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Small-Animal PET/CT Imaging of Local and Systemic Immune Response Using 64Cu-αCD11b
Qizhen Cao1, Qian Huang1, Chandra Mohan2
1Department of Cancer Systems Imaging, The University of Texas M.D. Anderson Cancer Center, Houston, Texas; and.
Insights
This study introduces a novel radiotracer, 64Cu-labeled anti-CD11b (64Cu-αCD11b), for noninvasive imaging of immune responses. The tracer effectively monitors both local and systemic inflammation by tracking CD11b+ myeloid cells using small-animal PET/CT.
Area of Science:
- Immunology
- Medical Imaging
- Radiochemistry
Background:
- Current noninvasive immune response monitoring methods primarily focus on local reactions.
- There is a need for methods that can assess both local and systemic immune responses longitudinally.
- CD11b+ myeloid cells play a crucial role in immune responses and inflammation.
Purpose of the Study:
- To develop and evaluate a novel radiotracer, 64Cu-labeled anti-CD11b (64Cu-αCD11b), for longitudinal assessment of immune responses.
- To utilize small-animal PET/CT for imaging local and systemic immune responses involving CD11b+ myeloid cells.
- To differentiate between acute and chronic inflammation stages using the developed radiotracer.
Main Methods:
- Conjugation of anti-CD11b (αCD11b) with p-SCN-Bn-DOTA and subsequent labeling with 64Cu to create 64Cu-αCD11b.
- Induction of acute and chronic inflammation in mouse models (ear inflammation via 12-o-tetradecanoylphorbol-13-acetate, lung inflammation via intratracheal lipopolysaccharide).
- Evaluation of 64Cu-αCD11b uptake using small-animal PET/CT and biodistribution studies, complemented by flow cytometry and immunohistochemistry.
Main Results:
- 64Cu-αCD11b selectively targeted CD11b+ myeloid cells in vivo, as confirmed by reduced uptake in CD11b-knockout mice.
- PET/CT imaging revealed significantly higher 64Cu-αCD11b uptake in acutely inflamed ears compared to chronically inflamed ears, correlating with CD11b+ cell infiltration.
- The study successfully differentiated systemic immune responses, observing changes in bone marrow 64Cu-αCD11b uptake that reflected myeloid cell mobilization and regeneration during different inflammation phases.
Conclusions:
- 64Cu-αCD11b PET/CT is a robust and quantitative method for imaging local and systemic immune responses.
- This novel radiotracer successfully tracked inflammation in mouse models and differentiated between acute and chronic inflammatory stages.
- The developed method allows for longitudinal assessment of immune cell dynamics at both local and systemic levels.
Abstract:
Current noninvasive imaging methods for monitoring immune response were largely developed for interrogation of the local reaction. This study developed the radiotracer 64Cu-labeled anti-CD11b (64Cu-αCD11b) for longitudinal assessment of local and systemic immune response involving mobilization of CD11b+ myeloid cells by small-animal PET/CT. Methods: Acute or chronic inflammation in the ears of BALB/c mice was induced by 12-o-tetradecanoylphorbol-13-acetate. Acute lung inflammation was induced by intratracheal lipopolysaccharide inoculation. αCD11b was conjugated with p-SCN-Bn-DOTA followed by labeling with 64Cu. PET/CT and biodistribution were evaluated at different times after intravenous injection of 64Cu-αCD11b. Cell populations from bone marrow (BM) and spleen were analyzed by flow cytometry. Results:64Cu-αCD11b was primarily taken up by BM and spleen in control mice. In comparison, 64Cu-αCD11b uptake was significantly reduced in the BM and spleen of CD11b-knockout mice, indicating that 64Cu-αCD11b selectively homed to CD11b+ myeloid cells in vivo. In mice with ear inflammation, for the local inflammatory response, 64Cu-αCD11b PET/CT revealed significantly higher 64Cu-αCD11b uptake in the inflamed ears in the acute inflammation phase than the chronic phase, consistent with markedly increased infiltration of CD11b+ cells into the inflammatory lesions at the acute phase. Moreover, imaging of 64Cu-αCD11b also showed the difference in mouse systemic response for different inflammatory stages. Compared with uptake in control mice, BM 64Cu-αCD11b uptake in mice with ear inflammation was significantly lower in the acute phase and higher in the chronic phase, reflecting an initial mobilization of CD11b+ cells from the BM to the inflammatory foci followed by a compensatory regeneration of CD11b+ myeloid cells in the BM. Similarly, in mice with lung inflammation, 64Cu-αCD11b PET/CT readily detected acute lung inflammation and recruitment of CD11b+ myeloid cells from the BM. Immunohistochemistry staining and flow cytometry results confirmed the noninvasive imaging of PET/CT. Conclusion:64Cu-αCD11b PET/CT successfully tracked ear and pulmonary inflammation in mice and differentiated acute from chronic inflammation at the local and systemic levels. 64Cu-αCD11b PET/CT is a robust quantitative method for imaging of local and systemic immune responses.
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