| Literature DB >> 24348377 |
Magesh Sadasivam1, Pinar Avci2, Gaurav K Gupta3, Shanmugamurthy Lakshmanan1, Rakkiyappan Chandran1, Ying-Ying Huang4, Raj Kumar3, Michael R Hamblin5.
Abstract
Photodynamic therapy (PDT) employs the combination of non-toxic photosensitizers (PS) together with harmless visible light of the appropriate wavelength to produce reactive oxygen species that kill unwanted cells. Because many PS are hydrophobic molecules prone to aggregation, numerous drug delivery vehicles have been tested to solubilize these molecules, render them biocompatible and enhance the ease of administration after intravenous injection. The recent rise in nanotechnology has markedly expanded the range of these nanoparticulate delivery vehicles beyond the well-established liposomes and micelles. Self-assembled nanoparticles are formed by judicious choice of monomer building blocks that spontaneously form a well-oriented 3-dimensional structure that incorporates the PS when subjected to the appropriate conditions. This self-assembly process is governed by a subtle interplay of forces on the molecular level. This review will cover the state of the art in the preparation and use of self-assembled liposomal nanoparticles within the context of PDT.Entities:
Keywords: liposomes; nanoparticles; nanotechnology; photodynamic therapy; self-assembly
Year: 2013 PMID: 24348377 PMCID: PMC3857307 DOI: 10.1515/ejnm-2013-0010
Source DB: PubMed Journal: Eur J Nanomed ISSN: 1662-596X