Centre for Doctoral Training in Targeted Therapeutics and Formulation Sciences, School of Pharmacy, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
J Control Release. 2013 Oct 28;171(2):234-40. doi: 10.1016/j.jconrel.2013.07.023. Epub 2013 Aug 3.
Typically, inhaled drugs are rapidly absorbed into the bloodstream, which results in systemic side effects and a brief residence time in the lungs. PEGylation was evaluated as a novel strategy for prolonging the retention of small inhaled molecules in the pulmonary tissue. Hydrolysable ester conjugates of PEG₁₀₀₀, PEG₂₀₀₀, ₂₀₀₀, PEG₃₄₀₀ and prednisolone, a model drug cleared from the lungs within a few minutes, were synthesised and thoroughly characterised. The conjugates were stable in buffers with hydrolysis half-lives ranging from 1h to 70 h, depending on the pH and level of substitution. With the exception of PEG₃₄₀₀-prednisolone, conjugates did not induce a significant lactate dehydrogenase (LDH) release from Calu-3 cells after a 20 h exposure. Following nebulisation to isolated perfused rat lungs (IPRL), the PEG₂₀₀₀ and mPEG₂₀₀₀ conjugates reduced the maximum prednisolone concentration in the perfusate (Cmax) by 3.0 and 2.2 fold, respectively. Moreover, while prednisolone was undetectable in the perfusion solution beyond 20 min when the free drug was administered, prednisolone concentrations were still quantifiable after 40 min following delivery of the conjugates. This study is the first to demonstrate hydrolysable PEG drug ester conjugates are a promising approach for optimising the pharmacokinetic profile of small drugs delivered by inhalation.
通常,吸入的药物会迅速被吸收到血液中,导致全身副作用和肺部停留时间短暂。聚乙二醇化被评估为一种延长吸入小分子在肺部组织中保留时间的新策略。PEG10000、PEG20000、PEG20000、PEG34000 和泼尼松龙(一种几分钟内从肺部清除的模型药物)的可水解酯缀合物被合成并进行了全面表征。缀合物在缓冲液中稳定,水解半衰期范围为 1 小时至 70 小时,具体取决于 pH 值和取代水平。除了 PEG34000-泼尼松龙外,缀合物在 20 小时暴露后不会引起 Calu-3 细胞中乳酸脱氢酶(LDH)的显著释放。在对离体灌注大鼠肺(IPRL)进行雾化后,PEG20000 和 mPEG20000 缀合物使灌流液中泼尼松龙的最大浓度(Cmax)分别降低了 3.0 倍和 2.2 倍。此外,当给予游离药物时,泼尼松龙在 20 分钟后在灌注溶液中无法检测到,但在给予缀合物后 40 分钟仍可定量检测到泼尼松龙浓度。这项研究首次证明,可水解的 PEG 药物酯缀合物是优化吸入给药的小分子药物药代动力学特征的一种有前途的方法。