Institute of Biotechnology, Ankara University, Ankara 06110, Turkey.
Ankara University, Faculty of Agriculture, Department of Field Crops, 06100 Ankara, Turkey.
Int J Biol Macromol. 2020 Jul 1;154:683-697. doi: 10.1016/j.ijbiomac.2020.03.128. Epub 2020 Mar 17.
Chitosan has been termed as the most well-known among biopolymers, receiving widespread attention from researchers in various fields mainly, agriculture, food, and health. Chitosan is a deacetylated derivative of chitin, mainly isolated from waste shells of the phylum Arthropoda after their consumption as food. Chitosan molecules can be easily modified for adsorption and slow release of plant growth regulators, herbicides, pesticides, and fertilizers, etc. Chitosan as a carrier and control release matrix that offers many benefits including; protection of biomolecules from harsh environmental conditions such as pH, light, temperatures and prolonged release of active ingredients from its matrix consequently protecting the plant's cells from the hazardous effects of burst release. In the current review, tends to discuss the recent advances in the area of chitosan application as a control release system. Also, future recommendations will be made in light of current advancements and major gaps.
壳聚糖被称为最知名的生物聚合物之一,受到来自农业、食品和健康等各个领域的研究人员的广泛关注。壳聚糖是甲壳素的脱乙酰衍生物,主要从节肢动物门的废弃贝壳中提取,这些贝壳是作为食物被消耗后的剩余物。壳聚糖分子可以很容易地进行修饰,以吸附和缓慢释放植物生长调节剂、除草剂、杀虫剂和肥料等。壳聚糖作为载体和控制释放基质,具有许多优点,包括:保护生物分子免受 pH 值、光照、温度等恶劣环境条件的影响,并从其基质中缓慢释放活性成分,从而保护植物细胞免受爆发释放的有害影响。在本综述中,我们倾向于讨论壳聚糖作为控制释放系统的应用领域的最新进展。此外,还将根据当前的进展和主要差距提出未来的建议。