食品科学 ›› 2026, Vol. 47 ›› Issue (14): 222-229.doi: 10.7506/spkx1002-6630-20260114-112

• 营养卫生 • 上一篇    

负载厚朴酚的分子印迹载体对伏马毒素B1的减毒效果

陶晶,王玉丹,翟文磊,王蒙   

  1. (北京市农林科学院质量标准与检测技术研究所,北京 100097)
  • 发布日期:2026-08-24
  • 基金资助:
    北京市农林科学院杰出科学家专项培养计划项目(JKZX202403);北京市自然科学基金项目(6222012)

Attenuating Effects of Magnolol-Loaded Molecularly Imprinted Carriers on Fumonisin B1 Toxicity

TAO Jing, WANG Yudan, ZHAI Wenlei, WANG Meng   

  1. (Institute of Quality Standards and Testing Technology, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China)
  • Published:2026-08-24

摘要: 利用聚乙二醇修饰的分子印迹聚合物(molecularly imprinted polymers with polyethylene glycol,MIPP)实现厚朴酚(magnolol,MAG)的递送和伏马毒素B1(fumonisin B1,FB1)的吸附以构建“减毒增效”的天然产物递送系统。采用微乳液聚合法制备分子印迹聚合物,基于氢键作用负载MAG的方式构建对FB1特异性吸附的递送系统(MAG@MIPP)。通过扫描电镜、透射电镜、傅里叶变换红外光谱、粒径、氮气吸脱附和计算分子间作用力等多种手段对递送系统的理化性质等进行表征,并使用液相色谱-质谱联用仪考察递送系统的包埋率、释放量和吸附量。结果表明,所制备递送系统的平均粒径为223 nm,2 mg MAG@MIPP对MAG的包埋量为45.95 μg。在饱和状态下能释放31.45 μg MAG并吸附2.929 μg FB1,能有效抑制FB1诱导的神经细胞毒性。本研究构建的MAG@MIPP纳米递送系统既能实现MAG的递送又能靶向吸附FB1从而达到减毒的效果,为天然产物分子印迹纳米载体的开发提供新思路。

关键词: 递送系统;天然产物;厚朴酚;分子印迹聚合物;伏马毒素B1

Abstract: Utilizing molecularly imprinted polymers with polyethylene glycol (MIPP) for the delivery of magnolol (MAG) and the adsorption of fumonisin B1 (FB1), a natural product delivery system was developed to achieve the dual objectives of “toxicity reduction and efficacy enhancement”. Molecularly imprinted polymers (MIPs) were synthesized via microemulsion polymerization. A delivery system (MAG@MIPP) capable of specifically adsorbing FB1 was constructed by loading MAG onto MIPs through hydrogen bonding interactions. The physicochemical properties of the delivery system were characterized using multiple techniques, including scanning electron microscopy (SEM), transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FTIR), particle size analysis, nitrogen adsorption and desorption, and computational molecular interactions. Liquid chromatography-mass spectrometry (LC-MS) was employed to evaluate the encapsulation efficiency, release profile, and adsorption capacity of the delivery system. The results showed that the average particle size of the prepared delivery system was 223 nm, and the encapsulation efficiency of 2 mg of MAG@MIPP for MAG was 45.95 μg. Under optimal conditions, it released 31.45 μg of MAG while adsorbing 2.929 μg of FB1, thereby effectively suppressing FB1-induced neurotoxicity. The MAG@MIPP nanocarrier system developed in this study enabled both the delivery of magnolol and the targeted adsorption of FB1, thus reducing the toxicity of FB1. This approach provides novel insights for the development of MIP nanocarriers for natural products.

Key words: delivery system; natural products; magnolol; molecularly imprinted polymer; fumonisin B1

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