光遗传学
坐骨神经
材料科学
体感系统
后肢
自愈水凝胶
光纤
生物医学工程
外围设备
生物物理学
神经科学
解剖
医学
计算机科学
生物
电信
高分子化学
内科学
作者
Xinyue Liu,Siyuan Rao,Weixuan Chen,Kayla Felix,Jiahua Ni,Atharva Sahasrabudhe,Shaoting Lin,Qianbin Wang,Yuanyuan Liu,Zhigang He,Jingyi Xu,Sizhe Huang,Eunji Hong,T. M. Yau,Polina Anikeeva,Xuanhe Zhao
出处
期刊:Nature Methods
[Nature Portfolio]
日期:2023-10-19
卷期号:20 (11): 1802-1809
被引量:32
标识
DOI:10.1038/s41592-023-02020-9
摘要
We develop soft and stretchable fatigue-resistant hydrogel optical fibers that enable optogenetic modulation of peripheral nerves in naturally behaving animals during persistent locomotion. The formation of polymeric nanocrystalline domains within the hydrogels yields fibers with low optical losses of 1.07 dB cm−1, Young's modulus of 1.6 MPa, stretchability of 200% and fatigue strength of 1.4 MPa against 30,000 stretch cycles. The hydrogel fibers permitted light delivery to the sciatic nerve, optogenetically activating hindlimb muscles in Thy1::ChR2 mice during 6-week voluntary wheel running assays while experiencing repeated deformation. The fibers additionally enabled optical inhibition of pain hypersensitivity in an inflammatory model in TRPV1::NpHR mice over an 8-week period. Our hydrogel fibers offer a motion-adaptable and robust solution to peripheral nerve optogenetics, facilitating the investigation of somatosensation. Flexible and fatigue-resistant optical fibers made from hydrogel allow optogenetic manipulations in the periphery in freely behaving mice.
科研通智能强力驱动
Strongly Powered by AbleSci AI