Encapsulation of Iron Oxide Nanoparticles and Oil-in-Water Nanocarriers in Microgels with Biomedical Potential

被引:2
作者
Alvarez-Acevedo, Gonzalo [1 ,2 ]
Inostroza-Riquelme, Mariela [1 ,2 ]
Chornik, Boris [3 ]
Flores, Marcos [3 ]
Oyarzun-Ampuero, Felipe [1 ,2 ]
机构
[1] Univ Chile, Adv Ctr Chron Dis ACCDiS, Santos Dumont 964, Santiago 8380494, Chile
[2] Univ Chile, Fac Ciencias Quim & Fannaceut, Dept Ciencias & Tecnol Farmaceut, Santos Dumont 964, Santiago 8380494, Chile
[3] Univ Chile, Fac Phys & Math Sci, Phys Dept, Lab Surfaces & Nanomat, Beauchef 851, Santiago 8370456, Chile
关键词
Hydrogels; Microgels; Iron Oxide Nanoparticles; O/W Nanocarriers; Heat Control; Stability; MAGNETIC NANOPARTICLES; HYDROGEL NANOCOMPOSITES; HEATING EFFICIENCY; DRUG-RELEASE; MICROCAPSULES; FIELD; SIZE;
D O I
10.1166/jnn.2019.16789
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Here we report on the design and characterization of calcium-alginate microgels (MGs) containing positively charged iron oxide nanoparticles (IONPs) and negatively charged oil-in-water (O/W) nanocarriers (NCs). To provide ionic compatibility of IONPs with the negatively charged NCs and alginate in MGs, they were coated with the anionic polysaccharides alginate, carrageenan or sulfobutyl-beta-cyclodextrin. The mixing of both nanostructures (coated-IONPs and O/W NCs) with alginate solutions provide homogeneous dispersions able to form spherical hydrogels with different sizes (250-1400 micrometers) and encapsulating the nanostructures with high efficiency. MGs loaded with both nanostructures were reactive to continuous (attractive interaction) and alternating magnetic field (heat release similar to non-encapsulated IONPs). The encapsulation of both nanostructures in MGs was maintained even after 7 days of storage at 40 degrees C. We postulate that the above results will be of interest for the design of hydrogel formulations with therapeutic applications.
引用
收藏
页码:4938 / 4945
页数:8
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