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基于微小RNA差异水平的用于有机牛奶鉴别的金纳米颗粒传感器的研制

Development of a Gold Nanoparticle-Based Sensor for Authentication of Organic Milk Based on Differential Levels of miRNA.

作者信息

Lopez-Benitez Karelmar, Alcazar-Gonzalez Patricia, El Qassim Loubna Abou, Fernandez-Argüelles Mª Teresa, Vicente Fernando, Royo Luis J, Menendez-Miranda Mario

机构信息

Regional Service for Agrofood Research and Development (SERIDA), 33300 Asturias, Spain.

Department of Physical and Analytical Chemistry, Faculty of Chemistry, University of Oviedo, 33006 Asturias, Spain.

出版信息

Nanomaterials (Basel). 2024 Aug 19;14(16):1364. doi: 10.3390/nano14161364.

Abstract

Dairy production systems significantly impact environmental sustainability, animal welfare, and human health. Intensive farming maximizes output through high-input practices, raising concerns about environmental degradation, animal welfare, and health risks from antibiotic residues. Conversely, organic farming emphasizes sustainable practices, animal welfare, and minimal synthetic inputs, potentially enhancing biodiversity, soil health, and milk quality. MicroRNAs (miRNAs), non-coding RNAs regulating gene expression, are promising biomarkers due to their response to various conditions. In this study, miRNAs bta-miR-103 and bta-miR-155, which are abundant in milk from pasture-fed cows, were selected. Additionally, bta-miR-215, which is abundant in milk fat from intensive systems, was also studied, in order to differentiate dairy production systems. A novel, cost-effective gold nanoparticle (AuNP)-based sensor was developed for miRNA detection, leveraging the unique plasmonic properties of AuNPs for visual detection. The method involves functionalizing AuNPs with complementary RNA probes and detecting miRNA-induced aggregation through colorimetric changes. This rapid, results in 30 min, and sensitive, visual limit of detection of 200 nM, assay requires minimal instrumentation and can be easily interpreted, offering significant advantages for field implementation in characterizing dairy production systems. This study demonstrates the successful application of this sensor in detecting miRNAs in 350 nM miRNA spiked raw milk, highlighting its potential for in situ dairy industry applications.

摘要

乳制品生产系统对环境可持续性、动物福利和人类健康有着重大影响。集约化养殖通过高投入做法使产量最大化,引发了人们对环境退化、动物福利以及抗生素残留带来的健康风险的担忧。相反,有机养殖强调可持续做法、动物福利以及尽量减少合成投入,这可能会增强生物多样性、土壤健康和牛奶质量。微小RNA(miRNA)是调控基因表达的非编码RNA,由于它们对各种条件的反应,有望成为生物标志物。在本研究中,选择了在以牧草喂养的奶牛所产牛奶中含量丰富的miRNA bta-miR-103和bta-miR-155。此外,还研究了在集约化养殖系统的乳脂肪中含量丰富的bta-miR-215,以便区分乳制品生产系统。开发了一种基于金纳米颗粒(AuNP)的新型、经济高效的传感器用于miRNA检测,利用AuNP独特的等离子体特性进行视觉检测。该方法包括用互补RNA探针使AuNP功能化,并通过比色变化检测miRNA诱导的聚集。这种检测方法快速(30分钟内出结果)且灵敏,视觉检测限为200 nM,所需仪器最少且易于解读,为表征乳制品生产系统的现场应用提供了显著优势。本研究证明了该传感器在检测添加了350 nM miRNA的原料奶中的miRNA方面的成功应用,突出了其在乳制品行业原位应用的潜力。

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