18 research outputs found
Factors associated with screening for glucose abnormalities after gestational diabetes mellitus: Baseline cohort of the interventional IMPACT study
X-ray Spectromicroscopy Study of Protein Adsorption to a PolystyreneâPolylactide Blend
Polymersomes with PEG Corona: Structural Changes and Controlled Release Induced by Temperature Variation
Factors Affecting the Clearance and Biodistribution of Polymeric Nanoparticles
Nanoparticle (NP) drug delivery systems (5â250 nm) have the potential to improve current disease therapies because of their ability to overcome multiple biological barriers and releasing a therapeutic load in the optimal dosage range. Rapid clearance of circulating nanoparticles during systemic delivery is a critical issue for these systems and has made it necessary to understand the factors affecting particle biodistribution and blood circulation half-life. In this review, we discuss the factors which can influence nanoparticle blood residence time and organ specific accumulation. These factors include interactions with biological barriers and tunable nanoparticle parameters, such as composition, size, core properties, surface modifications (pegylation and surface charge), and finally, targeting ligand functionalization. All these factors have been shown to substantially affect the biodistribution and blood circulation half-life of circulating nanoparticles by reducing the level of nonspecific uptake, delaying opsonization, and increasing the extent of tissue specific accumulation.United States. National Institutes of Health (Grant CA119349)United States. National Institutes of Health (Grant EB003647)David H. Koch Institute for Integrative Cancer Research at MIT (Prostate Cancer Foundation Award in Nanotherapeutics