Medtronic Chair in Neuroengineering, Center for Neuroprosthetics and Institute of Bioengineering, School of Engineering, École Polytechnique Fédérale de Lausanne, Switzerland.
Medtronic Chair in Neuroengineering, Center for Neuroprosthetics and Institute of Bioengineering, School of Engineering, École Polytechnique Fédérale de Lausanne, Switzerland.
Biomaterials. 2023 Feb;293:121979. doi: 10.1016/j.biomaterials.2022.121979. Epub 2022 Dec 27.
Off-stoichiometry thiol-ene-epoxy (OSTE+) thermosets show low permeability to gases and little absorption of dissolved molecules, allow direct low-temperature dry bonding without surface treatments, have a low Young's modulus, and can be manufactured via UV polymerisation. For these reasons, OSTE+ thermosets have recently gained attention for the rapid prototyping of microfluidic chips. Moreover, their compatibility with standard clean-room processes and outstanding mechanical properties make OSTE+ an excellent candidate as a novel material for neural implants. Here we exploit OSTE+ to manufacture a conformable multilayer micro-electrocorticography array with 16 platinum electrodes coated with platinum black. The mechanical properties allow conformability to curved surfaces such as the brain. The low permeability and strong adhesion between layers improve the stability of the device. Acute experiments in mice show the multimodal capacity of the array to record and stimulate the neural tissue by smoothly conforming to the mouse cortex. Devices are not cytotoxic, and immunohistochemistry stainings reveal only modest foreign body reaction after two and six weeks of chronic implantation. This work introduces OSTE+ as a promising material for implantable neural interfaces.
非化学计量硫醇-烯-环氧(OSTE+)热固性树脂对气体的渗透性低,对溶解分子的吸收性小,允许在无需表面处理的情况下直接进行低温干式键合,杨氏模量低,并且可以通过紫外光聚合进行制造。由于这些原因,OSTE+热固性树脂最近因其在微流控芯片的快速原型制造方面的应用而受到关注。此外,其与标准洁净室工艺的兼容性和出色的机械性能使得 OSTE+成为神经植入物的新型材料的绝佳选择。在这里,我们利用 OSTE+制造了一种具有 16 个涂覆有铂黑的铂电极的顺应性多层微脑电描记术阵列。其机械性能允许其顺应诸如大脑等曲面。低渗透性和层间的强附着力提高了器件的稳定性。在小鼠的急性实验中,该阵列通过平滑顺应小鼠皮层,展示了其记录和刺激神经组织的多模态能力。器件无细胞毒性,免疫组织化学染色显示,在慢性植入 2 周和 6 周后,仅有适度的异物反应。这项工作介绍了 OSTE+作为一种有前途的可植入神经接口材料。