Accesso libero

Electric cell-substrate impedance sensing in biocompatibility research

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Azizipour N, Avazpour R, Rosenzweig DH, Sawan M, Ajji A. Evolution of Biochip Technology: A Review from Lab-on-a-Chip to Organ-on-a-Chip. Micromachines 2020;11:599. 10.3390/MI11060599.Azizipour N Avazpour R Rosenzweig DH Sawan M Ajji A Evolution of Biochip Technology: A Review from Lab-on-a-Chip to Organ-on-a-Chip Micromachines 202011599 10.3390/MI11060599734573232570945Open DOISearch in Google Scholar

Mohd Ghazali FA, Hasan MN, Rehman T, Nafea M, Mohamed Ali MS, Takahata K. MEMS actuators for biomedical applications: a review. J Micromechanics Microengineering 2020;30:073001. 10.1088/1361-6439/AB8832.Mohd Ghazali FA Hasan MN Rehman T Nafea M Mohamed Ali MS Takahata K MEMS actuators for biomedical applications: a review J Micromechanics Microengineering 202030073001 10.1088/1361-6439/AB8832Open DOISearch in Google Scholar

Uddin SM, Sayad A, Chan J, Huynh DH, Skafidas E, Kwan P. Heater Integrated Lab-on-a-Chip Device for Rapid HLA Alleles Amplification towards Prevention of Drug Hypersensitivity. Sensors 2021;21:3413. 10.3390/S21103413.Uddin SM Sayad A Chan J Huynh DH Skafidas E Kwan P Heater Integrated Lab-on-a-Chip Device for Rapid HLA Alleles Amplification towards Prevention of Drug Hypersensitivity Sensors 2021213413 10.3390/S21103413Open DOISearch in Google Scholar

Lin J-M, editor. Cell Analysis on Microfluidics. Singapore: Springer Singapore; 2018. 10.1007/978-981-10-5394-8.Lin J-M editor Cell Analysis on Microfluidics Singapore Springer Singapore 2018 10.1007/978-981-10-5394-8Open DOISearch in Google Scholar

Xu Y, Xie X, Duan Y, Wang L, Cheng Z, Cheng J. A review of impedance measurements of whole cells. Biosens Bioelectron 2016;77:824–36. 10.1016/J.BIOS.2015.10.027.Xu Y Xie X Duan Y Wang L Cheng Z Cheng J A review of impedance measurements of whole cells Biosens Bioelectron 201677824 36 10.1016/J.BIOS.2015.10.02726513290Open DOISearch in Google Scholar

Voiculescu I, Li F, Nordin AN. Impedance Spectroscopy of Adherent Mammalian Cell Culture for Biochemical Applications: A Review. IEEE Sens J 2021;21:5612–27. 10.1109/JSEN.2020.3041708.Voiculescu I Li F Nordin AN Impedance Spectroscopy of Adherent Mammalian Cell Culture for Biochemical Applications: A Review IEEE Sens J 2021215612 27 10.1109/JSEN.2020.3041708Open DOISearch in Google Scholar

Sun T, Morgan H. Single-cell microfluidic Impedance cytometry: A review. Microfluid Nanofluidics 2010;8:423–43. 10.1007/s10404-010-0580-9.Sun T Morgan H Single-cell microfluidic Impedance cytometry: A review Microfluid Nanofluidics 20108423 43 10.1007/s10404-010-0580-9Open DOISearch in Google Scholar

Grossi M, Riccò B. Electrical impedance spectroscopy (EIS) for biological analysis and food characterization: a review. J Sensors Sens Syst 2017;6:303–25. 10.5194/JSSS-6-303-2017.Grossi M Riccò B Electrical impedance spectroscopy (EIS) for biological analysis and food characterization: a review J Sensors Sens Syst 20176303 25 10.5194/JSSS-6-303-2017Open DOISearch in Google Scholar

Prendecka M, Frankowski J, Sobieszek G, Kapka-Skrzypczak L, Skwarek-Dziekanowska A, Małecka-Massalska T, et al. Electric Cell Substrate Impedance Sensing (ECIS) as a unique technique in cancer metastasis research. J Pre-Clinical Clin Res 2018;12:142–4. 10.26444/JPCCR/100616.Prendecka M Frankowski J Sobieszek G Kapka-Skrzypczak L Skwarek-Dziekanowska A Małecka-Massalska T et al Electric Cell Substrate Impedance Sensing (ECIS) as a unique technique in cancer metastasis research J Pre-Clinical Clin Res 201812142 4 10.26444/JPCCR/100616Open DOISearch in Google Scholar

Ngoc Le HT, Kim J, Park J, Cho S. A Review of Electrical Impedance Characterization of Cells for Label-Free and Real-Time Assays. Biochip J 2019;13:295–305. 10.1007/S13206-019-3401-6/FIGURES/6.Ngoc Le HT Kim J Park J Cho S A Review of Electrical Impedance Characterization of Cells for Label-Free and Real-Time Assays Biochip J 201913295 305 10.1007/S13206-019-3401-6/FIGURES/6Open DOISearch in Google Scholar

Voiculescu I, Li F, Liu F, Zhang X, Cancel LM, Tarbell JM, et al. Study of long-term viability of endothelial cells for lab-on-a-chip devices. Sensors Actuators B Chem 2013;182:696–705. 10.1016/J.SNB.2013.03.030.Voiculescu I Li F Liu F Zhang X Cancel LM Tarbell JM et al Study of long-term viability of endothelial cells for lab-on-a-chip devices Sensors Actuators B Chem 2013182696 705 10.1016/J.SNB.2013.03.030Open DOISearch in Google Scholar

Yoo T, Lim K, Sultan MT, Lee JS, Park J, Ju HW, et al. The real-time monitoring of drug reaction in HeLa cancer cell using temperature/impedance integrated biosensors. Sensors Actuators B Chem 2019;291:17–24. 10.1016/J.SNB.2019.03.145.Yoo T Lim K Sultan MT Lee JS Park J Ju HW et al The real-time monitoring of drug reaction in HeLa cancer cell using temperature/impedance integrated biosensors Sensors Actuators B Chem 201929117 24 10.1016/J.SNB.2019.03.145Open DOISearch in Google Scholar

Mondal D, RoyChaudhuri C. Real time in vitro monitoring and impedance modeling of mammalian cell activities on planar ECIS and micro/nano patterned cytosensors. ISSS J Micro Smart Syst 2018;7:107–22. 10.1007/S41683-018-0024-4.Mondal D RoyChaudhuri C Real time in vitro monitoring and impedance modeling of mammalian cell activities on planar ECIS and micro/nano patterned cytosensors ISSS J Micro Smart Syst 20187107 22 10.1007/S41683-018-0024-4Open DOISearch in Google Scholar

Gopal S, Patro K, Kumar Sahu K. Normalization: A Preprocessing Stage. Int Adv Res J Sci Eng Technol 2015;2:20–2. 10.17148/iarjset.2015.2305.Gopal S Patro K Kumar Sahu K Normalization: A Preprocessing Stage Int Adv Res J Sci Eng Technol 20152202 10.17148/iarjset.2015.2305Open DOISearch in Google Scholar

Onuki Y, Bhardwaj U, Papadimitrakopoulos F, Burgess DJ. A review of the biocompatibility of implantable devices: current challenges to overcome foreign body response. J Diabetes Sci Technol 2008;2:1003–15. 10.1177/193229680800200610.Onuki Y Bhardwaj U Papadimitrakopoulos F Burgess DJ A review of the biocompatibility of implantable devices: current challenges to overcome foreign body response J Diabetes Sci Technol 200821003 15 10.1177/193229680800200610276982619885290Open DOISearch in Google Scholar

von der Mark K, Park J. Engineering biocompatible implant surfaces: Part II: Cellular recognition of biomaterial surfaces: Lessons from cell–matrix interactions. Prog Mater Sci 2013;58:327–81. 10.1016/J.PMATSCI.2012.09.002.von der Mark K Park J Engineering biocompatible implant surfaces: Part II: Cellular recognition of biomaterial surfaces: Lessons from cell–matrix interactions Prog Mater Sci 201358327 81 10.1016/J.PMATSCI.2012.09.002Open DOISearch in Google Scholar

Kręgiel D, Rygała A, Ambroziak W, Mizerska U, Fortuniak W, Chojnowski J. Investigation of the adhesion capabilities of Aeromonas hydrophila to different polysiloxane carriers. Biotechnol. Proc. Int. Symp. New Res. Biotechnol. Ser. F, 2008, p. 498–502.Kręgiel D Rygała A Ambroziak W Mizerska U Fortuniak W Chojnowski J Investigation of the adhesion capabilities of Aeromonas hydrophila to different polysiloxane carriers. Biotechnol Proc. Int. Symp. New Res. Biotechnol. Ser. F 2008 p 498502Search in Google Scholar

Stensaas SS, Stensaas LJ. Histopathological evaluation of materials implanted in the cerebral cortex. Acta Neuropathol 1978;41:145–55. 10.1007/BF00689766.Stensaas SS Stensaas LJ Histopathological evaluation of materials implanted in the cerebral cortex Acta Neuropathol 197841145 55 10.1007/BF00689766636844Open DOISearch in Google Scholar

Li C, Pisignano D, Zhao Y, Xue J. Advances in Medical Applications of Additive Manufacturing. Engineering 2020;6:1222–31. 10.1016/J.ENG.2020.02.018.Li C Pisignano D Zhao Y Xue J Advances in Medical Applications of Additive Manufacturing Engineering 202061222 31 10.1016/J.ENG.2020.02.018Open DOISearch in Google Scholar

Kociubiński A, Zarzeczny D, Prendecka M, Pigoń D, Małecka-Massalska T. Nichrome Capacitors on Polycarbonate Substrate for Monitoring Cell Culture Using Impedance Sensing Technique. Arch Metall Mater 2020;65:493–6. 10.24425/amm.2020.131752.Kociubiński A Zarzeczny D Prendecka M Pigoń D Małecka-Massalska T Nichrome Capacitors on Polycarbonate Substrate for Monitoring Cell Culture Using Impedance Sensing Technique Arch Metall Mater 202065493 6 10.24425/amm.2020.131752Open DOISearch in Google Scholar

Kociubiński A, Zarzeczny D, Szypulski M, Wilczyńska A, Pigoń D, Małecka-Massalska T, et al. Real-time monitoring of cell cultures with nickel comb capacitors. Inform Autom Pomiary w Gospod i Ochr Środowiska 2020:32–5. 10.35784/iapgos.1564.Kociubiński A Zarzeczny D Szypulski M Wilczyńska A Pigoń D Małecka-Massalska T et al Real-time monitoring of cell cultures with nickel comb capacitors. Inform Autom Pomiary w Gospod i Ochr Środowiska 2020325 10.35784/iapgos.1564Open DOISearch in Google Scholar