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一种可光交联的含氟聚合物钝化柔性神经探针的制备及其体内急性记录和刺激性能

Fabrication of a photo-crosslinkable fluoropolymer-passivated flexible neural probe and acute recording and stimulation performances in vivo.

作者信息

Kim Yong Hee, Koo Ho, Kim Min Sun, Jung Sang-Don

机构信息

Cybre Brain Research Section, Electronics and Telecommunications Research Institute, 218 Gajeong-ro, Yuseong-gu, Daejeon 305-700, Republic of Korea.

Department of Neuroscience, Cell Biology, and Anatomy, University of Texas Medical Branch, Galveston, TX, United States.

出版信息

Biomater Adv. 2023 Nov;154:213629. doi: 10.1016/j.bioadv.2023.213629. Epub 2023 Sep 21.

Abstract

Herein, we fabricated fluorine-containing, polymer-based, flexible neural probes with fluorinated ethylene propylene (FEP) films as the substrates and photo-crosslinkable fluoropolymers as the passivation material. For fabrication, metal-free Au layer formation on the FEP film, the simultaneous photo-adhesion and photo-patterning technique, and the pulsed-laser scanning probe shaping technique were combined, followed by Au electrode surface modification. The resultant probes achieved a charge injection limit equal to 5.18 mC cm by implementing iridium oxide-modified nanoporous Au (IrOx/NPG) structures. We performed simultaneous in vivo micro-stimulations of the Schaffer collateral fibres and recorded the evoked field excitatory postsynaptic potentials (fEPSPs) in the stratum radiatum layer of the hippocampal Cornu Ammonis 1 region using a single probe. Inducing the fEPSP at very low charge per pulse settings (3.2-3.6 nC/pulse) indicates the efficient charge injection capability of the IrOx/NPG electrode, thereby enabling safe, prolonged, and thrifty micro-stimulations. Furthermore, the single probe-induced and recorded long-term potentiation persisted for periods longer than 60 min following theta-burst stimulation. The materials used in this study are all biocompatible and chemically robust. The fabricated neural probes can be applied in chronic clinical trials in vivo.

摘要

在此,我们制备了以氟化乙烯丙烯(FEP)薄膜为基底、光交联含氟聚合物为钝化材料的含氟聚合物基柔性神经探针。在制备过程中,将FEP薄膜上无金属金层的形成、同时进行的光粘附和光图案化技术以及脉冲激光扫描探针成型技术相结合,随后对金电极表面进行改性。通过采用氧化铱修饰的纳米多孔金(IrOx/NPG)结构,所得探针实现了5.18 mC/cm的电荷注入极限。我们使用单个探针同时对海马体1区辐射层的Schaffer侧支纤维进行体内微刺激,并记录诱发的场兴奋性突触后电位(fEPSP)。在非常低的每脉冲电荷量设置(3.2 - 3.6 nC/脉冲)下诱发fEPSP,表明IrOx/NPG电极具有高效的电荷注入能力,从而能够实现安全、持久且节俭的微刺激。此外,在theta波爆发刺激后,单个探针诱发并记录的长期增强效应持续超过60分钟。本研究中使用的材料均具有生物相容性且化学稳定性良好。所制备的神经探针可应用于体内慢性临床试验。

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