Park Jae Hyeon, Seo Jeongeun, Jackman Joshua A, Cho Nam-Joon
School of Materials Science and Engineering Nanyang Technological University, 50 Nanyang Avenue 639798, Singapore.
Centre for Biomimetic Sensor Science, Nanyang Technological University, 50 Nanyang Drive 637553, Singapore.
Sci Rep. 2016 Jun 15;6:28017. doi: 10.1038/srep28017.
Sporopollenin is a physically robust and chemically resilient biopolymer that comprises the outermost layer of pollen walls and is the first line of defense against harsh environmental conditions. The unique physicochemical properties of sporopollenin increasingly motivate the extraction of sporopollenin exine capsules (SECs) from pollen walls as a renewable source of organic microcapsules for encapsulation applications. Despite the wide range of different pollen species with varying sizes and wall thicknesses, faithful extraction of pollen-mimetic SECs has been limited to thick-walled pollen capsules with rigid mechanical properties. There is an unmet need to develop methods for producing SECs from thin-walled pollen capsules which constitute a large fraction of all pollen species and have attractive materials properties such as greater aerosol dispersion. Herein, we report the first successful extraction of inflated SEC microcapsules from a thin-walled pollen species (Zea mays), thereby overcoming traditional challenges with mechanical stability and loss of microstructure. Morphological and compositional characterization of the SECs obtained by the newly developed extraction protocol confirms successful protein removal along with preservation of nanoscale architectural features. Looking forward, there is excellent potential to apply similar strategies across a wide range of unexplored thin-walled pollen species.
孢粉素是一种物理性质坚固且化学性质稳定的生物聚合物,它构成了花粉壁的最外层,是抵御恶劣环境条件的第一道防线。孢粉素独特的物理化学性质越来越促使人们从花粉壁中提取孢粉素外壁胶囊(SECs),将其作为用于封装应用的有机微胶囊的可再生来源。尽管有各种各样大小和壁厚不同的花粉种类,但对模仿花粉的SECs的可靠提取仅限于具有刚性机械性能的厚壁花粉胶囊。开发从薄壁花粉胶囊生产SECs的方法存在未满足的需求,薄壁花粉胶囊占所有花粉种类的很大一部分,并且具有吸引人的材料特性,如更好的气溶胶分散性。在此,我们报告首次成功从薄壁花粉种类(玉米)中提取出膨胀的SECs微胶囊,从而克服了传统上在机械稳定性和微观结构损失方面的挑战。通过新开发的提取方案获得的SECs的形态和成分表征证实了蛋白质的成功去除以及纳米级结构特征的保留。展望未来,在广泛未探索的薄壁花粉种类中应用类似策略具有巨大潜力。