4.8 Article

Measurement of intact quantal packet of transmitters released from single nerve terminal by loose-patch amperometry

期刊

BIOSENSORS & BIOELECTRONICS
卷 181, 期 -, 页码 -

出版社

ELSEVIER ADVANCED TECHNOLOGY
DOI: 10.1016/j.bios.2021.113143

关键词

Amperometry; Loose patch; Nerve terminals; Quantal release; Neurotransmitters

资金

  1. National Natural Science Foundation of China [31800902, 31871033, 31527802]
  2. Youth Innovation Promotion Association, CAS [2017130]
  3. National Basic Research Program of China [2013CB835100]
  4. CAS [YJKYYQ20180028]
  5. Key Research Program of Frontier Sciences, CAS [QYZ-DYSSW-SMC015]
  6. NSFC-Guangdong Joint Fund [U20A6005]

向作者/读者索取更多资源

A new method combining electrophysiology and electrochemistry was developed to precisely measure the intact quantal neurotransmitter content of single vesicles. By using a glass pipette and an etched submicro-carbon fiber electrode, intact quantal release at dopaminergic varicosities was successfully detected in real time with minimal leakage.
Neuronal information is majorly encoded chemically at synapses and the elementary unit of synaptic transmission is the contents of neurotransmitter released from single vesicle. However, the contents of quantal neurotransmitter have never been precisely estimated at synapses, which largely prevent our understanding the nature of quantal neurotransmitter release and its impact on neuronal information processing. In order to break through the technical bottleneck of precisely counting quantal neurotransmitter molecules, we developed a new approach in combination of electrophysiology and electrochemistry to measure intact quantal content of single vesicles. An etched submicro-carbon fiber electrode for electrochemical detection was designed to be enclosed in an electrophysiologically used glass pipette. The glass pipette allowed the electrochemical electrode to access the release site, and ampemmetric recordings were made within the enclosed space at the electrophysiological loose-patch mode. Our study showed that the intact quantal release could be successfully detected at the dopaminergic varicosities by this loose-patch amperometric measurement in real time with negligible leakage.

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