Injectable Sealants Based on Silk Fibroin for Fast Hemostasis and Wound Repairing.

hemostasis injectable sealants inter-sheet interactions peptide assembly silk fibroin hydrogels

Journal

Advanced healthcare materials
ISSN: 2192-2659
Titre abrégé: Adv Healthc Mater
Pays: Germany
ID NLM: 101581613

Informations de publication

Date de publication:
11 2023
Historique:
revised: 17 07 2023
received: 25 04 2023
medline: 13 11 2023
pubmed: 2 8 2023
entrez: 2 8 2023
Statut: ppublish

Résumé

Uncontrollable blood loss poses fatality risks and most recently developed sealants still share common limitations on controversial components, degradability, mechanical strength or gelation time. Herein, series of injectable sealants based on silk fibroin (SF) is developed. Random coil/β-sheet conformation transition in SF is achieved by forming dendritic intermediates under induction of the structurally compatible and chemically complementary assembly peptide (Ac-KAEA-KAEA-KAEA-KAEA-NH

Identifiants

pubmed: 37531236
doi: 10.1002/adhm.202301310
doi:

Substances chimiques

Fibroins 9007-76-5
Hydrogels 0
Peptides 0
Silk 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

e2301310

Informations de copyright

© 2023 Wiley-VCH GmbH.

Références

a) M. Kazemzadeh-Narbat, N. Annabi, A. Khademhosseini, Mater. Today 2015, 18, 176;
b) M. D. Konieczynska, J. C. Villa-Camacho, C. Ghobril, M. Perez-Viloria, K. M. Tevis, W. A. Blessing, A. Nazarian, E. K. Rodriguez, M. W. Grinstaff, Angew.Chem. Int. Ed. 2016, 55, 9984.
a) N. Annabi, A. Tamayol, S. R. Shin, A. M. Ghaemmaghami, N. A. Peppas, A. Khademhosseini, Nano Today 2014, 9, 574;
b) D. Ku, D. H. Koo, D. S. Bae, J. Surg. Res. 2020, 256, 413;
c) A. Meddahi-Pellé , A. Legrand, A. Marcellan , L. Louedec, D. Letourneur, L. Leibler, Angew.Chem. Int. Ed. 2014, 53, 6369.
D. M. Albala, Cardiovasc. Surg. 2003, 11, 5.
Y. Hong, F. Zhou, Y. Hua, X. Zhang, C. Ni, D. Pan, Y. Zhang, D. Jiang, L. Yang, Q. Lin, Y. Zou, D. Yu, D. E. Arnot, X. Zou, L. Zhu, S. Zhang, H. Ouyang, Nat. Commun. 2019, 10, 2060.
N. Annabi, K. Yue, A. Tamayol, A. Khademhosseini, Eur. J. Pharm. Biopharm. 2015, 95, 27.
G. H. Altman, F. Diaz, C. Jakuba, T. Calabro, R. L. Horan, J. Chen, H. Lu, J. Richmond, D. L. Kaplan, Biomaterials 2003, 24, 401.
a) O. J. Lee, J.-H. Kim, B. M. Moon, J. R. Chao, J. Yoon, H. W. Ju, J. M. Lee, H. J. Park, D. W. Kim, S. J. Kim, H. S. Park, C. H. Park, J. Tissue Eng. Regen. M. 2016, 13, 218;
b) W. Zhang, L. Chen, J. Chen, L. Wang, X. Gui, J. Ran, G. Xu, H. Zhao, M. Zeng, J. Ji, L. Qian, J. Zhou, H. Ouyang, X. Zou, Adv. Healthcare Mater. 2017, 6, 1700121.
a) M. A. Serban, B. Panilaitis, D. L. Kaplan, J. Biomed. Mater. Res. A. 2011, 98A, 567;
b) K. A. Burke, D. C. Roberts, D. L. Kaplan, Biomacromolecules 2016, 17, 237;
c) H. Zheng, B. Zuo, J. Mater. Chem. B. 2021, 9, 1238;
d) B. Moon, H. W. Ju, H. Park, J. M. Lee, O. J. Lee, C. Park, Tissue Eng. Regen. Med. 2013, 10, 41;
e) Y. J. Yang, Y. Kwon, B.-H. Choi, D. Jung, J. H. Seo, K. H. Lee, H. J. Cha, Biomacromolecules 2014, 15, 1390;
f) Y. B. Seo, O. J. Lee, M. T. Sultan, J. M. Lee, Y. R. Park, Y. K. Yeon, J. S. Lee, Y. J. Lee, S. H. Kim, C. H. Park, J. Biomater. Appl. 2017, 32, 484;
g) Y.-P. Zou, H.-F. Liang, B. Wang, Q.-C. Zhang, D.-H. Su, S.-Y. Lu, Q.-Y. Zhang, T. Wu, L. Xiao, Y. Xiao, J. Dong, L.-B. Jiang, X.-L. Li, Adv. Funct. Mater. 2023, 2302442;
h) S. Lim, Y. S. Choi, D. G. Kang, Y. H. Song, H. J. Cha, Biomaterials 2010, 31, 3715.
a) L. Wang, Z. Chen, Y. Yan, C. He, X. Li, Chem. Eng. J. 2021, 418, 129308;
b) B. Cheng, Y. Yan, J. Qi, L. Deng, Z.-W. Shao, K.-Q. Zhang, B. Li, Z. Sun, X. Li, ACS Appl. Mater. Interfaces 2018, 10, 12474;
c) Y. Yan, B. Cheng, K. Chen, W. Cui, J. Qi, X. Li, L. Deng, Adv. Healthcare Mater. 2019, 8, 1801043;
d) A. Reizabal, C. M. Costa, L. Pérez-Álvarez, J. L. Vilas-Vilela, S. Lanceros-Méndez, Adv. Funct. Mater. 2023, 33, 2210764.
a) H. D. Glossop, G. H. De Zoysa, Y. Hemar, P. Cardoso, K. Wang, J. Lu, C. Valéry, V. Sarojini, Biomacromolecules 2019, 20, 2515;
b) I. Coin, M. Beyermann, M. Bienert, Nat. Protoc. 2007, 2, 3247.
F. Gelain, Z. Luo, S. Zhang, Chem. Rev. 2020, 120, 13434.
A. R. Cormier, X. Pang, M. I. Zimmerman, H.-X. Zhou, A. K. Paravastu, ACS Nano 2013, 7, 7562.
a) X.-G. Li, L.-Y. Wu, M.-R. Huang, H.-L. Shao, X.-C. Hu, Biopolymers 2008, 89, 497;
b) X. Wu, J. Hou, M. Li, J. Wang, D. L. Kaplan, S. Lu, Acta Biomater. 2012, 8, 2185.
S. Bai, X. Zhang, Q. Lu, W. Sheng, L. Liu, B. Dong, D. L. Kaplan, H. Zhu, Biomacromolecules 2014, 15, 3044.
E. Kamalha, Y. S. Zheng, Y. C. Zeng, M. N. Fredrick, Adv. Mater. Res. 2013, 677, 211.
a) Y. Zhou, W. Chen, H. Itoh, K. Naka, Q. Ni, H. Yamane, Y. Chujo, Chem. Commun. 2001, 2518;
b) P. Zhou, L. Deng, Y. Wang, J. R. Lu, H. Xu, J. Colloid. Interf. Sci. 2016, 464, 219.
C. M. Stoscheck, Methods Enzymol. 1990, 182, 50.
X. Liu, M. Hou, X. Luo, M. Zheng, X. Wang, H. Zhang, J. Guo, Biomacromolecules 2021, 22, 319.
a) Y.-H. Ting, H.-J. Chen, W.-J. Cheng, J.-C. Horng, Biomacromolecules 2018, 19, 2629;
b) R. Oftadeh, M. Perez-Viloria, J. C. Villa-Camacho, A. Vaziri, A. Nazarian, J. Biomech. Eng. 2015, 137, 1365.
S. Rammensee, D. Huemmerich, K. D. Hermanson, T. Scheibel, A. R. Bausch, Appl. Phys. A. 2006, 82, 261.
E. Song, Z. Xie, W. Bai, H. Luan, B. Ji, X. Ning, Y. Xia, J. M. Baek, Y. Lee, R. Avila, H.-Y. Chen, J.-H. Kim, S. Madhvapathy, K. Yao, D. Li, J. Zhou, M. Han, S. M. Won, X. Zhang, D. J. Myers, Y. Mei, X. Guo, S. Xu, J.-K. Chang, X. Yu, Y. Huang, J. A. Rogers, Nat. Biomed. Eng. 2021, 5, 759.
J. Li, A. D. Celiz, J. Yang, Q. Yang, I. Wamala, W. Whyte, B. R. Seo, N. V. Vasilyev, J. J. Vlassak, Z. Suo, D. J. Mooney, Science 2017, 357, 378.
B. R. M. Perrin, M. Braccini, C. M. Bidan, C. Derail, E. Papon, Y. Leterrier, Y. Barrandon, Int. J. Adhes. Adhes. 2016, 70, 81.
Y. Li, S. Wang, R. Huang, Z. Huang, B. Hu, W. Zheng, G. Yang, X. Jiang, Biomacromolecules 2015, 16, 780.
a) L. Ge, Y. Xu, X. Li, L. Yuan, H. Tan, D. Li, C. Mu, ACS Sus. Chem. Eng. 2018, 6, 9153;
b) S. Majumdar, Q. Guo, M. Garza-Madrid, X. Calderon-Colon, D. Duan, P. Carbajal, O. Schein, M. Trexler, J. Elisseeff, ACS Sus. Chem. Eng. 2016, 104, 300.
a) X. Zhao, B. Guo, H. Wu, Y. Liang, P. X. Ma, Nat. Commun. 2018, 9, 2784;
b) F. I. Broekema, W. van Oeveren, J. Zuidema, S. H. Visscher, R. R. M. Bos, J. Mater. Sci-Mater M. 2011, 22, 1081.
J. O. Brant, J. H. Yoon, T. Polvadore, W. B. Barbazuk, M. Maden, Wound Repair Regen. 2016, 24, 75.
a) S. Enoch, D. J. Leaper, Surgery 2008, 26, 31;
b) P. Bao, A. Kodra, M. Tomic-Canic, M. S. Golinko, H. P. Ehrlich, H. Brem, J. Surg. Res. 2009, 153, 347.
Z. Shao, T. Yin, J. Jiang, Y. He, T. Xiang, S. Zhou, Bioact. Mater. 2023, 20, 561.
R. Yu, Y. Yang, J. He, M. Li, B. Guo, Chem. Eng. J. 2021, 417, 128278.
G. Sun, Y.-I. Shen, J. W. Harmon, Adv. Healthcare Mater. 2018, 7, 1800016.
Y. Song, C. Zhang, J. Zhang, N. Sun, K. Huang, H. Li, Z. Wang, K. Huang, L. Wang, Acta Biomater. 2016, 41, 210.
J. Brown, C.-L. Lu, J. Coburn, D. L. Kaplan, Acta Biomater. 2015, 11, 212.
Y. Kambe, T. Yamaoka, Acta Biomater. 2021, 130, 199.
a) J. J. Rice, M. M. Martino, L. De Laporte, F. Tortelli, P. S. Briquez, J. A. Hubbell, Adv. Healthcare Mater. 2013, 2, 57;
b) A. N. Moore, T. L. Lopez Silva, N. C. Carrejo, C. A. Origel Marmolejo, I. C. Li, J. D. Hartgerink, Biomaterials 2018, 161, 154.
H. Li, X. Gong, L. Zhang, Z. Zhang, F. Luo, Q. Zhou, J. Chen, J. Wan, Phytomedicine 2009, 16, 538.
Y.-H. Lee, J.-J. Chang, M.-C. Yang, C.-T. Chien, W.-F. Lai, Carbohyd. Polym. 2012, 88, 809.

Auteurs

Peng Zhao (P)

State Key Laboratory of Metal Matrix Composites, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, P. R. China.
School of Physical Science and Technology, Shanghai Tech University, Shanghai, 201210, P. R. China.

Peilang Yang (P)

Department of Burn, Ruijin Hospital Affliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200025, P. R. China.

Wei Zhou (W)

School of Physical Science and Technology, Shanghai Tech University, Shanghai, 201210, P. R. China.

Haoyang Liu (H)

Shanghai World Foreign Language Academy, 400 Baihua Street, Shanghai, 200233, P. R. China.

Xin Jin (X)

State Key Laboratory of Metal Matrix Composites, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, P. R. China.

Xinyuan Zhu (X)

State Key Laboratory of Metal Matrix Composites, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, P. R. China.

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Classifications MeSH