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Multimonth controlled small molecule release from biodegradable thin films

机译:可生物降解薄膜的多月受控小分子释放

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摘要

Long-term, localized delivery of small molecules from a biodegradable thin film is challenging owing to their low molecular weight and poor charge density. Accomplishing highly extended controlled release can facilitate high therapeutic levels in specific regions of the body while significantly reducing the toxicity to vital organs typically caused by systemic administration and decreasing the need for medical intervention because of its long-lasting release. Also important is the ability to achieve high drug loadings in thin film coatings to allow incorporation of significant drug amounts on implant surfaces. Here we report a sustained release formulation for small molecules based on a soluble charged polymer–drug conjugate that is immobilized into nanoscale, conformal, layer-by-layer assembled films applicable to a variety of substrate surfaces. We measured a highly predictable sustained drug release from a polymer thin film coating of 0.5–2.7 μm that continued for more than 14 mo with physiologically relevant drug concentrations, providing an important drug delivery advance. We demonstrated this effect with a potent small molecule nonsteroidal anti-inflammatory drug, diclofenac, because this drug can be used to address chronic pain, osteoarthritis, and a range of other critical medical issues.
机译:由于小分子的低分子量和较差的电荷密度,从生物可降解薄膜中长期,局部地递送小分子具有挑战性。实现高度延长的控释可以促进体内特定区域的高治疗水平,同时显着降低通常由全身性给药引起的对重要器官的毒性,并由于其长期释放而减少了医疗干预的需求。同样重要的是在薄膜涂层中实现高载药量以允许在植入物表面掺入大量药物的能力。在这里,我们报告了一种基于可溶性带电聚合物-药物共轭物的小分子缓释制剂,该共轭物固定在适用于各种基材表面的纳米级,保形,逐层组装的薄膜中。我们测量了从0.5-2.7μm的聚合物薄膜涂层中可预测的持续药物释放,该释放持续了超过14 mo并具有生理学相关的药物浓度,从而提供了重要的药物输送进展。我们用一种有效的小分子非甾体类抗炎药双氯芬酸证明了这种效果,因为该药可用于解决慢性疼痛,骨关节炎和其他一系列重要的医学问题。

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