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- W3157651290 endingPage "100006" @default.
- W3157651290 startingPage "100006" @default.
- W3157651290 abstract "3-dimensional (3D) cell cultures better mimic natural environment of cells than 2-dimensional (2D) cell cultures to obtain in vivo like inter and intracellular responses. However, third dimension brings complexity to cell culture. Therefore, high-resolution/high-content screening in 3D is one of the most important challenges with this type of cell cultures. Although optical monitoring techniques, well-established in 2D area, are enhanced to monitor 3D cell cultures, they are generally endpoint, static, time inefficient, and labor intensive. Alternatively, electrical sensing can become a solution to achieve dynamic, real-time, and label-free monitoring of cells in both 2D and 3D cell cultures. Developments in electrical monitoring of cell culture have led to novel approaches, proposed by adapting fundamentals of 2D electrical techniques to 3D to obtain high spatiotemporal systems. In this review, we classified these approaches into five main groups: (i) 3D impedance measurement approach (ii) electrical impedance tomography, (iii) 3D microelectrode array approach, (iv) 3D nanoelectronics scaffold approach, and (v) microphysiometry. We also defined the challenges in the adaptation of electrical monitoring techniques to 3D cultures and explained possible solutions in terms of specific applications and technical point of views, including methods particular to our group. In conclusion, 3D electrical monitoring in cell cultures is considerably challenging but highly accelerated recently by significant advances of microfabrication technology, bioengineering, and material science. Novel approaches reviewed here have a lot of potential and offer opportunities for further developments to find solutions, fit to serve the (bio)medical needs." @default.
- W3157651290 created "2021-05-10" @default.
- W3157651290 creator A5017582068 @default.
- W3157651290 creator A5038474168 @default.
- W3157651290 date "2021-11-01" @default.
- W3157651290 modified "2023-09-25" @default.
- W3157651290 title "Electrical monitoring approaches in 3-dimensional cell culture systems: Toward label-free, high spatiotemporal resolution, and high-content data collection in vitro" @default.
- W3157651290 cites W1448886714 @default.
- W3157651290 cites W1975390831 @default.
- W3157651290 cites W1979665070 @default.
- W3157651290 cites W1981148562 @default.
- W3157651290 cites W1984932811 @default.
- W3157651290 cites W1995746991 @default.
- W3157651290 cites W2019072696 @default.
- W3157651290 cites W2023228944 @default.
- W3157651290 cites W2027118734 @default.
- W3157651290 cites W2033474014 @default.
- W3157651290 cites W2042706281 @default.
- W3157651290 cites W2043709810 @default.
- W3157651290 cites W2055571910 @default.
- W3157651290 cites W2059216445 @default.
- W3157651290 cites W2083042020 @default.
- W3157651290 cites W2095586334 @default.
- W3157651290 cites W2108309439 @default.
- W3157651290 cites W2111621259 @default.
- W3157651290 cites W2118745544 @default.
- W3157651290 cites W2161248222 @default.
- W3157651290 cites W2171543143 @default.
- W3157651290 cites W2179643578 @default.
- W3157651290 cites W2217861690 @default.
- W3157651290 cites W2294318266 @default.
- W3157651290 cites W2302487622 @default.
- W3157651290 cites W2328984983 @default.
- W3157651290 cites W2331628193 @default.
- W3157651290 cites W2466922171 @default.
- W3157651290 cites W2493158550 @default.
- W3157651290 cites W2509051474 @default.
- W3157651290 cites W2525312959 @default.
- W3157651290 cites W2553287852 @default.
- W3157651290 cites W2556650722 @default.
- W3157651290 cites W2563893725 @default.
- W3157651290 cites W2584478874 @default.
- W3157651290 cites W2626725994 @default.
- W3157651290 cites W2724969178 @default.
- W3157651290 cites W2738615740 @default.
- W3157651290 cites W2762638271 @default.
- W3157651290 cites W2787592787 @default.
- W3157651290 cites W2788405220 @default.
- W3157651290 cites W2796374445 @default.
- W3157651290 cites W2800831680 @default.
- W3157651290 cites W2884379177 @default.
- W3157651290 cites W2888831785 @default.
- W3157651290 cites W2890191583 @default.
- W3157651290 cites W2890569701 @default.
- W3157651290 cites W2898733799 @default.
- W3157651290 cites W2900976680 @default.
- W3157651290 cites W2904054162 @default.
- W3157651290 cites W2904178963 @default.
- W3157651290 cites W2911295466 @default.
- W3157651290 cites W2914321429 @default.
- W3157651290 cites W2921890893 @default.
- W3157651290 cites W2936712015 @default.
- W3157651290 cites W2941524667 @default.
- W3157651290 cites W2944206648 @default.
- W3157651290 cites W2944969693 @default.
- W3157651290 cites W2945825559 @default.
- W3157651290 cites W2950567011 @default.
- W3157651290 cites W2951140756 @default.
- W3157651290 cites W2953178878 @default.
- W3157651290 cites W2963014728 @default.
- W3157651290 cites W2963943722 @default.
- W3157651290 cites W2966989606 @default.
- W3157651290 cites W2969962777 @default.
- W3157651290 cites W2972492362 @default.
- W3157651290 cites W2980581402 @default.
- W3157651290 cites W3002857181 @default.
- W3157651290 cites W3002936310 @default.
- W3157651290 cites W3003789437 @default.
- W3157651290 cites W3010019934 @default.
- W3157651290 cites W3011035326 @default.
- W3157651290 cites W3031403926 @default.
- W3157651290 cites W3033130324 @default.
- W3157651290 cites W3035039458 @default.
- W3157651290 cites W3036319245 @default.
- W3157651290 cites W3039938743 @default.
- W3157651290 cites W3046382784 @default.
- W3157651290 cites W3046940812 @default.
- W3157651290 cites W3083330331 @default.
- W3157651290 cites W3087636483 @default.
- W3157651290 cites W3088795796 @default.
- W3157651290 cites W4211178353 @default.
- W3157651290 doi "https://doi.org/10.1016/j.ooc.2021.100006" @default.
- W3157651290 hasPublicationYear "2021" @default.
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