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Elucidating endotoxin-biomolecule interactions with FRET: extending the frontiers of their supramolecular complexation

Endotoxin has been one of the topical chemical contaminants of major concern to researchers, especially in the field of bioprocessing. This major concern of researchers stems from the fact that the presence of Gram-negative bacterial endotoxin in intracellular products is unavoidable and requires co...

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Autores principales: Obeng, Eugene M., Dullah, Elvina C., Razak, Nur Syahadatain Abdul, Danquah, Michael K., Budiman, Cahyo, Ongkudon, Clarence M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Journal of Biological Methods 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6706125/
https://www.ncbi.nlm.nih.gov/pubmed/31453229
http://dx.doi.org/10.14440/jbm.2017.172
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author Obeng, Eugene M.
Dullah, Elvina C.
Razak, Nur Syahadatain Abdul
Danquah, Michael K.
Budiman, Cahyo
Ongkudon, Clarence M.
author_facet Obeng, Eugene M.
Dullah, Elvina C.
Razak, Nur Syahadatain Abdul
Danquah, Michael K.
Budiman, Cahyo
Ongkudon, Clarence M.
author_sort Obeng, Eugene M.
collection PubMed
description Endotoxin has been one of the topical chemical contaminants of major concern to researchers, especially in the field of bioprocessing. This major concern of researchers stems from the fact that the presence of Gram-negative bacterial endotoxin in intracellular products is unavoidable and requires complex downstream purification steps. For instance, endotoxin interacts with recombinant proteins, peptides, antibodies and aptamers and these interactions have formed the foundation for most biosensors for endotoxin detection. It has become imperative for researchers to engineer reliable means/techniques to detect, separate and remove endotoxin, without compromising the quality and quantity of the end-product. However, the underlying mechanism involved during endotoxin-biomolecule interaction is still a gray area. The use of quantitative molecular microscopy that provides high resolution of biomolecules is highly promising, hence, may lead to the development of improved endotoxin detection strategies in biomolecule preparation. Förster resonance energy transfer (FRET) spectroscopy is one of the emerging most powerful tools compatible with most super-resolution techniques for the analysis of molecular interactions. However, the scope of FRET has not been well-exploited in the analysis of endotoxin-biomolecule interaction. This article reviews endotoxin, its pathophysiological consequences and the interaction with biomolecules. Herein, we outline the common potential ways of using FRET to extend the current understanding of endotoxin-biomolecule interaction with the inference that a detailed understanding of the interaction is a prerequisite for the design of strategies for endotoxin identification and removal from protein milieus.
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spelling pubmed-67061252019-08-26 Elucidating endotoxin-biomolecule interactions with FRET: extending the frontiers of their supramolecular complexation Obeng, Eugene M. Dullah, Elvina C. Razak, Nur Syahadatain Abdul Danquah, Michael K. Budiman, Cahyo Ongkudon, Clarence M. J Biol Methods Review Endotoxin has been one of the topical chemical contaminants of major concern to researchers, especially in the field of bioprocessing. This major concern of researchers stems from the fact that the presence of Gram-negative bacterial endotoxin in intracellular products is unavoidable and requires complex downstream purification steps. For instance, endotoxin interacts with recombinant proteins, peptides, antibodies and aptamers and these interactions have formed the foundation for most biosensors for endotoxin detection. It has become imperative for researchers to engineer reliable means/techniques to detect, separate and remove endotoxin, without compromising the quality and quantity of the end-product. However, the underlying mechanism involved during endotoxin-biomolecule interaction is still a gray area. The use of quantitative molecular microscopy that provides high resolution of biomolecules is highly promising, hence, may lead to the development of improved endotoxin detection strategies in biomolecule preparation. Förster resonance energy transfer (FRET) spectroscopy is one of the emerging most powerful tools compatible with most super-resolution techniques for the analysis of molecular interactions. However, the scope of FRET has not been well-exploited in the analysis of endotoxin-biomolecule interaction. This article reviews endotoxin, its pathophysiological consequences and the interaction with biomolecules. Herein, we outline the common potential ways of using FRET to extend the current understanding of endotoxin-biomolecule interaction with the inference that a detailed understanding of the interaction is a prerequisite for the design of strategies for endotoxin identification and removal from protein milieus. Journal of Biological Methods 2017-04-28 /pmc/articles/PMC6706125/ /pubmed/31453229 http://dx.doi.org/10.14440/jbm.2017.172 Text en © 2017 The Journal of Biological Methods, All rights reserved. https://creativecommons.org/licenses/by/3.0/ This work is licensed under a Creative Commons Attribution 3.0 License.
spellingShingle Review
Obeng, Eugene M.
Dullah, Elvina C.
Razak, Nur Syahadatain Abdul
Danquah, Michael K.
Budiman, Cahyo
Ongkudon, Clarence M.
Elucidating endotoxin-biomolecule interactions with FRET: extending the frontiers of their supramolecular complexation
title Elucidating endotoxin-biomolecule interactions with FRET: extending the frontiers of their supramolecular complexation
title_full Elucidating endotoxin-biomolecule interactions with FRET: extending the frontiers of their supramolecular complexation
title_fullStr Elucidating endotoxin-biomolecule interactions with FRET: extending the frontiers of their supramolecular complexation
title_full_unstemmed Elucidating endotoxin-biomolecule interactions with FRET: extending the frontiers of their supramolecular complexation
title_short Elucidating endotoxin-biomolecule interactions with FRET: extending the frontiers of their supramolecular complexation
title_sort elucidating endotoxin-biomolecule interactions with fret: extending the frontiers of their supramolecular complexation
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6706125/
https://www.ncbi.nlm.nih.gov/pubmed/31453229
http://dx.doi.org/10.14440/jbm.2017.172
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