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新兴材料、可穿戴设备和诊断技术在脑部疾病治疗中的进展

Emerging Materials, Wearables, and Diagnostic Advancements in Therapeutic Treatment of Brain Diseases.

机构信息

Department of Mechanical Engineering, Center for Nanofibers & Nanotechnology, National University of Singapore, Singapore 117574, Singapore.

Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), #08-03, 2 Fusionopolis Way, Innovis, Singapore 138634, Singapore.

出版信息

Biosensors (Basel). 2022 Dec 16;12(12):1176. doi: 10.3390/bios12121176.


DOI:10.3390/bios12121176
PMID:36551143
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9775999/
Abstract

Among the most critical health issues, brain illnesses, such as neurodegenerative conditions and tumors, lower quality of life and have a significant economic impact. Implantable technology and nano-drug carriers have enormous promise for cerebral brain activity sensing and regulated therapeutic application in the treatment and detection of brain illnesses. Flexible materials are chosen for implantable devices because they help reduce biomechanical mismatch between the implanted device and brain tissue. Additionally, implanted biodegradable devices might lessen any autoimmune negative effects. The onerous subsequent operation for removing the implanted device is further lessened with biodegradability. This review expands on current developments in diagnostic technologies such as magnetic resonance imaging, computed tomography, mass spectroscopy, infrared spectroscopy, angiography, and electroencephalogram while providing an overview of prevalent brain diseases. As far as we are aware, there hasn't been a single review article that addresses all the prevalent brain illnesses. The reviewer also looks into the prospects for the future and offers suggestions for the direction of future developments in the treatment of brain diseases.

摘要

在最关键的健康问题中,脑部疾病,如神经退行性疾病和肿瘤,降低了生活质量,并产生了重大的经济影响。植入技术和纳米药物载体在脑活动感应和调节治疗应用方面具有巨大的潜力,可以用于治疗和检测脑部疾病。可植入设备选择使用柔性材料,因为它们有助于减少植入设备和脑组织之间的生物力学不匹配。此外,植入的可生物降解设备可能会减轻任何自身免疫的负面作用。可生物降解性进一步降低了因移除植入设备而带来的繁重的后续操作。本综述扩展了当前在诊断技术方面的进展,如磁共振成像、计算机断层扫描、质谱、红外光谱、血管造影和脑电图,同时概述了常见的脑部疾病。据我们所知,还没有一篇综述文章能够涵盖所有常见的脑部疾病。审稿人还研究了未来的前景,并为脑部疾病治疗的未来发展方向提出了建议。

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[1]
Emerging Materials, Wearables, and Diagnostic Advancements in Therapeutic Treatment of Brain Diseases.

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本文引用的文献

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Stockholm score of lesion detection on computed tomography following mild traumatic brain injury (SELECT-TBI): study protocol for a multicentre, retrospective, observational cohort study.

BMJ Open. 2022-9-1

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J Mater Sci. 2022

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Cereb Cortex. 2023-4-4

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Nanoscale Adv. 2020-5-9

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Brain Behav. 2022-9

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Glioblastoma hijacks neuronal mechanisms for brain invasion.

Cell. 2022-8-4

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Structural network alterations in focal and generalized epilepsy assessed in a worldwide ENIGMA study follow axes of epilepsy risk gene expression.

Nat Commun. 2022-7-27

[10]
Is Alzheimer's disease an infectious neurological disease? A review of the literature.

Brain Behav. 2022-8

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