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设计定性性能的原型快速检测装置,以检测鸡胴体中的四环素残留。

Designing prototype rapid test device at qualitative performance to detect residue of tetracycline in chicken carcass.

作者信息

Lazuardi Mochamad, Hestianah Eka Pramyrtha, Restiadi Tjuk Imam

机构信息

Veterinary-Pharmacy Science Subdivision, Faculty of Veterinary Medicine, Universitas Airlangga, Mulyorejo rd. "C" Campus Universitas Airlangga, Surabaya, 60115, Indonesia.

Veterinary Histology Subdivision, Faculty of Veterinary Medicine, Universitas Airlangga, Mulyorejo rd. "C" campus Universitas Airlangga, Surabaya, 60115, Indonesia.

出版信息

Vet World. 2022 Apr;15(4):1058-1065. doi: 10.14202/vetworld.2022.1058-1065. Epub 2022 Apr 25.

Abstract

BACKGROUND AND AIM

Human health problems due as a microbial resistance or tumors and cancers because consumption of the carcasses containing residues of tetracycline are main global problems in the context of fight against antimicrobial resistance phenomena. Explanation of the sustainable development goals, particularly point 3, is well recognized that all animal products for human consumption must be safe to live a healthy life. This study aimed to design a prototype of rapid test devices (RTD) based on principles of precipitate to obtain a specific color change after the process of reactions as an indicator to determine tetracycline residues in the carcass.

MATERIALS AND METHODS

Five samples of tetracycline-containing poultry carcasses using artificial add the tetracycline at pharmaceutics grade were examined using a prototype of a strong reaction solution for tetracycline fixation based on the concept bonded by ion Fe(III) at atom O in position atom C-1 at the ring of tetracycline and ion N as the functional branch of tetracycline. RTD detection was evaluated using a yellow color presentation and an absorbance spectrometric technique at a wavelength of 273 nm.

RESULTS

The following chemicals were used to create the best-fixed tetracycline residue: HCl and HSO dissolved in HO, chromatographic grade of 0.1 N and 0.5 N of HNO, and 1% Fe (III) Cl. The RTD had a higher limit of detection (LOD) than the ultraviolet-visible spectrophotometer.

CONCLUSION

The results of this study revealed that RTD, as constructed in this study, can be used to detect residue at LOD 44.764 mg/mL during 120 min of exposure through a light-emitting diode at 980 nm wavelength (p<0.05). The necessity for using RTD was because of the apparent limitations of conventional devices.

摘要

背景与目的

由于食用含有四环素残留的畜体而导致的人类健康问题,如微生物耐药性或肿瘤和癌症,是抗击抗菌药物耐药现象背景下的主要全球性问题。可持续发展目标的解释,特别是第3点,已得到广泛认可,即所有供人类食用的动物产品必须安全,才能过上健康的生活。本研究旨在设计一种基于沉淀原理的快速检测装置(RTD)原型,在反应过程后获得特定的颜色变化,作为测定畜体中四环素残留的指标。

材料与方法

使用药学级四环素人工添加的五个含四环素家禽畜体样本,采用基于四环素环上C-1原子位置的O原子与Fe(III)离子键合以及四环素功能分支N离子的概念的四环素固定强反应溶液原型进行检测。使用黄色显色和波长为273nm的吸光光谱技术评估RTD检测。

结果

使用以下化学物质来固定最佳的四环素残留:溶解在水中的HCl和HSO、色谱级的0.1N和0.5N HNO以及1% Fe(III) Cl。RTD的检测限高于紫外可见分光光度计。

结论

本研究结果表明,本研究构建的RTD可用于在980nm波长的发光二极管照射120分钟期间检测44.764mg/mL的检测限残留(p<0.05)。使用RTD的必要性在于传统设备存在明显局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5385/9178584/232abf3fb13d/Vetworld-15-1058-g002.jpg

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