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Biomedical Chemistry: Current Trends and Developments
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quantum dots by photoinitiated hydrosilylation. Langmuir, 21(13), 6054-6062. Humrich, J. Y., Morbach, H., Undeutsch, R., et al. (2010). Homeostatic imbalance of regulatory and effector t cells due to il-2 deprivation amplifies murine lupus. Proceedings of the National Academy of Sciences, 107(1), 204-209. Huo, S., Ma, H., Huang, K., et al. (2013). Superior penetration and retention behavior of 50 nm gold nanoparticles in tumors. Cancer Research, 73(1), 319-330. Idoyaga, J., Lubkin, A., Fiorese, C., et al. (2011). Comparable t helper 1 (th1) and cd8 t-cell immunity by targeting hiv gag p24 to cd8 dendritic cells within antibodies to langerin, dec205, and clec9a. Proceedings of the National Academy of Sciences, 108(6), 2384-2389. Ishihara, T., Mizushima, T. (2010). Techniques for efficient entrapment of pharmaceuticals in biodegradable solid micro/nanoparticles. Expert Opinion on Drug Delivery, 7(5), 565-575. Ittrich, H., Peldschus, K., Raabe, N., et al. (2013). Superparamagnetic iron oxide nanoparticles in biomedicine: Applications and developments in diagnostics and therapy. Rofo, 185(12), 1149-1166. Jain, R. K. (1987). Transport of molecules across tumor vasculature. Cancer Metastasis Reviews, 6(4), 559-593. Jain, R. K. (1998). The next frontier of molecular medicine: Delivery of therapeutics. Nature Medicine, 4(6), 655-657. Jain, R. K., Stylianopoulos, T. (2010). Delivering nanomedicine to solid tumors. National Reviews on Clinical Oncology, 7(11), 653-664. James, S. L., Labine, M., Sher, A. (1981). Mechanisms of protective immunity against schistosoma mansoni infection in mice vaccinated with irradiated cercariae. I. Analysis of antibody and t-lymphocyte responses in mouse strains developing differing levels of immunity. Cell Immunology, 65(1), 75-83. Janib, S. M., Moses, A. S., MacKay, J. A. (2010). Imaging and drug delivery using theranostic nanoparticles. Advanced Drug Delivery Reviews, 62(11), 1052-1063. Jhaveri, A., Deshpande, P., Torchilin, V. (2014). Stimuli-sensitive nanopreparations for combination cancer therapy. Journal of Controlled Release, 190, 352-370. Jia, F., Liu, X., Li, L., et al. (2013). Multifunctional nanoparticles for targeted delivery of immune activating and cancer therapeutic agents. Journal of Controlled Release, 172(3), 1020-1034. Jiang, W., Gupta, R. K., Deshpande, M. C., et al. (2005). Biodegradable poly(lactic-co-glycolic acid) microparticles for injectable delivery of vaccine antigens. Advanced Drug Delivery Reviews, 57(3), 391-410. Jin, R., Lin, B., Li, D., et al. (2014). Superparamagnetic iron oxide nanoparticles for mr imaging and therapy: Design considerations and clinical applications. Current Opinion in Pharmacology, 18C, 18-27. Joshi, V. B., Geary, S. M., Carrillo-Conde, B. R., et al. (2013). Characterizing the antitumor response in mice treated with antigen-loaded polyanhydride microparticles. Acta Biomaterialia, 9(3), 5583-5589. Jung, T., Kamm, W., Breitenbach, A., et al. (2001). Tetanus toxoid loaded nanoparticles from sulfobutylated poly(vinyl alcohol)-graft-poly(lactide-co-glycolide): Evaluation of antibody response after oral and nasal application in mice. Pharmaceutical Research, 18(3), 352-360. Kalkanidis, M., Pietersz, G. A., Xiang, S. D., et al. (2006). Methods for nano-particle based vaccine formulation and evaluation of their immunogenicity. Methods, 40(1), 20-29.
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Biomedical Chemistry: Current Trends and Developments
Titel
Biomedical Chemistry: Current Trends and Developments
Autor
Nuno Vale
Verlag
De Gruyter Open Ltd
Datum
2016
Sprache
englisch
Lizenz
CC BY-NC-ND 4.0
ISBN
978-3-11-046887-8
Abmessungen
21.0 x 29.7 cm
Seiten
427
Schlagwörter
Physical Sciences, Engineering and Technology, Chemistry, Organic Chemistry, Green Chemistry
Kategorien
Naturwissenschaften Chemie
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Biomedical Chemistry: Current Trends and Developments