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Research Progress on Nicotine Control Methods in Tobacco Products
Xu Xu1, Haoxuan Song2,3, Shuaiyu Chen1
1Research Center for Innovative Applications in Health Security, Beijing Technology and Business University, Beijing 100048, China.
Abstract:
This paper systematically reviews recent research progress on nicotine control methods in tobacco products, with a focus on various strategies including the regulation of internal tobacco components (such as organic acids, pH, polyols, and moisture content) and the application of external functional materials (e.g., bacterial cellulose-based sustained-release systems and MOF composites). The mechanisms and control efficacy of these approaches are elaborated, along with a comparative analysis of their applicable conditions and limitations. Furthermore, emerging research directions in the precise control of nicotine release are discussed, including multi-factor coupling regulation, material structure design, and release kinetic modeling. By systematically examining the strengths and weaknesses of existing technologies, product-specific and condition-dependent internal control strategies are summarized for different tobacco products based on the available evidence. Finally, future prospects are outlined, including the development of intelligent sustained-release materials, the construction of multi-path synergistic regulation systems, and the integration of toxicological assessments to achieve comprehensive optimization of product quality and health risks. This review aims to provide a mechanistic basis for the rational design of nicotine release control strategies in tobacco products.
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