Fraiture Marie-Alice, Gobbo Andrea, Guillitte Chloé, Barhdadi Sophia, Gau Céline, Philipp Patrick, Marmin Lucas, Marchesi Ugo, Verginelli Daniela, Papazova Nina, Vanhee Céline, Roosens Nancy H C
Sciensano, Transversal Activities in Applied Genomics (TAG), rue Juliette Wytsman 14, 1050, Brussels, Belgium.
Sciensano, Medicines and Health Products, rue Juliette Wytsman 14, 1050, Brussels, Belgium.
Heliyon. 2024 Jun 15;10(12):e32964. doi: 10.1016/j.heliyon.2024.e32964. eCollection 2024 Jun 30.
The last decade, smoke and smokeless products claiming to be tobacco-free, including herbal cigarettes and herbal shisha, became available on the European market and gained popularity. This study proposes a new digital droplet PCR (ddPCR) method, designed based on a previously developed real-time PCR (qPCR) method being currently used by the U.S. Food and Drug Administration (FDA) to specifically detect the presence of tobacco DNA in targeting a sequence from the nia-1 gene. To ensure a harmonized and reliable control by enforcement laboratories, both of these qPCR and ddPCR methods were then evaluated and validated for their compliance to an international standard. First, the performance of these PCR-based methods was successfully assessed as specific and sensitive, and in line with minimum performance requirements from international standard. Secondly, the transferability to external laboratory was confirmed for these PCR-based methods. Finally, the applicability of these PCR-based methods was demonstrated using 7 ground tobacco reference materials from the Tobacco Research Center (TRC) Toronto University as well as 6 commercial smokeless and tobacco-free smoke and smokeless products. Based on this study, the previously developed qPCR method was confirmed as complying with international standard, ensuring a efficient and harmonize use by enforcement laboratories for tobacco control on the European market. Moreover, this study proposed to enforcement laboratories the possibility to use a ddPCR method, enabling the simultaneous detection and absolute quantification of tobacco DNA as well as a limited impact of PCR inhibitors.
在过去十年中,声称不含烟草的烟雾和无烟产品,包括草本香烟和草本水烟,在欧洲市场上出现并流行起来。本研究提出了一种新的数字液滴PCR(ddPCR)方法,该方法基于美国食品药品监督管理局(FDA)目前使用的一种先前开发的实时PCR(qPCR)方法设计,用于通过靶向nia-1基因的一个序列来特异性检测烟草DNA的存在。为确保执法实验室进行统一且可靠的控制,随后对这两种qPCR和ddPCR方法是否符合国际标准进行了评估和验证。首先,成功评估了这些基于PCR的方法的性能,证明其具有特异性和敏感性,并且符合国际标准的最低性能要求。其次,确认了这些基于PCR的方法可转移至外部实验室。最后,使用来自多伦多大学烟草研究中心(TRC)的7种烟草参考材料以及6种商业无烟和无烟草的烟雾及无烟产品,证明了这些基于PCR的方法的适用性。基于本研究,先前开发的qPCR方法被确认为符合国际标准,确保了执法实验室在欧洲市场进行烟草控制时能够高效且统一地使用。此外,本研究向执法实验室提出了使用ddPCR方法的可能性,该方法能够同时检测和绝对定量烟草DNA,并且PCR抑制剂的影响有限。