ACS Nano 2015-03-24

Elasticity of nanoparticles influences their blood circulation, phagocytosis, endocytosis, and targeting.

Aaron C Anselmo, Mengwen Zhang, Sunny Kumar, Douglas R Vogus, Stefano Menegatti, Matthew E Helgeson, Samir Mitragotri

Index: ACS Nano 9(3) , 3169-77, (2015)

Full Text: HTML

Abstract

The impact of physical and chemical modifications of nanoparticles on their biological function has been systemically investigated and exploited to improve their circulation and targeting. However, the impact of nanoparticles' flexibility (i.e., elastic modulus) on their function has been explored to a far lesser extent, and the potential benefits of tuning nanoparticle elasticity are not clear. Here, we describe a method to synthesize polyethylene glycol (PEG)-based hydrogel nanoparticles of uniform size (200 nm) with elastic moduli ranging from 0.255 to 3000 kPa. These particles are used to investigate the role of particle elasticity on key functions including blood circulation time, biodistribution, antibody-mediated targeting, endocytosis, and phagocytosis. Our results demonstrate that softer nanoparticles (10 kPa) offer enhanced circulation and subsequently enhanced targeting compared to harder nanoparticles (3000 kPa) in vivo. Furthermore, in vitro experiments show that softer nanoparticles exhibit significantly reduced cellular uptake in immune cells (J774 macrophages), endothelial cells (bEnd.3), and cancer cells (4T1). Tuning nanoparticle elasticity potentially offers a method to improve the biological fate of nanoparticles by offering enhanced circulation, reduced immune system uptake, and improved targeting.


Related Compounds

Related Articles:

The dynamics of giant unilamellar vesicle oxidation probed by morphological transitions.

2014-10-01

[Biochim. Biophys. Acta 1838(10) , 2615-24, (2014)]

Graphene oxide - gelatin nanohybrids as functional tools for enhanced Carboplatin activity in neuroblastoma cells.

2015-06-01

[Pharm. Res. 32 , 2132-43, (2015)]

Facile room-temperature synthesis of carboxylated graphene oxide-copper sulfide nanocomposite with high photodegradation and disinfection activities under solar light irradiation.

2015-01-01

[Sci. Rep. 5 , 16369, (2015)]

Human nail plate modifications induced by onychomycosis: implications for topical therapy.

2015-05-01

[Pharm. Res. 32(5) , 1626-33, (2015)]

Development of ultrasound-assisted emulsification microextraction for determination of thiocynate ion in human urine and saliva samples.

2013-02-15

[J. Chromatogr. B. Analyt. Technol. Biomed. Life Sci. 917-918 , 5-10, (2013)]

More Articles...