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Ionically Cross-Linked Polymer Networks for the Multiple-Month Release of Small Molecules

机译:用于小分子多个月释放的离子交联聚合物网络

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Long-term (multiple-week or-month) release of small, water-soluble molecules from hydrogels remains a significant pharmaceutical challenge, which is typically overcome at the expense of more-complicated drug carrier designs. Such approaches are payload-specific and include covalent conjugation of drugs to base materials or incorporation of micro- and nanoparticles. As a simpler alternative, here we report a mild and simple method for achieving multiple-month release of small molecules from gel-like polymer networks. Densely cross-linked matrices were prepared through ionotropic gelation of poly(allylamine hydrochloride) (PAH) with either pyrophosphate (PPi) or tripolyphosphate (TPP), all of which are commonly available commercial molecules. The loading of model small molecules (Fast Green FCF and Rhodamine B dyes) within these polymer networks increases with the payloadetwork binding strength and with the PAH and payload concentrations used during encapsulation. Once loaded into the PAH/PPi and PAH/TPP ionic networks, only a few percent of the payload is released over multiple months. This extended release is achieved regardless of the payloadetwork binding strength and likely reflects the small hydrodynamic mesh size within the gel-like matrices. Furthermore, the PAH/TPP networks show promising in vitro cytocompatibility with model cells (human dermal fibroblasts), though slight cytotoxic effects were exhibited by the PAH/PPi networks. Taken together, the above findings suggest that PAH/PPi and (especially) PAH/TPP networks might be attractive materials for the multiple-month delivery of drugs and other active molecules (e.g., fragrances or disinfectants).
机译:从水凝胶中长期(数周或一个月)释放小的水溶性分子仍然是一个重大的药物挑战,通常可以通过更复杂的药物载体设计来克服这一难题。这样的方法是有效负载特定的,包括药物与基础材料的共价缀合或微颗粒和纳米颗粒的掺入。作为一种更简单的替代方法,我们在这里报告了一种温和而简单的方法,可从凝胶状聚合物网络中释放小分子多个月。通过聚焦烯丙基盐酸盐(PAH)与焦磷酸酯(PPi)或三聚磷酸酯(TPP)的离子凝胶化制备致密的交联基质,所有这些都是常见的商业分子。这些聚合物网络中模型小分子(快速绿色FCF和若丹明B染料)的负载量随有效载荷/网络结合强度以及封装过程中使用的PAH和有效载荷浓度而增加。一旦加载到PAH / PPi和PAH / TPP离子网络中,只有很少的有效载荷会在几个月内释放。不管有效载荷/网络的结合强度如何,都可以实现这种延长释放,并且可能反映出凝胶状基质中较小的流体动力学筛孔尺寸。此外,尽管PAH / PPi网络显示出轻微的细胞毒性作用,但PAH / TPP网络显示出与模型细胞(人皮肤成纤维细胞)的体外细胞相容性。综上所述,以上发现表明,PAH / PPi和(尤其是)PAH / TPP网络可能是药物和其他活性分子(例如香料或消毒剂)的多个月递送的有吸引力的材料。

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