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Method Validation for Preparing Urine Samples for Downstream Proteomic and Metabolomic Applications

机译:制备用于下游蛋白质组学和代谢组学应用的尿液样品的方法验证

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Background: Formal validation of methods for biospecimen processing in the context of accreditation in laboratories and biobanks is lacking. A protocol for processing of a biospecimen (urine) was validated for fitness-for-purpose in terms of key downstream endpoints. Methods: Urine processing was optimized for centrifugation conditions on the basis of microparticle counts at room temperature (RT) and at 4℃. The optimal protocol was validated for performance (microparticle counts), and for reproducibility and robustness for centrifugation temperature (4℃ vs. RT) and brake speed (soft, medium, hard). Acceptance criteria were based on microparticle counts, cystatin C and creatinine concentrations, and the metabolomic profile. Results: The optimal protocol was a 20-min, 12,000 g centrifugation at 4℃, and was validated for urine collection in terms of microparticle counts. All reproducibility acceptance criteria were met. The protocol was robust for centrifugation at 4℃ versus RT for all parameters. The protocol was considered robust overall in terms of brake speeds, although a hard brake gave significantly fewer microparticles than a soft brake. Conclusions: We validated a urine processing method suitable for downstream proteomic and metabolomic applications. Temperature and brake speed can influence analytic results, with 4℃ and high brake speed considered optimal. Laboratories and biobanks should ensure these conditions are systematically recorded in the scope of accreditation.
机译:背景:缺乏对实验室和生物库中认可的生物样本处理方法的形式验证。根据关键下游指标,验证了用于处理生物样本(尿液)的协议是否适合用途。方法:根据室温(RT)和4℃下的微粒计数,针对离心条件优化尿液处理。验证了最佳方案的性能(微粒数),离心温度(4℃vs. RT)和制动速度(软,中,硬)的可重复性和鲁棒性。接受标准基于微粒计数,半胱氨酸蛋白酶抑制剂C和肌酐浓度以及代谢组学特征。结果:最佳实验方案是在4℃下20分钟,12,000 g离心,并通过微粒计数对尿液收集进行了验证。符合所有可重复性接受标准。对于所有参数而言,该方案对于在4℃下离心均比RT鲁棒。该协议在制动速度方面总体上被认为是可靠的,尽管硬制动产生的微粒明显少于软制动。结论:我们验证了一种适合下游蛋白质组学和代谢组学应用的尿液处理方法。温度和制动速度会影响分析结果,在4℃和高制动速度被认为是最佳的情况下。实验室和生物库应确保将这些条件系统地记录在认证范围内。

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