Morena A Gala, Tzanov Tzanko
Group of Molecular and Industrial Biotechnology, Department of Chemical Engineering, Universitat Politècnica de Catalunya Rambla Sant Nebridi 22 Terrassa 08222 Spain
Nanoscale Adv. 2022 Oct 11;4(21):4447-4469. doi: 10.1039/d2na00423b. eCollection 2022 Oct 25.
Lignin, one of the most abundant biopolymers on earth, has been traditionally considered a low-value by-product of the pulp and paper industries. This renewable raw material, besides being a source of valuable molecules for the chemical industry, also has antioxidant, UV-absorbing, and antibacterial properties in its macromolecular form. Moreover, lignin in the form of nanoparticles (LigNPs) presents advantages over bulk lignin, such as higher reactivity due to its larger surface-to-volume ratio. In view of the rapid surge of antimicrobial resistance (AMR), caused by the overuse of antibiotics, continuous development of novel antibacterial agents is needed. The use of LigNPs as antibacterial agents is a suitable alternative to conventional antibiotics for topical application or chemical disinfectants for surfaces and packaging. Besides, their multiple and unspecific targets in the bacterial cell may prevent the emergence of AMR. This review summarizes the latest developments in antibacterial nano-formulated lignin, both in dispersion and embedded in materials. The following roles of lignin in the formulation of antibacterial NPs have been analyzed: (i) an antibacterial active in nanoformulations, (ii) a reducing and capping agent for antimicrobial metals, and (iii) a carrier of other antibacterial agents. Finally, the review covers the inclusion of LigNPs in films, fibers, hydrogels, and foams, for obtaining antibacterial lignin-based nanocomposites for a variety of applications, including food packaging, wound healing, and medical coatings.
木质素是地球上含量最为丰富的生物聚合物之一,传统上一直被视为制浆造纸工业的低价值副产品。这种可再生原材料,除了是化学工业中有价值分子的来源外,其大分子形式还具有抗氧化、紫外线吸收和抗菌特性。此外,纳米颗粒形式的木质素(LigNPs)比块状木质素具有优势,例如由于其更大的表面体积比而具有更高的反应活性。鉴于抗生素的过度使用导致抗菌药物耐药性(AMR)迅速激增,需要持续开发新型抗菌剂。将LigNPs用作抗菌剂是局部应用传统抗生素或表面及包装用化学消毒剂的合适替代品。此外,它们在细菌细胞中的多个非特异性靶点可能会阻止AMR的出现。本综述总结了抗菌纳米配方木质素在分散体和材料中嵌入方面的最新进展。分析了木质素在抗菌纳米颗粒配方中的以下作用:(i)纳米配方中的抗菌活性剂,(ii)抗菌金属的还原剂和封端剂,以及(iii)其他抗菌剂的载体。最后,综述涵盖了将LigNPs纳入薄膜、纤维、水凝胶和泡沫中,以获得用于各种应用的抗菌木质素基纳米复合材料,包括食品包装、伤口愈合和医用涂层。