Literature DB >> 16841927

Fluorescence-based siderophore biosensor for the determination of bioavailable iron in oceanic waters.

Cathy K S Chung Chun Lam1, Timothy D Jickells, David J Richardson, David A Russell.   

Abstract

With direct evidence that iron is the chemical limitation of phytoplankton growth, particularly in the Southern Ocean, it is increasingly important to develop new tools that provide direct measurement of the bioavailable iron fraction in oceanic waters. Here we report the development of a fluorescence quenching-based siderophore biosensor capable of the in situ measurement of this ultratrace Fe(III) fraction at ambient pH ( approximately 8). Parabactin was extracted from cultures of Paracoccus denitrificans. The purified siderophore was encapsulated within a spin-coated sol-gel thin film, which was subsequently incorporated in a flow cell system. The parabactin biosensor has been fully characterized for the detection of Fe(III) in seawater samples. The biosensor can be regenerated by lowering the pH of the flowing solution, thereby releasing the chelated Fe(III), enabling multiple use. The LOD of the biosensor was determined to be 40 pM, while for an Fe(III) concentration of 1 nM, a reproducibility with a RSD of 6% (n = 10) was obtained. The accuracy of the biosensing system has been determined through analysis of a certified seawater reference sample. Samples from the Atlantic Ocean have been analyzed using the parabactin biosensor providing a concentration vs depth profile for the bioavailable Fe(III) fraction in the 50 pM-1 nM range.

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Year:  2006        PMID: 16841927     DOI: 10.1021/ac060223t

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  10 in total

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Review 2.  Microbial siderophores and their potential applications: a review.

Authors:  Maumita Saha; Subhasis Sarkar; Biplab Sarkar; Bipin Kumar Sharma; Surajit Bhattacharjee; Prosun Tribedi
Journal:  Environ Sci Pollut Res Int       Date:  2015-03-12       Impact factor: 4.223

3.  Acquisition of iron by alkaliphilic bacillus species.

Authors:  Duncan G G McMillan; Imelda Velasquez; Brook L Nunn; David R Goodlett; Keith A Hunter; Iain Lamont; Sylvia G Sander; Gregory M Cook
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4.  Probing oxidative stress: Small molecule fluorescent sensors of metal ions, reactive oxygen species, and thiols.

Authors:  Lynne M Hyman; Katherine J Franz
Journal:  Coord Chem Rev       Date:  2012-10-01       Impact factor: 22.315

5.  A lanthanide-based chemosensor for bioavailable Fe3+ using a fluorescent siderophore: an assay displacement approach.

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Journal:  Sensors (Basel)       Date:  2010-02-11       Impact factor: 3.576

6.  Iron specificity of a biosensor based on fluorescent pyoverdin immobilized in sol-gel glass.

Authors:  Michael F Yoder; William S Kisaalita
Journal:  J Biol Eng       Date:  2011-05-10       Impact factor: 4.355

7.  Screening for Microbial Metal-Chelating Siderophores for the Removal of Metal Ions from Solutions.

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Journal:  Microorganisms       Date:  2021-01-05

Review 8.  Translating New Synthetic Biology Advances for Biosensing Into the Earth and Environmental Sciences.

Authors:  Ilenne Del Valle; Emily M Fulk; Prashant Kalvapalle; Jonathan J Silberg; Caroline A Masiello; Lauren B Stadler
Journal:  Front Microbiol       Date:  2021-02-04       Impact factor: 5.640

Review 9.  Siderophores in environmental research: roles and applications.

Authors:  E Ahmed; S J M Holmström
Journal:  Microb Biotechnol       Date:  2014-02-27       Impact factor: 5.813

10.  An Engineered Synthetic Pathway for Discovering Nonnatural Nonribosomal Peptides in Escherichia coli.

Authors:  Sara Cleto; Timothy K Lu
Journal:  mBio       Date:  2017-10-10       Impact factor: 7.867

  10 in total

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