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首页> 外文期刊>Molecules >A Preliminary Pharmacokinetic Study of Betulin, the Main Pentacyclic Triterpene from Extract of Outer Bark of Birch (Betulae alba cortex)
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A Preliminary Pharmacokinetic Study of Betulin, the Main Pentacyclic Triterpene from Extract of Outer Bark of Birch (Betulae alba cortex)

机译:桦木(桦木外皮提取物)中主要的五环三萜烯桦木的初步药代动力学研究

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摘要

During the last two decades triterpenes have attracted attention because of their pharmacological potential. Triterpene extract (TE) from outer bark of birch consisting mainly of betulin is able to form an oleogel which was successfully tested in the treatment of actinic keratosis. Some aspects of TE in vitro pharmacology are already known. Now we show preliminary pharmacokinetics of betulin and results of a subchronic toxicity study of TE in rats and dogs. Because of poor aqueous solubility of the TE-triterpenes ( 0.1 µg/mL respectively), for pharmacokinetic studies it was suspended in sesame oil (rats, i.p.) and PEG 400 / 0.9 % NaCl (dogs, s.c.). I.p. administered, betulin, the main component of TE, shows time dependency over a period of 4 h and reaches a dose-independent serum level of 0.13 µg/mL. Dose dependency was observed with s.c. administration. At 300 mg/kg a maximum plasma concentration of 0.33 µg/mL betulin was detected after 28 daily applications. The subchronic toxicity study showed no toxicity of TE in rats (i.p.) and dogs (s.c.). In conclusion, triterpene extract from birch bark is safe, its betulin is bioavailable and in addition to published triterpene biological activities TE provides high potential for further pharmaceutical and pharmacological research.
机译:在过去的二十年中,三萜烯由于其药理学潜力而引起了人们的关注。来自桦木外皮的三萜提取物(TE)主要由白桦蛋白组成,能够形成油凝胶,该油凝胶已在光化性角化病的治疗中得到成功测试。 TE体外药理学的某些方面是已知的。现在,我们显示了桦木蛋白的初步药代动力学以及TE在大鼠和狗中的亚慢性毒性研究的结果。由于TE-三萜烯的水溶性差(分别<0.1μg/ mL),为了进行药代动力学研究,将其悬浮在芝麻油(大鼠,腹腔内)和PEG 400 / 0.9%NaCl中(狗,皮下)。 I.p.服用后,白藜芦醇(TE的主要成分)在4小时内显示出时间依赖性,并达到与剂量无关的血清水平0.13 µg / mL。在s.c.中观察到剂量依赖性。行政。每天使用28次后,以300 mg / kg的血浆最高血浆浓度为0.33 µg / mL的桦木素。亚慢性毒性研究表明TE对大鼠(i.p.)和狗(s.c.)没有毒性。总之,白桦树皮中的三萜提取物是安全的,其桦木素具有生物利用性,除了已发表的三萜生物活性外,TE还为进一步的药物和药理研究提供了巨大的潜力。

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