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Harnessing X‐Ray Energy‐Dependent Attenuation of Bismuth‐Based Nanoprobes for Accurate Diagnosis of Liver Fibrosis

Timely detection of liver fibrosis by X‐ray computed tomography (CT) can prevent its progression to fatal liver diseases. However, it remains quite challenging because conventional CT can only identify the difference in density instead of X‐ray attenuation characteristics. Spectral CT can generate m...

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Autores principales: Wu, Shiman, Meng, Xianfu, Jiang, Xingwu, Wu, Yelin, Zhai, Shaojie, Wang, Xiaoshuang, Liu, Yanyan, Zhang, Jiawen, Zhao, Xinxin, Zhou, Yan, Bu, Wenbo, Yao, Zhenwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8188217/
https://www.ncbi.nlm.nih.gov/pubmed/34105274
http://dx.doi.org/10.1002/advs.202002548
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author Wu, Shiman
Meng, Xianfu
Jiang, Xingwu
Wu, Yelin
Zhai, Shaojie
Wang, Xiaoshuang
Liu, Yanyan
Zhang, Jiawen
Zhao, Xinxin
Zhou, Yan
Bu, Wenbo
Yao, Zhenwei
author_facet Wu, Shiman
Meng, Xianfu
Jiang, Xingwu
Wu, Yelin
Zhai, Shaojie
Wang, Xiaoshuang
Liu, Yanyan
Zhang, Jiawen
Zhao, Xinxin
Zhou, Yan
Bu, Wenbo
Yao, Zhenwei
author_sort Wu, Shiman
collection PubMed
description Timely detection of liver fibrosis by X‐ray computed tomography (CT) can prevent its progression to fatal liver diseases. However, it remains quite challenging because conventional CT can only identify the difference in density instead of X‐ray attenuation characteristics. Spectral CT can generate monochromatic imaging to specify X‐ray attenuation characteristics of the scanned matter. Herein, an X‐ray energy‐dependent attenuation strategy originated from bismuth (Bi)‐based nanoprobes (BiF(3)@PDA@HA) is proposed for the accurate diagnosis of liver fibrosis. Bi element in BiF(3)@PDA@HA can exhibit characteristic attenuation depending on different levels of X‐ray energy via spectral CT, and that is challenging for conventional CT. In this study, selectively accumulating BiF(3)@PDA@HA nanoprobes in the hepatic fibrosis areas can significantly elevate CT value for 40 Hounsfield units on 70 keV monochromatic images, successfully differentiating from healthy livers and achieving the diagnosis of liver fibrosis. Furthermore, the enhancement produced by the BiF(3)@PDA@HA nanoprobes in vivo increases as the monochromatic energy decreases from 70 to 40 keV, optimizing the conspicuity of the diseased areas. As a proof of concept, the strategically designed nanoprobes with energy‐dependent attenuation characteristics not only expand the scope of CT application, but also hold excellent potential for precise imaging‐based disease diagnosis.
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spelling pubmed-81882172021-06-16 Harnessing X‐Ray Energy‐Dependent Attenuation of Bismuth‐Based Nanoprobes for Accurate Diagnosis of Liver Fibrosis Wu, Shiman Meng, Xianfu Jiang, Xingwu Wu, Yelin Zhai, Shaojie Wang, Xiaoshuang Liu, Yanyan Zhang, Jiawen Zhao, Xinxin Zhou, Yan Bu, Wenbo Yao, Zhenwei Adv Sci (Weinh) Full Papers Timely detection of liver fibrosis by X‐ray computed tomography (CT) can prevent its progression to fatal liver diseases. However, it remains quite challenging because conventional CT can only identify the difference in density instead of X‐ray attenuation characteristics. Spectral CT can generate monochromatic imaging to specify X‐ray attenuation characteristics of the scanned matter. Herein, an X‐ray energy‐dependent attenuation strategy originated from bismuth (Bi)‐based nanoprobes (BiF(3)@PDA@HA) is proposed for the accurate diagnosis of liver fibrosis. Bi element in BiF(3)@PDA@HA can exhibit characteristic attenuation depending on different levels of X‐ray energy via spectral CT, and that is challenging for conventional CT. In this study, selectively accumulating BiF(3)@PDA@HA nanoprobes in the hepatic fibrosis areas can significantly elevate CT value for 40 Hounsfield units on 70 keV monochromatic images, successfully differentiating from healthy livers and achieving the diagnosis of liver fibrosis. Furthermore, the enhancement produced by the BiF(3)@PDA@HA nanoprobes in vivo increases as the monochromatic energy decreases from 70 to 40 keV, optimizing the conspicuity of the diseased areas. As a proof of concept, the strategically designed nanoprobes with energy‐dependent attenuation characteristics not only expand the scope of CT application, but also hold excellent potential for precise imaging‐based disease diagnosis. John Wiley and Sons Inc. 2021-03-16 /pmc/articles/PMC8188217/ /pubmed/34105274 http://dx.doi.org/10.1002/advs.202002548 Text en © 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Wu, Shiman
Meng, Xianfu
Jiang, Xingwu
Wu, Yelin
Zhai, Shaojie
Wang, Xiaoshuang
Liu, Yanyan
Zhang, Jiawen
Zhao, Xinxin
Zhou, Yan
Bu, Wenbo
Yao, Zhenwei
Harnessing X‐Ray Energy‐Dependent Attenuation of Bismuth‐Based Nanoprobes for Accurate Diagnosis of Liver Fibrosis
title Harnessing X‐Ray Energy‐Dependent Attenuation of Bismuth‐Based Nanoprobes for Accurate Diagnosis of Liver Fibrosis
title_full Harnessing X‐Ray Energy‐Dependent Attenuation of Bismuth‐Based Nanoprobes for Accurate Diagnosis of Liver Fibrosis
title_fullStr Harnessing X‐Ray Energy‐Dependent Attenuation of Bismuth‐Based Nanoprobes for Accurate Diagnosis of Liver Fibrosis
title_full_unstemmed Harnessing X‐Ray Energy‐Dependent Attenuation of Bismuth‐Based Nanoprobes for Accurate Diagnosis of Liver Fibrosis
title_short Harnessing X‐Ray Energy‐Dependent Attenuation of Bismuth‐Based Nanoprobes for Accurate Diagnosis of Liver Fibrosis
title_sort harnessing x‐ray energy‐dependent attenuation of bismuth‐based nanoprobes for accurate diagnosis of liver fibrosis
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8188217/
https://www.ncbi.nlm.nih.gov/pubmed/34105274
http://dx.doi.org/10.1002/advs.202002548
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