Frontiers in Oncology (Oct 2022)

Real-time optical imaging of the hypoxic status in hemangioma endothelial cells during propranolol therapy

  • Yue Wu,
  • Xiaojuan Yang,
  • Mingrui Zhai,
  • Yi Chen,
  • Xiaoya Lu,
  • Jiandong Ju,
  • Huanqing Zhang,
  • Guanduo Wang,
  • Zhe Zhang,
  • Baocun Zhu,
  • Xuan Wang,
  • Xuan Wang,
  • Zhanwei Chen,
  • Zhanwei Chen,
  • Shengyun Huang,
  • Shengyun Huang

DOI
https://doi.org/10.3389/fonc.2022.995745
Journal volume & issue
Vol. 12

Abstract

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Infantile hemangioma (IH) is the most common microvascular tumor of infancy involving the area of head and neck. One of the most important independent risk factors of IH is the hypoxia microenvironment. Fluorescent chemosensor provides a noninvasive intervention, high spatiotemporal resolution, ultrasensitive response, and real-time feedback approach to reveal the hypoxic status of cells. Our research group developed an ultrasensitive fluorescent chemosensor, HNT-NTR, and investigated the potential ability of imaging the hypoxic status of hemangioma-derived endothelial cells (HemECs). In this study, we successfully visualized the propranolol (PRN) treatment in HemECs using NHT-NTR with “Turn-off” sensing method. This chemosensor exhibited high sensitivity and selectivity for optical imaging of hypoxic status with fast responsiveness, real-time feedback and durable photostability of the fluorescent signal. It was also confirmed that HNT-NTR could monitor nitroreductase in vivo. Paramountly, we expected this chemosensor to offer an available optical method for imaging of the hypoxic status and visualizing the therapeutic status of PRN therapy in IH with the hypoxia-imaging capability.

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