One of China’s and other Asian countries food staples are sweet potato noodles. However, almost 60% of investigated samples tested positive for cassava, a common adulterant in sweet potato noodles (and also the basis for tapioca). The DNA of 52 samples was extracted and analyzed by the real-time loop-mediated isothermal amplification (Real-time LAMP) method, which showed accurate detection down to a 1% limit.
Resource
Wang, D., et al. (May 29, 2019). “Detection of Cassava Component in Sweet Potato Noodles by Real-Time Loop-mediated Isothermal Amplification (Real-time LAMP) Method”. Molecules 2019, 24(11), 2043. Retrieved from: doi:10.3390/molecules24112043
Susanne Kuehne joined Decernis in 2016 as senior manager, business development. She has 20+ years of experience in the chemicals, plastics, coatings and beverage spaces. Kuehne is located at the Washington, D.C. office, but is originally from the Stuttgart, Germany area. She studied chemistry and business in Germany, then worked for Grace GmbH in Worms, Germany before moving to the United States in 2000. She worked for Grace in the United States before joining the beverage industry for eight years. Kuehne’s focus is food contact and chemical industry clients world-wide, across the multiple disciplines Decernis covers.
Kuehne holds a Dipl.-Ing (FH) Farbe/Chemie from Fachhochschule fuer Druck, Stuttgart, and a Dipl.-Betriebswirt (FH) from AKAD Fachhochschule, Lahr.