Science Division, Mahidol University International College, Mahidol University, Salaya, Phutthamonthon, Nakhon Pathom 73170, Thailand.
National Electronics and Computer Technology, National Science and Technology Development Agency, 112 Thailand Science Park, Khlong Luang 12120, Thailand.
Molecules. 2022 Aug 8;27(15):5040. doi: 10.3390/molecules27155040.
Lactose plays a significant role in daily lives as a constituent of various food and pharmaceutical products. Yet, lactose intolerance conditions demand low-lactose and lactose-free products in the market. These increasing nutritional claims and labels on food products entail simple and reliable methods of analysis that can be used for meeting quality standards, nutritional claims and legal requirements. In this study, terahertz time-domain spectroscopy (THz-TDS) was employed to analyse α-lactose monohydrate qualitatively and quantitatively in food products. Both absorption spectra and absorption coefficient spectra were investigated for their prediction performance. Regression models for lactose quantification using peak area and height of the absorption peaks 0.53 and 1.37 THz were developed and assessed in infant formula samples. Satisfactory prediction results were achieved in ideal conditions with pure standards, but not in all predictions of infant formula samples. Reasons and further implications are discussed.
乳糖作为各种食品和药品的组成部分,在日常生活中起着重要作用。然而,乳糖不耐受的情况要求市场上提供低乳糖和无乳糖的产品。这些不断增加的食品营养声称和标签需要简单可靠的分析方法,以满足质量标准、营养声称和法律要求。在本研究中,太赫兹时域光谱(THz-TDS)被用于分析食品中的α-乳糖一水合物的定性和定量。研究了吸收光谱和吸收系数光谱,以评估它们的预测性能。在婴儿配方奶粉样品中,使用吸收峰的峰面积和高度 0.53 和 1.37 THz 开发并评估了用于乳糖定量的回归模型。在理想条件下,使用纯标准品可以得到令人满意的预测结果,但并非所有婴儿配方奶粉样品的预测结果都是如此。讨论了原因和进一步的影响。