Li Huiying, Zhang Wenbo, Tong Weijun, Gao Changyou
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University , Hangzhou 310027 China.
ACS Appl Mater Interfaces. 2016 May 11;8(18):11210-4. doi: 10.1021/acsami.6b02965. Epub 2016 Apr 28.
Among several properties of colloidal particles, shape is emerging as an important parameter for tailoring the interactions between particles and cells. In this study, bowl-like multilayer microcapsules were prepared by osmotic-induced invagination of their spherical counterparts in a concentrated polyelectrolyte solution. The internalization behaviors of bowl-like and spherical microcapsules were compared by coincubation with smooth muscle cells (SMCs) and macrophages. The bowl-like capsules tended to attach onto the cell membranes from the bend side and could be enwrapped by the membranes of SMCs, leading to a faster uptake rate and larger accumulation inside cells than those of their spherical counterparts. These results are important for understanding the shape-dependent internalization behavior, providing useful guidance for further materials design especially in biomedical applications.
在胶体颗粒的若干特性中,形状正逐渐成为调整颗粒与细胞间相互作用的一个重要参数。在本研究中,碗状多层微胶囊是通过在浓聚电解质溶液中使球形微胶囊发生渗透诱导内陷而制备的。通过与平滑肌细胞(SMC)和巨噬细胞共同孵育,比较了碗状和球形微胶囊的内化行为。碗状胶囊倾向于从弯曲侧附着在细胞膜上,并能被SMC的膜包裹,导致其摄取速率比球形微胶囊更快,在细胞内的积累量也更大。这些结果对于理解形状依赖性内化行为很重要,为进一步的材料设计尤其是生物医学应用提供了有用的指导。