4.5 Article

Photochemical Activation of Endosomal Escape of MRI-Gd-Agents in Tumor Cells

Journal

MAGNETIC RESONANCE IN MEDICINE
Volume 65, Issue 1, Pages 212-219

Publisher

WILEY
DOI: 10.1002/mrm.22586

Keywords

photochemical internalization; MRI; intracellular relaxivity; endosomal escape

Funding

  1. MIUR [2007W7M4NF]
  2. EC [LSHB-CT-2005-512146]
  3. EMIL [LSHC-CT-2004-503569]
  4. MEDITRANS (Targeted Delivery of Nanomedicine) [NMP4-CT-2006-026668]
  5. ENCITE (European Network for Cell Imaging and Tracking Expertise) [201842]
  6. EU [D38]

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Endocytosis is a common internalization pathway for cellular labeling with MRI contrast agents. However, the entrapment of the Gd(III) complexes into endosomes results in a quenching of the attainable relaxivity when the number of Gd(III) complexes reaches the number of ca. 1 x 10(9)/cell. Herein we show that the use of the newly developed photochemical internalization technique provides an efficient method for attaining the endosomal escape of GdHPDO3A molecules entrapped by pinocytosis into different kind of cells. Furthermore, it has been found that a new quenching limit is observed when the number of Gd-HPDO3A complexes is ca. five times higher than the value observed for the endosome entrapped conditions. The observed behavior is explained in terms of the attainment of the conditions in which the difference in proton relaxation rates between the cytoplasmic and the extracellular compartment is higher than the exchange rate of water molecules across the cellular membrane. The experimental data points have been reproduced by using a properly designed theoretical compartment T-1-relaxation model. Magn Reson Med 65:212-219, 2011. V (c) 2010Wiley-Liss, Inc.

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