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首页> 外文期刊>Biomaterials >A self-assembled polymeric micellar immunomodulator for cancer treatment based on cationic amphiphilic polymers
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A self-assembled polymeric micellar immunomodulator for cancer treatment based on cationic amphiphilic polymers

机译:基于阳离子两亲性聚合物的自组装聚合物胶束免疫调节剂用于癌症治疗

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摘要

Here, we report a self-assembled polymeric micellar immunomodulator (SPI) for enhanced cancer treatment based on cationic amphiphilic polymers. To obtain the cationic amphiphilic polymer, the hydrophobic all-trans-retinoic acid (ATRA) was conjugated with a hydrophilic low-molecular-weight PEI (LowPEI, Mn=1.8 kDa). The ATRA-LowPEI conjugates could self-assemble in aqueous media, forming micelles with a strong positive charge (~+40mV) and particle sizes of ~70nm. Compared to conventional therapeutic agents (e.g., cisplatin), the SPI exhibited enhanced anti-cancer activity regardless of drug resistance. After mechanistic invitro cell death studies, we revealed that the mechanical disruptive force generated by the cationic charge of SPI primarily induced necrotic cell death. Furthermore, the organelle fragments induced by the necrotic cell death triggered antitumoral immune responses. Therefore, SPI induced synergistic effects of the cationic charge-induced necrosis and antitumoral immune responses could produce an effective cancer treatment. In addition, the SPI was shielded by hyaluronic acid (HA/SPI complex) to enhance its tumor selectivity invivo. Finally, the HA/SPI complex accumulated selectively into tumor sites after systemic administration into tumor-bearing mice, exhibiting effective antitumoral effects without systemic toxicity. Therefore, this technology holds great potential for translation into a clinical cancer treatment.
机译:在这里,我们报告了基于阳离子两亲性聚合物的自组装聚合物胶束免疫调节剂(SPI),用于增强癌症治疗。为了获得阳离子两亲性聚合物,将疏水性全反式维甲酸(ATRA)与亲水性低分子量PEI(LowPEI,Mn = 1.8 kDa)共轭。 ATRA-LowPEI偶联物可以在水性介质中自组装,形成具有强正电荷(〜+ 40mV)和〜70nm粒径的胶束。与常规治疗剂(例如,顺铂)相比,SPI显示出增强的抗癌活性,而与药物抗性无关。在进行机械性体外细胞死亡研究后,我们发现由SPI的阳离子电荷产生的机械破坏力主要诱导坏死性细胞死亡。此外,由坏死细胞死亡诱导的细胞器片段触发了抗肿瘤免疫反应。因此,SPI诱导的阳离子电荷诱导的坏死和抗肿瘤免疫应答的协同作用可以产生有效的癌症治疗。另外,SPI被透明质酸(HA / SPI复合物)屏蔽以增强其体内肿瘤选择性。最后,HA / SPI复合物在全身给药于荷瘤小鼠后选择性地累积到肿瘤部位,表现出有效的抗肿瘤作用而没有全身毒性。因此,该技术在转化为临床癌症治疗方面具有巨大潜力。

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