PET/MRI and Bioluminescent Imaging Identify Hypoxia as a Cause of Programmed Cell Death Ligand 1 Image Heterogeneity

PET/MRI 和生物发光成像确定缺氧是程序性细胞死亡配体 1 图像异质性的原因

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作者:Katie M Parkins #, Balaji Krishnamachary #, Desmond Jacob, Samata M Kakkad, Meiyappan Solaiyappan, Akhilesh Mishra, Yelena Mironchik, Marie-France Penet, Michael T McMahon, Philipp Knopf, Bernd J Pichler, Sridhar Nimmagadda, Zaver M Bhujwalla

Abstract

Purpose To examine the association between hypoxia and programmed cell death ligand 1 (PD-L1) expression using bioluminescence imaging (BLI) and PET/MRI in a syngeneic mouse model of triple-negative breast cancer (TNBC). Materials and Methods PET/MRI and optical imaging were used to determine the role of hypoxia in altering PD-L1 expression using a syngeneic TNBC model engineered to express luciferase under hypoxia. Results Imaging showed a close spatial association between areas of hypoxia and increased PD-L1 expression in the syngeneic murine (4T1) tumor model. Mouse and human TNBC cells exposed to hypoxia exhibited a significant increase in PD-L1 expression, consistent with the in vivo imaging data. The role of hypoxia in increasing PD-L1 expression was further confirmed by using The Cancer Genome Atlas analyses of different human TNBCs. Conclusion These results have identified the potential role of hypoxia in contributing to PD-L1 heterogeneity in tumors by increasing cancer cell PD-L1 expression.

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