PEDOT:PSS-coated platinum electrodes for neural stimulation

被引:6
作者
Dijk, Gerwin [1 ,2 ]
Pas, Jolien [2 ]
Markovic, Katarina [3 ]
Scancar, Janez [3 ,4 ]
O'Connor, Rodney Philip [5 ]
机构
[1] Mines St Etienne, Ctr CMP, Dept Bioelect, F-13541 Gardanne, France
[2] Panaxium SAS, F-13100 Aix En Provence, France
[3] Jozef Stefan Inst, Dept Environm Sci, Jamova 39, Ljubljana 1000, Slovenia
[4] Jozef Stefan Int Postgrad Sch, Jamova 39, Ljubljana 1000, Slovenia
[5] Polytech Montreal, Dept Chem Engn, 2900 Boul Edouard Montpetit, Montreal, PQ H3T 1J4, Canada
关键词
ELECTRICAL-STIMULATION; MODEL; DISSOLUTION; TISSUE; CHARGE;
D O I
10.1063/5.0153094
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Safe and long-term electrical stimulation of neurons requires charge injection without damaging the electrode and tissue. A common strategy to diminish adverse effects includes the modification of electrodes with materials that increases the high charge injection capacity. Due to its high capacitance, the conducting polymer PEDOT:PSS is a promising coating material; however, the neural stimulation performance in terms of stability and safety remains largely unexplored. Here, PEDOT:PSS-coated platinum (Pt-PEDOT:PSS) microelectrodes are examined for neural stimulation and compared to bare platinum (Pt) electrodes. Microelectrodes in a bipolar configuration are used to deliver current-controlled, biphasic pulses with charge densities ranging from 64 to 255 mu C cm(-2). Stimulation for 2 h deteriorates bare Pt electrodes through corrosion, whereas the PEDOT:PSS coating prevents dissolution of Pt and shows no degradation. Acute stimulation of primary cortical cells cultured as neurospheres shows similar dependency on charge density for Pt and Pt-PEDOT:PSS electrodes with a threshold of 127 mu C cm(-2) and increased calcium response for higher charge densities. Continuous stimulation for 2 h results in higher levels of cell survival for Pt-PEDOT:PSS electrodes. Reduced cell survival on Pt electrodes is most profound for neurospheres in proximity of the electrodes. Extending the stimulation duration to 6 h increases cell death for both types of electrodes; however, neurospheres on Pt-PEDOT:PSS devices still show significant viability whereas stimulation is fatal for nearly all cells close to the Pt electrodes. This work demonstrates the protective properties of PEDOT:PSS that can be used as a promising approach to extend electrode lifetime and reduce cell damage for safe and long-term neural stimulation.
引用
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页数:11
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