Department of Bioengineering, University of Texas at Arlington, 500 UTA Blvd., Arlington, TX 76013, USA.
Biosensors (Basel). 2020 Sep 24;10(10):132. doi: 10.3390/bios10100132.
Polydiacetylene vesicles of various compositions were assembled using a two-part mixture of 10,12-pentacosadiynoic acid (PCDA) and ethylenedioxy-bis-ethylamine (EDEA)-labeled PCDA in order to control surface charge and stability within a desired pH range. Investigation of the interaction of the vesicles with mammalian cells as a function of surface charge was carried out and identified a clear correlation in cell-vesicle association and corresponding cell death for vesicles with positive surface charge. The binding behavior of the vesicles was found to be tunable by regulating the proportion of anionic PCDA relative to cationic PCDA-EDEA content within vesicles as to control the surface charge as a function of pH. Association of vesicles with cells thus depended on the corresponding charge of the vesicles and cell surface. The prospect of this work may serve as a step toward future vesicle designs to allow triggered uptake of vesicles locally within low pH tumor microenvironments.
为了在所需 pH 范围内控制表面电荷和稳定性,使用 10,12-二十五碳二炔酸(PCDA)和乙二氧基双乙胺(EDEA)标记的 PCDA 的两部分混合物组装了各种组成的聚二乙酰亚胺囊泡。研究了囊泡与哺乳动物细胞的相互作用作为表面电荷的函数,并确定了带有正表面电荷的囊泡与细胞-囊泡的关联和相应的细胞死亡之间存在明显的相关性。通过调节囊泡内阴离子 PCDA 与阳离子 PCDA-EDEA 含量的比例来调节囊泡的结合行为,从而可以根据 pH 调节表面电荷。囊泡与细胞的结合取决于囊泡和细胞膜的相应电荷。这项工作的前景可能是朝着未来的囊泡设计迈出的一步,以便允许在低 pH 值肿瘤微环境中局部触发囊泡的摄取。