A novel microneedle array for the treatment of hydrocephalus.

IF 1.6 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Microsystem Technologies-Micro-And Nanosystems-Information Storage and Processing Systems Pub Date : 2014-06-01 DOI:10.1007/s00542-013-1988-4
Jonghyun Oh, Kewei Liu, Tim Medina, Francis Kralick, Hongseok Moses Noh
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引用次数: 15

Abstract

We present a microfabricated 10 by 10 array of microneedles for the treatment of a neurological disease called communicating hydrocephalus. Together with the previously reported microvalve array, the current implantable microneedle array completes the microfabricated arachnoid granulations (MAGs) that mimic the function of normal arachnoid granulations (AGs). The microneedle array was designed to enable the fixation of the MAGs through dura mater membrane in the brain and thus provide a conduit for the flow of cerebrospinal fluid (CSF). Cone-shaped microneedles with hollow channels were fabricated using a series of microfabrication techniques: SU-8 photolithography for tapered geometry, reactive ion etching for sharpening the microneedles, 248 nm deep UV excimer laser machining for creating through-hole inside the microneedles, and metal sputtering for improved rigidity. Puncture tests were conducted using porcine dura mater and the results showed that the fabricated microneedle array is strong enough to pierce the dura mater. The in-vitro biocompatibility test result showed that none of the 100 outlets of the microneedles exposed to the bloodstream were clogged significantly by blood cells. We believe that these test results demonstrate the potential use of the microneedle array as a new treatment of hydrocephalus.

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一种治疗脑积水的新型微针阵列。
我们提出了一种微型制造的10 × 10微针阵列,用于治疗一种叫做交通性脑积水的神经系统疾病。与先前报道的微阀阵列一起,当前的可植入微针阵列完成了模拟正常蛛网膜颗粒(AGs)功能的微制造蛛网膜颗粒(MAGs)。微针阵列的设计目的是通过脑膜硬脑膜固定mag,从而为脑脊液(CSF)的流动提供管道。采用SU-8光刻技术制备了具有空心通道的锥形微针,反应离子蚀刻技术用于锐化微针,248 nm深紫外准分子激光加工用于在微针内部形成通孔,金属溅射技术用于提高微针的刚性。用猪硬脑膜进行了穿刺实验,结果表明所制备的微针阵列有足够的强度刺穿硬脑膜。体外生物相容性试验结果表明,暴露于血流中的100个微针出口均未被血细胞明显堵塞。我们相信这些测试结果证明了微针阵列作为脑积水新治疗方法的潜在用途。
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来源期刊
CiteScore
5.20
自引率
9.50%
发文量
147
审稿时长
3.3 months
期刊介绍: "Microsystem Technologies - Micro- and Nanosystems. Information Storage and Processing Systems" is intended to provide rapid publication of important and timely results on electromechanical, materials science, design, and manufacturing issues of these systems and their components. The MEMS/NEMS (Micro/NanoElectroMechanical Systems) area includes sensor, actuators and other micro/nanosystems, and micromechatronic systems integration. Information storage systems include magnetic recording, optical recording, and other recording devices, e.g., rigid disk, flexible disk, tape and card drives. Processing systems include copiers, printers, scanners and digital cameras. All contributions are of international archival quality. These are refereed by MST editors and their reviewers by rigorous journal standards. The journal covers a wide range of interdisciplinary technical areas. It brings together and cross-links the knowledge, experience, and capabilities of academic and industrial specialists in many fields. Finally, it contributes to the economically and ecologically sound production of reliable, high-performance MEMS and information storage & processing systems.
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