Tudoroiu Elena-Emilia, Dinu-Pîrvu Cristina-Elena, Albu Kaya Mădălina Georgiana, Popa Lăcrămioara, Anuța Valentina, Prisada Răzvan Mihai, Ghica Mihaela Violeta
Department of Physical and Colloidal Chemistry, Faculty of Pharmacy, Carol Davila University of Medicine and Pharmacy Bucharest, 6 Traian Vuia Str., 020956 Bucharest, Romania.
Department of Collagen, Division Leather and Footwear Research Institute, National Research and Development Institute for Textile and Leather, 93 Ion Minulescu Str., 031215 Bucharest, Romania.
Pharmaceuticals (Basel). 2021 Nov 24;14(12):1215. doi: 10.3390/ph14121215.
Presently, notwithstanding the progress regarding wound-healing management, the treatment of the majority of skin lesions still represents a serious challenge for biomedical and pharmaceutical industries. Thus, the attention of the researchers has turned to the development of novel materials based on cellulose derivatives. Cellulose derivatives are semi-synthetic biopolymers, which exhibit high solubility in water and represent an advantageous alternative to water-insoluble cellulose. These biopolymers possess excellent properties, such as biocompatibility, biodegradability, sustainability, non-toxicity, non-immunogenicity, thermo-gelling behavior, mechanical strength, abundance, low costs, antibacterial effect, and high hydrophilicity. They have an efficient ability to absorb and retain a large quantity of wound exudates in the interstitial sites of their networks and can maintain optimal local moisture. Cellulose derivatives also represent a proper scaffold to incorporate various bioactive agents with beneficial therapeutic effects on skin tissue restoration. Due to these suitable and versatile characteristics, cellulose derivatives are attractive and captivating materials for wound-healing applications. This review presents an extensive overview of recent research regarding promising cellulose derivatives-based materials for the development of multiple biomedical and pharmaceutical applications, such as wound dressings, drug delivery devices, and tissue engineering.
目前,尽管在伤口愈合管理方面取得了进展,但大多数皮肤损伤的治疗对生物医学和制药行业来说仍然是一项严峻的挑战。因此,研究人员的注意力已转向基于纤维素衍生物的新型材料的开发。纤维素衍生物是半合成生物聚合物,在水中具有高溶解性,是水不溶性纤维素的有利替代品。这些生物聚合物具有优异的性能,如生物相容性、生物降解性、可持续性、无毒、无免疫原性、热凝胶行为、机械强度、丰富性、低成本、抗菌作用和高亲水性。它们具有高效的能力,能够在其网络的间隙部位吸收和保留大量伤口渗出液,并能保持最佳的局部湿度。纤维素衍生物也是一种合适的支架,可用于结合各种对皮肤组织修复具有有益治疗效果的生物活性剂。由于这些合适且通用的特性,纤维素衍生物是用于伤口愈合应用的有吸引力且引人注目的材料。本综述广泛概述了近期有关基于纤维素衍生物的有前景材料的研究,这些材料用于开发多种生物医学和制药应用,如伤口敷料、药物递送装置和组织工程。