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  • Systemic exposure to and disposition of catechols derived from Salvia miltiorrhiza roots (Danshen) after intravenous dosing DanHong injection in human subjects, rats, and dogs.

Systemic exposure to and disposition of catechols derived from Salvia miltiorrhiza roots (Danshen) after intravenous dosing DanHong injection in human subjects, rats, and dogs.

Drug metabolism and disposition: the biological fate of chemicals (2015-02-12)
Meijuan Li, Fengqing Wang, Yühong Huang, Feifei Du, Chenchun Zhong, Olajide E Olaleye, Weiwei Jia, Yanfen Li, Fang Xu, Jiajia Dong, Jian Li, Justin B R Lim, Buchang Zhao, Lifu Jia, Li Li, Chuan Li
ABSTRACT

DanHong injection is a Danshen (Salvia miltiorrhiza roots)-based injectable solution for treatment of coronary artery disease and ischemic stroke. Danshen catechols are believed to be responsible for the injection's therapeutic effects. This study aimed to characterize systemic exposure to and elimination of Danshen catechols in human subjects, rats, and dogs receiving intravenous DanHong injection. A total of 28 catechols were detected, with content levels of 0.002-7.066 mM in the injection, and the major compounds included tanshinol, protocatechuic aldehyde, salvianolic acid B, rosmarinic acid, salvianolic acids A and D, and lithospermic acid with their daily doses ≥10 μmol/subject. After dosing, tanshinol, salvianolic acid D, and lithospermic acid exhibited considerable exposure in human subjects and rats. However, only tanshinol had considerable exposure in dogs. The considerable exposure to tanshinol was due to its having the highest dose, whereas that to salvianolic acid D and lithospermic acid was due to their relatively long elimination half-lives in the human subjects and rats. Protocatechuic aldehyde and rosmarinic acid circulated in the bloodstream predominantly as metabolites; salvianolic acids A and B exhibited low plasma levels with their human plasma metabolites little or not detected. Tanshinol and salvianolic acid D were eliminated mainly via renal excretion. Elimination of other catechols involved hepatobiliary and/or renal excretion of their metabolites. Methylation was found to be the primary metabolism for most Danshen catechols and showed intercompound and interspecies differences in rate and degree in vitro. The information gained here is relevant to pharmacological and toxicological research on DanHong injection.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Vanillic acid, ≥97%, FG
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Methanol, suitable for NMR (reference standard)
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Methanol, anhydrous, 99.8%
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Methanol, purification grade, 99.8%
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Rosmarinic acid, ≥98% (HPLC), from Rosemarinus officinalis L.
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Methanol, puriss., meets analytical specification of Ph Eur, ≥99.7% (GC)
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Methanol, suitable for HPLC, gradient grade, suitable as ACS-grade LC reagent, ≥99.9%
Rosmarinic acid, primary reference standard
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Methanol, analytical standard
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Pyrocatechol, purified by sublimation, ≥99.5%
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3-Hydroxy-4-methoxybenzaldehyde, 99%
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Vanillic acid, certified reference material, TraceCERT®, Manufactured by: Sigma-Aldrich Production GmbH, Switzerland
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Trizma® base, Vetec, reagent grade, ≥99%
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Methanol, ACS reagent, ≥99.8%
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Methanol, puriss. p.a., ACS reagent, reag. ISO, reag. Ph. Eur., ≥99.8% (GC)
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Uridine, Vetec, reagent grade, 99%
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Methanol, suitable for HPLC, gradient grade, ≥99.9%
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Pyrocatechol, ≥99%
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Trizma® base, Primary Standard and Buffer, ≥99.9% (titration), crystalline
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Vanillic acid, purum, ≥97.0% (HPLC)
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Trizma® base, 99.7% (T), puriss. p.a.
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Vanillic acid, 97%
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Uridine, powder, BioReagent, suitable for cell culture
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Uridine, ≥99%
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Trizma® base, ≥99.9% (titration), crystalline
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Trizma® base, BioUltra, Molecular Biology, ≥99.8% (T)
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Tromethamine, meets USP testing specifications