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曲唑酮对吡格列酮药效学和药代动力学的影响。

Influence of trazodone on the pharmacodynamics and pharmacokinetics of pioglitazone.

机构信息

Department of Pharmacology, Raghavendra Institute of Pharmaceutical Education and Research (Autonomous), Anantapur, Andhra Pradesh, India.

Department of Pharmacy Practice, Raghavendra Institute of Pharmaceutical Education and Research (Autonomous), Anantapur, Andhra Pradesh, India.

出版信息

Indian J Pharmacol. 2022 May-Jun;54(3):194-197. doi: 10.4103/ijp.ijp_311_20.

Abstract

BACKGROUND

These days, poly pharmacy is very common for the treatment of multiple diseases and majority of drugs were metabolized with CYP 450 enzymes. Diabetes mellitus is such a disorder, which requires continuous therapy for the control of blood glucose concentration. Depression was quite common in diabetic patients. Therefore, multiple drugs required to treat diabetes mellitus and depression. Simultaneous administration of these drugs leads to drug interaction. Pioglitazone and trazodone metabolized by CYP3A4 enzymes which may lead to potential drug interaction.

OBJECTIVES

This study aimed to find the influence of trazodone on the pharmacokinetics & pharmacodynamics of pioglitazone in normal & diabetic rats, also on rabbits and subsequently effectiveness and safety of the combination was evaluated.

METHODS AND MATERIAL

Blood glucose concentration was determined by Glucose oxidase/peroxidase method in normal and diabetic rats. Diabetes was induced with Streptozotocin at a dose of 55 mg/kg body weight. Serum pioglitazone concentration was estimated by high performance liquid chromatography method for pharmacokinetic data. The values were expressed as Mean ± Standard Error Mean (SEM), GraphPad Prism 3.0 (San Diego, California, USA) software was used to express the data. Student's paired 't' test was used to determine the significance.

RESULTS

Pioglitazone produces hypoglycaemia in normal rats with a maximum decrease of 36.78 % ± 0.81 at 3 hours interval and anti-hyperglycaemic activity in diabetic rats with maximum reduction of 45.13 % ± 1.52 at 2 hours interval. Trazodone altered the pharmacokinetics of pioglitazone and improved the pioglitazone hypoglycaemic effect.

CONCLUSION

Trazodone apparently produced pharmacokinetic interaction with pioglitazone which might be by attenuating the metabolism of pioglitazone. Therefore, care should be taken in simultaneous therapy with pioglitazone and trazodone.

摘要

背景

如今,为了治疗多种疾病,复方用药非常普遍,而大多数药物都是通过 CYP450 酶代谢的。糖尿病就是这样一种疾病,需要持续治疗来控制血糖浓度。糖尿病患者中抑郁很常见。因此,需要用多种药物来治疗糖尿病和抑郁症。同时使用这些药物会导致药物相互作用。吡格列酮和曲唑酮通过 CYP3A4 酶代谢,可能导致潜在的药物相互作用。

目的

本研究旨在探讨曲唑酮对正常和糖尿病大鼠吡格列酮药代动力学和药效学的影响,以及随后评估该联合用药的疗效和安全性。

方法与材料

正常和糖尿病大鼠采用葡萄糖氧化酶/过氧化物酶法测定血糖浓度。糖尿病采用链脲佐菌素(剂量为 55mg/kg 体重)诱导。采用高效液相色谱法测定血清吡格列酮浓度,用于药代动力学数据。数据以均数±标准误差均值(SEM)表示,采用 GraphPad Prism 3.0(美国加利福尼亚州圣地亚哥)软件表示数据。采用学生配对“t”检验确定显著性。

结果

吡格列酮使正常大鼠产生降血糖作用,最大降幅为 3 小时间隔时的 36.78%±0.81%,对糖尿病大鼠具有抗高血糖作用,最大降幅为 2 小时间隔时的 45.13%±1.52%。曲唑酮改变了吡格列酮的药代动力学特性,并提高了吡格列酮的降血糖作用。

结论

曲唑酮显然与吡格列酮发生了药代动力学相互作用,可能是通过减弱吡格列酮的代谢。因此,在同时使用吡格列酮和曲唑酮治疗时应谨慎。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cab/9396688/37b92b26ad03/IJPharm-54-194-g001.jpg

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