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Transfer, Imaging, and Analysis Plate for Facile Handling of 384 Hanging Drop 3D Tissue Spheroids

机译:轻松处理384悬滴3D组织球体的转移,成像和分析板

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摘要

Three-dimensional culture systems bridge the experimental gap between in vivo and in vitro physiology. However, nonstandardized formation and limited downstream adaptability of 3D cultures have hindered mainstream adoption of these systems for biological applications, especially for low- and moderate-throughput assays commonly used in biomedical research. Here we build on our recent development of a 384-well hanging drop plate for spheroid culture to design a complementary spheroid transfer and imaging (TRIM) plate. The low-aspect ratio wells of the TRIM plate facilitated high-fidelity, user-independent, contact-based collection of hanging drop spheroids. Using the TRIM plate, we demonstrated several downstream analyses, including bulk tissue collection for flow cytometry, high-resolution low working-distance immersion imaging, and timely reagent delivery for enzymatic studies. Low working-distance multiphoton imaging revealed a cell type-dependent, macroscopic spheroid structure. Unlike ovarian cancer spheroids, which formed loose, disk-shaped spheroids, human mammary fibroblasts formed tight, spherical, and nutrient-limited spheroids. Beyond the applications we describe here, we expect the hanging drop spheroid plate and complementary TRIM plate to facilitate analyses of spheroids across the spectrum of throughput, particularly for bulk collection of spheroids and high-content imaging.
机译:三维培养系统弥合了体内和体外生理学之间的实验鸿沟。但是,3D培养物的非标准化形成和有限的下游适应性阻碍了这些系统在生物学应用中的主流采用,尤其是对于生物医学研究中通常使用的低通量和中通量测定法。在此,我们以最近开发的用于球体培养的384孔悬挂滴板为基础,以设计互补的球体转移和成像(TRIM)板。 TRIM板的低长径比孔有助于高保真度,独立于用户的,基于接触的悬挂滴球体的收集。使用TRIM板,我们展示了一些下游分析,包括用于流式细胞术的大块组织收集,高分辨率低工作距离浸没成像以及用于酶研究的及时试剂递送。低工作距离多光子成像揭示了一种依赖细胞类型的宏观球状结构。与形成松散的盘状球状卵巢癌的球状体不同,人类乳腺成纤维细胞形成紧密,球形和营养有限的球状体。除了我们在此描述的应用之外,我们还希望悬挂滴球状板和互补TRIM板有助于在通量范围内对球状体进行分析,特别是对于球状体的大量收集和高含量成像。

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