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A Systematic AQbD Approach for Optimization of the Most Influential Experimental Parameters on Analysis of Fish Spoilage-Related Volatile Amines

机译:一种系统AQBD方法用于优化最有影响力的实验参数关于鱼类腐败相关的挥发胺分析

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摘要

The volatile amines trimethylamine (TMA) and dimethylamine (DMA) could be used as important spoilage indices for seafood products, assisting in the determination of the rejection period. In the present study, a systematic analytical duality-by-design (AQbD) approach was used as a powerful strategy to optimize the most important experimental parameters of headspace solid-phase microextraction (HS-SPME) and gas chromatography-mass spectrometry (GC-MS) conditions for the quantification of TMA and DMA in Sparus aurata. This optimization enabled the selection of the best points in the method operable design region for HS-SPME extraction (30 min; 35 °C; NaOH 15 M and NaCl 35%, w/v) and GC-MS analysis (80 °C; gradient 50 °C/min; flow rate 1 mL/min and splitless mode). The rejection day, estimated through the TMA concentration (>12 mg/100 g, at days 9–10), was compared with sensory (quality index method: day 7–8), physical (Torrymeter: day 8–9), and microbial (day 9–10) analysis, corroborating the suitability of the proposed approach for estimating the period for which they will retain an acceptable level of eating quality from a safety and sensory perspective.
机译:挥发性胺三甲胺(TMA)和二甲胺(DMA)可用作海鲜产品的重要腐败指标,协助测定排斥期。在本研究中,系统分析二元性(AQBD)方法被用作优化顶空固相微萃取(HS-SPME)和气相色谱 - 质谱(GC-)的最重要的实验参数来优化最重要的实验参数(GC- MS)在Sparus Aurata中定量TMA和DMA的条件。该优化使得HS-SPME提取的方法可操作设计区域中最佳点的选择(30分钟; 35°C; NaOH 15 M和NaCl 35%,W / V)和GC-MS分析(80°C;梯度50°C / min;流速1 mL / min和不分流模式)。通过TMA浓度估计(> 12mg / 100g)与感官(质量指数方法:第7-8天),物理(Torrymeter:第8-9天)进行抑制日(在第9-10天),微生物(第9-10天)分析,证实了提出的方法估算其将于安全性和感官的角度来保留其估算饮食质量水平的时期的适用性。

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