Related Experiment Video
Updated: Sep 10, 2025

Near Infrared Optical Projection Tomography for Assessments of β-cell Mass Distribution in Diabetes Research
Published on: January 12, 2013
Light-Mediated Insulin and Amylin Secretion: Influence of Irradiation Parameters in Optogenetically Modified
Nidhi Maharwal1,2, Rashmi Shrivastava1,2, Khageswar Sahu1,2
1Laser Biomedical Applications Division, Raja Ramanna Centre for Advanced Technology, Indore, India.
None:
Optogenetics offers a promising avenue for controlled insulin secretion in diabetes management using genetically modified cells. However, the influence of irradiation parameters on the co-secreted hormone amylin remains largely unexplored. This study examined how blue light power densities (50, 100, and 200 mW/cm2) under continuous and intermittent exposure affect hormonal secretion in channelrhodopsin-2 expressing mouse β cells. Results showed that 10 s of continuous exposure at 50 mW/cm2 increased insulin and amylin secretion by ~25% and 40%, respectively. Introducing intermittent dark intervals further enhanced secretion by ~35% for insulin and 70% for amylin at 50 and 100 mW/cm2 respectively, correlating with intracellular calcium changes. Notably, light modulated the amylin-to-insulin molar ratio, peaking with a 34% increase during 5 s 'on'-10s 'off' exposure at 100 mW/cm2. This study provides the first evidence that light irradiation parameters can differentially influence hormonal secretion from engineered cells, offering a potential for tailored cell-based diabetes therapies.

