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Hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models

Highly efficient removal of bilirubin from whole blood directly by hemoperfusion for liver failure therapy remains a challenge in the clinical field due to the low adsorption capacity, poor mechanical strength and low biocompatibility of adsorbents. In this work, a new class of nanocomposite adsorbe...

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Autores principales: Chai, Yamin, Liu, Zhuang, Du, Yunzheng, Wang, Lichun, Lu, Jinyan, Zhang, Qian, Han, Wenyan, Wang, Tingting, Yu, Yameng, Sun, Lisha, Ou, Lailiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8144535/
https://www.ncbi.nlm.nih.gov/pubmed/34095628
http://dx.doi.org/10.1016/j.bioactmat.2021.05.017
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author Chai, Yamin
Liu, Zhuang
Du, Yunzheng
Wang, Lichun
Lu, Jinyan
Zhang, Qian
Han, Wenyan
Wang, Tingting
Yu, Yameng
Sun, Lisha
Ou, Lailiang
author_facet Chai, Yamin
Liu, Zhuang
Du, Yunzheng
Wang, Lichun
Lu, Jinyan
Zhang, Qian
Han, Wenyan
Wang, Tingting
Yu, Yameng
Sun, Lisha
Ou, Lailiang
author_sort Chai, Yamin
collection PubMed
description Highly efficient removal of bilirubin from whole blood directly by hemoperfusion for liver failure therapy remains a challenge in the clinical field due to the low adsorption capacity, poor mechanical strength and low biocompatibility of adsorbents. In this work, a new class of nanocomposite adsorbents was constructed through an inorganic-organic co-crosslinked nanocomposite network between vinyltriethoxysilane (VTES)-functionalized hydroxyapatite nanoparticles (V-Hap) and non-ionic styrene-divinylbenzene (PS-DVB) resins (PS-DVB/V-Hap) using suspension polymerization. Notably, our adsorbent demonstrated substantially improved mechanical performance compared to the pure polymer, with the hardness and modulus increasing by nearly 3 and 2.5 times, respectively. Moreover, due to the development of a mesoporous structure, the prepared PS-DVB/V-Hap3 exhibited an ideal adsorption capacity of 40.27 mg g(−1). More importantly, the obtained adsorbent beads showed outstanding blood compatibility and biocompatibility. Furthermore, in vivo extracorporeal hemoperfusion verified the efficacy and biosafety of the adsorbent for directly removing bilirubin from whole blood in pig models, and this material could potentially prevent liver damage and improve clinical outcomes. Taken together, the results suggest that PS-DVB/V-Hap3 beads can be used in commercial adsorption columns to threat hyperbilirubinemia patients through hemoperfusion, thus replacing the existing techniques where plasma separation is initially required.
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spelling pubmed-81445352021-06-04 Hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models Chai, Yamin Liu, Zhuang Du, Yunzheng Wang, Lichun Lu, Jinyan Zhang, Qian Han, Wenyan Wang, Tingting Yu, Yameng Sun, Lisha Ou, Lailiang Bioact Mater Article Highly efficient removal of bilirubin from whole blood directly by hemoperfusion for liver failure therapy remains a challenge in the clinical field due to the low adsorption capacity, poor mechanical strength and low biocompatibility of adsorbents. In this work, a new class of nanocomposite adsorbents was constructed through an inorganic-organic co-crosslinked nanocomposite network between vinyltriethoxysilane (VTES)-functionalized hydroxyapatite nanoparticles (V-Hap) and non-ionic styrene-divinylbenzene (PS-DVB) resins (PS-DVB/V-Hap) using suspension polymerization. Notably, our adsorbent demonstrated substantially improved mechanical performance compared to the pure polymer, with the hardness and modulus increasing by nearly 3 and 2.5 times, respectively. Moreover, due to the development of a mesoporous structure, the prepared PS-DVB/V-Hap3 exhibited an ideal adsorption capacity of 40.27 mg g(−1). More importantly, the obtained adsorbent beads showed outstanding blood compatibility and biocompatibility. Furthermore, in vivo extracorporeal hemoperfusion verified the efficacy and biosafety of the adsorbent for directly removing bilirubin from whole blood in pig models, and this material could potentially prevent liver damage and improve clinical outcomes. Taken together, the results suggest that PS-DVB/V-Hap3 beads can be used in commercial adsorption columns to threat hyperbilirubinemia patients through hemoperfusion, thus replacing the existing techniques where plasma separation is initially required. KeAi Publishing 2021-05-24 /pmc/articles/PMC8144535/ /pubmed/34095628 http://dx.doi.org/10.1016/j.bioactmat.2021.05.017 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Chai, Yamin
Liu, Zhuang
Du, Yunzheng
Wang, Lichun
Lu, Jinyan
Zhang, Qian
Han, Wenyan
Wang, Tingting
Yu, Yameng
Sun, Lisha
Ou, Lailiang
Hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models
title Hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models
title_full Hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models
title_fullStr Hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models
title_full_unstemmed Hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models
title_short Hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models
title_sort hydroxyapatite reinforced inorganic-organic hybrid nanocomposite as high-performance adsorbents for bilirubin removal in vitro and in pig models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8144535/
https://www.ncbi.nlm.nih.gov/pubmed/34095628
http://dx.doi.org/10.1016/j.bioactmat.2021.05.017
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