Biomedical Engineering Reference
In-Depth Information
3. S.S. Feng and S. Chien, Chemotherapeutic engineering: Application and further development of chemi-
cal engineering principles for chemotherapy of cancer and other diseases, Chemical Engineering Sci-
ence 58 (2003) 4087-4114.
4. G.M. Dubowchik and M.A. Wallker, Receptor-medicated and enzyme-dependent targeting of cytotoxic
anticancer drugs, Pharmacology and Therapeutics 83 (1999) 67-123.
5. A. Nori and J. Kopecek, Intracellular targeting of polymer-bound drugs for cancer chemotherapy,
Advanced Drug Delivery Reviews 57 (2005) 609-636.
6. E.S. Kawasaki and A. Player, Nanotechnology, nanomedicine, and the development of new, effective
therapies for cancer, Nanomedicine: Nanotechnology, Biology, and Medicine 1 (2005) 101-109.
7. R.M. Hughes, Strategies for cancer gene therapy, Journal of Surgical Oncology 85 (2004) 28-35.
8. M.J. Vicent and R. Duncan, Polymer conjugates: Nanosized medicines for targeting cancer, Tren ds in
Biotechnology 24 (2006) 39-47.
9. M.A. Moses, H. Brem, and R. Langer, Advancing the fi eld of drug delivery: Taking aim at cancer,
Cancer Cell 4 (2003) 337-341.
10. G. Szakacs, J.K. Paterson, J.A. Ludwing, C. Booth-Genthe, and M.M. Gottesman, Targeting multidrug
resistance in cancer, Nature Reviews Drug Discovery 5 (2006) 219-234.
11. C.R. Dass and P.F.M. Choong, Carrier-mediated delivery of peptide for cancer therapy, Peptides 27
(2006) 3020 -3028.
12. P. Couvreur, R. Gref, K. Andrieux, and C. Malvy, Nanotechnologies for drug delivery: Application to
cancer and autoimmune diseases, Progress in Solid State Chemistry 34 (2006) 231-235.
13. L. Brannon-Peppas and J.O. Blanchette, Nanoparticles and targeted systems for cancer therapy,
Advanced Drug Delivery Reviews 56 (2004) 1649-1659.
14. T.M. Fahmy, P.M. Fong, A. Goyal, and W.M. Saltzman, Targeted drug delivery, Nano Today August
(2005) 18-26.
15. V.P. Torchilin, Multifunctional nanocarriers, Advanced Drug Delivery Reviews 58 (2006) 1532-1555.
16. A.I. Freeman and E. Mayhew, Targeted drug delivery, Cancer 58 (1986) 573-583.
17. K. Petrak, Essential properties of drug-targeting delivery systems, Drug Discovery Today 10 (2005)
1667-1673.
18. V.P. Torchilin, Drug targeting, European Journal of Pharmaceutical Sciences 11 (2000) S81-S91.
19. S. Jaracz, J. Chen, L.V. Kuznetsova, and I. Ojima, Recent advances in tumor-targeting anticancer drug
conjugates, Bioorganic and Medicinal Chemistry 13 (2005) 5043-5054.
20. F.J. Toublan, S. Boppart, and K.S. Suslick, Tumor targeting by surface-modifi ed protein microspheres,
Journal of American Chemical Society 128 (2006) 3472-3473.
21. K.C. Brown, New approaches for cell-specifi c targeting: Identifi cation of cell-selective peptides from
combinatorial libraries, Current Opinion in Chemical Biology 4 (2000) 16-21.
22. G. Alvisi, I.K.H. Poon, D.A. Jans, Tumor-specifi c nuclear targeting: Promises for anti-cancer therapy?
Drug Resistance Updates 9 (2006) 40-50.
23. O.M. Koo, I. Rubinstein, and H. Onyuksel, Role of nanotechnology in targeted drug delivery and imag-
ing: A concise review, Nanomedicine: Nanotechnology, Biology, and Medicine 1 (2005) 193-212.
24. E. Ruoslahti, Drug targeting to specifi c vascular sites, Drug Discovery Today 7 (2002) 1138-1142.
25. E.Y. Zhang, M.A. Phelps, C. Cheng, S. Ekins, and P.W. Swaan, Modeling of active transport systems,
Advanced Drug Delivery Reviews 54 (2002) 329-354.
26. R.S. Herbst, Role of novel targeted therapies in the clinic, British Journal of Cancer 92 (2005) S21-S27.
27. N. Nishiyama and K. Kataoka, Current state, achievements, and future prospects of polymeric micelles
as nanocarriers for drug and gene delivery, Pharmacology and Therapeutics 112 (2006) 630-648.
28. I. Brigger, C. Dubernet, and P. Couvreur, Nanoparticles in cancer therapy and diagnosis, Advanced
Drug Delivery Reviews 54 (2002) 631-651.
29. J.A. Hubbell, Enhancing drug function, Materials Science 300 (2003) 595-596.
30. A. Rosler, G.W.M. Vandermeulen, and H. Klok, Advanced drug delivery devices via self-assembly of
amphiphilic block copolymers, Advanced Drug Delivery Reviews 53 (2001) 95-108.
31. G. Riess, Micellization of block copolymers, Progress in Polymer Science 28 (2003) 1107-1170.
32. K.K. Jain, Nanoparticles as targeting ligands, Trends in Biotechnology 24 (20 06) 143 -145.
33. J.M. Saul, A.V. Annapragada, and R.V. Bellamkonda, A dual-ligand approach for enhancing targeting
selectivity of therapeutic nanocarriers, Journal of Controlled Release 114 (2006) 277-287.
34. N. Nasongkla, E. Bey, J. Ren, H. Ai, C. Khemtong, J.S. Guthi, S.F. Chin, A.D. Sherry, D.A. Boothman,
and J. Gao, Multifunctional polymeric micelles as cancer-targeted, MRI-ultrasensitive drug delivery
systems, Nano Letters 6 (2006) 2427-2430.
Search WWH ::




Custom Search