Micro-PET Imaging Demonstrates 3-O-β-D-Glucopyranosyl Platycodigenin as an Effective Metabolite Affects Permeability of Cell Membrane and Improves Dosimetry of [(18)F]-Phillygenin in Lung Tissue

微型PET成像显示3-O-β-D-吡喃葡萄糖基桔梗苷元作为一种有效代谢物,可影响细胞膜的通透性并改善肺组织中[(18)F]-菲利苷元的剂量测定

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Abstract

Platycodon grandiflorum, as a traditional medicinal plant, is commonly used in the treatment of pulmonary disease. Platycodon saponins are proposed as active ingredients. However, the role of secondary saponin metabolites (SSM) in the traditional use of Platycodon has not yet been fully clarified. In this study, [(18)F]-phillygenin ([(18)F]-PH) probe was synthesized and thereby used as a tracer for micro-positron emission tomography scanning to explore the effects of platycodon saponins. The membrane permeability with different SSM was evaluated in vitro based on the dye-carrying capacity of fluorescein isothiocyanate. The results showed that total platycodon saponins improved the dosimetry of [(18)F]-PH in the lung tissue, and an SSM named 3-O-β-D-glucopyranosyl platycodigenin (GPD(682)) appreciably changed the distribution of drugs both in vitro and in vivo. We propose that GPD(682) could be utilized as an important ingredient to help drug delivery to the lung tissue and improve the treatment of respiratory disease.

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