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系统评价和荟萃分析影响循环血管内皮生长因子测量的分析前因素和方法学差异。

A systematic review and meta-analysis of preanalytical factors and methodological differences influencing the measurement of circulating vascular endothelial growth factor.

机构信息

Learning and Leadership for Health Care Professionals At the Institute of Health and Care Science at Sahlgrenska Academy at University of Gothenburg, Gothenburg, Sweden.

Department of Clinical Neuroscience At the Institution of Neuroscience and Physiology at Sahlgrenska Academy at University of Gothenburg, Gothenburg, Sweden.

出版信息

PLoS One. 2022 Jul 6;17(7):e0270232. doi: 10.1371/journal.pone.0270232. eCollection 2022.

Abstract

BACKGROUND

Intraocular treatment with antibodies targeting vascular endothelial growth factor (anti-VEGF) inhibits pathological vessel growth in adults and preterm infants. Recently, concerns regarding the impact of anti-VEGF treatment on systemic VEGF levels in preterm infants have been raised. Earlier studies suggest that preanalytical and methodological parameters impact analytical VEGF concentrations, but we have not found a comprehensive systematic review covering preanalytical procedures and methods for VEGF measurements.

OBJECTIVE

This review aimed to evaluate the most critical factors during sample collection, sample handling, and the analytical methods that influence VEGF levels and therefore should be considered when planning a prospective collection of samples to get reproducible, comparable results.

MATERIAL AND METHODS

PubMed and Scopus databases were searched 2021/Nov/11. In addition, identification of records via other methods included reference, citation, and Google Scholar searches. Rayyan QCRI was used to handle duplicates and the selection process. Publications reporting preanalytical handling and/or methodological comparisons using human blood samples were included. Exclusion criteria were biological, environmental, genetic, or physiological factors affecting VEGF. The data extraction sheets included bias assessment using the QUADAS-2 tool, evaluating patient selection, index-test, reference standard, and flow and timing. Concentrations of VEGF and results from statistical comparisons of analytical methods and/or preanalytical sample handling and/or different sample systems were extracted. The publications covering preanalytical procedures were further categorized based on the stage of the preanalytical procedure. Meta-analysis was used to visualize VEGF concentrations among healthy individuals. The quality of evidence was rated according to GRADE.

RESULTS

We identified 1596 publications, and, after the screening process, 43 were considered eligible for this systematic review. The risk of bias estimation was difficult for 2/4 domains due to non-reported information. Four critical steps in the preanalytical process that impacted VEGF quantification were identified: blood drawing and the handling before, during, and after centrifugation. Sub-categorization of those elements resulted in nine findings, rated from moderate to very low evidence grade. The choice of sample system was the most reported factor. VEGF levels (mean [95% CI]) in serum (n = 906, 20 publications), (252.5 [213.1-291.9] pg/mL), were approximated to ninefold higher than in plasma (n = 1122, 23 publications), (27.8 [23.6-32.1] pg/mL), based on summarized VEGF levels with meta-analysis. Notably, most reported plasma levels were below the calibration range of the used method.

CONCLUSION

When measuring circulating VEGF levels, choice of sample system and sample handling are important factors to consider for ensuring high reproducibility and allowing study comparisons. Protocol: CRD42020192433.

摘要

背景

针对血管内皮生长因子 (anti-VEGF) 的眼内治疗可抑制成人和早产儿的病理性血管生长。最近,人们对早产儿抗 VEGF 治疗对全身 VEGF 水平的影响表示担忧。早期研究表明,分析前和方法学参数会影响分析 VEGF 浓度,但我们尚未找到涵盖 VEGF 测量的分析前程序和方法的全面系统评价。

目的

本综述旨在评估样品采集、样品处理过程中的最关键因素,以及影响 VEGF 水平的分析方法,因此在计划前瞻性采集样本以获得可重复、可比的结果时应考虑这些因素。

材料和方法

2021 年 11 月 11 日在 PubMed 和 Scopus 数据库中进行了搜索。此外,还通过其他方法(包括参考文献、引文和 Google Scholar 搜索)识别记录。Rayyan QCRI 用于处理重复项和选择过程。纳入报告分析前处理和/或使用人血样本进行方法学比较的出版物。排除标准为影响 VEGF 的生物、环境、遗传或生理因素。数据提取表包括使用 QUADAS-2 工具评估偏倚,评估患者选择、检测指标、参考标准以及流程和时间。提取了 VEGF 浓度以及分析方法和/或分析前样品处理和/或不同样品系统的统计比较结果。涵盖分析前程序的出版物进一步根据分析前程序的阶段进行分类。使用 Meta 分析可视化健康个体中的 VEGF 浓度。根据 GRADE 对证据质量进行评级。

结果

我们确定了 1596 篇出版物,经过筛选过程,有 43 篇被认为符合本系统评价的标准。由于未报告信息,有 2/4 个领域的偏倚评估困难。在分析前过程中确定了 4 个影响 VEGF 定量的关键步骤:采血以及离心前后的处理。对这些因素进行了细分,结果有 9 个发现,证据等级从中度到极低。样本系统的选择是报告最多的因素。基于汇总的 VEGF 水平进行 Meta 分析,血清(n = 906,20 篇出版物)中 VEGF 水平(平均值[95%CI])为 252.5[213.1-291.9]pg/mL,近似于血浆(n = 1122,23 篇出版物)中 9 倍,为 27.8[23.6-32.1]pg/mL。值得注意的是,大多数报告的血浆水平均低于所用方法的校准范围。

结论

在测量循环 VEGF 水平时,选择样本系统和样本处理是确保高重复性和允许研究比较的重要考虑因素。方案:CRD42020192433。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27ca/9258884/9f86b82fa2a7/pone.0270232.g001.jpg

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