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A novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging

Food-borne bacteria have received increasing attention due to their great impact on human health. Bioimaging makes it possible to monitor bacteria inside the living body in real time and in situ. Nano-luciferase (NLuc) as a new member of the luciferase family exhibits superior properties than the co...

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Autores principales: Zhao, Ning, Liu, Jing-Min, Liu, Shuang, Ji, Xue-Meng, Lv, Huan, Hu, Yao-Zhong, Wang, Zhi-Hao, Lv, Shi-Wen, Li, Chun-Yang, Wang, Shuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9051406/
https://www.ncbi.nlm.nih.gov/pubmed/35492135
http://dx.doi.org/10.1039/d0ra01283a
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author Zhao, Ning
Liu, Jing-Min
Liu, Shuang
Ji, Xue-Meng
Lv, Huan
Hu, Yao-Zhong
Wang, Zhi-Hao
Lv, Shi-Wen
Li, Chun-Yang
Wang, Shuo
author_facet Zhao, Ning
Liu, Jing-Min
Liu, Shuang
Ji, Xue-Meng
Lv, Huan
Hu, Yao-Zhong
Wang, Zhi-Hao
Lv, Shi-Wen
Li, Chun-Yang
Wang, Shuo
author_sort Zhao, Ning
collection PubMed
description Food-borne bacteria have received increasing attention due to their great impact on human health. Bioimaging makes it possible to monitor bacteria inside the living body in real time and in situ. Nano-luciferase (NLuc) as a new member of the luciferase family exhibits superior properties than the commonly used luciferases, including small size, high stability and improved luminescence. Herein, NLuc, CBRLuc and FLuc were well expressed in varied food-borne bacteria. Results showed that the signal intensity of E. coli-NLuc was about 41 times higher than E. coli-CBRLuc, L. plantarum-NLuc was nearly 227 times that of L. plantarum-FLuc in vitro. Moreover, NLuc was applied to trace L. plantarum and E. coli in vivo through the whole body and separated digestive tract imaging, as well as the feces bacterium counting and probing. The persistence of bioluminescent strains was predominantly localized in colon and cecum of mice after oral administration. The NLuc system showed its incomparable superiority, especially in the application of intestinal imaging and the universality for food-borne bacteria. We demonstrated that the NLuc system was a brilliant alternative for specific application of food-borne bacteria in vivo, aiming to collect more accurate and real-time information of food-borne bacteria from the living body for further investigation of their damage mechanism and nutrition effect.
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spelling pubmed-90514062022-04-29 A novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging Zhao, Ning Liu, Jing-Min Liu, Shuang Ji, Xue-Meng Lv, Huan Hu, Yao-Zhong Wang, Zhi-Hao Lv, Shi-Wen Li, Chun-Yang Wang, Shuo RSC Adv Chemistry Food-borne bacteria have received increasing attention due to their great impact on human health. Bioimaging makes it possible to monitor bacteria inside the living body in real time and in situ. Nano-luciferase (NLuc) as a new member of the luciferase family exhibits superior properties than the commonly used luciferases, including small size, high stability and improved luminescence. Herein, NLuc, CBRLuc and FLuc were well expressed in varied food-borne bacteria. Results showed that the signal intensity of E. coli-NLuc was about 41 times higher than E. coli-CBRLuc, L. plantarum-NLuc was nearly 227 times that of L. plantarum-FLuc in vitro. Moreover, NLuc was applied to trace L. plantarum and E. coli in vivo through the whole body and separated digestive tract imaging, as well as the feces bacterium counting and probing. The persistence of bioluminescent strains was predominantly localized in colon and cecum of mice after oral administration. The NLuc system showed its incomparable superiority, especially in the application of intestinal imaging and the universality for food-borne bacteria. We demonstrated that the NLuc system was a brilliant alternative for specific application of food-borne bacteria in vivo, aiming to collect more accurate and real-time information of food-borne bacteria from the living body for further investigation of their damage mechanism and nutrition effect. The Royal Society of Chemistry 2020-03-31 /pmc/articles/PMC9051406/ /pubmed/35492135 http://dx.doi.org/10.1039/d0ra01283a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhao, Ning
Liu, Jing-Min
Liu, Shuang
Ji, Xue-Meng
Lv, Huan
Hu, Yao-Zhong
Wang, Zhi-Hao
Lv, Shi-Wen
Li, Chun-Yang
Wang, Shuo
A novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging
title A novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging
title_full A novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging
title_fullStr A novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging
title_full_unstemmed A novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging
title_short A novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging
title_sort novel universal nano-luciferase-involved reporter system for long-term probing food-borne probiotics and pathogenic bacteria in mice by in situ bioluminescence imaging
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9051406/
https://www.ncbi.nlm.nih.gov/pubmed/35492135
http://dx.doi.org/10.1039/d0ra01283a
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