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临床移植前生物工程组织和器官中细胞活力的验证。

Verification of cell viability in bioengineered tissues and organs before clinical transplantation.

机构信息

Advanced Center for Translational Regenerative Medicine (ACTREM), Karolinska Institutet, Huddinge, Stockholm, Sweden.

Department of Molecular Medicine and Surgery, Division of Cardiothoracic Surgery, Karolinska Institutet, Karolinska University Hospital, Solna, Stockholm, Sweden.

出版信息

Biomaterials. 2013 May;34(16):4057-4067. doi: 10.1016/j.biomaterials.2013.02.057. Epub 2013 Mar 6.

Abstract

The clinical outcome of transplantations of bioartificial tissues and organs depends on the presence of living cells. There are still no standard operative protocols that are simple, fast and reliable for confirming the presence of viable cells on bioartificial scaffolds prior to transplantation. By using mathematical modeling, we have developed a colorimetric-based system (colorimetric scale bar) to predict the cell viability and density for sufficient surface coverage. First, we refined a method which can provide information about cell viability and numbers in an in vitro setting: i) immunohistological staining by Phalloidin/DAPI and ii) a modified colorimetric cell viability assay. These laboratory-based methods and the developed colorimetric-based system were then validated in rat transplantation studies of unseeded and seeded tracheal grafts. This was done to provide critical information on whether the graft would be suitable for transplantation or if additional cell seeding was necessary. The potential clinical impact of the colorimetric scale bar was confirmed using patient samples. In conclusion, we have developed a robust, fast and reproducible colorimetric tool that can verify and warrant viability and integrity of an engineered tissue/organ prior to transplantation. This should facilitate a successful transplantation outcome and ensure patient safety.

摘要

生物人工组织和器官移植的临床结果取决于活细胞的存在。目前还没有简单、快速和可靠的标准手术方案,可在移植前确认生物人工支架上存活细胞的存在。我们通过数学建模,开发了一种基于比色的系统(比色刻度),以预测具有足够表面覆盖率的细胞活力和密度。首先,我们改进了一种方法,可以在体外环境中提供有关细胞活力和数量的信息:i)鬼笔环肽/DAPI 免疫组织化学染色和 ii)改良的比色细胞活力测定法。然后,在未播种和播种的气管移植物的大鼠移植研究中验证了这些基于实验室的方法和开发的基于比色的系统。这是为了提供关于移植物是否适合移植或是否需要额外播种细胞的关键信息。使用患者样本证实了比色刻度的潜在临床影响。总之,我们开发了一种强大、快速和可重复的比色工具,可以在移植前验证和保证工程组织/器官的活力和完整性。这应该有助于实现成功的移植结果并确保患者安全。

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