Molecular imaging of diabetes and diabetic complications: Beyond pancreatic β-cell targeting

Jichun Yang1, Long Jiang Zhang2, Fan Wang3

  • 1Department of Physiology and Pathophysiology, School of Basic Medical Sciences Peking University Health Science Center, Key Laboratory of Cardiovascular Science of the Ministry of Education, Center for Non-coding RNA Medicine, Beijing 100191, China.

Insights

Advanced imaging techniques offer new ways to detect and manage diabetes by visualizing pancreatic beta-cells and related biomarkers. This approach aids in early diagnosis, monitoring disease progression, and assessing treatment effectiveness for better patient outcomes.

Area of Science:

  • Medical Imaging
  • Endocrinology
  • Metabolic Diseases

Background:

  • Diabetes mellitus affects over 400 million globally, leading to severe complications.
  • Pancreatic beta-cell dysfunction is central to diabetes pathogenesis.
  • Current management focuses on preserving beta-cell function.

Purpose of the Study:

  • To review recent advances in noninvasive imaging technologies for diabetes.
  • To explore molecular imaging beyond beta-cells for diagnosis and monitoring.
  • To highlight imaging's role in understanding glucose metabolism and complications.

Main Methods:

  • Review of noninvasive imaging techniques: MRI, MRS, PET, SPECT.
  • Focus on molecular imaging of beta-cells and diabetes-associated biomarkers.
  • Analysis of imaging applications in glucose metabolism and complication assessment.

Main Results:

  • Noninvasive imaging enables in vivo detection and functional characterization of beta-cells.
  • Molecular imaging of biomarkers (e.g., insulitis) shows promise for early diagnosis.
  • Imaging facilitates monitoring of diabetes progression and therapeutic efficacy.

Conclusions:

  • Noninvasive imaging is crucial for diabetes diagnosis, monitoring, and management.
  • Imaging beyond beta-cells offers new strategies for early detection and intervention.
  • Molecular imaging aids in understanding pathogenesis and developing novel therapies.

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