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Induction of P-glycoprotein Expression and Activity by Aconitum Alkaloids: Implication for Clinical Drug-drug Interactions

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Journal Sci Rep
Specialty Science
Date 2016 May 4
PMID 27139035
Citations 21
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Abstract

The Aconitum species, which mainly contain bioactive Aconitum alkaloids, are frequently administered concomitantly with other herbal medicines or chemical drugs in clinics. The potential risk of drug-drug interactions (DDIs) arising from co-administration of Aconitum alkaloids and other drugs against specific targets such as P-glycoprotein (P-gp) must be evaluated. This study focused on the effects of three representative Aconitum alkaloids: aconitine (AC), benzoylaconine (BAC), and aconine, on the expression and activity of P-gp. We observed that Aconitum alkaloids increased P-gp expression in LS174T and Caco-2 cells in the order AC > BAC > aconine. Nuclear receptors were involved in the induction of P-gp. AC and BAC increased the P-gp transport activity. Strikingly, intracellular ATP levels and mitochondrial mass also increased. Furthermore, exposure to AC decreased the toxicity of vincristine and doxorubicin towards the cells. In vivo, AC significantly up-regulated the P-gp protein levels in the jejunum, ileum, and colon of FVB mice, and protected them against acute AC toxicity. Taken together, the findings of our in vitro and in vivo experiments indicate that AC can induce P-gp expression, and that co-administration of AC with P-gp substrate drugs may cause DDIs. Our findings have important implications for Aconitum therapy in clinics.

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References
1.
Singh S, Fadnis P, Sharma B . Aconite poisoning. J Assoc Physicians India. 1986; 34(11):825-6. View

2.
Mizugaki M, Ito K, Ohyama Y, Konishi Y, Tanaka S, Kurasawa K . Quantitative analysis of Aconitum alkaloids in the urine and serum of a male attempting suicide by oral intake of aconite extract. J Anal Toxicol. 1998; 22(4):336-40. DOI: 10.1093/jat/22.4.336. View

3.
Verschraagen M, Koks C, Schellens J, Beijnen J . P-glycoprotein system as a determinant of drug interactions: the case of digoxin-verapamil. Pharmacol Res. 1999; 40(4):301-6. DOI: 10.1006/phrs.1999.0535. View

4.
Wada K, Nihira M, Hayakawa H, Tomita Y, Hayashida M, Ohno Y . Effects of long-term administrations of aconitine on electrocardiogram and tissue concentrations of aconitine and its metabolites in mice. Forensic Sci Int. 2004; 148(1):21-9. DOI: 10.1016/j.forsciint.2004.04.016. View

5.
Xu C, Li C, Kong A . Induction of phase I, II and III drug metabolism/transport by xenobiotics. Arch Pharm Res. 2005; 28(3):249-68. DOI: 10.1007/BF02977789. View