Department of Biochemistry, Pushpagiri Institute of Medical Sciences and Research Centre, Thiruvalla, India.
Department of Science and Humanities, Providence College of Engineering, Chengannur, India.
Bioengineered. 2022 May;13(5):12823-12833. doi: 10.1080/21655979.2022.2074739.
Nanocellulose are nano-sized components which are biodegradable, biocompatible and renewable. It offers mechanical strength and chemical stability in plants and bacteria. The environmental contamination is reduced by employing various bioremediation techniques which usesmicroorganisms like algae, bacteria and fungi as bio-adsorbents. The bio adsorbent property of nanocellulose contribute more for the bioremediation methods and the detailed study of its mechanism and application is essential which is discussed here. The mechanism happening between the contaminant and nanocellulose adsorbent should be explored in detail in order to develop effective new bioremediation strategies. Nanocellulose structural functionalization helps to modify the nanocellulose structure based on which it can be utilized for specific functions. Exploring the mechanisms that contribute to the implementation of nanocellulose in tissue engineering helps for further developments and advancement in the biomedical application of nanocellulose. Not much studies are available that elucidate and study the basic steps involved in the biomedical and environmental usage of nanocellulose. This review has focussed on the basic mechanisms involved in the use of nanocellulose in tissue engineering and bioremediation processes.
纳米纤维素是一种纳米级的成分,具有生物降解性、生物相容性和可再生性。它在植物和细菌中提供机械强度和化学稳定性。通过采用各种生物修复技术,可以减少环境污染,这些技术使用藻类、细菌和真菌等微生物作为生物吸附剂。纳米纤维素的生物吸附性能为生物修复方法做出了更多贡献,因此必须对其机制和应用进行详细研究,本文对此进行了讨论。为了开发有效的新生物修复策略,应该详细探索污染物与纳米纤维素吸附剂之间发生的机制。纳米纤维素结构功能化有助于根据特定功能修改纳米纤维素结构。探索有助于实施纳米纤维素在组织工程中的机制有助于进一步发展和推进纳米纤维素在生物医学中的应用。目前,阐明和研究纳米纤维素在生物医学和环境应用中涉及的基本步骤的研究还不多。本综述重点介绍了纳米纤维素在组织工程和生物修复过程中的基本作用机制。