[Pharmacokinetics and tissue distribution of fluorescent-labeled Astragalus polysaccharides in mice].

Q3 Pharmacology, Toxicology and Pharmaceutics
Xiao-Huan Wang, Peng-Xin Li, Ting-Ting Gong, Yun-Qian Lu, Bo Yang, Xiang-Tao Wang
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引用次数: 0

Abstract

In this study, the reductive amination method was used to label IR783 on Astragalus polysaccharides(APS) for the first time, which was verified by ultraviolet-visible spectroscopy and infrared spectroscopy. Quantitative analysis methods of APS-IR783 in plasma and various tissue were established using a multifunctional microplate reader. The pharmacokinetics and tissue distribution of APS-IR783 in mice were investigated after a single intravenous injection of 30 mg·kg~(-1) APS-IR783, and pharmacokinetic parameters were calculated using DAS 2.0 software. The results showed that the APS used had a mass fraction of 93.69%, a relative molecular weight of 1.55×10~5, and a polydispersity index(PDI, M_w/M_n) of 1.73, close to a homogeneous polysaccharide. The IR783 labeling yield reached 86.50%, and the content of IR783 in APS-IR783 was 0.72%. After a single intravenous injection of 30 mg·kg~(-1), the pharmacokinetic parameters of APS in mouse plasma were as follows: T_(max) was(0.67±0.26) h; C_(max) was(1 599.29±159.30) mg·L~(-1); T_(1/2α) and T_(1/2β) were(2.29±3.06) h and(0.44±0.05) h, respectively; AUC_(0-t) was(23 398.91±2 907.03) mg·h·L~(-1); AUC_(0-∞) was(27 710.55±3 506.55) mg·h·L~(-1); MRT_(0-∞) was(34.38±12.59) h; CL was 0.001 L·h~(-1)·kg~(-1); V_z was(0.042±0.017) L·kg~(-1). The in vivo biodistribution study demonstrated that the in vivo exposure ratios of APS in different tissue were in the following order: spleen > liver > kidney > lung > heart > small intestine > muscle > large intestine > brain > stomach, where the top five tissue accounted for 87.54% of the total area under the curve(AUC). This study successfully labeled APS with a water-soluble near-infrared fluorescent probe of IR783 for the first time and revealed the pharmacokinetics and tissue distribution of APS in mice. The paper provides detailed in vivo behavior of APS after intravenous injection, which lays the foundation for the development and utilization of APS and related natural medicines.

荧光标记黄芪多糖在小鼠体内的药代动力学和组织分布
本研究首次采用还原胺化法在黄芪多糖(Astragalus polysaccharides, APS)上标记IR783,并通过紫外可见光谱和红外光谱对其进行了验证。应用多功能酶标仪建立了血浆和各种组织中APS-IR783的定量分析方法。单次静脉注射30 mg·kg~(-1) APS-IR783后,观察其在小鼠体内的药动学和组织分布,并利用DAS 2.0软件计算药动学参数。结果表明,所用APS的质量分数为93.69%,相对分子量为1.55×10~5,多分散性指数(PDI, M_w/M_n)为1.73,接近均相多糖。IR783标记收率达86.50%,APS-IR783中IR783的含量为0.72%。单次静脉注射30 mg·kg~(-1)后,黄芪多糖在小鼠血浆中的药动学参数为:T_(max)为(0.67±0.26)h;C_(max)为(1 599.29±159.30)mg·L~(-1);T_(1/2α)和识别T_(1/2β)识别(2.29±3.06)h和(0.44±0.05)h,分别;AUC_(0-t)为(23 398.91±2 907.03)mg·h·L~(-1);AUC_(0-∞)为(27 710.55±3 506.55)mg·h·L~(-1);MRT_(0-∞)为(34.38±12.59)h;CL为0.001 L·h~(-1)·kg~(-1);V_z为(0.042±0.017)L·kg~(-1)。体内生物分布研究表明,黄芪多糖在不同组织中的体内暴露比例依次为:脾脏;肝脏在肾脏在肺的在心比;小肠>;肌肉比;大肠>;大脑比;胃,前5个组织占总曲线下面积(AUC)的87.54%。本研究首次成功利用IR783水溶性近红外荧光探针对黄芪多糖进行了标记,揭示了黄芪多糖在小鼠体内的药代动力学和组织分布。本文详细介绍了黄芪多糖经静脉注射后的体内行为,为黄芪多糖及相关天然药物的开发利用奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
自引率
0.00%
发文量
581
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