Bioactive antibacterial bilayer PCL/gelatin nanofibrous scaffold promotes full-thickness wound healing

被引:97
|
作者
Jafari, Arman [1 ]
Amirsadeghi, Armin [1 ]
Hassanajili, Shadi [1 ]
Azarpira, Negar [2 ]
机构
[1] Shiraz Univ, Sch Chem & Petr Engn, Dept Chem Engn, Shiraz 7134851154, Iran
[2] Shiraz Univ Med Sci, Transplant Res Ctr, Shiraz 713451978, Iran
关键词
Polycaprolactone; Gelatin; Wound healing; Drug delivery; Electrospinning; Nanoparticles; MESENCHYMAL STEM-CELLS; IN-VIVO; NANOCOMPOSITE HYDROGELS; OXIDE NANOPARTICLES; COMPOSITE SCAFFOLD; DRESSING MATERIAL; ASTRAGALOSIDE IV; GELATIN HYDROGEL; HUMAN SKIN; MATS;
D O I
10.1016/j.ijpharm.2020.119413
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Treatment of diabetic, chronic, and full-thickness wounds is a challenge as these injuries usually lead to infections that cause delayed and inappropriate healing. Therefore, fabrication of skin scaffolds with prolonged antibacterial properties are of great interest. Due to this demand, bilayered nanofibrous scaffolds were fabricated based on polycaprolactone and gelatin. The top layer of these scaffolds contained amoxicillin as a model drug and the bottom layer was loaded with zinc oxide nanoparticles to accelerate wound healing. Several characterization techniques including FTIR, SEM, swelling, tensile test, in vitro degradation, drug release, antibacterial activity, and MTT assay were used to assess physical, mechanical, and biological properties of produced nanofibers. SEM results demonstrated that bilayered scaffolds have smooth bead-free microstructures while in vitro release test showed that samples have a sustained release for amoxicillin up to 144 h (tested time). Disk diffusion assessment confirmed the potency of scaffolds for hindering bacterial growth while results of cytotoxicity evaluation revealed that scaffolds could effectively accelerate cell proliferation. Finally, in vivo tests on full-thickness rat models revealed that fabricated nanofibers accelerate wound contraction, increase collagen deposition and angiogenesis, and prevent scar formation. Altogether, results showed that fabricated scaffolds are promising candidates for treatment of full-thickness wounds.
引用
收藏
页数:15
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