Chowdhury Mohammad A
School of Chemistry, Monash University, Wellington Road, Clayton, Melbourne 3800, Australia.
Int J Biol Macromol. 2014 Apr;65:136-47. doi: 10.1016/j.ijbiomac.2014.01.012. Epub 2014 Jan 10.
This article presents the perspectives on the lignin-based controlled release (CR) of bioactive materials which are based on the researches that took place over the last three decades. It encompasses three broad spectra of observations: CR formulations with mixed-matrix of lignin; CR formulations with modified lignin; and the lignin-based CR formulation modelling. The article covers a range of bioactive materials aimed for agricultural utilisations viz. herbicides, pesticides, insecticides and fertilisers for their controlled release studies, which were formulated either with lignin or lignin-based biopolymers. The inherent complexities, structural heterogeneities, and the presence of myriad range of functionalities in the lignin structure make it difficult to understand and explaining the underlying CR behaviour and process. In conjunction to this issue, the fundamental aspects of the synthetic and biocompatible polymer-based drug controlled release process are presented, and correlated with the lignin-based CR research. The articulation of this correlation and the overview presented in this article may be complemented of the future lignin-based CR research gaining better insights, reflections, and understanding. A recommended approach on the lignin depolymerisation is suggested to fragmenting the lignin, which may be tailored further using the re-polymerisation or other synthetic approaches. Thus it may allow more control with flexibilities and improved properties of the modified lignin materials, and help achieve the desired CR outcomes.
本文基于过去三十年的研究,介绍了基于木质素的生物活性材料控释(CR)的观点。它涵盖了三个广泛的观察领域:木质素混合基质的CR制剂;改性木质素的CR制剂;以及基于木质素的CR制剂建模。本文涵盖了一系列旨在农业应用的生物活性材料,即除草剂、杀虫剂、杀菌剂和肥料的控释研究,这些材料是用木质素或木质素基生物聚合物配制的。木质素结构中固有的复杂性、结构异质性以及众多功能基团的存在,使得理解和解释潜在的CR行为和过程变得困难。针对这个问题,本文介绍了合成和生物相容性聚合物基药物控释过程的基本方面,并与基于木质素的CR研究相关联。这种关联的阐述以及本文给出的概述,可能会有助于未来基于木质素的CR研究获得更好的见解、思考和理解。本文建议了一种木质素解聚的方法,将木质素碎片化,然后可以通过再聚合或其他合成方法进一步定制。这样可以更灵活地控制改性木质素材料,并改善其性能,有助于实现所需的CR结果。