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食管腺癌类器官的亚文化和冷冻保存:单细胞消化的优缺点。

Subculture and Cryopreservation of Esophageal Adenocarcinoma Organoids: Pros and Cons for Single Cell Digestion.

机构信息

Department of General, Visceral, Cancer and Transplantation Surgery, University Hospital Cologne.

Institute of Pathology, University Hospital Cologne.

出版信息

J Vis Exp. 2022 Jul 6(185). doi: 10.3791/63281.

Abstract

The lack of suitable translational research models reflecting primary disease to explore tumorigenesis and therapeutic strategies is a major obstacle in esophageal adenocarcinoma (EAC). Patient-derived organoids (PDOs) have recently emerged as a remarkable preclinical model in a variety of cancers. However, there are still limited protocols available for developing EAC PDOs. Once the PDOs are established, the propagation and cryopreservation are essential for further downstream analyses. Here, two different methods have been standardized for EAC PDOs subculture and cryopreservation, i.e., with and without single cell digestion. Both methods can reliably obtain appropriate cell viability and are applicable for a diverse experimental setup. The current study demonstrated that subculturing EAC PDOs with single cell digestion is suitable for most experiments requiring cell number control, uniform density, and a hollow structure that facilitates size tracking. However, the single cell-based method shows slower growth in culture as well as after re-cultivation from frozen stocks. Besides, subculturing with single cell digestion is characterized by forming hollow structures with a hollow core. In contrast, processing EAC PDOs without single cell digestion is favorable for cryopreservation, expansion, and histological characterization. In this protocol, the advantages and disadvantages of subculturing and cryopreservation of EAC PDOs with and without single cell digestion are described to enable researchers to choose an appropriate method to process and investigate their organoids.

摘要

缺乏能够反映原发性疾病以探索肿瘤发生和治疗策略的合适转化研究模型,是食管腺癌(EAC)研究的主要障碍。患者来源的类器官(PDO)最近在多种癌症中作为一种出色的临床前模型出现。然而,目前用于开发 EAC PDO 的方案仍然有限。一旦建立了 PDO,其传代和冷冻保存对于进一步的下游分析至关重要。在这里,我们标准化了两种不同的 EAC PDO 传代和冷冻保存方法,即单细胞消化和非单细胞消化。这两种方法都可以可靠地获得适当的细胞活力,适用于各种实验设置。本研究表明,单细胞消化的 EAC PDO 传代适合大多数需要细胞数量控制、均匀密度和有利于大小跟踪的空心结构的实验。然而,单细胞方法在培养过程中以及从冷冻细胞库重新培养时的生长速度较慢。此外,单细胞消化的传代方法的特点是形成具有空心核心的空心结构。相比之下,不进行单细胞消化的 EAC PDO 传代有利于冷冻保存、扩增和组织学特征分析。在本方案中,描述了有和没有单细胞消化的 EAC PDO 传代和冷冻保存的优缺点,以便研究人员能够选择合适的方法来处理和研究他们的类器官。

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