Journal: bioRxiv
Article Title: Biocompatibility characterisation of CMOS-based Lab-on-Chip electrochemical sensors for in vitro cancer cell culture applications
doi: 10.1101/2023.11.23.568427
Figure Lengend Snippet: (a) MDA-MB-231 attached to ISFET arrays with deposited (i) Collagen Type I (50 µ g/ml), (ii) Fibronectin (1 µ g/ml) and (iii) PLOL (8 µ g/ml) deposited on ISFET surface prior to cell culture (from left to right). ISFETs are fixed and stained for cytoskeletal marker, α -Tubulin (red), proliferation marker, Ki67 (green), Hoescht nuclear dye (blue) in the upper panels and YAP/TAZ (yellow) in the lower panels. All images obtained on the Opera Phenix (Perkin Elmer). (b) Number of cells attached per well, after 48 hours, on all treated ISFET chips or untreated control chips versus standard culture plastic vessels. (c) Percentage of total population of cells attached on the respective ISFET chips whose shape were classified as elongated, star or round. (d) Kernel density estimation and corresponding rug plot for proliferation marker, Ki67, expression normalised to Hoescht dye intensity in cells cultured on control chips and treated chips. (e) Normalized mean Ki67/Hoescht intensity in treated chips or untreated chips versus standard culture plastic. (f) Kernel density estimation and corresponding rug plot for YAP/TAZ nuclear: nuclear ring ratio intensity on control chips or treated chips. (g) Normalized mean YAP/TAZ N:RR in treated chips or untreated chips versus standard culture plastic. N = 3,743 single cells for all KDE plots. All images obtained using the Opera Phenix (Perkin Elmer) and segmented with Columbus (Perkin Elmer). Kolmogorov-Smirnov statistics (Ks) performed using the scipy.stats module in Python.
Article Snippet: Fibronectin derived from human plasma (Sigma-Aldrich, Ref F0895) was diluted from a 0.1% solution to 1 µ g/ml with PBS.
Techniques: Cell Culture, Staining, Marker, Expressing