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神经植入物生物相容性研究中常被忽视的因素。

Commonly Overlooked Factors in Biocompatibility Studies of Neural Implants.

机构信息

Neuronano Research Center, Department of Experimental Medical Science, Medical Faculty, Lund University, Medicon Village, Byggnad 404 A2, Scheelevägen 8, Lund, 223 81, Sweden.

出版信息

Adv Sci (Weinh). 2023 Feb;10(6):e2205095. doi: 10.1002/advs.202205095. Epub 2023 Jan 3.

Abstract

Biocompatibility of cutting-edge neural implants, surgical tools and techniques, and therapeutic technologies is a challenging concept that can be easily misjudged. For example, neural interfaces are routinely gauged on how effectively they determine active neurons near their recording sites. Tissue integration and toxicity of neural interfaces are frequently assessed histologically in animal models to determine tissue morphological and cellular changes in response to surgical implantation and chronic presence. A disconnect between histological and efficacious biocompatibility exists, however, as neuronal numbers frequently observed near electrodes do not match recorded neuronal spiking activity. The downstream effects of the myriad surgical and experimental factors involved in such studies are rarely examined when deciding whether a technology or surgical process is biocompatible. Such surgical factors as anesthesia, temperature excursions, bleed incidence, mechanical forces generated, and metabolic conditions are known to have strong systemic and thus local cellular and extracellular consequences. Many tissue markers are extremely sensitive to the physiological state of cells and tissues, thus significantly impacting histological accuracy. This review aims to shed light on commonly overlooked factors that can have a strong impact on the assessment of neural biocompatibility and to address the mismatch between results stemming from functional and histological methods.

摘要

前沿神经植入物、手术工具和技术以及治疗技术的生物相容性是一个具有挑战性的概念,很容易被误解。例如,神经接口通常根据其在记录部位附近确定活性神经元的有效性来进行评估。组织整合和神经接口的毒性通常在动物模型中进行组织学评估,以确定组织形态和细胞变化对手术植入和慢性存在的反应。然而,组织学和有效的生物相容性之间存在脱节,因为在电极附近观察到的神经元数量与记录的神经元尖峰活动不匹配。在决定一种技术或手术过程是否具有生物相容性时,很少检查此类研究中涉及的无数手术和实验因素的下游影响。众所周知,麻醉、温度波动、出血发生率、产生的机械力和代谢条件等手术因素对细胞和组织具有强烈的全身影响,从而对局部细胞和细胞外环境产生影响。许多组织标志物对细胞和组织的生理状态非常敏感,因此会极大地影响组织学的准确性。本综述旨在阐明一些常被忽视的因素,这些因素会对神经生物相容性的评估产生重大影响,并解决功能和组织学方法得出的结果之间的不匹配问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e6e/9951391/b5bffab336b8/ADVS-10-2205095-g005.jpg

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