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Stable gold nanoparticles – synthesis, bioconjugation and application


Autoři: Paweł Nalepa 1;  Anna Mrozek-Wilczkiewicz 2;  Jarosław Polański 1
Působiště autorů: Institute of Chemistry, Faculty of Mathematics, Physics and Chemistry, University of Silesia Katowice, Poland 1;  Silesian Center for Education and Interdisciplinary Research, Chorzów, Poland 2
Vyšlo v časopise: Čes. slov. Farm., 2015; 64, 269-272
Kategorie: 44<sup>th</sup> Conference drug synthesis and analysis


Zdroje

1. Dreaden E.C., Mackey M.A., Huang X., Kangy B., El-Sayed M.A. Beating cancer in multiple ways using nanogold. Chem. Soc. Rev. 2011; 40, 3391–3404

2. Kapkowski M., Bartczak P., Korzec M., Sitko R., Szade J., Balin K., Lelątko J., Polański J. SiO2–, Cu–, and Ni-supported Au nanoparticles for selective glycerol oxidation in the liquid phase. Journal of Catalysis 2014; 319, 110–118.

3. Korzec M., Bartczak P., Niemczyk A., Szade J., Kapkowski M., Zenderowska P., Balin K., Lelątko J., Polański J. Bimetallic nano-Pd/PdO/Cu system as a highly effective catalyst for the Sonogashira reaction. Journal of Catalysis 2014; 313, 1–8.

4. Bujak P., Bartczak P., Polański J. Highly efficient room-temperature oxidation of cyclohexene and d-glucose over nanogold Au/SiO2 in water. Journal of Catalysis 2012; 295, 15–21.

5. Mrozek-Wilczkiewicz A., Serda M., Musioł R., Małecki G., Szurko A., Muchowicz A., Gołąb J., Ratuszna A., Polański J. Iron Chelators in Photodynamic Therapy Revisited: Synergistic Effect by Novel Highly Active Thiosemicarbazones. ACS Med. Chem. Lett. 2014; 5, 336–339.

6. Serda M., Kalinowski D. S., Rasko N., Potůčková E., Mrozek-Wilczkiewicz A., Musioł R., Małecki J. G., Sajewicz M., Ratuszna A., Muchowicz A., Gołąb J., Šimůnek T., Richardson D. S., Polański J. Exploring the Anti-Cancer Activity of Novel Thiosemicarbazones Generated through the Combination of Retro-Fragments: Dissection of Critical Structure-Activity Relationships. PLOS One 2014; 9, e110291.

7. Park G., Seo D., Chung I. S., Song H. Poly(ethylene glycol)- and Carboxylate-Functionalized Gold Nanoparticles Using Polymer Linkages: Single-Step Synthesis, High Stability, and Plasmonic Detection of Proteins. Langmuir 2013; 29, 13518–13526.

8. Gao J., Huang X., Liu H., Zan F., Ren J. Colloidal Stability of Gold Nanoparticles Modified with Thiol Compounds: Bioconjugation and Application in Cancer Cell Imaging. Langmuir 2012; 28, 4464–4471.

9. Katz E., Shipway A. N., Willner I. Chemically functionalized metal nanoparticles. In: Liz-Marzán, L. M., Kamat, P. V. (eds.) Nanoscale Materials, Springer US 2003.

10. Sperling R. A., Parak W. J. Surface modification, functionalization and bioconjugation of colloidal inorganic nanoparticles. Phil. Trans. R. Soc. A. Advances in Nanoparticles 2010; 368, 1333–1383.

11. Liu S., Han M. Syntheis, functionalization and Bioconjugation of Monodisperse, Silica-Coated Gold-Nanoparticles: Robust Bioprobes. Adv. Funct. Mater. 2005; 15, 961–967.

12. Nalawande P., Mukherjee T., Kapoor S. Green Syntheis og Gold Nanoparticles Using Glycerol as a Reducing Agent. Advances in Nanoparticles 2013; 2, 78–86.

13. Díaz-Álvarez A. E., Cadierno V. Glycerol: A promising Green Solvent and Reducing Agent for Metal-Catalyzed Transfer Hydrogenation Reactions and Nanoparticles Formation. Appl. Sci. 2013; 3, 55–69.

14. Kouz J., Varma R. S. Speedy fabrication of diameter-controlled Ag nanowires using glycerol under microwave irradiation conditions. Chem. Commun. 2013; 49, 692–694.

Štítky
Farmácia Farmakológia

Článok vyšiel v časopise

Česká a slovenská farmacie

Číslo 6

2015 Číslo 6

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