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一种基于藻酸钙的新型pH响应水凝胶,通过预先形成聚电解质复合物(PEC)设计用于阴道给药。

A novel pH-responsive hydrogel-based on calcium alginate engineered by the previous formation of polyelectrolyte complexes (PECs) intended to vaginal administration.

作者信息

Ferreira Natália Noronha, Perez Taciane Alvarenga, Pedreiro Liliane Neves, Prezotti Fabíola Garavello, Boni Fernanda Isadora, Cardoso Valéria Maria de Oliveira, Venâncio Tiago, Gremião Maria Palmira Daflon

机构信息

a School of Pharmaceutical Sciences , São Paulo State University, UNESP , São Paulo , Brazil.

b Department of Chemistry , Federal University of São Carlos , São Carlos , Brazil.

出版信息

Drug Dev Ind Pharm. 2017 Oct;43(10):1656-1668. doi: 10.1080/03639045.2017.1328434. Epub 2017 May 25.

Abstract

This work aimed to develop a calcium alginate hydrogel as a pH responsive delivery system for polymyxin B (PMX) sustained-release through the vaginal route. Two samples of sodium alginate from different suppliers were characterized. The molecular weight and M/G ratio determined were, approximately, 107 KDa and 1.93 for alginate_S and 32 KDa and 1.36 for alginate_V. Polymer rheological investigations were further performed through the preparation of hydrogels. Alginate_V was selected for subsequent incorporation of PMX due to the acquisition of pseudoplastic viscous system able to acquiring a differential structure in simulated vaginal microenvironment (pH 4.5). The PMX-loaded hydrogel (hydrogel_PMX) was engineered based on polyelectrolyte complexes (PECs) formation between alginate and PMX followed by crosslinking with calcium chloride. This system exhibited a morphology with variable pore sizes, ranging from 100 to 200 μm and adequate syringeability. The hydrogel liquid uptake ability in an acid environment was minimized by the previous PECs formation. In vitro tests evidenced the hydrogels mucoadhesiveness. PMX release was pH-dependent and the system was able to sustain the release up to 6 days. A burst release was observed at pH 7.4 and drug release was driven by an anomalous transport, as determined by the Korsmeyer-Peppas model. At pH 4.5, drug release correlated with Weibull model and drug transport was driven by Fickian diffusion. The calcium alginate hydrogels engineered by the previous formation of PECs showed to be a promising platform for sustained release of cationic drugs through vaginal administration.

摘要

本研究旨在开发一种海藻酸钙水凝胶,作为一种pH响应性给药系统,用于通过阴道途径实现多粘菌素B(PMX)的缓释。对来自不同供应商的两种海藻酸钠样品进行了表征。测定的海藻酸_S的分子量和M/G比分别约为107 kDa和1.93,海藻酸_V的分子量和M/G比分别约为32 kDa和1.36。通过制备水凝胶进一步进行了聚合物流变学研究。由于海藻酸_V在模拟阴道微环境(pH 4.5)中能够形成具有假塑性粘性系统并获得不同结构,因此选择其用于后续PMX的掺入。基于海藻酸盐和PMX之间形成聚电解质复合物(PEC),然后用氯化钙交联,设计了负载PMX的水凝胶(水凝胶_PMX)。该系统呈现出孔径大小可变的形态,范围为100至200μm,并且具有足够的可注射性。通过预先形成PEC,可将酸性环境中的水凝胶液体吸收能力降至最低。体外试验证明了水凝胶的粘膜粘附性。PMX的释放依赖于pH,并且该系统能够持续释放长达6天。在pH 7.4时观察到突释,并且根据Korsmeyer-Peppas模型确定药物释放由非菲克转运驱动。在pH 4.5时,药物释放与威布尔模型相关,药物转运由菲克扩散驱动。通过预先形成PEC设计的海藻酸钙水凝胶显示出是一种通过阴道给药实现阳离子药物缓释的有前景的平台。

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