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Fluorescence-Based Method, Exploiting Lipofuscin, for Real-Time Detection of Central Nervous System Tissues on Bovine Carcasses

机译:利用荧光法开发脂褐素实时检测牛Bo体中枢神经系统组织

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The removal of central nervous system (CNS) tissues as part of bovine spongiform encephalopathy (BSE) risk material is one of the highest priority tasks to avoid contamination of the human food chain with BSE. No currently available method enables the real-time detection of possible CNS tissue contamination on carcasses during slaughter. The fluorescent pigment lipofuscin is a heterogeneous, high-molecular weight material that has been shown to be enriched in high concentrations in neuronal tissues. In this study, lipofuscin fluorescence was investigated as a marker for real-time detection of CNS contamination. Front-faced fluorescence spectra of brain and spinal cord samples from 11 cattle gave identical, reproducible fluorescence signal patterns with high intensities. The specificity of these spectra was assessed by investigating 13 different non-CNS tissues enabling the differentiation of brain and spinal cord by signal intensity and structure of the spectra, respectively. Small quantities of bovine spinal cord were reliably detected in the presence of raw bovine skeletal muscle, fat, and vertebrae. The presented data are a fundamental basis for the development of a prototype device allowing real-time monitoring of CNS tissue contamination on bovine carcasses and meat cuts.
机译:作为牛海绵状脑病(BSE)风险物质的一部分,去除中枢神经系统(CNS)组织是避免人类食物链受到BSE污染的最优先任务之一。当前没有可用的方法能够实时检测屠宰过程中detection体上可能的CNS组织污染。荧光色素脂褐素是一种异质的高分子量材料,已显示在神经元组织中富含高浓度物质。在这项研究中,脂褐素荧光被研究为实时检测中枢神经系统污染的标记。来自11头牛的大脑和脊髓样品的正面荧光光谱给出了强度高的相同,可再现的荧光信号模式。通过研究13种不同的非CNS组织,分别通过信号强度和光谱结构来区分大脑和脊髓,从而评估了这些光谱的特异性。在存在原始牛骨骼肌,脂肪和椎骨的情况下,可以可靠地检测到少量牛脊髓。所提供的数据是开发原型设备的基础,该设备可以实时监控牛尸体和切肉中的中枢神经系统组织污染。

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