A New High-Performance Gadonanotube-Polymer Hybrid Material for Stem Cell Labeling and Tracking by MRI

Author:

Moghaddam Sakineh E.12,Hernández-Rivera Mayra12ORCID,Zaibaq Nicholas G.1ORCID,Ajala Afis34ORCID,da Graça Cabreira-Hansen Maria2,Mowlazadeh-Haghighi Saghar12ORCID,Willerson James T.2,Perin Emerson C.2,Muthupillai Raja3ORCID,Wilson Lon J.1ORCID

Affiliation:

1. Department of Chemistry, The Smalley-Curl Institute, Rice University, M.S. 60, P.O. Box 1892, Houston, TX 77251-1892, USA

2. Stem Cell Center, Texas Heart Institute, Baylor St. Luke’s Medical Center, MC 2-255, P.O. Box 20345, Houston, TX 77225-0345, USA

3. Department of Radiology, Baylor St. Luke’s Medical Center, 6720 Bertner Avenue, MC 2-270, Houston, TX 77030-2697, USA

4. Department of Physics, University of Houston, Houston, TX 77004, USA

Abstract

A gentle, rapid method has been developed to introduce a polyacrylic acid (PAA) polymer coating on the surface of gadonanotubes (GNTs) which significantly increases their dispersibility in water without the need of a surfactant. As a result, the polymer, with its many carboxylic acid groups, coats the surface of the GNTs to form a new GNT-polymer hybrid material (PAA-GNT) which can be highly dispersed in water (ca. 20 mg·mL−1) at physiological pH. When dispersed in water, the new PAA-GNT material is a powerful MRI contrast agent with an extremely short water proton spin-lattice relaxation time (T1) which results in a T1-weighted relaxivity of 150 mM−1·s−1 per Gd3+ ion at 1.5 T. Furthermore, the PAA-GNTs have been used to safely label porcine bone-marrow-derived mesenchymal stem cells for magnetic resonance imaging. The labeled cells display excellent image contrast in phantom imaging experiments, and transmission electron microscopy images of the labeled cells reveal the presence of highly dispersed PAA-GNTs within the cytoplasm with 1014 Gd3+ ions per cell.

Funder

Welch Foundation

Publisher

Hindawi Limited

Subject

Radiology, Nuclear Medicine and imaging

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