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RF/6A 脉络膜视网膜细胞不表现出关键的内皮细胞表型。

RF/6A Chorioretinal Cells Do Not Display Key Endothelial Phenotypes.

机构信息

Center for Advanced Vision Science, University of Virginia School of Medicine, Charlottesville, Virginia, United States.

Department of Ophthalmology, University of Virginia School of Medicine, Charlottesville, Virginia, United States.

出版信息

Invest Ophthalmol Vis Sci. 2018 Dec 3;59(15):5795-5802. doi: 10.1167/iovs.18-25215.

Abstract

PURPOSE

The misuse of inauthentic cell lines is widely recognized as a major threat to the integrity of biomedical science. Whereas the majority of efforts to address this have focused on DNA profiling, we sought to anatomically, transcriptionally, and functionally authenticate the RF/6A chorioretinal cell line, which is widely used as an endothelial cell line to model retinal and choroidal angiogenesis.

METHODS

Multiple vials of RF/6A cells obtained from different commercial distributors were studied to validate their genetic, transcriptomic, anatomic, and functional fidelity to bona fide endothelial cells.

RESULTS

Transcriptomic profiles of RF/6A cells obtained either de novo or from a public data repository did not correspond to endothelial gene expression signatures. Expression of established endothelial markers were very low or undetectable in RF/6A compared to primary human endothelial cells. Importantly, RF/6A cells also did not display functional characteristics of endothelial cells such as uptake of acetylated LDL, expression of E-selectin in response to TNF-α exposure, alignment in the direction of shear stress, and AKT and ERK1/2 phosphorylation following VEGFA stimulation.

CONCLUSIONS

Multiple independent sources of RF/6A do not exhibit key endothelial cell phenotypes. Therefore, these cells appear unsuitable as surrogates for choroidal or retinal endothelial cells. Further, cell line authentication methods should extend beyond genomic profiling to include anatomic, transcriptional, and functional assessments.

摘要

目的

伪造细胞系的滥用被广泛认为是对生物医学科学完整性的主要威胁。虽然大多数解决这个问题的努力都集中在 DNA 分析上,但我们试图从解剖学、转录和功能上验证 RF/6A 脉络膜视网膜细胞系,该细胞系广泛用作模拟视网膜和脉络膜血管生成的内皮细胞系。

方法

研究了从不同商业供应商获得的多个 RF/6A 细胞小瓶,以验证其遗传、转录组、解剖和功能与真正的内皮细胞的一致性。

结果

无论是从头获得还是从公共数据库获得的 RF/6A 细胞的转录组谱与内皮基因表达特征不对应。与原代人内皮细胞相比,RF/6A 中的已建立的内皮标记物的表达水平非常低或无法检测到。重要的是,RF/6A 细胞也没有表现出内皮细胞的功能特征,例如摄取乙酰化 LDL、在 TNF-α 暴露时表达 E-选择素、沿剪切应力方向排列以及在 VEGFA 刺激后 AKT 和 ERK1/2 的磷酸化。

结论

多个独立来源的 RF/6A 并不表现出关键的内皮细胞表型。因此,这些细胞似乎不适合作为脉络膜或视网膜内皮细胞的替代品。此外,细胞系验证方法应不仅仅局限于基因组分析,还应包括解剖学、转录和功能评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caff/6278239/8c1b7d9c1f31/i1552-5783-59-15-5795-f01.jpg

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