Ferreira Filipe V, Souza Alana G, Ajdary Rubina, de Souza Lucas P, Lopes João H, Correa Daniel S, Siqueira Gilberto, Barud Hernane S, Rosa Derval Dos S, Mattoso Luiz H C, Rojas Orlando J
Nanotechnology National Laboratory for Agriculture (LNNA), Embrapa Instrumentation - Rua XV de Novembro, 1452, São Carlos, SP, 13560-979, Brazil.
Center for Engineering, Modeling, and Applied Social Sciences (CECS), Federal University of ABC (UFABC), Santo André, Brazil.
Bioact Mater. 2023 Jul 12;29:151-176. doi: 10.1016/j.bioactmat.2023.06.020. eCollection 2023 Nov.
We review the recent progress that have led to the development of porous materials based on cellulose nanostructures found in plants and other resources. In light of the properties that emerge from the chemistry, shape and structural control, we discuss some of the most promising uses of a plant-based material, nanocellulose, in regenerative medicine. Following a brief discussion about the fundamental aspects of self-assembly of nanocellulose precursors, we review the key strategies needed for material synthesis and to adjust the architecture of the materials (using three-dimensional printing, freeze-casted porous materials, and electrospinning) according to their uses in tissue engineering, artificial organs, controlled drug delivery and wound healing systems, among others. For this purpose, we map the structure-property-function relationships of nanocellulose-based porous materials and examine the course of actions that are required to translate innovation from the laboratory to industry. Such efforts require attention to regulatory aspects and market pull. Finally, the key challenges and opportunities in this nascent field are critically reviewed.
我们回顾了近期取得的进展,这些进展促成了基于植物及其他资源中发现的纤维素纳米结构的多孔材料的开发。鉴于化学、形状和结构控制所产生的特性,我们讨论了一种基于植物的材料——纳米纤维素在再生医学中一些最具前景的用途。在简要讨论纳米纤维素前体自组装的基本方面之后,我们回顾了材料合成以及根据其在组织工程、人工器官、控释药物递送和伤口愈合系统等方面的用途来调整材料结构(使用三维打印、冷冻铸造多孔材料和静电纺丝)所需的关键策略。为此,我们绘制了基于纳米纤维素的多孔材料的结构 - 性能 - 功能关系图,并研究了将创新从实验室转化到工业所需的行动过程。此类努力需要关注监管方面和市场需求。最后,对这个新兴领域的关键挑战和机遇进行了批判性审视。