Oshiro Junior João Augusto, Paiva Abuçafy Marina, Berbel Manaia Eloísa, Lallo da Silva Bruna, Chiari-Andréo Bruna Galdorfini, Aparecida Chiavacci Leila
Faculdade de Ciências Farmacêuticas, UNESP-Univ Estadual Paulista, Araraquara-Jaú, Km 1, Araraquara 14800-903, Brazil.
Departamento de Ciências Biológicas e da Saúde, Centro Universitário de Araraquara-UNIARA, Araraquara 14800-903, Brazil.
Polymers (Basel). 2016 Mar 24;8(4):91. doi: 10.3390/polym8040091.
This is a review of hybrid materials based on silica as an inorganic phase used as drug delivery systems (DDS). Silica based DDS have shown effectivity when compared with traditional delivery systems. They present advantages such as: (a) ability to maintain the therapeutic range with minor variations; (b) prevention of local and systemic toxic effects; (c) plasma concentrations increase of substances with a short half-life; and (d) reduction of the number of daily doses, which may increase patient adherence to the treatment. These advantages occur due to the physical, chemical and optical properties of these materials. Therefore, we discuss the properties and characteristics of them and we present some applications, using different approaches of DDS to ensure therapeutic effectiveness and side effects reduction such as implantable biomaterial, film-forming materials, stimuli-responsive systems and others.
这是一篇关于以二氧化硅为无机相的杂化材料用作药物递送系统(DDS)的综述。与传统递送系统相比,基于二氧化硅的药物递送系统已显示出有效性。它们具有以下优点:(a)能够在较小变化的情况下维持治疗范围;(b)预防局部和全身毒性作用;(c)提高半衰期短的物质的血浆浓度;以及(d)减少每日剂量次数,这可能会提高患者对治疗的依从性。这些优点归因于这些材料的物理、化学和光学性质。因此,我们讨论了它们的性质和特性,并介绍了一些应用,采用不同的药物递送系统方法以确保治疗效果并减少副作用,如可植入生物材料、成膜材料、刺激响应系统等。