Internalization of annexin A5-functionalized iron oxide particles by apoptotic Jurkat cells

Geralda A F van Tilborg1, Tessa Geelen, Hans Duimel

  • 1Biomedical NMR, Department of Biomedical Engineering, Eindhoven University of Technology, The Netherlands. g.a.f.v.tilborg@tue.nl

Insights

Annexin A5-iron oxide particles detect apoptosis by binding to cell membranes. Simultaneous exposure to apoptotic stimuli and particles promotes minor internalization, affecting MRI relaxation rates differently. T2 and T2*-weighted MRI are suitable for in vivo detection.

Area of Science:

  • Biomedical Engineering
  • Cell Biology
  • Radiology

Background:

  • Apoptosis is crucial in disease development.
  • Annexin A5-functionalized iron oxide nanoparticles are used for apoptosis detection via MRI.
  • Annexin A5 binds phosphatidylserine on apoptotic cell membranes and can internalize.

Purpose of the Study:

  • Investigate annexin A5-iron oxide particle internalization into cells.
  • Determine the impact of particle distribution on MRI relaxation rates (R1, R2, R2*).

Main Methods:

  • Two incubation methods: post-apoptosis induction vs. simultaneous incubation.
  • Transmission electron microscopy (TEM) for visualizing particle localization.
  • Measurement of MRI relaxation rates (R1, R2, R2*) in cell pellets.

Main Results:

  • Post-induction incubation led to membrane binding; simultaneous incubation caused membrane association and some internalization.
  • Minor differences in DeltaR2*/DeltaR2 and DeltaR2/DeltaR1 ratios between membrane-associated and internalized particles.
  • Internalization slightly reduced the R1 increase (DeltaR1).

Conclusions:

  • Simultaneous exposure in vivo may lead to particle internalization.
  • T2- and T2*-weighted MRI sequences are suitable for detecting these particles in vivo, even with minor internalization.

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