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Synthesis of an In vivo MRI-detectable Apoptosis Probe
Published on: July 31, 2012
MR imaging detection of superparamagnetic iron oxide loaded tris-acryl embolization microspheres
Julien Namur1, René Chapot, Jean-Pierre Pelage
1Department of Interventional Neuroradiology, Lariboisière AP-HP Hospital, Paris, France.
Purpose:
To assess by magnetic resonance (MR) imaging the detectability of superparamagnetic iron oxide (SPIO)-labeled microspheres (MSs) in vitro on gelose, ex vivo in kidneys from embolized sheep, and in vivo in kidneys from embolized pigs.
Materials And Methods:
With various sizes of SPIO-labeled MSs, common neck and pelvic spin-echo and gradient-echo sequences were acquired on a 1.5-T MR unit. SPIO-labeled MSs of four sizes were embedded in a hydrogel as single MSs or in multiple units, or multiplets. Detection rate on MR imaging was assessed according to the real size and number of MSs. SPIO-loaded and unloaded MSs of four sizes were injected into eight sheep kidneys, which underwent MR and pathologic examinations. For each size, the location of MSs in renal vasculature was determined and compared according to the technique used. Kidneys were embolized in pigs with various amounts of MSs in three sizes. MR was performed immediately after embolization and SPIO-labeled MS detection was assessed according to size, organ, and amount injected. Results SPIO-labeled MSs provide a low signal intensity on T1-weighted sequences, without distortion. In vitro, 28% of 100-300-microm single MSs were detected and more than 80% were detected for larger sizes. MS multiplets were all detected in all sizes. Ex vivo, all sizes of MSs were detected by MR imaging in kidneys, whereas control MSs were not observed. Histologic analysis showed that there was no difference in vascular distribution between SPIO-labeled MS and control MSs, and therefore for each caliber (P > .05). Arterial location of SPIO-labeled MSs was the same on MR imaging and histologic analysis. In vivo, SPIO-labeled MS were detected in the kidney vasculature when volumes greater than 1 mL of 100-300-microm or 500-700-microm MSs were injected. Volumes lower than 1 mL SPIO-labeled MSs were hardly detected in kidneys, regardless of MS size. Conclusions SPIO-labeled MSs are detected by MR imaging with common gradient-echo sequences in vitro in gelose and ex vivo and in vivo in kidneys. SPIO-labeled MSs could allow better control of embolization and thereby enhance efficacy and safety of the procedure.
Insights
Superparamagnetic iron oxide (SPIO)-labeled microspheres are detectable using magnetic resonance (MR) imaging in various settings. This technology can improve the control, efficacy, and safety of embolization procedures.
Area of Science:
- Biomedical Engineering
- Radiology
- Interventional Radiology
Background:
- Superparamagnetic iron oxide (SPIO)-labeled microspheres (MSs) are utilized in various medical applications.
- Assessing the detectability of these SPIO-labeled MSs using magnetic resonance (MR) imaging is crucial for procedural control and efficacy.
Purpose of the Study:
- To evaluate the detectability of SPIO-labeled MSs using MR imaging.
- Assessments were performed in vitro (gelose), ex vivo (sheep kidneys), and in vivo (pig kidneys).
Main Methods:
- Various sizes of SPIO-labeled MSs were tested using common spin-echo and gradient-echo sequences on a 1.5-T MR unit.
- Detection rates were assessed in vitro, ex vivo in sheep kidneys, and in vivo in pig kidneys after embolization.
- MR imaging findings were compared with pathologic and histologic analyses.
Main Results:
- In vitro, detection rates varied by MS size and aggregation, with larger and aggregated MSs being more detectable.
- Ex vivo, all SPIO-labeled MS sizes were detected in sheep kidneys, with no difference in vascular distribution compared to control MSs.
- In vivo, detection in pig kidneys required injected volumes greater than 1 mL for certain MS sizes; smaller volumes were difficult to detect.
Conclusions:
- SPIO-labeled MSs are detectable by MR imaging with standard sequences in vitro, ex vivo, and in vivo.
- MR imaging of SPIO-labeled MSs can potentially enhance the control, efficacy, and safety of embolization procedures.

