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Jing Wu, Kai Zhong, Hongyi Yang, Peiliang Zhang, Nianjun Yu, Weidong Chen, Na Zhang, Shuangying Gui, Lan Han, Daiyin Peng. A holistic visualization for quality of Chinese materia medica: Structural and metabolic visualization by magnetic resonance imaging[J]. Journal of Pharmaceutical Analysis. doi: 10.1016/j.jpha.2024.101019
Citation: Jing Wu, Kai Zhong, Hongyi Yang, Peiliang Zhang, Nianjun Yu, Weidong Chen, Na Zhang, Shuangying Gui, Lan Han, Daiyin Peng. A holistic visualization for quality of Chinese materia medica: Structural and metabolic visualization by magnetic resonance imaging[J]. Journal of Pharmaceutical Analysis. doi: 10.1016/j.jpha.2024.101019

A holistic visualization for quality of Chinese materia medica: Structural and metabolic visualization by magnetic resonance imaging

doi: 10.1016/j.jpha.2024.101019
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This work was supported by Plans for Major Provincial Science & Technology Projects, China (Grant No.: 202303a0702005), the National Natural Science Foundation of China (Grant Nos.: U19A2009 and 82304881), the Key Natural Science Research Projects in Anhui Universities, China (Grant Nos.: 2022AH050484 and 2022AH010036), and the Collaborative Innovation Project, China (Grant Nos.: GXXT- 2019-043 and GXXT-2019-049).

  • Received Date: Feb. 14, 2024
  • Accepted Date: Jun. 04, 2024
  • Rev Recd Date: May 24, 2024
  • Available Online: Jun. 11, 2024
  • The quality of Chinese materia medica (CMM) is a challenging and focused topic in the modernization of traditional Chinese medicine. A profound comprehension of the morphology, structure, active constituents, and dynamic changes during the whole process of CMM growth is essential, which needs highly precise contemporary techniques for in-depth elucidation. Magnetic resonance imaging (MRI) is a cutting- edge tool integrating the benefits of both nuclear magnetic resonance spectroscopy and imaging technology. With real-time, non-destructive, and in situ detection capabilities, MRI has been previously used for monitoring internal and external structures of plants alongside compounds during physiological processes in vivo. Here, factors involved in the holistic quality evaluation of CMMs were investigated. Given the applications of MRI in various plants, several representative CMMs were used as examples to demonstrate a methodology of quality visualization by MRI, embodying holistically monitoring the real-time macroscopic morphology, mesoscopic structure, and microscopic metabolites non-destructively in situ. Taken together, the review not only presents a pioneering application mode for utilizing MRI for CMM quality visualization but also holds promise for advancing the quality control and evaluation of CMMs.
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      沈阳化工大学材料科学与工程学院 沈阳 110142

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