纳米压痕
自愈水凝胶
生物相容性
材料科学
伤口愈合
流变学
芦荟
复合材料
肿胀 的
生物医学工程
粘度
高分子化学
外科
传统医学
医学
冶金
作者
Christina Karavasili,Konstantinos Tsongas,Ioannis I. Andreadis,Eleftherios G. Andriotis,Eleni Papachristou,Rigini Papi,Dimitrios Tzetzis,Dimitrios G. Fatouros
标识
DOI:10.1016/j.carbpol.2020.116666
摘要
The present study reports on the comprehensive physico-mechanical evaluation of 3D printable alginate-methylcellulose hydrogels with bioactive components (Manuka honey, aloe vera gel, eucalyptus essential oil) using a combined experimental-numerical approach. The 3D printable carbohydrate inks demonstrated good swelling properties under moist conditions and adequate antimicrobial and antibiofilm efficacy against both Gram positive and negative bacteria. The effect of the bioactive compounds on the viscosity and mechanical properties of the 3D printable hydrogels was assessed with rheological, nanoindentation and shear test measurements. All hydrogel compositions showed good biocompatibility on human dermal fibroblasts, stimulating cell growth as confirmed by an in vitro wound healing assay. Finite element analysis simulation was employed to further advance the calculation accuracy of the nanoindentation tests, concluding that combination of an experimental and a numerical technique may constitute a useful method to characterize the mechanical behavior of composite hydrogel films for use in wound healing applications.
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