论文标题

用于有效的神经元光刺激的杂化P3HT-Graphene界面

A hybrid P3HT-Graphene interface for efficient photostimulation of neurons

论文作者

DiFrancesco, Mattia L., Colombo, Elisabetta, Papaleo, Ermanno D., Maya-Vetencourt, José Fernando, Manfredi, Giovanni, Lanzani, Guglielmo, Benfenati, Fabio

论文摘要

石墨烯导电性能已在全球的科学界在有机光伏和光电子学领域长期利用。我们设计并表征了混合生物界面,其中石墨烯与光敏聚合物结合,并测试了其在原发性神经元和盲视网膜外植体中引起轻度触发神经活动调制的能力。我们通过修改基于光活动的基于P3HT的视网膜界面来设计这种基于石墨烯的设备,该视网膜界面以前报道是为了挽救盲啮齿动物中的光灵敏度,而CVD石墨烯层代替了导电PEDOT:PSS层以增强电荷分离。新的基于石墨烯的设备的特征是其电化学特征以及能够光刺激原代神经元和盲视网膜外植体的能力,同时保持生物相容性。通过斑块夹在体外或MEA Ex Vivo记录的光触发反应显示,当神经元与基于石墨烯的设备相对于基于PESS的一个:基于PSS的一个时,则显示出更强的光转导效率。通过插入石墨烯改善灵活的照片刺激设备的可能性,为在视网膜植入物中基于石墨烯的神经元界面的潜在生物医学应用铺平了道路。

Graphene conductive properties have been long exploited in the field of organic photovoltaics and optoelectronics by the scientific community worldwide. We engineered and characterized a hybrid biointerface in which graphene is coupled with photosensitive polymers, and tested its ability to elicit lighttriggered neural activity modulation in primary neurons and blind retina explants. We designed such a graphene-based device by modifying a photoactive P3HT-based retinal interface, previously reported to rescue light sensitivity in blind rodents, with a CVD graphene layer replacing the conductive PEDOT:PSS layer to enhance charge separation. The new graphene-based device was characterized for its electrochemical features and for the ability to photostimulate primary neurons and blind retina explants, while preserving biocompatibility. Light-triggered responses, recorded by patch-clamp in vitro or MEA ex vivo, show a stronger light-transduction efficiency when the neurons are interfaced with the graphene-based device with respect to the PEDOT:PSS-based one. The possibility to ameliorate flexible photo-stimulating devices via the insertion of graphene, paves the way for potential biomedical applications of graphenebased neuronal interfaces in the context of retinal implants.

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