A portable low-cost long-term live-cell imaging platform for biomedical research and education.

Walzik MP, Vollmar V, Lachnit T, Dietz H, Haug S, Bachmann H, Fath M, Aschenbrenner D, Abolpour Mofrad S, Friedrich O, Gilbert D (2015)


Publication Language: English

Publication Status: Published

Publication Type: Journal article, Original article

Publication year: 2015

Journal

Book Volume: 64

Pages Range: 639-49

URI: http://www.sciencedirect.com/science/article/pii/S0956566314007489

DOI: 10.1016/j.bios.2014.09.061

Open Access Link: http://ac.els-cdn.com/S0956566314007489/1-s2.0-S0956566314007489-main.pdf?_tid=1d6808e8-41bb-11e5-b97d-00000aacb35f&acdnat=1439470941_ba7a09b2d5a79de1e3c28bd7dec1c1cd

Abstract

Time-resolved visualization and analysis of slow dynamic processes in living cells has revolutionized many aspects of in vitro cellular studies. However, existing technology applied to time-resolved live-cell microscopy is often immobile, costly and requires a high level of skill to use and maintain. These factors limit its utility to field research and educational purposes. The recent availability of rapid prototyping technology makes it possible to quickly and easily engineer purpose-built alternatives to conventional research infrastructure which are low-cost and user-friendly. In this paper we describe the prototype of a fully automated low-cost, portable live-cell imaging system for time-resolved label-free visualization of dynamic processes in living cells. The device is light-weight (3.6 kg), small (22 × 22 × 22 cm) and extremely low-cost (<€1250). We demonstrate its potential for biomedical use by long-term imaging of recombinant HEK293 cells at varying culture conditions and validate its ability to generate time-resolved data of high quality allowing for analysis of time-dependent processes in living cells. While this work focuses on long-term imaging of mammalian cells, the presented technology could also be adapted for use with other biological specimen and provides a general example of rapidly prototyped low-cost biosensor technology for application in life sciences and education.

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APA:

Walzik, M.P., Vollmar, V., Lachnit, T., Dietz, H., Haug, S., Bachmann, H.,... Gilbert, D. (2015). A portable low-cost long-term live-cell imaging platform for biomedical research and education. Biosensors and Bioelectronics, 64, 639-49. https://dx.doi.org/10.1016/j.bios.2014.09.061

MLA:

Walzik, Maria P., et al. "A portable low-cost long-term live-cell imaging platform for biomedical research and education." Biosensors and Bioelectronics 64 (2015): 639-49.

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