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一种具有可变化弹性模量的纤维状神经探针,可直接植入并实现稳定的电子脑接口。

A fiber-shaped neural probe with alterable elastic moduli for direct implantation and stable electronic-brain interfaces.

机构信息

State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science and Laboratory of Advanced Materials, Fudan University, Shanghai 200438, China.

School of Life Sciences, State Key Laboratory of Medical Neurobiology, Collaborative Innovation Center for Brain Science, Fudan University, Shanghai 200433, China.

出版信息

J Mater Chem B. 2020 May 27;8(20):4387-4394. doi: 10.1039/d0tb00508h.

Abstract

Researchers developing implantable neural probes face a dilemma. Rigid neural probes facilitate direct implantation, but the brain tissue suffers from a vulnerable interface and a strong neuroinflammatory response due to mechanical mismatch between the probe and the brain tissue. Flexible neural probes offer stable interfaces and eliminate neuroinflammatory responses but require auxiliary implantation. Here, we have created a new kind of micro fiber-shaped neural probe with alterable elastic moduli before and after implantation. Carbon nanotube fibers and calcium crosslinked sodium alginate functioned as the core electrode and sheath layer, respectively. The response of calcium crosslinked sodium alginate to water will alter the probe elastic moduli from ∼10 GPa to ∼10 kPa post implantation, which is close to the elastic modulus of brain tissue. The micro fiber probes were directly implanted into mouse brains without any additional materials. After implantation, they became soft and offered dynamically adaptable interfaces with a reduced inflammatory response, benefiting long-term monitoring of neuron signals. Continuous four week monitoring of neuron signals was achieved. The simplicity of the strategy makes it suitable for versatile neuron techniques in neuron recording and modulation.

摘要

研究人员在开发植入式神经探针时面临着一个困境。刚性神经探针便于直接植入,但由于探针与脑组织之间的机械失配,脑组织会受到脆弱的界面和强烈的神经炎症反应的影响。柔性神经探针提供了稳定的界面并消除了神经炎症反应,但需要辅助植入。在这里,我们创造了一种新型的微纤维状神经探针,其在植入前后具有可改变的弹性模量。碳纳米管纤维和钙交联的海藻酸钠分别作为核心电极和鞘层。钙交联的海藻酸钠对水的响应会使探针的弹性模量在植入后从约 10GPa 改变到约 10kPa,这与脑组织的弹性模量相近。微纤维探针无需任何额外材料即可直接植入小鼠大脑。植入后,它们变得柔软,并提供了具有减小炎症反应的动态适应性界面,有利于长期监测神经元信号。实现了连续四周的神经元信号监测。该策略的简单性使其适用于各种神经元技术,包括神经元记录和调节。

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