Rahman Md Saifur, Shon Ahnsei, Joseph Rose, Pavlov Anton, Stefanov Alex, Namkoong Myeong, Guo Heng, Bui Dangnghi, Master Reid, Sharma Archita, Lee Jennifer, Rivas Melissa, Elati Ananya, Jones-Hall Yava, Zhao Feng, Park Hangue, Hook Michelle A, Tian Limei
Department of Biomedical Engineering, Center for Remote Health Technologies and Systems, Texas A&M University, College Station, TX 77843, USA.
Department of Multidisciplinary Engineering, Texas A&M University, College Station, TX 77843, USA.
Sci Adv. 2025 Mar 21;11(12):eads4415. doi: 10.1126/sciadv.ads4415.
Conductive hydrogels are emerging as promising materials for electronic implants owing to their favorable mechanical and electrical properties. Poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS) hydrogels are particularly attractive, but their preparation often requires toxic additives. Here, we introduced a nutritive sweetener, d-sorbitol, as a nontoxic additive to create soft and stretchable PEDOT:PSS conductive hydrogels. These hydrogels exhibit mechanical properties comparable with biological tissues, reducing adverse immune responses. The hydrogels can be patterned on elastic substrates using a simple, low-cost micromolding technique to fabricate soft and stretchable implantable devices for electrical stimulation and recording. The hydrogel electrodes show much lower electrochemical impedance and higher charge storage and injection capacity compared to platinum electrodes. In addition, the properties of hydrogels and devices remain stable after long-term storage and exposure to extreme conditions. We demonstrate the use of soft hydrogel-based electronic devices for effective electrical stimulation and high-quality electrical recordings in live animal models.
由于具有良好的机械和电学性能,导电水凝胶正成为电子植入物领域很有前景的材料。聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)水凝胶尤其具有吸引力,但其制备通常需要使用有毒添加剂。在此,我们引入了一种营养甜味剂——d-山梨醇,作为无毒添加剂来制备柔软且可拉伸的PEDOT:PSS导电水凝胶。这些水凝胶展现出与生物组织相当的机械性能,减少了不良免疫反应。利用一种简单、低成本的微成型技术,可在弹性基板上对水凝胶进行图案化,以制造用于电刺激和记录的柔软且可拉伸的可植入设备。与铂电极相比,水凝胶电极的电化学阻抗低得多,且电荷存储和注入能力更高。此外,在长期储存和暴露于极端条件后,水凝胶及其制成的设备性能仍保持稳定。我们展示了基于柔软水凝胶的电子设备在活体动物模型中进行有效电刺激和高质量电记录的应用。