Institute for Frontier Materials, Deakin University, Waurn Ponds, VIC 3216, Australia.
Institute for Frontier Materials, Deakin University, Waurn Ponds, VIC 3216, Australia; Centre of Excellence for Electromaterials Science, Deakin University, Waurn Ponds, VIC 3216, Australia.
J Colloid Interface Sci. 2015 May 1;445:151-160. doi: 10.1016/j.jcis.2014.12.053. Epub 2014 Dec 25.
Hollow mesoporous silica nanoparticles (HMSNs) are one of the most promising carriers for effective drug delivery due to their large surface area, high volume for drug loading and excellent biocompatibility. However, the non-ionic surfactant templated HMSNs often have a broad size distribution and a defective mesoporous structure because of the difficulties involved in controlling the formation and organization of micelles for the growth of silica framework. In this paper, a novel "Eudragit assisted" strategy has been developed to fabricate HMSNs by utilising the Eudragit nanoparticles as cores and to assist in the self-assembly of micelle organisation. Highly dispersed mesoporous silica spheres with intact hollow interiors and through pores on the shell were fabricated. The HMSNs have a high surface area (670 m(2)/g), small diameter (120 nm) and uniform pore size (2.5 nm) that facilitated the effective encapsulation of 5-fluorouracil within HMSNs, achieving a high loading capacity of 194.5 mg(5-FU)/g(HMSNs). The HMSNs were non-cytotoxic to colorectal cancer cells SW480 and can be bioconjugated with Epidermal Growth Factor (EGF) for efficient and specific cell internalization. The high specificity and excellent targeting performance of EGF grafted HMSNs have demonstrated that they can become potential intracellular drug delivery vehicles for colorectal cancers via EGF-EGFR interaction.
介孔中空硅纳米球(HMSNs)是最有前途的药物载体之一,因为它们具有较大的表面积、较大的载药量和较好的生物相容性。然而,由于非离子型表面活性剂模板 HMSNs 的形成和胶束组织的控制存在困难,其往往具有较宽的粒径分布和有缺陷的介孔结构。本文采用 Eudragit 纳米粒作为核,利用其辅助“Eudragit 辅助”策略制备 HMSNs,并协助胶束组织的自组装。制备了高度分散的具有完整中空内部和壳上通孔的介孔硅球。HMSNs 具有高比表面积(670 m2/g)、小直径(120nm)和均匀的孔径(2.5nm),有利于 5-氟尿嘧啶(5-FU)在 HMSNs 内的有效包封,达到 194.5mg(5-FU)/g(HMSNs)的高载药量。HMSNs 对结直肠癌细胞 SW480 无细胞毒性,并可与表皮生长因子(EGF)进行生物偶联,实现高效和特异性细胞内化。EGF 接枝 HMSNs 的高特异性和良好的靶向性能表明,它们可以通过 EGF-EGFR 相互作用成为结直肠癌潜在的细胞内药物传递载体。