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Self-Assembled Mucin-Containing Microcarriers via Hard Templating on CaCO3 Crystals

机译:通过硬模板法在CaCO3晶体上自组装的含粘蛋白微载体

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摘要

Porous vaterite crystals of CaCO3 are extensively used for the fabrication of self-assembled polymer-based microparticles (capsules, beads, etc.) utilized for drug delivery and controlled release. The nature of the polymer used plays a crucial role and discovery of new perspective biopolymers is essential to assemble microparticles with desired characteristics, such as biocompatibility, drug loading efficiency/capacity, release rate, and stability. Glycoprotein mucin is tested here as a good candidate to assemble the microparticles because of high charge due to sialic acids, mucoadhesive properties, and a tendency to self-assemble, forming gels. Mucin loading into the crystals via co-synthesis is twice as effective as via adsorption into preformed crystals. Desialylated mucin has weaker binding to the crystals most probably due to electrostatic interactions between sialic acids and calcium ions on the crystal surface. Improved loading of low-molecular-weight inhibitor aprotinin into the mucin-containing crystals is demonstrated. Multilayer capsules (mucin/protamine)3 have been made by the layer-by-layer self-assembly. Interestingly, the deposition of single mucin layers (mucin/water)3 has also been proven, however, the capsules were unstable, most probably due to additional (to hydrogen bonding) electrostatic interactions in the case of the two polymers used. Finally, approaches to load biologically-active compounds (BACs) into the mucin-containing microparticles are discussed.
机译:CaCO3的多孔球v石晶体广泛用于制造自组装的基于聚合物的微粒(胶囊,微珠等),用于药物输送和控释。所用聚合物的性质起着至关重要的作用,新观点的生物聚合物的发现对于组装具有所需特性(例如生物相容性,药物装载效率/容量,释放速率和稳定性)的微粒至关重要。由于唾液酸的高电荷,粘膜粘附特性​​以及自组装形成凝胶的趋势,糖蛋白粘蛋白在这里被测试为组装微粒的良好候选者。通过共合成将粘蛋白负载到晶体中的效率是通过吸附到预制晶体中的效率的两倍。去唾液酸化粘蛋白与晶体的结合较弱,最可能是由于唾液酸和晶体表面钙离子之间的静电相互作用。证明了低分子量抑制剂抑肽酶在含粘蛋白的晶体中的负载得到改善。多层胶囊(粘蛋白/鱼精蛋白)3是通过逐层自组装制成的。有趣的是,单粘蛋白层(粘蛋白/水)3的沉积也已被证实,但是,胶囊是不稳定的,最有可能是由于在使用两种聚合物的情况下附加的(氢键)静电相互作用。最后,讨论了将生物活性化合物(BAC)加载到含粘蛋白的微粒中的方法。

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