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绵羊骨髓间充质干细胞球状体对痒病朊病毒感染的易感性。

Susceptibility of Ovine Bone Marrow-Derived Mesenchymal Stem Cell Spheroids to Scrapie Prion Infection.

作者信息

Hernaiz Adelaida, Cobeta Paula, Marín Belén, Vázquez Francisco José, Badiola Juan José, Zaragoza Pilar, Bolea Rosa, Martín-Burriel Inmaculada

机构信息

Laboratorio de Genética Bioquímica (LAGENBIO), Facultad de Veterinaria, Universidad de Zaragoza, IA2, IIS-Aragón, 50013 Zaragoza, Spain.

Centro de Encefalopatías y Enfermedades Transmisibles Emergentes (CEETE), Facultad de Veterinaria, Universidad de Zaragoza, IA2, IIS-Aragón, 50013 Zaragoza, Spain.

出版信息

Animals (Basel). 2023 Mar 13;13(6):1043. doi: 10.3390/ani13061043.

Abstract

In neurodegenerative diseases, including prion diseases, cellular in vitro models appear as fundamental tools for the study of pathogenic mechanisms and potential therapeutic compounds. Two-dimensional (2D) monolayer cell culture systems are the most used cell-based assays, but these platforms are not able to reproduce the microenvironment of in vivo cells. This limitation can be surpassed using three-dimensional (3D) culture systems such as spheroids that more effectively mimic in vivo cell interactions. Herein, we evaluated the effect of scrapie prion infection in monolayer-cultured ovine bone marrow-derived mesenchymal stem cells (oBM-MSCs) and oBM-MSC-derived spheroids in growth and neurogenic conditions, analyzing their cell viability and their ability to maintain prion infection. An MTT assay was performed in oBM-MSCs and spheroids subjected to three conditions: inoculated with brain homogenate from scrapie-infected sheep, inoculated with brain homogenate from healthy sheep, and non-inoculated controls. The 3D conditions improved the cell viability in most cases, although in scrapie-infected spheroids in growth conditions, a decrease in cell viability was observed. The levels of pathological prion protein (PrP) in scrapie-infected oBM-MSCs and spheroids were measured by ELISA. In neurogenic conditions, monolayer cells and spheroids maintained the levels of PrP over time. In growth conditions, however, oBM-MSCs showed decreasing levels of PrP throughout time, whereas spheroids were able to maintain stable PrP levels. The presence of PrP in spheroids was also confirmed by immunocytochemistry. Altogether, these results show that a 3D culture microenvironment improves the permissiveness of oBM-MSCs to scrapie infection in growth conditions and maintains the infection ability in neurogenic conditions, making this model of potential use for prion studies.

摘要

在包括朊病毒疾病在内的神经退行性疾病中,细胞体外模型是研究致病机制和潜在治疗化合物的基本工具。二维(2D)单层细胞培养系统是最常用的基于细胞的检测方法,但这些平台无法重现体内细胞的微环境。使用三维(3D)培养系统(如更有效地模拟体内细胞相互作用的球体)可以克服这一局限性。在此,我们评估了瘙痒病朊病毒感染对单层培养的绵羊骨髓间充质干细胞(oBM-MSCs)和oBM-MSC来源的球体在生长和神经发生条件下的影响,分析了它们的细胞活力以及维持朊病毒感染的能力。对oBM-MSCs和球体进行了MTT检测,它们分别处于三种条件下:接种来自瘙痒病感染绵羊的脑匀浆、接种来自健康绵羊的脑匀浆以及未接种的对照。在大多数情况下,3D条件提高了细胞活力,尽管在生长条件下感染瘙痒病的球体中,观察到细胞活力下降。通过ELISA检测了感染瘙痒病的oBM-MSCs和球体中病理性朊病毒蛋白(PrP)的水平。在神经发生条件下,单层细胞和球体随时间维持PrP水平。然而,在生长条件下,oBM-MSCs的PrP水平随时间下降,而球体能够维持稳定的PrP水平。免疫细胞化学也证实了球体中存在PrP。总之,这些结果表明,3D培养微环境提高了oBM-MSCs在生长条件下对瘙痒病感染的易感性,并在神经发生条件下维持了感染能力,使该模型在朊病毒研究中具有潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07fa/10044354/64e8d5e0821a/animals-13-01043-g001.jpg

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