabrication process of flexible hanging drop chips for 3D spheroid cultures was proposed by cutting and bonding Parafilm(R), a cohesive thermoplastic. The Parafilm(R) Hanging Drop Chip (PHDC) was assembled by two-layer of Parafilm(R) sheet with different sizes of holes. The hole on the upper layer of the Parafilm(R) is smaller than the hole on the bottom layer. The impact of hole size and sample volume on hanging drop formation and 3D spheroid formations in the hanging drop were investigated. The results showed that 20 mu L solution on PHDC with a 3 mm hole could form stabile drop and facilitate spheroid formation. The initial cell number determinates the size of the formed spheroids. Exchanging liquid from the upper hole of the PHDC enables the co-culture of two types of cells in one spheroid and drug efficacy testing in hanging drops. The relative expression of cell adhesion and hypoxia-related genes from spheroids in hanging drop and conventional culture plate suggested the relevance of 3D spheroids and in vivo tumor tissue. The economical hanging drop chip can be fabricated without wet chemistry or expensive fabrication equipment, strengthening its application potential in conventional biological laboratories.
机译:提出了一种快速、低成本的3D球体培养用柔性悬滴芯片的制造工艺,该工艺通过切割和粘合粘性热塑性塑料Parafilm(R)来实现。Parafilm(R)悬滴芯片(PHDC)由两层具有不同尺寸孔的Parafilm(R)片组装而成。副膜(R)上层的孔比底层的孔小。研究了孔尺寸和样品体积对悬滴形成和悬滴中三维球体形成的影响。结果表明,20μL溶液在直径为3mm的PHDC上可以形成稳定的液滴,有利于球体的形成。初始细胞数决定了形成的球体的大小。从PHDC上部孔交换液体,可以在一个球体中共同培养两种类型的细胞,并在悬滴中进行药物疗效测试。悬滴法和常规培养板中球体细胞粘附和缺氧相关基因的相对表达表明3D球体与体内肿瘤组织相关。这种经济的悬滴芯片可以在不使用湿化学或昂贵的制造设备的情况下制造,增强了其在传统生物实验室中的应用潜力。

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