Metalik nanopartiküllerin hedeflendirilmesi
Öz
Anahtar Kelimeler
References
- Kang YS, Risbud S, Rabolt JF, Stroeve P. Synthesis and characterization of nanometer-size Fe3O4 and γ-Fe2O3 particles. Chem Mater. 1996; 8: 2209–11.
- Pankhurst QA, Connolly J, Jones S, Dobson J. Applications of magnetic nanoparticles in biomedicine. Journal of physics D: Applied physics. 2003; 36: R167.
- Dobson J. Gene therapy progress and prospects: magnetic nanoparticle-based gene delivery. Gene Ther. 2006; 13: 283–7.
- Rudge S, Peterson C, Vessely C, Koda J, Stevens S, Catterall L. Adsorption and desorption of chemotherapeutic drugs from a magnetically targeted carrier (MTC). J Control Release. 2001; 74: 335–40.
- Appenzeller T. The man who dared to think small. Science. 1991; 254: 1300.
- Frank G, Langer R, Farokhzad OC. Precise engineering of targeted nanoparticles by using self-assembled biointegrated block coploymers. PNAS 2008; 105 (7): 2586.
- Chouhan R, Bajpai AK. Real time in vitro studies of doxorubicin release from PHEMA nanoparticles. J Nanobiotechnology 2009; 7 (5): 7.
- Gelperina S, Kisich K, Iseman MD, Heifets L. The potential advantages of nanoparticle drug delivery systems in chemotherapy of tuberculosis. Am J RespirCrit Care Med. 2005; 172 (12): 1487-90.
Details
Primary Language
Turkish
Subjects
Health Care Administration
Journal Section
Review
Authors
Derya Salmanoğlu
0000-0001-7435-1725
Türkiye
Publication Date
March 13, 2020
Submission Date
December 23, 2019
Acceptance Date
February 18, 2020
Published in Issue
Year 2020 Volume: 59 Number: 1