Hybrid Bionanocomposite Containing Magnesium Hydroxide Nanoparticles Embedded in a Carboxymethyl Cellulose Hydrogel Plus Silk Fibroin as a Scaffold for Wound Dressing Applications

被引:95
作者
Eivazzadeh-Keihan, Reza [1 ]
Khalili, Farzane [1 ]
Khosropour, Nastaran [1 ]
Aliabadi, Hooman Aghamirza Moghim [2 ]
Radinekiyan, Fateme [1 ]
Sukhtezari, Sima [1 ]
Maleki, Ali [1 ]
Madanchi, Hamid [8 ,9 ]
Hamblin, Michael R. [3 ,4 ,5 ]
Mahdavi, Mohammad [6 ]
Haramshahi, Seyed Mohammad Amin [7 ]
Shalan, Ahmed Esmail [10 ,11 ]
Lanceros-Mendez, Senentxu [10 ,12 ]
机构
[1] Iran Univ Sci & Technol, Dept Chem, Catalysts & Organ Synth Res Lab, Tehran 1684613114, Iran
[2] Pasteur Inst Iran, Biotechnol Res Ctr, Dept Med Biotechnol, Prot Chem Lab, Tehran 1316943551, Iran
[3] Massachusetts Gen Hosp, Wellman Ctr Photomed, Boston, MA 02114 USA
[4] Harvard Med Sch, Dept Dermatol, Boston, MA 02115 USA
[5] Harvard MIT Div Hlth Sci & Technol, Cambridge, MA 02139 USA
[6] Univ Tehran Med Sci, Endocrinol & Metab Res Ctr, Endocrinol & Metab Clin Sci Inst, Tehran 1496913345, Iran
[7] Iran Univ Med Sci, Fac Adv Technol Med, Dept Tissue Engn & Regenerat Med, Tehran 1449614535, Iran
[8] Semnan Univ Med Sci, Dept Biotechnol, Sch Med, Semnan 3514799442, Iran
[9] Pasteur Inst Iran, Biotechnol Res Ctr, Dept Med Biotechnol, Drug Design & Bioinformat Unit, Tehran 1316943551, Iran
[10] Basque Ctr Mat Applicat & Nanostruct, BCMat, Leioa 48940, Spain
[11] Cent Met Res & Dev Inst CMRDI, Cairo 11421, Egypt
[12] Basque Fdn Sci, IKERBASQUE, Bilbao 48009, Spain
关键词
nanobiocomposite; magnesium hydroxide; nanoparticles; silk fibroin; scaffold; hydrogel; MECHANICAL-PROPERTIES; NANOCOMPOSITE FILMS; FLAME-RETARDANT; NANOFIBERS; GELATIN; ANTIBACTERIAL; DELIVERY; FABRICATION; DESIGN;
D O I
10.1021/acsami.1c07285
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Based on the promising biomedical developments in wound healing strategies, herein, a new nanobiocomposite scaffold was designed and presented by incorporation of carboxymethyl cellulose hydrogels prepared using epichlorohydrin as a cross-linking agent (CMC hydrogel), a natural silk fibroin (SF) protein, and magnesium hydroxide nanoparticles (Mg(OH)(2) NPs). Biological evaluation of the CMC hydrogel/SF/Mg(OH)(2) nanobiocomposite scaffold was conducted via in vitro cell viability assays and in vivo assays, red blood cell hemolysis, and antibiofilm assays. Considering the cell viability percentage of Hu02 cells (84.5%) in the presence of the prepared nanobiocomposite after 7 days, it was indicated that this new nanoscaffold was biocompatible. The signs of excellent hemocompatibility and the high antibacterial activity were observed due to the low-point hemolytic effect (8.3%) and high-level potential in constraining the P. aeruginosa biofilm formation with a low OD value (0.13). Moreover, in vivo wound healing assay results indicated that the wound healing method was faster in mice treated with the prepared nanobiocomposite scaffold (82.29%) than the control group (75.63%) in 12 days. Apart from the structural characterization of the CMC hydrogel/SF/Mg(OH)(2) nanobiocomposite through FTIR, EDX, FESEM, and TG analyses, compressive mechanical tests, contact angle, porosity, and swelling ratio studies indicated that the combination of the CMC hydrogel structure with SF protein and Mg(OH)(2) NPs could significantly impact Young's modulus (from 11.34 to 10.14 MPa), tensile strength (from 299.35 to 250.78 MPa), elongation at break (12.52 to 12.84%), hydrophilicity, and water uptake capacity (92.5%).
引用
收藏
页码:33840 / 33849
页数:10
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