Alexander Lois M, Pernagallo Salvatore, Livigni Alessandra, Sánchez-Martín Rosario M, Brickman Joshua M, Bradley Mark
Chemical Biology Section, School of Chemistry, University of Edinburgh, West Mains Road, Edinburgh, UK.
Mol Biosyst. 2010 Feb;6(2):399-409. doi: 10.1039/b914428e. Epub 2009 Nov 26.
Amino functionalized cross-linked polystyrene microspheres of well defined sizes (0.2-2 mum) have been prepared and shown to be efficient and controllable delivery devices, capable of transporting anything from small dye molecules to bulky proteins into cells. However, the specific mechanism of cellular entry is largely unknown and widely variant from study to study. As such, chemical, biological and microscopic methods are used to elucidate the mechanism of cellular uptake for polystyrene microspheres of 0.2, 0.5 and 2 mum in mouse melanoma cells. Uptake is found to be wholly unreliant upon energetic processes, while lysosomal and endosomal tracking agents failed to show co-localisation with lysosomes/endosomes, suggesting a non-endocytic uptake pathway. To further explore the consequences of microsphere uptake, gene expression profiling is used to determine if there is a transcriptional response to "beadfection" in both murine and human cells. None of the common transcriptional responses to enhanced endocytosis are observed in beadfected cells, further supporting a non-endocytic uptake mechanism. Furthermore, the microspheres are noted to have a limited interaction with cells at a transcriptional level, supporting them as a non-toxic delivery vehicle.
已制备出尺寸明确(0.2 - 2微米)的氨基功能化交联聚苯乙烯微球,并证明其是高效且可控的递送装置,能够将从小染料分子到大分子蛋白质的任何物质转运到细胞中。然而,细胞进入的具体机制在很大程度上尚不清楚,且不同研究之间差异很大。因此,采用化学、生物学和显微镜方法来阐明0.2、0.5和2微米的聚苯乙烯微球在小鼠黑色素瘤细胞中的细胞摄取机制。发现摄取完全不依赖于能量过程,而溶酶体和内体追踪剂未能显示与溶酶体/内体共定位,这表明存在非内吞摄取途径。为了进一步探索微球摄取的后果,利用基因表达谱来确定在小鼠和人类细胞中是否存在对“微球感染”的转录反应。在微球感染的细胞中未观察到对增强内吞作用的常见转录反应,这进一步支持了非内吞摄取机制。此外,注意到微球在转录水平上与细胞的相互作用有限,这支持它们作为无毒递送载体。