State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, International Joint Laboratory for Advanced Fiber and Low-dimension Materials, College of Chemistry, Chemical Engineering and Biotechnology , Donghua University , Shanghai 201620 , People's Republic of China.
Department of Radiology, Shanghai Public Health Clinical Center , Fudan University , Shanghai 201508 , People's Republic of China.
Nano Lett. 2019 Feb 13;19(2):1216-1226. doi: 10.1021/acs.nanolett.8b04757. Epub 2019 Feb 1.
The development of a powerful nanoplatform to realize the simultaneous therapy and diagnosis of cancer using a similar element for theranostics remains a critical challenge. Herein, we report such a theranostic nanoplatform based on pyridine (Pyr)-functionalized generation 5 (G5) poly(amidoamine) dendrimers complexed with copper(II) (Cu(II)) for radiotherapy-enhanced T-weighted magnetic resonance (MR) imaging and the synergistic radio-chemotherapy of both tumors and tumor metastasis. In this study, amine-terminated G5 dendrimers were covalently linked with 2-pyridinecarboxylic acid, acetylated to neutralize their remaining terminal amines, and complexed with Cu(II) through both the internal tertiary amines and the surface Pyr groups to form the G5.NHAc-Pyr/Cu(II) complexes. We show that the complexes are able to inhibit the proliferation of different cancer cell lines with half-maximal inhibitory concentrations ranging from 4 to 10 μM and induce significant cancer cell apoptosis. Due to the presence of Cu(II), the G5.NHAc-Pyr/Cu(II) complexes display an r relaxivity of 0.7024 mM s, enabling effective in vivo MR imaging of tumor xenografts and lung metastatic nodules. Further, under radiotherapy (RT) conditions, the tumor MR imaging sensitivity can be significantly enhanced, and the G5.NHAc-Pyr/Cu(II) complexes enable the enhanced chemotherapy of both a xenografted tumor model and a blood-vessel metastasis model. With the demonstrated theranostic potential of the dendrimer-Cu(II) nanocomplexes without additional agents or elements for RT-enhanced MR imaging and chemotherapy of tumor and tumor metastasis, this novel Cu(II)-based nanohybrids may hold great promise for the theranostics of different cancer types and metastases.
开发一种强大的纳米平台,使用类似的元素实现癌症的同时治疗和诊断,仍然是一个关键的挑战。在此,我们报告了一种基于吡啶(Pyr)功能化的第五代(G5)聚酰胺-胺树枝状大分子与铜(II)(Cu(II))配合的治疗诊断纳米平台,用于放射治疗增强的 T 加权磁共振(MR)成像以及肿瘤和肿瘤转移的协同放化疗。在这项研究中,胺端基 G5 树枝状大分子通过与 2-吡啶甲酸共价键连接,乙酰化以中和其剩余的末端胺,然后通过内部叔胺和表面 Pyr 基团与 Cu(II)络合形成 G5.NHAc-Pyr/Cu(II)配合物。我们表明,这些配合物能够抑制不同癌细胞系的增殖,半最大抑制浓度范围为 4 到 10 μM,并诱导显著的癌细胞凋亡。由于存在 Cu(II),G5.NHAc-Pyr/Cu(II)配合物具有 0.7024 mM s 的 r 弛豫率,能够有效地对肿瘤异种移植瘤和肺转移结节进行体内 MR 成像。此外,在放射治疗(RT)条件下,肿瘤的 MR 成像灵敏度可以显著增强,并且 G5.NHAc-Pyr/Cu(II)配合物能够增强异种移植瘤模型和血管转移模型的化疗效果。由于该树枝状大分子-Cu(II)纳米复合物具有无需额外试剂或元素即可进行 RT 增强的 MR 成像和肿瘤及肿瘤转移化疗的治疗诊断潜力,因此这种新型的基于 Cu(II)的纳米杂化物可能为不同类型癌症和转移的治疗诊断带来巨大的希望。