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Histo-pillar 条带用于优化 3D 肺癌患者来源类器官中的 histogel 块构建和生物标志物分析。

Histo-pillar strip for optimal histogel block construction and biomarker analysis in 3D-lung cancer patient-derived organoids.

机构信息

Department of Biomedical Engineering, Gachon University, Seongnam 13120, Republic of Korea.

Central R & D Center, Medical & Bio Decision (MBD) Co., Ltd, Suwon 16229, Republic of Korea.

出版信息

Biofabrication. 2024 Aug 7;16(4). doi: 10.1088/1758-5090/ad68a7.

Abstract

This study proposed an optimized histogel construction method for histological analysis by applying lung cancer patient-derived organoids (PDOs) to the developed histo-pillar strip. Previously, there is the cultured PDOs damage problem during the histogel construction due to forced detachment of the Matrigel spots from the 96-well plate bottom. To address this issue, we cultured PDO on the proposed Histo-pillar strips and then immersed them in 4% paraformaldehyde fixation solution to self-isolate PDO without damage. The 4l patient-derived cell (PDC)/Matrigel mixtures were dispensed on the surface of a U-shaped histo-pillar strip, and the PDCs were aggregated by gravity and cultured into PDOs. Cultured PDOs were self-detached by simply immersing them in a paraformaldehyde fixing solution without physical processing, showing about two times higher cell recovery rate than conventional method. In addition, we proposed a method for embedding PDOs under conditions where the histogel temperature was maintained such that the histogel did not harden, thereby improving the problem of damaging the histogel block in the conventional sandwich histogel construction method. We performed histological and genotyping analyses using tumor tissues and PDOs from two patients with lung adenocarcinoma. Therefore, the PDO culture and improved histogel block construction method using the histo-pillar strip proposed in this study can be employed as useful tools for the histological analysis of a limited number of PDCs.

摘要

本研究提出了一种优化的组织凝胶构建方法,通过将肺癌患者来源的类器官(PDO)应用于开发的组织柱条,用于组织学分析。此前,由于从 96 孔板底部强行分离 Matrigel 斑点,在组织凝胶构建过程中存在培养的 PDO 损伤问题。为了解决这个问题,我们将 PDO 培养在建议的组织柱条上,然后将它们浸入 4%多聚甲醛固定溶液中,使 PDO 自我隔离而不受损伤。将 4l 患者来源细胞(PDC)/Matrigel 混合物分配到 U 形组织柱条的表面,PDC 会因重力而聚集,并培养成 PDO。培养的 PDO 只需简单地浸入多聚甲醛固定溶液中,无需进行物理处理,即可自我分离,细胞回收率比传统方法高约两倍。此外,我们提出了一种在组织凝胶温度保持不变的条件下嵌入 PDO 的方法,以避免组织凝胶块变硬,从而改善了传统三明治组织凝胶构建方法中损坏组织凝胶块的问题。我们使用来自两名肺腺癌患者的肿瘤组织和 PDO 进行了组织学和基因分型分析。因此,本研究中提出的 PDO 培养和改进的组织柱条构建方法可以作为对有限数量 PDC 进行组织学分析的有用工具。

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