抗血管生成化合物tnp -470经皮给药的分析方法

E. Abramov, Ouri Schwob, Ofra Benny
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引用次数: 1

摘要

病理性血管生成是癌症、慢性全身性炎症疾病(如牛皮癣和类风湿性关节炎)和眼部疾病的关键组成部分。抗血管生成药物具有预防、抑制和抑制新生血管的作用。TNP-470(氯乙酰氨基甲酰富马吉尔)是一种有效的抗血管生成药物,其活性已在许多临床前研究和涉及300多名患者的8项临床研究中得到证实。尽管TNP-470具有令人鼓舞的疗效,但它是一种不稳定的化合物,血浆半衰期短,临床发现高剂量时可引起神经毒性副作用。鉴于这些局限性,开发一种TNP-470的经皮给药方法,可以通过提高其生物利用度、控制剂量和安全性,为该药物提供一种新的、有前景的临床应用。在这项工作中,我们建立了一种可靠的方法来研究TNP-470的皮肤渗透,利用猪皮Franz扩散池和高效液相色谱(HPLC)分析。此外,我们对TNP-470在不同培养基中的稳定性和降解进行了广泛的研究,并确定了醋酸缓冲液pH-4.5的最佳稳定条件,该缓冲液可用于透皮制剂。我们的研究结果表明,TNP-470在猪皮肤中具有优异的渗透性,72小时后,初始量的25%通过皮肤膜。我们的研究结果表明,TNP-470是经皮给药的良好候选者,而最佳的皮肤配方可以通过将其引入缓释系统来改善药物的药代动力学特性和毒性特征。
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Analytical Method for Transdermal Delivery of the Anti-angiogenic CompoundTNP-470
Pathological angiogenesis is a critical component in cancer, in chronic systemic inflammatory diseases such as psoriasis and rheumatoid arthritis, and in ocular diseases. Anti-angiogenic drugs have the ability to prevent, inhibit, and regress newly formed blood vessels. The activity of TNP-470 (chloro acetylcarbamoylfumagillol), a potent anti-angiogenic drug, has been demonstrated in numerous preclinical studies and in eight clinical studies involving more than three hundred patients. Despite its encouraging efficacy, TNP-470 is unstable compound with short plasma half-life, and, as was found clinically it can cause neurotoxicity side-effects at high doses. In light of these limitations, developing a transdermal drug delivery for TNP-470, can offer a novel and promising clinical usage for this drug by improving its bioavailability, controlled dosage and safety profile. In this work, we developed a reliable method for skin permeation studies of TNP-470, using the pig skin in Franz diffusion cells and High-Performance Liquid Chromatography (HPLC) analysis. Additionally, we performed a broad stability and degradation studies of TNP-470 in different mediums and identify optimal stabilizing conditions in acetate buffer pH-4.5, which can be used for transdermal formulation. Our results demonstrated excellent permeability properties of TNP-470 through the pig skin, where 25% from the initial amount was crossed through the skin membrane after 72 hours. Our results suggesting that TNP-470 is a good candidate for transdermal drug delivery, whereas, an optimal dermal formulation would improve drug’s pharmacokinetic properties and toxicity profile by introducing it in a slow release system.
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