Garate Jone, Ortiz de Zarate Itziar, Gonzalez Roberto, Jaureguibeitia Arrate, Salleres Sandra
BIOLAN Microbiosensores S.L., Parque Tecnológico de Bizkaia, Laida Bidea 409, 48170 Zamudio, Bizkaia, Spain.
J AOAC Int. 2022 Apr 27;105(3):759-773. doi: 10.1093/jaoacint/qsab164.
In 2018, the AOAC Stakeholder Panel on Strategic Food Analytical Methods approved Standard Method Performance Requirement (SMPR®) 2018.009, for lactose in low-lactose or lactose-free milk, milk products, and products containing dairy ingredients, establishing the minimum recommended performance characteristics to be addressed during the evaluation of methods. Subsequently, AOAC INTERNATIONAL opened a call for methods under the Official Method of AnalysisSM program with the aim of finding a candidate method for confirming compliance with regulatory standards and dispute resolution.
A biosensor-based analytical method, BIOMILK 300 LAC, was developed by BIOLAN Microbiosensores S.L. (www.biolanmb.com) to rapidly, easily, and accurately quantify lactose in free or low-lactose dairy products. In response to the AOAC call for methods, BIOLAN performed a single laboratory validation of this method against SMPR 2018.009. Several different matrixes were tested, including: milk, sugary plain yogurt, fruit plain yogurt, flavored liquid yogurt, Greek yogurt, cream, soft cheese, infant formula, café latte, chocolate milk, and high-protein milk shake. Evaluated method parameters included: linearity, selectivity, matrix effect, recovery, accuracy, repeatability, intermediate reproducibility, robustness, reagent lot-to-lot consistency, and stability.
The method is based on the use of the Biotest gold electrode together with the BIOMILK 300 biosensor reader, for the quantification of residual levels of lactose in dairy samples via an enzymatic recognition/electrochemical transduction system.
Assay linearity, applicability to different matrixes, recovery, and precision demonstrated that the method is fit for purpose. The method proved to be robust, consistent, and stable, under conditions detailed in the Instructions For Use guide.
The overall results were within requirements stated by SMPR 2018.009 for low-lactose and lactose-free milk, milk products and products containing dairy ingredients.
The BIOMILK 300 LAC method enables the quantification of reduced levels of lactose in less than 5 min, without the requirement for expert technicians, toxic solvents or intricate procedures, maintaining a high degree of precision and accuracy in the results. BIOMILK 300 LAC was adopted as a First Action Official MethodSM by the Expert Review Panel of Low-lactose Methods in April 2020 after rigorous review.
2018年,AOAC战略食品分析方法利益相关者小组批准了针对低乳糖或无乳糖牛奶、乳制品以及含乳制品成分产品中乳糖的标准方法性能要求(SMPR®)2018.009,确立了方法评估过程中应满足的最低推荐性能特征。随后,AOAC国际组织在《官方分析方法SM》计划下征集方法,旨在寻找一种用于确认是否符合监管标准及解决争议的候选方法。
BIOLAN Microbiosensores S.L.(www.biolanmb.com)开发了一种基于生物传感器的分析方法BIOMILK 300 LAC,用于快速、简便且准确地定量游离或低乳糖乳制品中的乳糖。应AOAC的方法征集要求,BIOLAN针对SMPR 2018.009对该方法进行了单实验室验证。测试了几种不同基质,包括:牛奶、原味含糖酸奶、原味水果酸奶、调味液体酸奶、希腊酸奶、奶油、软奶酪、婴儿配方奶粉、拿铁咖啡、巧克力牛奶和高蛋白奶昔。评估的方法参数包括:线性、选择性、基质效应、回收率、准确度、重复性、中间再现性、稳健性、试剂批次间一致性和稳定性。
该方法基于使用比奥泰斯金电极以及BIOMILK 300生物传感器读数仪,通过酶识别/电化学转导系统对乳制品样品中乳糖的残留水平进行定量。
分析的线性、对不同基质的适用性、回收率和精密度表明该方法符合要求。在使用说明指南详述的条件下,该方法证明是稳健、一致且稳定的。
总体结果符合SMPR 2018.009对低乳糖和无乳糖牛奶、乳制品以及含乳制品成分产品规定的要求。
BIOMILK 300 LAC方法能够在不到5分钟内定量降低水平的乳糖,无需专业技术人员、有毒溶剂或复杂程序,结果保持高度的精密度和准确度。经过严格审查后,BIOMILK 300 LAC于2020年4月被低乳糖方法专家评审小组采纳为首批行动官方方法SM。