Open AccessChemistryMedicine

Karolina Werengowska-Ciećwierz, M. Wiśniewski, A. Terzyk, S. Furmaniak

2015.2.28Advances in Condensed Matter Physics

DOI: 10.1155/2015/198175

tlooto Summary

The most popular nanostructures (liposomes, micelles, polymeric nanoparticles, dendrimers, carbon nanotubes, and nanohorns) are characterized as nanocarriers and building of modern drug carrier is a new method which could be effectively applied in targeted anticancer therapy.

Abstract

Nanomedicine is, generally, the application of nanotechnology to medicine. The term nanomedicine includes monitoring, construction of novel drug delivery systems, and any possible future applications of nanotechnology and nanovaccinology. In this review, the most important ligand-nanocarrier and drug-nanocarrier bioconjugations are described. The detailed characterizations of covalently formed bonds between targeted ligand and nanocarrier, including amide, thioether, disulfide, acetyl-hydrazone and polycyclic groups, are described. Also, the coupling of small elements and heteroatoms in the form of R-X-R the “click chemistry” groups is shown. Physical adsorption and chemical bonding of drug to nanocarrier surface involving drug on the internal or external surfaces of nanocarriers are described throughout possibility of the formation of the above-mentioned functionalities. Moreover, the most popular nanostructures (liposomes, micelles, polymeric nanoparticles, dendrimers, carbon nanotubes, and nanohorns) are characterized as nanocarriers. Building of modern drug carrier is a new method which could be effectively applied in targeted anticancer therapy.

Citation format

WERENGOWSKA-CIEĆWIERZ, Karolina, et al. The chemistry of bioconjugation in nanoparticles-based drug delivery system. Advances in Condensed Matter Physics, 2015, 2015: 1–27.