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载药聚己内酯微球的海藻酸水凝胶珠用于延缓释放多效唑。

Alginate hydrogel beads embedded with drug-bearing polycaprolactone microspheres for sustained release of paclobutrazol.

机构信息

Faculty of Biomedical Engineering, Technion Israel Institute of Technology, 32000, Haifa, Israel.

Directorate of Defense Research & Development, IDF, Tel Aviv, Israel.

出版信息

Sci Rep. 2021 May 25;11(1):10877. doi: 10.1038/s41598-021-90338-9.

Abstract

In recent years there has been a growing demand for the development of agrochemical controlled release (CR) technologies. In the present study, we aimed to create a novel agricultural CR device using two polymeric systems that have been predominantly employed in biomedical applications: beads of alginate hydrogel embedded with drug-bearing Polycaprolactone (PCL) microspheres. The combined device utilizes the advantages of each polymer type for biodegradation and controlled release of Paclobutrazol (PBZ), a common growth retardant in plants. Surface morphology of the alginate beads was characterized by scanning electron microscopy (SEM) and water immersion tests were performed for stability and controlled release measurements. Bioassays were performed both in accelerated laboratory conditions and in field conditions. The results showed a capability to control the size of PBZ-loaded PCL microspheres through modification of homogenization speed and emulsifier concentration. Enlargement of PCL microsphere size had an adverse effect on release of PBZ from the alginate device. The growth of oatmeal plants as a model system was affected by the controlled release of PBZ. The preliminary field experiment observed growth retardation during two consecutive rainy seasons, with results indicating a substantial benefit of the sustained growth inhibition through the controlled release formulation. The final product has the potential to be used as a carrier for different substances in the agrochemical industry.

摘要

近年来,人们对农用化学品控制释放(CR)技术的需求不断增长。在本研究中,我们旨在使用两种主要用于生物医学应用的聚合物系统来创建一种新型农业 CR 装置:载药聚己内酯(PCL)微球的海藻酸钠水凝胶珠。该组合装置利用了每种聚合物类型在生物降解和植物生长延缓剂多效唑(PBZ)的控制释放方面的优势。通过扫描电子显微镜(SEM)对海藻酸钠珠的表面形态进行了表征,并进行了水浸试验以进行稳定性和控制释放测量。生物测定分别在加速的实验室条件和田间条件下进行。结果表明,通过改变均化速度和乳化剂浓度,可以控制载 PBZ 的 PCL 微球的大小。PCL 微球尺寸的增大对 PBZ 从海藻酸钠装置中的释放产生了不利影响。以燕麦草植物为模型系统的生长试验受到 PBZ 控制释放的影响。初步的田间试验观察到在两个连续的雨季中出现生长迟缓现象,结果表明,通过控制释放配方实现持续的生长抑制具有很大的益处。最终产品有可能在农用化学品行业中用作不同物质的载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca91/8149846/c0dfc69ed23f/41598_2021_90338_Fig1_HTML.jpg

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