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Published on: December 7, 2013
CD93 in macrophages: A novel target for atherosclerotic plaque imaging?
Chen Su1, Yeming Han2, Bin Qu1
1Key Laboratory for Experimental Teratology of the Ministry of Education and Research Center for Experimental Nuclear Medicine, School of Basic Medical Sciences, Cheeloo College of Medicine, Shandong University, Jinan, China.
Abstract:
Noninvasive imaging atherosclerotic (AS) plaque is of great importance for early diagnosis. Recently, CD93 in MΦ was linked to atherosclerosis development. Herein, we have investigated whether CD93 in MΦ is a potential novel target for atherosclerotic plaque imaging. CD93hi and CD93lo MΦ were prepared with or without LPS stimulation, before biological activity was evaluated. A rat AS model was produced with left carotid artery clamped. Whole-body/ex vivo phosphor autoradiography of the artery and biodistribution were investigated after incorporation of 3 H-2-DG into CD93hi and CD93lo MΦ or after 125 I-α-CD93 (125 I-anti-CD93mAb) injection. The plaque tissue was subjected to CD93/CD68 immunofluorescence/immunohistochemistry staining. CD93hi and CD93lo MΦ cells were successfully prepared without significant effect on bioactivity after incorporative labelled with 3 H-2-DG. The AS model was successfully established. Biodistribution studies showed that adoptive transfer of 3 H-2-DG-CD93hi MΦ or 125 I- α-CD93 injection resulted in accumulation of radioactivity within the atherosclerotic plaque in the clamped left carotid artery. T/NT (target/non-target, left/right carotid artery) ratio was higher in the 3 H-2-DG-CD93hi MΦ adoptive transfer group than in the 3 H-2-DG-CD93lo MΦ group (p < .05). Plaque radioactivity in the 125 I-α-CD93 injection group was significantly higher than in the 125 I-IgG control group (p < .01). The higher radioactivity accumulated in the clamped left carotid artery was confirmed by phosphor autoradiography. More importantly, CD93/CD68 double-positive MΦ accumulated at the atherosclerotic plaque in 3 H-2-DG-CD93hi MΦ adoptive transfer group, which correlated with plaque radioactivity (r = .99, p < .01). In summary, both adoptive-transferred 3 H-2-DG-labelled CD93hi MΦ and 125 I-α-CD93 injection specifically targeted CD93 in atherosclerotic plaque. CD93 is a potential target in atherosclerotic plaque imaging.
Insights
CD93 (Cluster of Differentiation 93) in macrophages is a promising target for noninvasive imaging of atherosclerotic plaque. Studies show that targeting CD93-high macrophages effectively visualizes plaque in an animal model, aiding early diagnosis.
Area of Science:
- Biomedical imaging
- Immunology
- Cardiovascular research
Background:
- Noninvasive imaging of atherosclerotic (AS) plaque is crucial for early diagnosis.
- CD93 expression in macrophages (MΦ) has been linked to AS development.
Purpose of the Study:
- To investigate CD93 in MΦ as a potential novel target for AS plaque imaging.
- To evaluate the efficacy of targeting CD93-high MΦ for AS plaque visualization.
Main Methods:
- Preparation of CD93-high and CD93-low MΦ with or without LPS stimulation.
- Establishment of a rat AS model.
- Biodistribution and phosphor autoradiography studies using 3H-2-DG-labeled MΦ and 125I-α-CD93 (125I-anti-CD93mAb).
- Immunofluorescence and immunohistochemistry for CD93 and CD68 staining.
Main Results:
- CD93-high MΦ were successfully prepared and labeled without affecting bioactivity.
- Adoptive transfer of 3H-2-DG-CD93-high MΦ and injection of 125I-α-CD93 led to radioactivity accumulation in AS plaques.
- Higher target-to-non-target ratios were observed in the CD93-high MΦ group compared to the CD93-low MΦ group.
- Significant radioactivity accumulation in plaques was confirmed by autoradiography and correlated with CD93/CD68 double-positive MΦ.
Conclusions:
- Both 3H-2-DG-labeled CD93-high MΦ and 125I-α-CD93 specifically target CD93 in atherosclerotic plaques.
- CD93 presents a potential novel target for noninvasive atherosclerotic plaque imaging.
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