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仿生生物电子舌:一种用于酸感开启和关闭响应的开关。

A biomimetic bioelectronic tongue: A switch for On- and Off- response of acid sensations.

机构信息

CAS key Laboratory of Bio-medical Diagnostics, Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou 215163, China.

State Key Laboratory of Brain and Cognitive Science, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Biosens Bioelectron. 2017 Jun 15;92:523-528. doi: 10.1016/j.bios.2016.10.069. Epub 2016 Oct 27.

Abstract

The perception of sour taste in mammals is important for its basic modality properties and avoiding toxic substances. We explore a biomimetic bioelectronic tongue, which integrate MEA (microelectrode array) and taste receptor cell for acid detection as a switch. However, the acid-sensing mechanism and coding of the taste receptor cells in the periphery is not well understood, with long-standing debate. Therefore, we firstly construct a Hodgkin-Huxley type mathematical model of whole-cell acid-sensing taste receptor cells based on the electrophysiologic patch clamp recordings with different acid sensitive receptor expressing and different acidic stimulations. ASICs and PKDL channels are two most promising candidates for acidic sensation. ASICs channels contribute to the On response, and PKDL channels coding the Offset stimulations respectively, which function as a pair for switch. Therefore, with the advantage of effective and noninvasive detection for MEA, a sour taste biosensor based on MEA and taste receptor cells was designed and established to detect sour response from the elementary acid sensitive taste receptor cells during and after stimulus. From simulation and extracelluar potential recordings, we found the biomimetic bioelectronic tongue was acid-sensitive, as acid stimulation pH decrease, the firing frequency significantly increase. Furthermore, this reliable and effective MEA based bioelectronic tongue functioned as a switch for stimulation On and Off. This study provided a powerful platform to recognize sour stimulation and help elucidate the sour taste sensation and coding mechanism.

摘要

哺乳动物对酸味的感知对于其基本味觉特性和避免有毒物质非常重要。我们探索了一种仿生生物电子舌,它将微电极阵列 (MEA) 和味觉受体细胞集成在一起,用于检测酸作为开关。然而,味觉受体细胞在周围环境中的酸感应机制和编码尚未得到很好的理解,这是一个长期存在的争议。因此,我们首先基于不同酸敏感受体表达和不同酸性刺激的全细胞电生理膜片钳记录构建了一种 Hodgkin-Huxley 型全细胞酸感应味觉受体细胞数学模型。ASICs 和 PKDL 通道是两种最有前途的酸性感觉候选通道。ASICs 通道有助于产生 On 反应,而 PKDL 通道则对 Offset 刺激进行编码,它们作为一对开关起作用。因此,MEA 具有有效且非侵入性检测的优势,我们设计并建立了一种基于 MEA 和味觉受体细胞的酸味生物传感器,用于检测刺激期间和之后基本酸敏感味觉受体细胞的酸味反应。通过模拟和细胞外电势记录,我们发现仿生生物电子舌对酸具有敏感性,随着酸刺激 pH 值的降低,放电频率显著增加。此外,这种基于可靠且有效的 MEA 的生物电子舌可作为刺激 On 和 Off 的开关。这项研究提供了一个强大的平台来识别酸味刺激,并有助于阐明酸味感觉和编码机制。

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