Nanoparticle Tracking Analysis of Polymer Nanoparticles in Blood Plasma
Document Type
Article
Publication Date
6-1-2021
Abstract
A successful drug delivery system must overcome complex biological barriers. For particles injected into the blood, one of the first and most critical barriers pertains to blood stability to circulate through the human body. To effectively design drug delivery vehicles, interactions between the particles and blood, as well as the aggregation behavior, must be understood. This work presents a method to analyze particle size and aggregation in blood plasma using a commercially available nanoparticle tracking analysis (NTA) system. As a model system, fluorescently labeled polystyrene nanoparticles are incubated in goat blood plasma and analyzed using NTA. The particles incubated in plasma are found to have a protein corona that is larger than what has been observed by dynamic light scattering (DLS) in diluted plasma. Particles that are decorated with a PEG layer are also found to have large protein coronas in undiluted plasma. Because NTA is based on a unique visualization method, large multicomponent aggregates could be observed and quantified in a manner not feasible with other techniques. PEGylation of the particles is found to decrease the multicomponent aggregation from 1000 ± 200 particles for unmodified to 200 ± 30 particles for 1K PEGylated per 1 × 105 total particles.
Identifier
85105914953 (Scopus)
Publication Title
Particle and Particle Systems Characterization
External Full Text Location
https://doi.org/10.1002/ppsc.202100016
e-ISSN
15214117
ISSN
09340866
Issue
6
Volume
38
Recommended Citation
Bannon, Mark S.; López Ruiz, Aida; Corrotea Reyes, Karen; Marquez, Miriam; Wallizadeh, Zahra; Savarmand, Mohammad; LaPres, Connor A.; Lahann, Joerg; and McEnnis, Kathleen, "Nanoparticle Tracking Analysis of Polymer Nanoparticles in Blood Plasma" (2021). Faculty Publications. 4098.
https://digitalcommons.njit.edu/fac_pubs/4098