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使用临近延伸分析评估泪液蛋白质组学的预处理方法。

Evaluation of pre-processing methods for tear fluid proteomics using proximity extension assays.

机构信息

Department of Ophthalmology, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands.

Department of Immunology, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands.

出版信息

Sci Rep. 2023 Mar 17;13(1):4433. doi: 10.1038/s41598-023-31227-1.

Abstract

Tear fluid forms a potential source for biomarker identification, and can be minimal invasively collected via Schirmer strips. The lack of knowledge on the processing of Schirmer strips however complicates the analysis and between-study comparisons. We studied two different pre-processing methods, specifically the use of punches of the strip versus elution of the strip in a buffer. Tear fluid filled Schirmer strips were collected from 5 healthy participants, and divided into two halves over the length of the strip. In either part, punches or eluates were obtained from 4 different locations, from the first part touching the eye (head) to the end, to assess the protein distribution along the strips. The levels of 92 inflammatory proteins were measured in the punches/eluates using proximity extension assays. The punch method yielded higher protein detectability compared to the elution method (76% vs 66%; p ≤ 0.001). Protein expression level was found to be slightly higher in the head of the strip, however, 3 out of 5 punches from the head failed quality control. Protein expression levels over the remaining parts of the strips were similar. Our study showed beneficial use of punches of any part of the strip except the head in future biomarker research.

摘要

泪液形成了生物标志物鉴定的潜在来源,可以通过 Schirmer 条微创采集。然而,由于对 Schirmer 条处理方法的了解不足,分析和研究间比较变得复杂。我们研究了两种不同的预处理方法,即使用条带打孔和在缓冲液中洗脱条带。从 5 名健康参与者中收集充满泪液的 Schirmer 条带,并沿条带长度将其分成两部分。在每一部分中,从接触眼睛(头部)的第一条到条带末端的 4 个不同位置获得打孔或洗脱液,以评估条带上的蛋白质分布。使用邻近延伸测定法在打孔/洗脱液中测量了 92 种炎症蛋白的水平。打孔法比洗脱法的蛋白质检测率更高(76%比 66%;p≤0.001)。结果发现,条带头部的蛋白质表达水平略高,但 5 个头部打孔中有 3 个未通过质量控制。条带其余部分的蛋白质表达水平相似。我们的研究表明,在未来的生物标志物研究中,除头部外,条带的任何部分的打孔都有有益的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e35/10023677/5fac9bdccfe6/41598_2023_31227_Fig1_HTML.jpg

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