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Alkaline activation of endogenous latent TGFβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration

Utilization of the body's regenerative potential for tissue repair is known as in situ tissue regeneration. However, the use of exogenous growth factors requires delicate control of the dose and delivery strategies and may be accompanied by safety, efficacy and cost concerns. In this study, we...

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Autores principales: Wang, Sainan, Niu, Yuting, Jia, Peipei, Liao, Zheting, Guo, Weimin, Chaves, Rodrigo Cotrim, Tran-Ba, Khanh-Hoa, He, Ling, Bai, Hanying, Sia, Sam, Kaufman, Laura J., Wang, Xiaoyan, Zhou, Yongsheng, Dong, Yanmei, Mao, Jeremy J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8935088/
https://www.ncbi.nlm.nih.gov/pubmed/35356816
http://dx.doi.org/10.1016/j.bioactmat.2021.12.015
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author Wang, Sainan
Niu, Yuting
Jia, Peipei
Liao, Zheting
Guo, Weimin
Chaves, Rodrigo Cotrim
Tran-Ba, Khanh-Hoa
He, Ling
Bai, Hanying
Sia, Sam
Kaufman, Laura J.
Wang, Xiaoyan
Zhou, Yongsheng
Dong, Yanmei
Mao, Jeremy J.
author_facet Wang, Sainan
Niu, Yuting
Jia, Peipei
Liao, Zheting
Guo, Weimin
Chaves, Rodrigo Cotrim
Tran-Ba, Khanh-Hoa
He, Ling
Bai, Hanying
Sia, Sam
Kaufman, Laura J.
Wang, Xiaoyan
Zhou, Yongsheng
Dong, Yanmei
Mao, Jeremy J.
author_sort Wang, Sainan
collection PubMed
description Utilization of the body's regenerative potential for tissue repair is known as in situ tissue regeneration. However, the use of exogenous growth factors requires delicate control of the dose and delivery strategies and may be accompanied by safety, efficacy and cost concerns. In this study, we developed, for the first time, a biomaterial-based strategy to activate endogenous transforming growth factor beta 1 (TGFβ1) under alkaline conditions for effective in situ tissue regeneration. We demonstrated that alkaline-activated TGFβ1 from blood serum, bone marrow fluids and soaking solutions of meniscus and tooth dentin was capable of increasing cell recruitment and early differentiation, implying its broad practicability. Furthermore, we engineered an injectable hydrogel (MS-Gel) consisting of gelatin microspheres for loading strong alkaline substances and a modified gelatin matrix for hydrogel click crosslinking. In vitro models showed that alkaline MS-Gel controllably and sustainably activated endogenous TGFβ1 from tooth dentin for robust bone marrow stem cell migration. More importantly, infusion of in vivo porcine prepared root canals with alkaline MS-Gel promoted significant pulp-dentin regeneration with neurovascular stroma and mineralized tissue by endogenous proliferative cells. Therefore, this work offers a new bench-to-beside translation strategy using biomaterial-activated endogenous biomolecules to achieve in situ tissue regeneration without the need for cell or protein delivery.
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spelling pubmed-89350882022-03-29 Alkaline activation of endogenous latent TGFβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration Wang, Sainan Niu, Yuting Jia, Peipei Liao, Zheting Guo, Weimin Chaves, Rodrigo Cotrim Tran-Ba, Khanh-Hoa He, Ling Bai, Hanying Sia, Sam Kaufman, Laura J. Wang, Xiaoyan Zhou, Yongsheng Dong, Yanmei Mao, Jeremy J. Bioact Mater Article Utilization of the body's regenerative potential for tissue repair is known as in situ tissue regeneration. However, the use of exogenous growth factors requires delicate control of the dose and delivery strategies and may be accompanied by safety, efficacy and cost concerns. In this study, we developed, for the first time, a biomaterial-based strategy to activate endogenous transforming growth factor beta 1 (TGFβ1) under alkaline conditions for effective in situ tissue regeneration. We demonstrated that alkaline-activated TGFβ1 from blood serum, bone marrow fluids and soaking solutions of meniscus and tooth dentin was capable of increasing cell recruitment and early differentiation, implying its broad practicability. Furthermore, we engineered an injectable hydrogel (MS-Gel) consisting of gelatin microspheres for loading strong alkaline substances and a modified gelatin matrix for hydrogel click crosslinking. In vitro models showed that alkaline MS-Gel controllably and sustainably activated endogenous TGFβ1 from tooth dentin for robust bone marrow stem cell migration. More importantly, infusion of in vivo porcine prepared root canals with alkaline MS-Gel promoted significant pulp-dentin regeneration with neurovascular stroma and mineralized tissue by endogenous proliferative cells. Therefore, this work offers a new bench-to-beside translation strategy using biomaterial-activated endogenous biomolecules to achieve in situ tissue regeneration without the need for cell or protein delivery. KeAi Publishing 2021-12-23 /pmc/articles/PMC8935088/ /pubmed/35356816 http://dx.doi.org/10.1016/j.bioactmat.2021.12.015 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
Wang, Sainan
Niu, Yuting
Jia, Peipei
Liao, Zheting
Guo, Weimin
Chaves, Rodrigo Cotrim
Tran-Ba, Khanh-Hoa
He, Ling
Bai, Hanying
Sia, Sam
Kaufman, Laura J.
Wang, Xiaoyan
Zhou, Yongsheng
Dong, Yanmei
Mao, Jeremy J.
Alkaline activation of endogenous latent TGFβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration
title Alkaline activation of endogenous latent TGFβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration
title_full Alkaline activation of endogenous latent TGFβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration
title_fullStr Alkaline activation of endogenous latent TGFβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration
title_full_unstemmed Alkaline activation of endogenous latent TGFβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration
title_short Alkaline activation of endogenous latent TGFβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration
title_sort alkaline activation of endogenous latent tgfβ1 by an injectable hydrogel directs cell homing for in situ complex tissue regeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8935088/
https://www.ncbi.nlm.nih.gov/pubmed/35356816
http://dx.doi.org/10.1016/j.bioactmat.2021.12.015
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