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Walnut kernel-like mesoporous silica nanoparticles as effective drug carrier for cancer therapy in vitro

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机构: [1]Hebei Univ, Coll Chem & Environm Sci, Key Lab Med Chem & Mol Diag,Minist Educ, Key Lab Chem Biol Hebei Prov, Baoding 071002, Peoples R China [2]Hebei Univ, Affiliated Hosp, Baoding 071000, Peoples R China [3]Hebei Univ, Coll Clin Sci, Baoding 071000, Peoples R China
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关键词: Mesoporous silica nanoparticles Walnut kernel-like Drug carrier Anticancer effect Nanomedicine

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In drug delivery systems, nanocarriers could reduce the degradation and renal clearance of drugs, increase the half-life in the bloodstream and payload of drugs, control the release patterns, and improve the solubility of some insoluble drugs. In particular, mesoporous silica nanoparticles (MSNs) are considered to be attractive nanocarriers for application of delivery systems because of their large surface areas, large pore volume, tunable pore sizes, good biocompatibility, and the ease of surface functionalization. However, the large-scale synthesis of monodisperse MSNs that are smaller than 200 nm remains a challenge. In this study, monodisperse walnut kernel-like MSNs with diameters of approximately 100 nm were synthesized by a sol-gel route on a large scale. The morphology and structure of MSNs were characterized by scanning electron microscope, and transmission electron microscopy, N-2 adsorption-desorption isotherms, Zeta potentials, and dynamic light scattering. Drug loading and release profile, cellular uptake, subcellular localization, and anticancer effect in vitro were further investigated. The results indicated that the loading efficiency of doxorubicinhydrochloride (DOX) into the MSNs was 57 %. The MSNs-DOX delivery system exhibited a drug-pronounced initial burst release within 12 h, followed by the slow sustained release of DOX molecules; moreover, MSNs could improve DOX release efficiency in acidic medium. Most free DOX was localized in the cytoplasm, whereas the MSNs-DOX was primarily distributed in lysosome. MSNs-DOX exhibited a potential anticancer effect against MCF-7, HeLa, and A549 cells in dose-and time-dependent manners. In summary, the as-synthesized MSNs may have well function as a promising drug carrier in drug delivery fields.

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出版当年[2017]版:
大类 | 3 区 工程技术
小类 | 3 区 材料科学:综合 4 区 化学综合 4 区 纳米科技
最新[2025]版:
大类 | 4 区 材料科学
小类 | 4 区 化学:综合 4 区 材料科学:综合 4 区 纳米科技
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出版当年[2016]版:
Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Q2 CHEMISTRY, MULTIDISCIPLINARY Q3 NANOSCIENCE & NANOTECHNOLOGY
最新[2023]版:
Q3 CHEMISTRY, MULTIDISCIPLINARY Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Q4 NANOSCIENCE & NANOTECHNOLOGY

影响因子: 最新[2023版] 最新五年平均 出版当年[2016版] 出版当年五年平均 出版前一年[2015版] 出版后一年[2017版]

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第一作者机构: [1]Hebei Univ, Coll Chem & Environm Sci, Key Lab Med Chem & Mol Diag,Minist Educ, Key Lab Chem Biol Hebei Prov, Baoding 071002, Peoples R China [2]Hebei Univ, Affiliated Hosp, Baoding 071000, Peoples R China
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