Institute for Clinical and Experimental Medicine (IKEM), 140 21 Prague, Czech Republic.
Department of Physiology, Faculty of Science, Charles University, 128 00 Prague, Czech Republic.
Molecules. 2020 Dec 31;26(1):146. doi: 10.3390/molecules26010146.
Early detection of metastasis is crucial for successful cancer treatment. Sentinel lymph node (SLN) biopsies are used to detect possible pathways of metastasis spread. We present a unique non-invasive diagnostic alternative to biopsy along with an intraoperative imaging tool for surgery proven on an in vivo animal tumor model. Our approach is based on mannan-based copolymers synergistically targeting: (1) SLNs and macrophage-infiltrated solid tumor areas via the high-affinity DC-SIGN (dendritic cell-specific intercellular adhesion molecule-3-grabbing non-integrin) receptors and (2) tumors via the enhanced permeability and retention (EPR) effect. The polymer conjugates were modified with the imaging probes for visualization with magnetic resonance (MR) and fluorescence imaging, respectively, and with poly(2-methyl-2-oxazoline) (POX) to lower unwanted accumulation in internal organs and to slow down the biodegradation rate. We demonstrated that these polymer conjugates were successfully accumulated in tumors, SLNs and other lymph nodes. Modification with POX resulted in lower accumulation not only in internal organs, but also in lymph nodes and tumors. Importantly, we have shown that mannan-based polymer carriers are non-toxic and, when applied to an in vivo murine cancer model, and offer promising potential as the versatile imaging agents.
早期发现转移对于癌症治疗的成功至关重要。前哨淋巴结 (SLN) 活检用于检测转移扩散的可能途径。我们提出了一种独特的非侵入性诊断替代活检方法,并结合术中成像工具,在体内动物肿瘤模型上得到了验证。我们的方法基于甘露聚糖基共聚物,通过高亲和力的 DC-SIGN(树突状细胞特异性细胞间黏附分子 3 抓取非整联蛋白)受体协同靶向:(1) SLN 和巨噬细胞浸润的实体瘤区域,以及 (2) 通过增强的通透性和保留 (EPR) 效应的肿瘤。聚合物缀合物分别用磁共振 (MR) 和荧光成像的成像探针进行修饰,并用聚 (2-甲基-2-恶唑啉) (POX) 进行修饰,以减少在内部器官中的不必要积累并降低生物降解速度。我们证明了这些聚合物缀合物可以成功地在肿瘤、SLN 和其他淋巴结中积累。用 POX 修饰不仅可以减少在内部器官中的积累,还可以减少在淋巴结和肿瘤中的积累。重要的是,我们已经表明,基于甘露聚糖的聚合物载体是无毒的,并且当应用于体内小鼠癌症模型时,它们作为多功能成像剂具有很大的应用潜力。