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左旋多巴甲酯前药的潜在经颊给药:在口腔环境中的稳定性及穿过黏膜组织的能力。

Potential transbuccal delivery of l-DOPA methylester prodrug: stability in the environment of the oral cavity and ability to cross the mucosal tissue.

作者信息

Scaturro Anna Lisa, De Caro Viviana, Campisi Giuseppina, Giannola Libero Italo

机构信息

a Dipartimento di Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche (STEBICEF) , University of Palermo , Palermo , Italy and.

b Dipartimento di Discipline Chirurgiche , Oncologiche e Stomatologiche (Di.Chir.On.S.), University of Palermo , Palermo , Italy.

出版信息

Drug Deliv. 2016 Sep;23(7):2355-2362. doi: 10.3109/10717544.2014.987332. Epub 2014 Dec 23.

Abstract

Levodopa (l-DOPA) is the most effective pharmacologic agent in Parkinson's disease and remains the "gold standard". Nevertheless, in long-term treatments, dyskinesias and motor complications can emerge. In this work, the combined use of l-DOPA methylester hydrochloride prodrug (LDME) with transbuccal drug delivery was supposed as a good alternative method to optimize the bioavailability of l-DOPA, to maintain constant plasma levels and to decrease the drug unwanted effects. The effects of environmental pH on buccal delivery of LDME were evaluated ex vivo. The increase of pH value from 5.8 to 6.2 implies an improvement of drug permeation. Since the pH increase causes the raising of hydrolytic conversion of LDME to l-DOPA, the pH value 6.2 was considered as a good compromise between drug stability and permeation rate. It was found that during the passage through the biological tissue, LDME undergoes a primary conversion to l-DOPA catalyzed by membrane's enzymes. Supplementation of delivery with Tween 80® produces substantial enhancement of LDME passage through the membrane. The drug could be loaded in the IntelliDrug mechatronic device, released close to the buccal mucosa, so achieving and maintaining constant therapeutic blood levels for extensive time.

摘要

左旋多巴(l-DOPA)是治疗帕金森病最有效的药物,仍是“金标准”。然而,在长期治疗中,可能会出现运动障碍和运动并发症。在这项研究中,盐酸左旋多巴甲酯前药(LDME)与经颊给药联合使用被认为是优化l-DOPA生物利用度、维持血浆水平恒定并减少药物不良反应的一种良好替代方法。通过体外实验评估了环境pH值对LDME经颊给药的影响。pH值从5.8增加到6.2意味着药物渗透有所改善。由于pH值升高会导致LDME水解转化为l-DOPA的增加,因此pH值6.2被认为是药物稳定性和渗透速率之间的良好折衷点。研究发现,在通过生物组织的过程中,LDME会在膜酶的催化下初步转化为l-DOPA。添加吐温80®可显著增强LDME通过膜的能力。该药物可以装载在智能药物机电装置中,在靠近颊黏膜处释放,从而在较长时间内达到并维持恒定的治疗血药浓度。

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