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Synthesis of a targeted, dual pH and redox-responsive nanoscale coordination polymer theranostic against metastatic breast cancer in vitro and in vivo

机译:在体外和体内合成靶向、双 pH 值和氧化还原响应的纳米配位聚合物治疗转移性乳腺癌

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Background Nanoscale coordination polymers (nCP) have exhibited a great potential in designing of the theranostic platforms in the latest years. However, they have low selectivity for cancerous tissues and require to be modified for becoming effective cancer therapeutics. In this study, a novel nanoscale pH and redox-responsive coordination polymer with high selectivity was synthesized. Methods The nCP was synthesized by iron(III) chloride and dithiodiglycolic acid. After loading the prepared nCP with doxorubicin (DOX), nCP was coated with an amphiphilic copolymer composed of alpha-tocopheryl succinate-polyethylene glycol (VEP). Next, AS1411 aptamer was decorated on the VEP shell of the DOX-loaded nCP (Apt-VEP-nCP@DOX) to provide a guided drug delivery platform. Results The prepared platform demonstrated high DOX loading capacity and pH and redox-responsive DOX release. Apt-VEP-nCP@DOX displayed greater DOX internalization and toxicity toward breast cancer cells of 4T1 and MCF7 compared with that of non-targeted VEP-nCP@DOX. Also, the intravenous injection of Apt-VEP-nCP@DOX (a single dose) considerably suppressed the 4T1 tumor growth in vivo. Moreover, Apt-VEP-nCP@DOX showed outstanding magnetic resonance (MR) imaging capability for 4T1 adenocarcinoma diagnosis in ectopic 4T1 tumor model in mice. Conclusions The developed innovative intelligent Apt-VEP-nCP@DOX could serve as a safe and biocompatible theranostic platform appropriate for further translational purposes against breast cancer.
机译:背景 近年来,纳米配位聚合物(nCP)在治疗诊断平台的设计中表现出巨大的潜力。然而,它们对癌组织的选择性较低,需要修改才能成为有效的癌症治疗方法。本研究合成了一种新型的纳米级pH值和氧化还原响应配位聚合物,具有高选择性。方法 采用氯化铁(III)和二硫代二乙醇酸合成nCP。用多柔比星(DOX)加载制备的nCP后,用由α-生育酚琥珀酸酯-聚乙二醇(VEP)组成的两亲性共聚物包被nCP。接下来,将AS1411适配体装饰在DOX负载的nCP(Apt-VEP-nCP@DOX)的VEP外壳上,以提供引导药物递送平台。结果 制备的平台表现出较高的DOX负载能力、pH值和氧化还原响应性DOX释放。与非靶向VEP-nCP@DOX相比,Apt-VEP-nCP@DOX对4T1和MCF7乳腺癌细胞的DOX内化和毒性更大。此外,静脉注射 Apt-VEP-nCP@DOX(单剂量)显着抑制了体内 4T1 肿瘤的生长。此外,Apt-VEP-nCP@DOX在小鼠异位4T1肿瘤模型中显示出出色的磁共振(MR)成像能力,用于诊断4T1腺癌。结论 开发的创新型智能Apt-VEP-nCP@DOX可作为安全、生物相容的治疗诊断平台,适用于乳腺癌的进一步转化。

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