Alosaimi Abeer M, Alorabi Randa O, Katowah Dina F, Al-Thagafi Zahrah T, Alsolami Eman S, Hussein Mahmoud A, Qutob Mohammad, Rafatullah Mohd
Department of Chemistry, Faculty of Science, Taif University, P.O. Box 11099, Taif 21944, Saudi Arabia.
Chemistry Department, Faculty of Science, Ibb University, Ibb 70270, Yemen.
Bioengineering (Basel). 2023 Feb 21;10(3):279. doi: 10.3390/bioengineering10030279.
Hybrid materials are classified as one of the most highly important topics that have been of great interest to many researchers in recent decades. There are many species that can fall under this category, one of the most important of which contain biopolymeric materials as a matrix and are additionally reinforced by different types of carbon sources. Such materials are characterized by many diverse properties in a variety industrial and applied fields but especially in the field of biomedical applications. The biopolymeric materials that fall under this label are divided into natural biopolymers, which include chitosan, cellulose, and gelatin, and industrial or synthetic polymers, which include polycaprolactone, polyurethane, and conducting polymers of variable chemical structures. Furthermore, there are many types of carbon nanomaterials that are used as enhancers in the chemical synthesis of these materials as reinforcement agents, which include carbon nanotubes, graphene, and fullerene. This research investigates natural biopolymers, which can be composed of carbon materials, and the educational and medical applications that have been developed for them in recent years. These applications include tissue engineering, scaffold bones, and drug delivery systems.
杂化材料被归类为近几十年来许多研究人员极为感兴趣的最重要的主题之一。有许多种类可归入这一类别,其中最重要的一类包含生物聚合物材料作为基质,并由不同类型的碳源进行额外增强。这类材料在许多不同的工业和应用领域具有多种特性,但在生物医学应用领域尤为突出。属于这一标签的生物聚合物材料分为天然生物聚合物,包括壳聚糖、纤维素和明胶,以及工业或合成聚合物,包括聚己内酯、聚氨酯和化学结构多样的导电聚合物。此外,有许多类型的碳纳米材料在这些材料的化学合成中用作增强剂,包括碳纳米管、石墨烯和富勒烯。本研究调查了可由碳材料组成的天然生物聚合物,以及近年来为它们开发的教育和医学应用。这些应用包括组织工程、支架骨和药物递送系统。