À propos de cet article

Citez

Vidi P-A, Bissell MJ, Lelievre SA. Three-Dimensional culture of human breast epithelial cells: The how and the why. Methods Mol Biol 2013; 945: 193-219. Search in Google Scholar

Mosaad EO, Chambers KF, Futrega K, Clements JA, Doran MR. The microwell-mesh: A high-throughput 3D prostate cancer spheroid and drug-testing platform. Sci Rep 2018; 8: 253. Search in Google Scholar

Picollet-d’hahan N, Dolega ME, Freida D, Martin DK, Gidrol X (2017). Deciphering cell intrinsic properties: A key issue for robust organoids production. Trends in Biotechnology 2017; 35: 1035-48. Search in Google Scholar

Descamps L, Le Roy D, Deman AL. Microfluidic-based technologies for CTC isolation: A review of 10 years of intense efforts towards liquid biopsy. Int J Mol Sci 2022; 23:1981. Search in Google Scholar

Sajdik C, Schuster E, Holzer B, Krainer M, Deutschmann C, Peter S, Marhold M, Zeillinger R, Obermayr E. Comparison of microfluidic platforms for the enrichment of circulating tumor cells in breast cancer patients. Breast Cancer Res Treat 2022; 196: 75-85. Search in Google Scholar

Cedillo-Alcantar DF, Rodriguez-Moncayo R, Maravillas-Montero JL, Garcia-Cordero JL. On-Chip analysis of protein secretion from single cells using microbead biosensors. ACS Sens 2023; 8: 655-64. Search in Google Scholar

Hernández-Rodríguez JF, López MA, Rojas D, Escarpa A. Digital manufacturing for accelerating organ-on-a-chip dissemination and electrochemical biosensing integration. Lab Chip 2022; 22: 4805-21. Search in Google Scholar

Dornhof J, Kieninger J, Muralidharan H, Maurer J, Urban GA, Weltin A. Microfluidic organ-on-chip system for multi-analyte monitoring of metabolites in 3D cell cultures. Lab Chip 2022; 22: 225-39. Search in Google Scholar

Picollet-d’hahan N, Dolega ME, Liguori L, Marquette C, Le Gac S, Gidrol X, Martin DK. A 3D toolbox to enhance the physiological relevance of human tissue models. Trends in Biotechnology 2016; 34: 757-769. Search in Google Scholar

Martin DK, Picollet-d’hahan. Method for diagnosing genitourinary cancers US11,268,911. Search in Google Scholar

Martin DK, Picollet-d’hahan N. Cell co-culture chip and process for the production thereof. EP3455342. Search in Google Scholar

US 11,268,961: in Organoids and organs on a chip. Nat. Biotechnol 2022; 40: 472. Search in Google Scholar

Stucki AO, Stucki JD, Hall SRR, Felder M, Mermoud Y, Schmid RA, Geiser T, Guenat OT. A lung-on-a-chip array with an integrated bio-inspired respiration mechanism. Lab Chip 2015; 15: 1302-10. Search in Google Scholar

Sung JH, Yu J, Luo D, Shuler ML, John C March JCl. Microscale 3D hydrogel scaffold for bio-mimetic gastrointestinal (GI) tract model. Lab Chip 2011; 11: 389–392. Search in Google Scholar

Marsano A, Conficconi C, Lemme M, Occhetta P, Gaudiello E, Votta E, Cerino G, Redaelli A, Rasponi M. Beating heart on a chip: a novel micro-fluidic platform to generate functional 3D cardiac microtissues. Lab Chip 2016; 16: 599–610. Search in Google Scholar

Ma C, Zhao L, Zhou EM, Xu J, Shen S, Wang J. On-chip construction of liver lobule-like micro-tissue and its application for adverse drug reaction assay. Anal. Chem 2016; 88: 1719-27. Search in Google Scholar

Bhatia SN, Ingber DE. Microfluidic organs-on-chips. Nat Biotech 2014; 32:760-72. Search in Google Scholar

No DY, Lee KH, Lee J, Lee SH. 3D liver models on a microplatform: well-defined culture, engineering of liver tissue and liver-on-a-chip. Lab Chip 2015;15: 3822-37. Search in Google Scholar

Esch EW, Bahinski A, Huh D. Organs-on-chips at the frontiers of drug discovery. Nat Rev Drug Disc 2015; 14: 248-60. Search in Google Scholar

Picollet-d’Hahan N, Tollance A, Belda Marin C, Liguori L, Marquette C, Filhol-Cochet O, Vilgrain I, Laffitte G, Rivera F, Alcaraz JP, Thélu J, Nicoud O, Moufle-Milot T, Legues M, Bouamrani A, Mombrun A, Gilquin B, Gerbaud S, Obeid P, Kermarrec F, Gidrol X, Martin DK. Search in Google Scholar

3D polyelectrolyte scaffolds to mimic exocrine glands: a step towards a prostate-on-chip platform. Eurobiotech Journal 2018; 2: 180-195. Search in Google Scholar

eISSN:
2564-615X
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Life Sciences, Genetics, Biotechnology, Bioinformatics, other