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首页> 外文期刊>Journal of drug delivery science and technology >Layer-by-layer polyelectrolyte coating of alginate microgels for sustained release of sodium benzoate and zosteric acid
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Layer-by-layer polyelectrolyte coating of alginate microgels for sustained release of sodium benzoate and zosteric acid

机译:丙酸钠微凝胶层逐层聚电解质涂层,持续释放苯甲酸钠和序酸钠

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摘要

The potential of sustaining release of very small (Mw 250 g/mol) hydrophilic drugs up to several days from layer-by-layer (LbL) polyelectrolyte coated alginate microgels (Alg-Ms) was investigated. One purpose is to minimize post-surgical adhesions, which develop in 12 h to 3 days after surgery. The LbL polyelectrolyte layer would serve as a diffusion barrier for their release. The LbL polyelectrolyte bilayers were prepared using poly (allylamine) (PAH) and poly(styrene sulfonate) (PSS). Sodium benzoate (NaB, Mw = 144 g/mol) and zosteric acid (ZA, Mw = 244 g/mol), two anti-inflammatory and anti-microbial compounds, were used as model drugs. A higher number of PAH/PSS bilayer lead to a greater sustained release of both drugs, and with 4 bilayers, the release of NaB and ZA was prolonged from 24 h to 72 h and 120 h, respectively. Fitting the data to the Ritger-Peppas' equation showed that as the bilayer number increased, the release constant and/or exponent decreased, indicating the LbL PAH/PSS bilayer effectively reduced the permeability of these two very small hydrophilic drugs. The ability to prolong the release of such small hydrophilic molecules, which has rarely been investigated previously, would find broad applications in fields such as anti-adhesion treatment and antifouling coatings.
机译:研究了从层逐层(LBL)聚电解质涂覆的海藻酸盐微凝胶(ALG-MS)释放的释放非常小(MW <250g / mol)亲水药物的释放。一种目的是最大限度地减少手术后粘连,在手术后12小时至3天内发展。 LBL聚电解质层将用作其释放的扩散屏障。使用聚(烯丙胺)(PAH)和聚(苯乙烯磺酸盐)(PSS)制备LBL聚电解质双层。苯甲酸钠(Nab,Mw = 144g / mol)和序酸(Za,mw = 244g / mol),两种抗炎和抗微生物化合物用作模型药物。较多的PAH / PSS双层导致两种药物的持续释放,并且用4个双层,释放Nab和Za分别从24小时延长到72小时和120小时。将数据拟合到Ritger-Peppas的等式表明,随着双层数增加,释放常数和/或指数降低,表明LBL PAH / PSS双层有效地降低了这两种非常小的亲水药物的渗透性。延长延长此类小型亲水性分子的能力,该分子很少已经研究,这将在诸如抗粘附处理和防污涂层等领域中找到广泛的应用。

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