| Literature DB >> 35884303 |
Daniela Oprea1, Caroline G Sanz1, Madalina M Barsan1, Teodor Adrian Enache1.
Abstract
PC-12 cells have been widely used as a neuronal line study model in many biosensing devices, mainly due to the neurogenic characteristics acquired after differentiation, such as high level of secreted neurotransmitter, neuron morphology characterized by neurite outgrowth, and expression of ion and neurotransmitter receptors. For understanding the pathophysiology processes involved in brain disorders, PC-12 cell line is extensively assessed in neuroscience research, including studies on neurotoxicity, neuroprotection, or neurosecretion. Various analytical technologies have been developed to investigate physicochemical processes and the biosensors based on optical and electrochemical techniques, among others, have been at the forefront of this development. This article summarizes the application of different biosensors in PC-12 cell cultures and presents the modern approaches employed in neuronal networks biosensing.Entities:
Keywords: PC12 cell line; analytical determination; biosensing; biosensors; exocytosis; ion channel; neuronal stimulation; neurotransmitters
Mesh:
Substances:
Year: 2022 PMID: 35884303 PMCID: PMC9313070 DOI: 10.3390/bios12070500
Source DB: PubMed Journal: Biosensors (Basel) ISSN: 2079-6374
Figure 1Schematic representation of PC-12 neuronal network formation.
Figure 2Schematic illustration of (a) the composition and sensing mechanism and (b) biological applications of metal ions probe. Reprint from [25] under Creative Commons Attribution 4.0 International License.
Figure 3Schematic representation of reduced graphene oxide-platinum nanocomposite-modified glassy carbon electrode and the H2O2 detection in PC-12 cell culture. Reprint with permission from [66]. Copyright (2014) American Chemical Society.
Figure 4(a) Impedance measurement setup for monitoring cell-coupled p-type SiNW FET devices with the reference electrode was connected to the chassis ground of the LCR meter. Microscopy images of cell coupled on 1NW and 5NW FET devices with grounded and ungrounded setups on days 1 and 3 of culture and after DI water wash were shown in (b) and (c), respectively. Accordingly, SEM images of 1NW and 5NW FET devices are shown in (d) and (e). Reprinted with permission from [80]. Copyright (2022) Elsevier.
Figure 5Schematic diagram depicting preparatory processes for the detection of dopamine by using an NRC sensor: (i) Fabrication of a conventional CNT-FET device with floating electrodes; (ii) functionalization of the device by a Nafion-radical hybrid film to build an NRC sensor; (iii) culturing of PC12 cells in RPMI 1640 medium; (iv) transferring of the cells into the sensor surface; (v) stimulating of the cells by a high concentrated K+ solution and measuring of dopamine release by using the sensor. Reprint with permission from [103]. Copyright (2019) American Chemical Society.