通过上转纳米粒子介导的深层脑刺激
Shuo Chen1, Adam Z Weitemier2, Xiao Zeng3
1Laboratory for Circuit and Behavioral Physiology, RIKEN Brain Science Institute, Wakoshi, Saitama 351-0198, Japan. shuoshu@gmail.com chmlx@nus.edu.sg tjmchugh@brain.riken.jp.
概括
上转化纳米粒子可以使用近红外光进行深度脑光遗传学. 这一突破使神经回路的非侵入性光学控制成为潜在的神经疾病治疗的途径.
科学领域:
- 神经科学
- 生物技术
- 材料科学
背景情况:
- 视觉遗传学提供了强大的神经电路研究,
- 深度大脑刺激需要侵入性方法, 阻碍神经疾病的治疗应用.
研究的目的:
- 开发一种使用上转化纳米粒子 (UCNP) 进行近红外 (NIR) 光深度大脑刺激的新型光遗传方法.
- 证明UCNP介导的光遗传学在特定大脑区域操纵神经活动的有效性.
主要方法:
- 分子定制的UCNP被合成以吸收NIR光和发射可见光.
- 通过体NIR光激活UCNP, 刺激被遗传标记的深层神经元.
- 针对特定的神经回路,包括腹膜区域,中间隔膜和海马.
主要成果:
- 通过UCNP介导的光遗传学成功地在腹膜区域引起多巴胺释放.
- 通过激活中间隔膜中的抑制神经元诱导了脑振荡.
- 通过抑制海马刺激细胞来抑制发作.
- 通过特定的神经激活触发了记忆回忆.
结论:
- 上转化纳米粒子提供了一个可行的方法,用于对大脑深层回路进行跨的光遗传学操纵.
- 这种UCNP技术可轻松进行光学神经元控制,为潜在的神经疾病远程治疗铺平了道路.
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