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. 2016 May;100(9):4147-59.
doi: 10.1007/s00253-016-7403-1. Epub 2016 Mar 4.

Online analysis of protein inclusion bodies produced in E. coli by monitoring alterations in scattered and reflected light

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Online analysis of protein inclusion bodies produced in E. coli by monitoring alterations in scattered and reflected light

Christian Ude et al. Appl Microbiol Biotechnol. 2016 May.

Abstract

The online monitoring of recombinant protein aggregate inclusion bodies during microbial cultivation is an immense challenge. Measurement of scattered and reflected light offers a versatile and non-invasive measurement technique. Therefore, we investigated two methods to detect the formation of inclusion bodies and monitor their production: (1) online 180° scattered light measurement (λ = 625 nm) using a sensor platform during cultivation in shake flask and (2) online measurement of the light reflective interference using a porous Si-based optical biosensor (SiPA). It could be shown that 180° scattered light measurement allows monitoring of alterations in the optical properties of Escherichia coli BL21 cells, associated with the formation of inclusion bodies during cultivation. A reproducible linear correlation between the inclusion body concentration of the non-fluorescent protein human leukemia inhibitory factor (hLIF) carrying a thioredoxin tag and the shift ("Δamp") in scattered light signal intensity was observed. This was also observed for the glutathione-S-transferase-tagged green fluorescent protein (GFP-GST). Continuous online monitoring of reflective interference spectra reveals a significant increase in the bacterium refractive index during hLIF production in comparison to a non-induced reference that coincide with the formation of inclusion bodies. These online monitoring techniques could be applied for fast and cost-effective screening of different protein expression systems.

Keywords: Flow cytometry; Inclusion bodies; Online scattered-light sensor; Optical biosensor; Reflective interference Fourier transform spectra; Silicon photonic arrays.

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