| Literature DB >> 29218838 |
Verena M Weiss1, Henrike Lucas1, Thomas Mueller2, Petr Chytil3, Tomáš Etrych3, Toufik Naolou4, Jörg Kressler5, Karsten Mäder1.
Abstract
Biodegradable nanoparticles based on stearic acid-modified poly(glycerol adipate) (PGAS) are promising carriers for drug delivery. In order to investigate the impact of the particle interface characteristics on the biological fate, PGAS nanoparticles are covalently and noncovalently coated with N-(2-hydroxypropyl) methacrylamide (HPMA) copolymers. HPMA copolymer-modified PGAS nanoparticles have similar particle sizes, but less negative zeta-potentials. Nanoparticles are double labeled with the fluorescent dyes DiR (noncovalently) and DYOMICS-676 (covalently bound to HPMA copolymer), and their biodistribution is investigated noninvasively by multispectral optical imaging. Both covalent and noncovalent coatings cause changes in the pharmacokinetics and biodistribution in healthy and tumor-bearing mice. In addition to the intended tumor accumulation, high signals of both fluorescent dyes are also observed in other organs, including liver, ovaries, adrenal glands, and bone. The unintended accumulation of nanocarriers needs further detailed and systematic investigations, especially with respect to the observed ovarian and adrenal gland accumulation.Entities:
Keywords: adrenals; biodegradable polymers; bones; nanoparticles; ovaries
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Year: 2017 PMID: 29218838 DOI: 10.1002/mabi.201700240
Source DB: PubMed Journal: Macromol Biosci ISSN: 1616-5187 Impact factor: 4.979