关于紫杉化学成分、药理活性和临床应用的研究。

Xinyu Gao, Yifan Guo, Kuilin Chen, Hanyi Wang, Weidong Xie
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引用次数: 0

摘要

紫杉属是一种主要分布在北半球温带地区的稀有保护植物,由于其在医学研究和药物开发方面的巨大潜力,以及栽培技术和医疗技术的进步,该属植物已引起全球关注。本综述主要关注紫杉的化学成分和药理活性,强调这些成分在临床应用方面的进展和潜力。最近的研究发现,紫杉不仅含有紫杉素活性成分,还含有具有独特活性的黄酮类化合物和多糖类化合物。这些从紫杉中提取的化合物具有强大的抗肿瘤、抗炎、免疫调节、抗菌和抗糖尿病特性,其作用机制显而易见。其中,代表性化合物紫杉醇在治疗卵巢癌、乳腺癌和肺癌等多种癌症方面具有显著疗效。本文还回顾了紫杉类药物制剂的基本情况,其中提取物主要通过口服给药,而单体紫杉醇则通常通过注射给药,这反映了口服制剂的成熟开发阶段和正在进行的研究。最后,本文总结了 Taxus 中重要化合物的药代动力学特征,包括它们在人体内的吸收、分布、代谢和排泄模式。这些药代动力学特征为评估 Taxus 及其成分的整体用药方案提供了重要指导。论文最后对这些化合物在疾病治疗中的潜在应用进行了前瞻性分析,展望了它们在未来医疗和制药进步中的作用。
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Study on the Chemical Constituents, Pharmacological Activities, and Clinical Application of Taxus.

Taxus, a rare and protected genus predominantly distributed across the Northern Hemisphere's temperate regions, has garnered global attention due to its significant potential in medical research and pharmaceutical development, bolstered by advancements in cultivation techniques and medical technology. This review primarily focuses on the chemical constituents and pharmacological activities of Taxus, underscoring the progress and potential of these components in clinical applications. Recent studies have revealed that Taxus contains not only taxane active components but also flavonoids and polysaccharides with distinct activities. These compounds from Taxus exhibit potent antitumor, anti-inflammatory, immunomodulatory, antibacterial, and antidiabetic properties with evident mechanisms of action. Notably, the representative compound, paclitaxel, has demonstrated significant efficacy in treating various cancers, such as ovarian, breast, and lung cancer. This paper also reviews the basic situation of Taxus drug formulations, with extracts primarily administered orally and monomeric taxanes typically via injection, reflecting a mature development stage with ongoing research into oral formulations. Finally, this review summarizes the pharmacokinetic characteristics of crucial compounds in Taxus, including their absorption, distribution, metabolism, and excretion patterns in the human body. These pharmacokinetic profiles provide crucial guidance for evaluating the overall dosing regimen of Taxus and its components. The paper concludes with a forward-looking analysis of the potential applications of these compounds in disease treatment, envisioning their role in the future of medical and pharmaceutical advancements.

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