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A Polyclonal Aptamer Library for the Specific Binding of the Gut Bacterium Roseburia intestinalis in Mixtures with Other Gut Microbiome Bacteria and Human Stool Samples

Roseburia intestinalis has received attention as a potential probiotic bacterium. Recent studies have demonstrated that changes in its intestinal abundance can cause various diseases, such as obesity, enteritis and atherosclerosis. Probiotic administration or fecal transplantation alter the structur...

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Autores principales: Xing, Hu, Zhang, Yiting, Krämer, Markus, Kissmann, Ann-Kathrin, Amann, Valerie, Raber, Heinz Fabian, Weil, Tanja, Stieger, Kai R., Knippschild, Uwe, Henkel, Marius, Andersson, Jakob, Rosenau, Frank
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317077/
https://www.ncbi.nlm.nih.gov/pubmed/35887092
http://dx.doi.org/10.3390/ijms23147744
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author Xing, Hu
Zhang, Yiting
Krämer, Markus
Kissmann, Ann-Kathrin
Amann, Valerie
Raber, Heinz Fabian
Weil, Tanja
Stieger, Kai R.
Knippschild, Uwe
Henkel, Marius
Andersson, Jakob
Rosenau, Frank
author_facet Xing, Hu
Zhang, Yiting
Krämer, Markus
Kissmann, Ann-Kathrin
Amann, Valerie
Raber, Heinz Fabian
Weil, Tanja
Stieger, Kai R.
Knippschild, Uwe
Henkel, Marius
Andersson, Jakob
Rosenau, Frank
author_sort Xing, Hu
collection PubMed
description Roseburia intestinalis has received attention as a potential probiotic bacterium. Recent studies have demonstrated that changes in its intestinal abundance can cause various diseases, such as obesity, enteritis and atherosclerosis. Probiotic administration or fecal transplantation alter the structure of the intestinal flora, offering possibilities for the prevention and treatment of these diseases. However, current monitoring methods, such as 16S rRNA sequencing, are complex and costly and require specialized personnel to perform the tests, making it difficult to continuously monitor patients during treatment. Hence, the rapid and cost-effective quantification of intestinal bacteria has become an urgent problem to be solved. Aptamers are of emerging interest because their stability, low immunogenicity and ease of modification are attractive properties for a variety of applications. We report a FluCell-SELEX polyclonal aptamer library specific for R. intestinalis isolated after seven evolution rounds, that can bind and label this organism for fluorescence microscopy and binding assays. Moreover, R. intestinalis can be distinguished from other major intestinal bacteria in complex defined mixtures and in human stool samples. We believe that this preliminary evidence opens new avenues towards aptamer-based electronic biosensors as new powerful and inexpensive diagnostic tools for the relative quantitative monitoring of R. intestinalis in gut microbiomes.
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spelling pubmed-93170772022-07-27 A Polyclonal Aptamer Library for the Specific Binding of the Gut Bacterium Roseburia intestinalis in Mixtures with Other Gut Microbiome Bacteria and Human Stool Samples Xing, Hu Zhang, Yiting Krämer, Markus Kissmann, Ann-Kathrin Amann, Valerie Raber, Heinz Fabian Weil, Tanja Stieger, Kai R. Knippschild, Uwe Henkel, Marius Andersson, Jakob Rosenau, Frank Int J Mol Sci Communication Roseburia intestinalis has received attention as a potential probiotic bacterium. Recent studies have demonstrated that changes in its intestinal abundance can cause various diseases, such as obesity, enteritis and atherosclerosis. Probiotic administration or fecal transplantation alter the structure of the intestinal flora, offering possibilities for the prevention and treatment of these diseases. However, current monitoring methods, such as 16S rRNA sequencing, are complex and costly and require specialized personnel to perform the tests, making it difficult to continuously monitor patients during treatment. Hence, the rapid and cost-effective quantification of intestinal bacteria has become an urgent problem to be solved. Aptamers are of emerging interest because their stability, low immunogenicity and ease of modification are attractive properties for a variety of applications. We report a FluCell-SELEX polyclonal aptamer library specific for R. intestinalis isolated after seven evolution rounds, that can bind and label this organism for fluorescence microscopy and binding assays. Moreover, R. intestinalis can be distinguished from other major intestinal bacteria in complex defined mixtures and in human stool samples. We believe that this preliminary evidence opens new avenues towards aptamer-based electronic biosensors as new powerful and inexpensive diagnostic tools for the relative quantitative monitoring of R. intestinalis in gut microbiomes. MDPI 2022-07-13 /pmc/articles/PMC9317077/ /pubmed/35887092 http://dx.doi.org/10.3390/ijms23147744 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Xing, Hu
Zhang, Yiting
Krämer, Markus
Kissmann, Ann-Kathrin
Amann, Valerie
Raber, Heinz Fabian
Weil, Tanja
Stieger, Kai R.
Knippschild, Uwe
Henkel, Marius
Andersson, Jakob
Rosenau, Frank
A Polyclonal Aptamer Library for the Specific Binding of the Gut Bacterium Roseburia intestinalis in Mixtures with Other Gut Microbiome Bacteria and Human Stool Samples
title A Polyclonal Aptamer Library for the Specific Binding of the Gut Bacterium Roseburia intestinalis in Mixtures with Other Gut Microbiome Bacteria and Human Stool Samples
title_full A Polyclonal Aptamer Library for the Specific Binding of the Gut Bacterium Roseburia intestinalis in Mixtures with Other Gut Microbiome Bacteria and Human Stool Samples
title_fullStr A Polyclonal Aptamer Library for the Specific Binding of the Gut Bacterium Roseburia intestinalis in Mixtures with Other Gut Microbiome Bacteria and Human Stool Samples
title_full_unstemmed A Polyclonal Aptamer Library for the Specific Binding of the Gut Bacterium Roseburia intestinalis in Mixtures with Other Gut Microbiome Bacteria and Human Stool Samples
title_short A Polyclonal Aptamer Library for the Specific Binding of the Gut Bacterium Roseburia intestinalis in Mixtures with Other Gut Microbiome Bacteria and Human Stool Samples
title_sort polyclonal aptamer library for the specific binding of the gut bacterium roseburia intestinalis in mixtures with other gut microbiome bacteria and human stool samples
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9317077/
https://www.ncbi.nlm.nih.gov/pubmed/35887092
http://dx.doi.org/10.3390/ijms23147744
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