Amorim Lúcia F A, Fangueiro Raul, Gouveia Isabel C
FibEnTech Research Unit, Faculty of Engineering, University of Beira Interior, 6200-001 Covilhã, Portugal.
Centre for Textile Science and Technology (2C2T), University of Minho, 4800-058 Guimarães, Portugal.
Materials (Basel). 2022 Mar 11;15(6):2069. doi: 10.3390/ma15062069.
A Bacterial Cellulose (BC) film was developed and characterized as a potential functional bioactive material. BC films, obtained from a microbial consortium of bacteria and yeast species, were functionalized with the bacterial pigment prodigiosin, produced by , and flexirubin-type pigment, from , which exhibit a wide range of biological properties. BC was successfully functionalized at 15% over the weight of the fiber at 40 °C during 60 min, and a color strength of 1.00 ± 0.01 was obtained for BC_prodigiosin and 0.38 ± 0.02 for BC_flexirubin-type pigment. Moreover, the BC films showed moderate hydrophilic character following alkaline treatment, which was maintained after both pigments were incorporated. The porosity and mechanical performance of the functionalized BC samples also remained unaffected. Furthermore, the BC samples functionalized with prodigiosin presented antibacterial activity and were able to inhibit the growth of pathogenic bacteria and , with inhibition rates of 97.89 ± 0.60% and 85.12 ± 0.17%, respectively, while BC samples functionalized with flexirubin-type pigment exhibited the highest antioxidant activity, at 38.96 ± 0.49%. This research provides an eco-friendly approach to grant BC film-based material with color and advantageous bioactive properties, which can find application in several fields, especially for medical purposes.
开发了一种细菌纤维素(BC)薄膜,并将其表征为一种潜在的功能性生物活性材料。从细菌和酵母菌种的微生物联合体中获得的BC薄膜,用由 产生的细菌色素灵菌红素和来自 的类弹性蛋白色素进行功能化,这些色素具有广泛的生物学特性。在40℃下60分钟内,BC成功地以超过纤维重量15%的比例进行功能化,BC_灵菌红素的色强度为1.00±0.01,BC_类弹性蛋白色素的色强度为0.38±0.02。此外,BC薄膜在碱性处理后表现出适度的亲水性,在两种色素掺入后仍保持这种特性。功能化BC样品的孔隙率和机械性能也未受影响。此外,用灵菌红素功能化的BC样品具有抗菌活性,能够抑制病原菌 和 的生长,抑制率分别为97.89±0.60%和85.12±0.17%,而用类弹性蛋白色素功能化的BC样品表现出最高的抗氧化活性,为38.96±0.49%。这项研究提供了一种环保方法,赋予基于BC薄膜的材料颜色和有利的生物活性特性,这些特性可在多个领域找到应用,特别是用于医疗目的。