首页> 外国专利> PREPARATION AND APPLICATIONS OF BIOCOMPATIBLE CONDUCTIVE INKS BASED ON CELLULOSE NANOFIBRILS FOR 3D PRINTING OF CONDUCTIVE BIOMEDICAL DEVICES AND FOR USE AS MODELS FOR STUDY OF NEURODEGENERATIVE DISORDERS AND CONNECTION BETWEEN BRAIN/NEURONS AND COMMUNICATION OR OTHER ELECTRONIC DEVICES

PREPARATION AND APPLICATIONS OF BIOCOMPATIBLE CONDUCTIVE INKS BASED ON CELLULOSE NANOFIBRILS FOR 3D PRINTING OF CONDUCTIVE BIOMEDICAL DEVICES AND FOR USE AS MODELS FOR STUDY OF NEURODEGENERATIVE DISORDERS AND CONNECTION BETWEEN BRAIN/NEURONS AND COMMUNICATION OR OTHER ELECTRONIC DEVICES

机译:基于纤维素纳米纤维的生物相容性导电油墨的制备与应用,用于导电生物医学装置的3D印刷,用作脑/神经元和通信或其他电子设备的神经变性障碍和连接的模型

摘要

The present invention relates to preparation and use of nanocellulose fibrils or crystals such as disintegrated bacterial nanocellulose, tunicate-derived nanocellulose, or plant-derived nanocellulose, together with carbon nanotubes, as a biocompatible and conductive ink for 3D printing of electrically conductive patterns. Biocompatible conductive bioinks described in this invention were printed in the form of connected lines onto wet or dried nanocellulose films, bacterial cellulose membrane, or tunicate decellularized tissue. The devices were biocompatible and showed excellent mechanical properties and good electrical conductivity through printed lines (3.8·10−1 S cm−1). Such scaffolds were used to culture neural cells. Neural cells attached selectively on the printed pattern and formed connective networks. The devices prepared by this invention are suited as bioassays to screen drugs against neurodegenerative diseases such as Alzheimer's and Parkinson's, study brain function, and/or be used to link the human brain with electronic and/or communication devices. They can also be implanted to replace neural tissue or stimulate guiding of neural cells. They can also be used to stimulate the heart by using electrical signaling or to repair myocardial infarction and/or damage related thereto.
机译:本发明涉及制备和使用纳米纤维原纤藻或晶体,例如崩解的细菌纳米纤维素,剧烈衍生的纳米纤维素或植物衍生的纳米纤维素,以及碳纳米管,作为用于3D导电图案的3D印刷的生物相容和导电油墨。本发明中描述的生物相容性导电生物显着以连接线的形式印刷到湿或干燥的纳米纤维膜,细菌纤维素膜或腔窄脱细胞组织上。通过印刷线(3.8·10 -1 / sup> scm -1 scm -1 scm -1 / sc),将该装置具有优异的机械性能和良好的导电性。这种支架用于培养神经细胞。在印刷图案和形成的连接网络上选择性地附加神经电池。本发明制备的装置适用于生物测定筛选针对神经变性疾病的药物,例如阿尔茨海默和帕金森,研究脑功能和/或用于将人脑与电子和/或通信设备连接。也可以植入它们以取代神经组织或刺激神经细胞的引导。它们也可用于通过使用电信带或修复心肌梗死和/或其相关的损伤来刺激心脏。

著录项

  • 公开/公告号US2021108098A1

    专利类型

  • 公开/公告日2021-04-15

    原文格式PDF

  • 申请/专利权人 PAUL GATENHOLM;ERDEM KARABULUT;

    申请/专利号US201816608714

  • 发明设计人 PAUL GATENHOLM;ERDEM KARABULUT;

    申请日2018-04-25

  • 分类号C09D11/14;A61L27/08;A61L27/20;A61L27/36;A61L27/38;A61L27/44;A61L27/50;C09D11/037;

  • 国家 US

  • 入库时间 2022-08-24 18:14:27

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