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Application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering

Bioluminescent imaging (BLI) has emerged as a popular in vivo tracking modality in bone regeneration studies stemming from its clear advantages: non-invasive, real-time, and inexpensive. We recently adopted bioluminescence resonance energy transfer (BRET) principle to improve BLI cell tracking and g...

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Autores principales: Wang, Lufei, Lee, Dong Joon, Han, Han, Zhao, Lixing, Tsukamoto, Hiroshi, Kim, Yong-IL, Musicant, Adele M, Parag-Sharma, Kshitij, Hu, Xiangxiang, Tseng, Henry C, Chi, Jen-Tsan, Wang, Zhengyan, Amelio, Antonio L, Ko, Ching-Chang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7894599/
https://www.ncbi.nlm.nih.gov/pubmed/33643604
http://dx.doi.org/10.1177/2041731421995465
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author Wang, Lufei
Lee, Dong Joon
Han, Han
Zhao, Lixing
Tsukamoto, Hiroshi
Kim, Yong-IL
Musicant, Adele M
Parag-Sharma, Kshitij
Hu, Xiangxiang
Tseng, Henry C
Chi, Jen-Tsan
Wang, Zhengyan
Amelio, Antonio L
Ko, Ching-Chang
author_facet Wang, Lufei
Lee, Dong Joon
Han, Han
Zhao, Lixing
Tsukamoto, Hiroshi
Kim, Yong-IL
Musicant, Adele M
Parag-Sharma, Kshitij
Hu, Xiangxiang
Tseng, Henry C
Chi, Jen-Tsan
Wang, Zhengyan
Amelio, Antonio L
Ko, Ching-Chang
author_sort Wang, Lufei
collection PubMed
description Bioluminescent imaging (BLI) has emerged as a popular in vivo tracking modality in bone regeneration studies stemming from its clear advantages: non-invasive, real-time, and inexpensive. We recently adopted bioluminescence resonance energy transfer (BRET) principle to improve BLI cell tracking and generated the brightest bioluminescent signal known to date, which thus enables more sensitive real-time cell tracking at deep tissue level. In the present study, we brought BRET-based cell tracking strategy into the field of bone tissue engineering for the first time. We labeled rat mesenchymal stem cells (rMSCs) with our in-house BRET-based GpNLuc reporter and evaluated the cell tracking efficacy both in vitro and in vivo. In scaffold-free spheroid 3D culture system, using BRET-based GpNLuc labeling resulted in significantly better correlation to cell numbers than a fluorescence based approach. In scaffold-based 3D culture system, GpNLuc-rMSCs displayed robust bioluminescence signals with minimal background noise. Furthermore, a tight correlation between BLI signal and cell number highlighted the robust reliability of using BRET-based BLI. In calvarial critical sized defect model, robust signal and the consistency in cell survival evaluation collectively supported BRET-based GpNLuc labeling as a reliable approach for non-invasively tracking MSC. In summary, BRET-based GpNLuc labeling is a robust, reliable, and inexpensive real-time cell tracking method, which offers a promising direction for the technological innovation of BLI and even non-invasive tracking systems, in the field of bone tissue engineering.
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spelling pubmed-78945992021-02-26 Application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering Wang, Lufei Lee, Dong Joon Han, Han Zhao, Lixing Tsukamoto, Hiroshi Kim, Yong-IL Musicant, Adele M Parag-Sharma, Kshitij Hu, Xiangxiang Tseng, Henry C Chi, Jen-Tsan Wang, Zhengyan Amelio, Antonio L Ko, Ching-Chang J Tissue Eng Original Article Bioluminescent imaging (BLI) has emerged as a popular in vivo tracking modality in bone regeneration studies stemming from its clear advantages: non-invasive, real-time, and inexpensive. We recently adopted bioluminescence resonance energy transfer (BRET) principle to improve BLI cell tracking and generated the brightest bioluminescent signal known to date, which thus enables more sensitive real-time cell tracking at deep tissue level. In the present study, we brought BRET-based cell tracking strategy into the field of bone tissue engineering for the first time. We labeled rat mesenchymal stem cells (rMSCs) with our in-house BRET-based GpNLuc reporter and evaluated the cell tracking efficacy both in vitro and in vivo. In scaffold-free spheroid 3D culture system, using BRET-based GpNLuc labeling resulted in significantly better correlation to cell numbers than a fluorescence based approach. In scaffold-based 3D culture system, GpNLuc-rMSCs displayed robust bioluminescence signals with minimal background noise. Furthermore, a tight correlation between BLI signal and cell number highlighted the robust reliability of using BRET-based BLI. In calvarial critical sized defect model, robust signal and the consistency in cell survival evaluation collectively supported BRET-based GpNLuc labeling as a reliable approach for non-invasively tracking MSC. In summary, BRET-based GpNLuc labeling is a robust, reliable, and inexpensive real-time cell tracking method, which offers a promising direction for the technological innovation of BLI and even non-invasive tracking systems, in the field of bone tissue engineering. SAGE Publications 2021-02-16 /pmc/articles/PMC7894599/ /pubmed/33643604 http://dx.doi.org/10.1177/2041731421995465 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the Creative Commons Attribution 4.0 License (https://creativecommons.org/licenses/by/4.0/) which permits any use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access page (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Original Article
Wang, Lufei
Lee, Dong Joon
Han, Han
Zhao, Lixing
Tsukamoto, Hiroshi
Kim, Yong-IL
Musicant, Adele M
Parag-Sharma, Kshitij
Hu, Xiangxiang
Tseng, Henry C
Chi, Jen-Tsan
Wang, Zhengyan
Amelio, Antonio L
Ko, Ching-Chang
Application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering
title Application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering
title_full Application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering
title_fullStr Application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering
title_full_unstemmed Application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering
title_short Application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering
title_sort application of bioluminescence resonance energy transfer-based cell tracking approach in bone tissue engineering
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7894599/
https://www.ncbi.nlm.nih.gov/pubmed/33643604
http://dx.doi.org/10.1177/2041731421995465
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