Division of Cancer Imaging Research, Johns Hopkins University School of Medicine, Russell H. Morgan Dept. of Radiology & Radiological Science, Baltimore, MD 21205, USA.
Theranostics. 2018 Jan 1;8(1):1-12. doi: 10.7150/thno.21052. eCollection 2018.
Effective delivery of siRNA to silence genes is a highly sought-after goal in the treatment of multiple diseases. Cyclooxygenase-2 (COX-2) is a major mediator of inflammation and its effective and specific downregulation has been of major interest to treat conditions ranging from auto-immune diseases to gastric inflammation and cancer. Here we developed a novel and efficient method to produce a multiple imaging reporter labeled cationic dextran nanopolymer with cleavable positive charge groups for COX-2 siRNA delivery. Small molecules containing amine groups were conjugated to the dextran scaffold through acetal bonds that were cleaved in weak acid conditions. With multiple imaging reporters located on different regions of the nanopolymer, cleavage of acetal bonds was visualized and quantified by imaging, for the first time, in cancer cells and tumors. The biocompatibility of dextran and the rapid cleavage and release of amine groups minimized proinflammatory side effects and COX-2 induction observed with other siRNA carriers, to successfully achieve COX-2 downregulation in cancer cells and tumors. Imaging results confirmed that this nanoplex, consisting of the dextran nanopolymer with COX-2 siRNA, accumulated in tumors, and the amine functional groups were rapidly cleaved in cancer cells and tumors. Along with effective downregulation of COX-2, we also demonstrated, for the first time, effective downregulation of its major product prostaglandin E (PGE). We successfully developed an efficient method to produce an acid-degradable dextran nanopolymer containing cleavable amine groups as the siRNA carrier. Because of its biocompatibility, this degradable dextran delivered COX-2 siRNA within tumors and efficiently downregulated COX-2 expression.
有效递送 siRNA 以沉默基因是治疗多种疾病的高度追求目标。环氧化酶-2 (COX-2) 是炎症的主要介质,其有效和特异性下调一直是治疗从自身免疫性疾病到胃炎症和癌症等多种疾病的主要关注点。在这里,我们开发了一种新的有效方法,用于生产具有可切割正电荷基团的多重成像报告器标记阳离子葡聚糖纳米聚合物,用于 COX-2 siRNA 递送。通过缩醛键将含有胺基的小分子连接到葡聚糖支架上,然后在弱酸条件下裂解缩醛键。通过位于纳米聚合物不同区域的多个成像报告器,可以首次在癌细胞和肿瘤中可视化和定量检测缩醛键的裂解。葡聚糖的生物相容性以及胺基团的快速裂解和释放,最大限度地减少了与其他 siRNA 载体观察到的促炎副作用和 COX-2 诱导,成功地实现了癌细胞和肿瘤中的 COX-2 下调。成像结果证实,由含有 COX-2 siRNA 的葡聚糖纳米聚合物组成的这种纳米复合物在肿瘤中积累,并且胺官能团在癌细胞和肿瘤中迅速裂解。除了有效下调 COX-2 外,我们还首次证明了其主要产物前列腺素 E (PGE) 的有效下调。我们成功开发了一种有效的方法来生产含有可切割胺基团的可酸降解葡聚糖纳米聚合物作为 siRNA 载体。由于其生物相容性,这种可降解葡聚糖在肿瘤内递送 COX-2 siRNA,并有效地下调 COX-2 表达。