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Assessment of Cellular Uptake Efficiency According to Multiple Inhibitors of Fe3O4-Au Core-Shell Nanoparticles: Possibility to Control Specific Endocytosis in Colorectal Cancer Cells.
Park, Bo Gi; Kim, Yu Jin; Min, Ji Hyun; Cheong, Taek-Chin; Nam, Sang Hwan; Cho, Nam-Hyuk; Kim, Young Keun; Lee, Kyu Back.
Afiliação
  • Park BG; Department of Biomedical Engineering, College of Health Science, Korea University, Seoul, 02841, South Korea.
  • Kim YJ; Institute for High Technology Materials and Devices, College of Engineering, Korea University, Seoul, 02841, South Korea.
  • Min JH; Department of Materials Science and Engineering, College of Engineering, Korea University, Seoul, 02841, South Korea.
  • Cheong TC; Department of Microbiology and Immunology, College of Medicine, Seoul National University, Seoul, 03080, South Korea.
  • Nam SH; Center for Convergent Research of Emerging Virus Infection, Korea Research Institute of Chemical Technology, Daejeon, 34114, South Korea.
  • Cho NH; Department of Microbiology and Immunology, College of Medicine, Seoul National University, Seoul, 03080, South Korea.
  • Kim YK; Department of Materials Science and Engineering, College of Engineering, Korea University, Seoul, 02841, South Korea. ykim97@korea.ac.kr.
  • Lee KB; Department of Biomedical Engineering, College of Health Science, Korea University, Seoul, 02841, South Korea. kblee@korea.ac.kr.
Nanoscale Res Lett ; 15(1): 165, 2020 Aug 17.
Article em En | MEDLINE | ID: mdl-32804261
ABSTRACT
Magnetite (Fe3O4)-gold (Au) core-shell nanoparticles (NPs) have unique magnetic and optical properties. When combined with biological moieties, these NPs can offer new strategies for biomedical applications, such as drug delivery and cancer targeting. Here, we present an effective method for the controllable cellular uptake of magnetic core-shell NP systems combined with biological moieties. Vimentin, which is the structural protein, has been biochemically confirmed to affect phagocytosis potently. In addition, vimentin affects exogenic materials internalization into cells even though under multiple inhibitions of biological moieties. In this study, we demonstrate the cellular internalization performance of Fe3O4-Au core-shell NPs with surface modification using a combination of biological moieties. The photofluorescence of vimentin-tagged NPs remained unaffected under multiple inhibition tests, indicating that the NPs were minimally influenced by nystatin, dynasore, cytochalasin D, and even the Muc1 antibody (Ab). Consequently, this result indicates that the Muc1 Ab can target specific molecules and can control specific endocytosis. Besides, we show the possibility of controlling specific endocytosis in colorectal cancer cells.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article