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dc.contributor.authorBeykou, M
dc.contributor.authorBousgouni, V
dc.contributor.authorMoser, N
dc.contributor.authorGeorgiou, P
dc.contributor.authorBakal, C
dc.coverage.spatialEngland
dc.date.accessioned2024-09-13T14:52:28Z
dc.date.available2024-09-13T14:52:28Z
dc.date.issued2024-10-15
dc.identifierARTN 116513
dc.identifierS0956-5663(24)00518-9
dc.identifier.citationBiosensors and Bioelectronics, 2024, 262 pp. 116513 -en_US
dc.identifier.issn0956-5663
dc.identifier.urihttps://repository.icr.ac.uk/handle/internal/6390
dc.identifier.eissn1873-4235
dc.identifier.eissn1873-4235
dc.identifier.doi10.1016/j.bios.2024.116513
dc.identifier.doi10.1016/j.bios.2024.116513
dc.description.abstractLab-on-Chip electrochemical sensors, such as Ion-Sensitive Field-Effect Transistors (ISFETs), are being developed for use in point-of-care diagnostics, such as pH detection of tumour microenvironments, due to their integration with standard Complementary Metal Oxide Semiconductor (CMOS) technology. With this approach, the passivation of the CMOS process is used as a sensing layer to minimise post-processing, and Silicon Nitride (Si3N4) is the most common material at the microchip surface. ISFETs have the potential to be used for cell-based assays however, there is a poor understanding of the biocompatibility of microchip surfaces. Here, we quantitatively evaluated cell adhesion, morphogenesis, proliferation and mechano-responsiveness of both normal and cancer cells cultured on a Si3N4, sensor surface. We demonstrate that both normal and cancer cell adhesion decreased on Si3N4. Activation of the mechano-responsive transcription regulators, YAP/TAZ, are significantly decreased in cancer cells on Si3N4 in comparison to standard cell culture plastic, whilst proliferation marker, Ki67, expression markedly increased. Non-tumorigenic cells on chip showed less sensitivity to culture on Si3N4 than cancer cells. Treatment with extracellular matrix components increased cell adhesion in normal and cancer cell cultures, surpassing the adhesiveness of plastic alone. Moreover, poly-l-ornithine and laminin treatment restored YAP/TAZ levels in both non-tumorigenic and cancer cells to levels comparable to those observed on plastic. Thus, engineering the electrochemical sensor surface with treatments will provide a more physiologically relevant environment for future cell-based assay development on chip.
dc.formatPrint-Electronic
dc.format.extent116513 -
dc.languageeng
dc.language.isoengen_US
dc.publisherELSEVIER ADVANCED TECHNOLOGYen_US
dc.relation.ispartofBiosensors and Bioelectronics
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/en_US
dc.subjectHumans
dc.subjectBiosensing Techniques
dc.subjectLab-On-A-Chip Devices
dc.subjectCell Adhesion
dc.subjectSemiconductors
dc.subjectCell Proliferation
dc.subjectSilicon Compounds
dc.subjectCell Culture Techniques
dc.subjectElectrochemical Techniques
dc.subjectNeoplasms
dc.subjectBiocompatible Materials
dc.subjectCell Line, Tumor
dc.titleBiocompatibility characterisation of CMOS-based Lab-on-Chip electrochemical sensors for in vitro cancer cell culture applications.en_US
dc.typeJournal Article
dcterms.dateAccepted2024-06-17
dc.date.updated2024-09-13T14:49:59Z
rioxxterms.versionVoRen_US
rioxxterms.versionofrecord10.1016/j.bios.2024.116513en_US
rioxxterms.licenseref.startdate2024-10-15
rioxxterms.typeJournal Article/Reviewen_US
pubs.author-urlhttps://www.ncbi.nlm.nih.gov/pubmed/38941688
pubs.organisational-groupICR
pubs.organisational-groupICR/Primary Group
pubs.organisational-groupICR/Primary Group/ICR Divisions
pubs.organisational-groupICR/Primary Group/ICR Divisions/Cancer Biology
pubs.organisational-groupICR/Primary Group/ICR Divisions/Cancer Biology/Dynamical Cell Systems
pubs.publication-statusPublished
pubs.publisher-urlhttp://dx.doi.org/10.1016/j.bios.2024.116513
pubs.volume262
icr.researchteamDynamical Cell Systemsen_US
dc.contributor.icrauthorBakal, Christopher
icr.provenanceDeposited by Mr Arek Surman on 2024-09-13. Deposit type is initial. No. of files: 1. Files: 1-s2.0-S0956566324005189-main.pdf


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Except where otherwise noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/