Sulfur fumigation of botanical drugs: impact on chemical composition and pharmacological properties, and advances in detection technologies

Traditional Chinese medicine (TCM), a fundamental aspect of traditional medicine, is highly regarded for its natural efficacy and diverse applications. However, sulfur fumigation, a prevalent processing technique used to prevent insect and mold infestations, poses significant risks, including the pr...

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Main Authors: Weiyi Xu, Hongyu Jin, Ying Wang, Feng Wei, Jing Liu
Format: Article
Language:English
Published: Frontiers Media S.A. 2025-07-01
Series:Frontiers in Pharmacology
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Online Access:https://www.frontiersin.org/articles/10.3389/fphar.2025.1635850/full
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author Weiyi Xu
Hongyu Jin
Ying Wang
Feng Wei
Jing Liu
author_facet Weiyi Xu
Hongyu Jin
Ying Wang
Feng Wei
Jing Liu
author_sort Weiyi Xu
collection DOAJ
description Traditional Chinese medicine (TCM), a fundamental aspect of traditional medicine, is highly regarded for its natural efficacy and diverse applications. However, sulfur fumigation, a prevalent processing technique used to prevent insect and mold infestations, poses significant risks, including the presence of Sulfur Dioxide (SO2) residues, alterations in chemical compositions, diminished therapeutic effects, and heightened toxicity. As the demand for TCM continues to rise, ensuring its quality and safety becomes increasingly critical. This review explores the significance of analytical and regulatory methods for monitoring SO2 residues and the chemical changes induced by sulfur fumigation. The application of sulfur fumigation significantly impacts the chemical and pharmacological properties of TCM, leading to notable changes in its bioactive components. Studies show that the structure and concentration of the main components, such as ginsenosides, anthraquinones, and flavonoids are changed by this process, which decreases their pharmacological activity, which includes antibacterial, anti-inflammatory, and antioxidant properties. Additionally, the sulfur dioxide and heavy metals generated during sulfur fumigation have posed new toxicological concerns. Prolonged exposure to these residues may result in respiratory problems and potential carcinogenic effects. In recent years, researchers have created various innovative detection technologies, including fluorescent probe rapid detection methods and machine learning algorithms, to improve the precision of identifying and quantifying chemical changes in sulfur-fumigated samples. Promoting safe alternative drying methods, including natural and hot-air drying, along with desulfurization techniques, can significantly reduce the damage caused by sulfur fumigation to the chemical composition of botanical drugs. This manuscript advocates for sustainable practices to ensure the safe use of botanical drugs, protect public health, and promote responsible processing, storage, and utilization of botanical drug products. Although existing research has revealed the impact of sulfur fumigation on the chemical and pharmacological properties of certain TCM, most studies suffer from issues such as small sample sizes and lax experimental condition control, which limit the generalizability of their conclusions. Moreover, the absence of systematic research on key factors like sulfur fumigation duration and temperature makes it challenging to establish a precise quantitative relationship between the extent of sulfur fumigation and the resulting quality changes in medicinal materials.
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spelling doaj-art-be99cdf02b114f1990ab1ce76ee90bc02025-08-20T03:12:43ZengFrontiers Media S.A.Frontiers in Pharmacology1663-98122025-07-011610.3389/fphar.2025.16358501635850Sulfur fumigation of botanical drugs: impact on chemical composition and pharmacological properties, and advances in detection technologiesWeiyi XuHongyu JinYing WangFeng WeiJing LiuTraditional Chinese medicine (TCM), a fundamental aspect of traditional medicine, is highly regarded for its natural efficacy and diverse applications. However, sulfur fumigation, a prevalent processing technique used to prevent insect and mold infestations, poses significant risks, including the presence of Sulfur Dioxide (SO2) residues, alterations in chemical compositions, diminished therapeutic effects, and heightened toxicity. As the demand for TCM continues to rise, ensuring its quality and safety becomes increasingly critical. This review explores the significance of analytical and regulatory methods for monitoring SO2 residues and the chemical changes induced by sulfur fumigation. The application of sulfur fumigation significantly impacts the chemical and pharmacological properties of TCM, leading to notable changes in its bioactive components. Studies show that the structure and concentration of the main components, such as ginsenosides, anthraquinones, and flavonoids are changed by this process, which decreases their pharmacological activity, which includes antibacterial, anti-inflammatory, and antioxidant properties. Additionally, the sulfur dioxide and heavy metals generated during sulfur fumigation have posed new toxicological concerns. Prolonged exposure to these residues may result in respiratory problems and potential carcinogenic effects. In recent years, researchers have created various innovative detection technologies, including fluorescent probe rapid detection methods and machine learning algorithms, to improve the precision of identifying and quantifying chemical changes in sulfur-fumigated samples. Promoting safe alternative drying methods, including natural and hot-air drying, along with desulfurization techniques, can significantly reduce the damage caused by sulfur fumigation to the chemical composition of botanical drugs. This manuscript advocates for sustainable practices to ensure the safe use of botanical drugs, protect public health, and promote responsible processing, storage, and utilization of botanical drug products. Although existing research has revealed the impact of sulfur fumigation on the chemical and pharmacological properties of certain TCM, most studies suffer from issues such as small sample sizes and lax experimental condition control, which limit the generalizability of their conclusions. Moreover, the absence of systematic research on key factors like sulfur fumigation duration and temperature makes it challenging to establish a precise quantitative relationship between the extent of sulfur fumigation and the resulting quality changes in medicinal materials.https://www.frontiersin.org/articles/10.3389/fphar.2025.1635850/fullsulfur fumigationchemical metabolitespharmacological impactsSO2 redisuesdetection technologies
spellingShingle Weiyi Xu
Hongyu Jin
Ying Wang
Feng Wei
Jing Liu
Sulfur fumigation of botanical drugs: impact on chemical composition and pharmacological properties, and advances in detection technologies
Frontiers in Pharmacology
sulfur fumigation
chemical metabolites
pharmacological impacts
SO2 redisues
detection technologies
title Sulfur fumigation of botanical drugs: impact on chemical composition and pharmacological properties, and advances in detection technologies
title_full Sulfur fumigation of botanical drugs: impact on chemical composition and pharmacological properties, and advances in detection technologies
title_fullStr Sulfur fumigation of botanical drugs: impact on chemical composition and pharmacological properties, and advances in detection technologies
title_full_unstemmed Sulfur fumigation of botanical drugs: impact on chemical composition and pharmacological properties, and advances in detection technologies
title_short Sulfur fumigation of botanical drugs: impact on chemical composition and pharmacological properties, and advances in detection technologies
title_sort sulfur fumigation of botanical drugs impact on chemical composition and pharmacological properties and advances in detection technologies
topic sulfur fumigation
chemical metabolites
pharmacological impacts
SO2 redisues
detection technologies
url https://www.frontiersin.org/articles/10.3389/fphar.2025.1635850/full
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