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一种具有天然且强大的抗癌和抗转移活性的非细胞毒性树枝状大分子。

A non-cytotoxic dendrimer with innate and potent anticancer and anti-metastatic activities.

作者信息

Shao Shiqun, Zhou Quan, Si Jingxing, Tang Jianbin, Liu Xiangrui, Wang Meng, Gao Jianqing, Wang Kai, Xu Rongzhen, Shen Youqing

机构信息

Center for Bionanoengineering and Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, 310027, Hangzhou, China.

The Second Affiliated Hospital of School of Medicine, Zhejiang University, 310009, Hangzhou, China.

出版信息

Nat Biomed Eng. 2017 Sep;1(9):745-757. doi: 10.1038/s41551-017-0130-9. Epub 2017 Sep 12.

Abstract

The structural perfection and multivalency of dendrimers have made them useful for biodelivery and bioactivity via peripheral functionalization and the modulation of core-forming structures and dendrimer generations. Yet only few dendrimers have shown inherent therapeutic activity arising from their inner repeating units. Here, we report the synthesis and characterization of a polyacylthiourea dendrimer with inherent potent anticancer activity and the absence of cytotoxicity in mice. The poly(ethylene glycol)-functionalized fourth generation of the dendrimer, which can be efficiently synthesized from sequential click reactions of orthogonal monomers, displays low in vivo acute and subacute toxicities yet potently inhibits tumour growth and metastasis. The dendrimer's in vivo anticancer activity arises from the depletion of bioavailable copper and the subsequent inhibition of angiogenesis and cellular proliferation. When compared with some clinically used cytotoxin drugs, the dendrimer exerts inherent anticancer activity via non-cytotoxic pathways and leads to higher therapeutic efficacy, yet without cytotoxin-induced side effects.

摘要

树枝状大分子的结构完美性和多价性使其通过外围功能化以及核心形成结构和树枝状大分子代数的调节,在生物递送和生物活性方面具有应用价值。然而,只有少数树枝状大分子表现出源于其内部重复单元的固有治疗活性。在此,我们报道了一种具有固有强效抗癌活性且在小鼠中无细胞毒性的聚酰基硫脲树枝状大分子的合成与表征。通过正交单体的顺序点击反应可高效合成的聚乙二醇功能化第四代树枝状大分子,显示出低体内急性和亚急性毒性,但能有效抑制肿瘤生长和转移。该树枝状大分子的体内抗癌活性源于生物可利用铜的消耗以及随后对血管生成和细胞增殖的抑制。与一些临床使用的细胞毒素药物相比,该树枝状大分子通过非细胞毒性途径发挥固有抗癌活性,导致更高的治疗效果,且无细胞毒素诱导的副作用。

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