BACKGROUND: The macrophage mannose receptor (CD206) is expressed predominantly on the surface of M2-type macrophages, which play a role in resolution of inflammation after myocardial injury. The purpose of this study was to evaluate the utility of CD206-targeted PET tracer Al[(18)F]F-NOTA-D10CM, a fluorinated mannosylated dextran derivative, for imaging immune responses after experimental acute myocardial infarction (MI). RESULTS: Flow cytometry revealed selective binding of Alexa-488-NOTA-D10CM to human M2-polarized macrophages derived from blood monocytes compared to M1 macrophages. The binding affinity of Al[(18)F]F-NOTA-DCM for CD206-positive Chinese hamster ovary cells was 1.83â±â0.68 nM. In vivo PET and ex vivo autoradiography experiments in Sprague-Dawley rats studied at 3 and 7 days after permanent ligation of the left coronary artery or a sham-operation, showed significantly higher uptake of Al[(18)F]F-NOTA-DCM in the MI area than in remote areas, or the myocardium of sham-operated rats. However, there was no difference in uptake in the MI area between day 3 and day 7. Uptake of Al[(18)F]F-NOTA-DCM in the MI area correlated positively with the area-% of CD206-positive staining of the left ventricular myocardium (râ=â0.481, Pâ=â0.006). In vitro competition studies on tissue cryosections using a molar excess of unlabeled D10CM revealed a reduction of approximately 85%, confirming specific tracer binding. CONCLUSION: Al[(18)F]F-NOTA-D10CM PET detects overexpression of CD206 after ischemic myocardial injury, and may be a suitable biomarker for detecting M2-type macrophages associated with the inflammatory process post-MI.
Macrophage mannose receptor CD206-targeted PET imaging in experimental acute myocardial infarction
巨噬细胞甘露糖受体CD206靶向PET成像在实验性急性心肌梗死中的应用
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作者:Putri Andriana ,Senthil Palani ,Heidi Liljenbäck ,Imran Iqbal ,Vesa Oikonen ,Jenni Virta ,Konstantina Makrypidi ,Johan Rajander ,Erika Atencio Herre ,Aino Suni ,Sirpa Jalkanen ,Juhani Knuuti ,Luisa Martinez-Pomares ,Ioannis Pirmettis ,Xiang-Guo Li ,Antti Saraste ,Anne Roivainen
| 期刊: | Ejnmmi Research | 影响因子: | 3.100 |
| 时间: | 2025 | 起止号: | 2025 Jun 4;15(1):66. |
| doi: | 10.1186/s13550-025-01254-2 | 研究方向: | 细胞生物学 |
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