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选择性耗尽转移性干细胞作为治疗人类结直肠癌的方法。

Selective depletion of metastatic stem cells as therapy for human colorectal cancer.

机构信息

Institut d'Investigacions Biomèdiques Sant Pau, Hospital de Santa Creu i Sant Pau, Barcelona, Spain.

CIBER de Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Barcelona, Spain.

出版信息

EMBO Mol Med. 2018 Oct;10(10). doi: 10.15252/emmm.201708772.

Abstract

Selective elimination of metastatic stem cells (MetSCs) promises to block metastatic dissemination. Colorectal cancer (CRC) cells overexpressing CXCR4 display trafficking functions and metastasis-initiating capacity. We assessed the antimetastatic activity of a nanoconjugate (T22-GFP-H6-FdU) that selectively delivers Floxuridine to CXCR4 cells. In contrast to free oligo-FdU, intravenous T22-GFP-H6-FdU selectively accumulates and internalizes in CXCR4 cancer cells, triggering DNA damage and apoptosis, which leads to their selective elimination and to reduced tumor re-initiation capacity. Repeated T22-GFP-H6-FdU administration in cell line and patient-derived CRC models blocks intravasation and completely prevents metastases development in 38-83% of mice, while showing CXCR4 expression-dependent and site-dependent reduction in foci number and size in liver, peritoneal, or lung metastases in the rest of mice, compared to free oligo-FdU. T22-GFP-H6-FdU induces also higher regression of established metastases than free oligo-FdU, with negligible distribution or toxicity in normal tissues. This targeted drug delivery approach yields potent antimetastatic effect, through selective depletion of metastatic CXCR4 cancer cells, and validates metastatic stem cells (MetSCs) as targets for clinical therapy.

摘要

选择性消除转移性干细胞(MetSCs)有望阻止转移扩散。过表达 CXCR4 的结直肠癌(CRC)细胞具有转移起始能力和运输功能。我们评估了一种纳米缀合物(T22-GFP-H6-FdU)的抗转移活性,该缀合物可选择性地将氟尿苷递送至 CXCR4 细胞。与游离的寡氟尿苷相比,静脉内 T22-GFP-H6-FdU 选择性地在 CXCR4 癌细胞中积累和内化,引发 DNA 损伤和细胞凋亡,导致其选择性消除和肿瘤再起始能力降低。在细胞系和患者来源的 CRC 模型中重复给予 T22-GFP-H6-FdU 可阻止血管内渗,在 38-83%的小鼠中完全阻止转移发展,而与游离的寡氟尿苷相比,在其余小鼠的肝脏、腹膜或肺转移中,显示出依赖于 CXCR4 表达和部位的焦点数量和大小减少。与游离的寡氟尿苷相比,T22-GFP-H6-FdU 还能诱导已建立的转移瘤更高的消退,对正常组织的分布或毒性可忽略不计。这种靶向药物递送方法通过选择性耗尽转移性 CXCR4 癌细胞产生强大的抗转移作用,并验证了转移性干细胞(MetSCs)作为临床治疗靶点的合理性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edb4/6180303/21cb945b0075/EMMM-10-e8772-g002.jpg

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