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Real time detection and management antibiotic residues in milk

Real time detection and management antibiotic residues in milk
实时检测和管理牛奶中抗生素残留
批准号:
2440853
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2020
资助国家:
英国
项目状态:
未结题
起止时间:
2020 至 --

项目摘要

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中文摘要
翻译
抗生素等抗微生物药物在农业中被广泛用于治疗由微生物引起的一系列疾病。在奶牛场,被抗菌剂残留物污染的牛奶有很高的风险污染散装储存罐,从而污染用于商业用途的牛奶。受污染的牛奶不能再出售,导致整个供应链出现巨大的经济损失。此外,受污染的牛奶被丢弃在环境中,分散了抗菌剂,并可能加速抗菌素耐药性的出现。目前用于筛选牛奶中抗菌剂残留的检测方法昂贵或耗时,而且只能检测有限范围的残留物。此外,目前还不存在能够实时监控挤奶并自动防止散装奶罐污染的技术。通过这一博士生项目开发的技术将通过开发用于检测抗菌剂残留的智能内联式传感器来彻底改变牛奶的实时监测(图1)。该项目是与苏格兰西部大学合作的结果,以回应与农业和园艺发展委员会、苏格兰全国农民联盟和苏格兰乳品中心的讨论。我们也有格雷厄姆家庭乳业的参与,作为该项目的主要合作伙伴,能够提供必要的实物支持和行业洞察力。这一合作将提供一项专注于行业的技术,能够提高生产率,增强供应信心,并降低农场和奶牛场带来的风险。学生将专注于开发低成本的印刷传感器,与电化学技术相结合,创建一种完全集成的传感器和仪器,能够识别牛奶中是否存在抗菌剂残留。分子印迹聚合物(MIP)将被开发并用作基础,将抗菌剂残留物的存在转化为可测量的、可监测的信号,该信号可以启动转向阀,以防止散装油罐污染。MIPS对这一应用很有吸引力,因为它们可以低成本生产,没有冷链存储要求,并且对目标分析物高度敏感。与传感器结合使用的仪器已经制作了原型,可以按照GB 5制造。我们将把它与为GB 1生产的消耗品传感器结合起来。该项目对博士生来说是一个极好的发展机会,他将在研究和工业之间的接口上获得宝贵的经验。该项目的结果和结果将被用作申请大规模商业化赠款的基础,例如InnovateUK,最终提供商业解决方案。我们的合作伙伴包括苏格兰西部大学,他们面向行业,拥有强大的网络来提供该系统的工作台和农场原型。
英文摘要
Antimicrobial drugs, such as antibiotics, are widely used in farming to treat a range of diseases caused by microorganisms. On dairy farms, there is a high risk that milk contaminated with antimicrobial residues contaminates the bulk storage tank and therefore milk destined for commercial use. Contaminated milk can no longer be sold resulting in large financial losses across the supply chain. Additionally, contaminated milk is disposed of in the environment, dispersing antimicrobials and potentially accelerating the emergence of antimicrobial resistance. The tests currently used to screen milk for antimicrobial residues are expensive or time consuming and only detect a limited range of residues. Furthermore, no technology currently exists that can monitor milking in real time and automatically preventing contamination of the bulk tank. The technology that will be developed through this PhD studentship will revolutionise real time monitoring of milk through the development of a smart inline sensor for the detection of antimicrobial residues (figure 1).This project results from a collaboration with the University of the West of Scotland in response to discussions with the Agricultural and Horticultural Development Board, National Farmers Union Scotland and the Scottish Dairy Hub. We also have the involvement of Graham's Family Dairy, as a key collaborator in the project, capable of providing essential in-kind support and industry insight. Together, this collaboration will deliver an industry focused technology with the capability to improve productivity, increase confidence of supply and reduce risk carried by farms and diaries.The studentship will focus upon the development of low cost printed sensors, combined with electrochemical techniques to create a fully integrated sensor and instrument, capable of identifying the presence of antimicrobial residues within milk. Molecularly Imprinted polymers (MIPs) will be developed and used as the basis to transduce the presence of antimicrobial residues into a measurable, monitored signal which can actuate a diversion valve to prevent bulk tank contamination. MIPs are attractive for this application because they can be produced at low cost, do not have cold chain storage requirements and are highly sensitive for the target analyte. The instrument used in conjunction with the sensor has already been prototyped and can be manufactured for under £5. We will combine this with a consumable sensor, produced for under £1. The project represents an excellent development opportunity for the PhD candidate, who will gain valuable experience at the interface between research and industry. The results and outcomes of the project will be used as a basis to apply for large commercialisation grants, such as innovateUK, ultimately to deliver commercial solutions. Our partnership includes the University of the West of Scotland, who are industry facing and have a strong network to deliver bench top and farm prototypes of the system.
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