Monitoring cell cultivation in microfluidic segments by optical pH sensing with a micro flow-through fluorometer using dye-doped polymer particles
Author:
Publisher
Springer Science and Business Media LLC
Subject
Analytical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00604-008-0096-0.pdf
Reference26 articles.
1. Köhler JM, Henkel T, Grodrian A, Kirner T, Roth M, Martin K, Metze J (2004) Digital reaction technology by micro segmented flow-components, concepts and applications. Chem Eng J 101:201–216
2. Günther PM, Möller F, Henkel T, Köhler JM, Gross GA (2005) Formation of monomeric and novolak azo dyes in nanofluid segments by use of a double injector chip reactor. Chem Eng Technol 28:520–527
3. Mae K, Maki T, Aoki N (2008) Process intensification by utilizing micro space. Kagaku Kogaku Ronbunshu 34:8–17
4. Zheng B, Tice JD, Roach LS, Ismagilov RF (2004) A droplet-based, composite PDMS/glass capillary microfluidic system for evaluating protein crystallization conditions by microbatch and vapor-diffusion methods with on-chip X-ray diffraction. Angew Chem Int Ed 43:2508–2511
5. Clausell-Tormos J, Lieber D, Baret JC, El-Harrak A, Miller OJ, Frenz L, Blouwolff J, Humphry KJ, Koster S, Duan H, Holtze C, Weitz DA, Griffiths AD, Merten CA (2008) Droplet-based microfluidic platforms for the encapsulation and screening of mammalian cells and multicellular organisms. Chem Biol 15:427–437
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