End-to-end dataflow engineering framework of honey manufacturing from intermediates to process by TAS1R2@AuNPs/SPCE biosensor coupled with quality transfer principle

IF 6.3 3区 综合性期刊 Q1 Multidisciplinary Fundamental Research Pub Date : 2025-01-01 DOI:10.1016/j.fmre.2022.09.029
Xiaoyan Hu , Jingqi Zeng , Lijuan Ma , Xiaomeng Wang , Jing Du , Lu Yao , Zhisheng Wu
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Abstract

This study reported an original end-to-end dataflow engineering framework for the quality transfer principle to overcome the quality challenges in real-world honey manufacturing. Firstly, 650 pivotal data points of physical and chemical quality attributes from 65 batches of honey intermediates were characterized through multiple sensors, which included rheological properties, acidity, moisture, and sugars. Furthermore, a hypersensitized TAS1R2@AuNPs/SPCE biosensor was developed to identify biological quality attributes of honey, the powerful affinities between honey intermediates and the TAS1R2 receptor were discovered (KD < 1 × 10−8 M), and the abnormal batches of B2, B23 and C23 were diagnosed by TAS1R2@AuNPs/SPCE biosensor and multivariable algorithm. Finally, the end-to-end dataflow containing physical, chemical and biological critical quality attributes was successfully established to interpret the quality transfer principle of honey manufacturing, which revealed that the front-end refining process was relatively unstable and the back-end refining process was a negligible influence on the quality of honey manufacturing. This framework embraces quality management, quality transfer, and biosensor information, which will contribute to discovering the quality transfer principle in industrial innovation for intelligent manufacturing.

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蜂蜜生产从中间体到加工的端到端数据流工程框架TAS1R2@AuNPs/结合质量传递原理的SPCE生物传感器
本研究报告了一个原始的端到端数据流工程框架,用于质量传递原理,以克服现实世界蜂蜜生产中的质量挑战。首先,通过多种传感器对65批蜂蜜中间体的650个关键物理和化学质量属性数据点进行了表征,包括流变性、酸度、水分和糖。此外,我们开发了一种超敏TAS1R2@AuNPs/SPCE生物传感器来识别蜂蜜的生物品质属性,发现蜂蜜中间体与TAS1R2受体之间具有很强的亲和力(KD <;1 × 10−8 M),通过TAS1R2@AuNPs/SPCE生物传感器和多变量算法诊断出B2、B23和C23的异常批次。最后,成功建立了包含物理、化学和生物关键质量属性的端到端数据流,解释了蜂蜜生产过程中的质量传递原理,揭示了前端精炼过程相对不稳定,后端精炼过程对蜂蜜生产质量的影响可以忽略不计。该框架涵盖了质量管理、质量转移和生物传感器信息,有助于发现智能制造产业创新中的质量转移原理。
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
期刊介绍:
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