研究目的
To summarize recent advances in the design strategies and synthetic methods of NIR-activatable nanomaterials for wireless optogenetic applications, addressing the limitations of visible light-based optogenetics.
研究成果
NIR-activatable optogenetic nanoparticles offer low invasiveness, minimal photodamage, and high spatiotemporal resolution, with potential for innovative therapies. Future work should focus on improving biocompatibility, quantum yields, targeting strategies, and understanding mechanisms for better clinical translation.
研究不足
The review discusses limitations such as biosafety concerns of inorganic nanoparticles, low quantum yields of UCNPs, lack of cell-specific targeting, challenges in overcoming the blood-brain barrier, longer response times for photothermal activation, and potential overheating issues.