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载铜配合物的 pH 敏感长循环脂质体用于结肠癌治疗的潜力。

Therapeutic potential of a copper complex loaded in pH-sensitive long circulating liposomes for colon cancer management.

机构信息

Research Institute for Medicines (iMed.ULisboa), Faculty of Pharmacy, Universidade de Lisboa, Av. Prof. Gama Pinto, 1649-003 Lisboa, Portugal.

Department of Chemistry, Technical University of Munich (TUM), Lichtenbergstr. 4, 85748 Garching b. München, Germany.

出版信息

Int J Pharm. 2021 Apr 15;599:120463. doi: 10.1016/j.ijpharm.2021.120463. Epub 2021 Mar 9.

Abstract

Colorectal carcinoma is a complex malignancy and current therapies are hampered by systemic toxicity and tumor resistance to treatment. In the field of cancer therapy, copper (Cu) compounds hold great promise, with some reaching clinical trials. However, the anticancer potential of Cu complexes has not yet been fully disclosed due to speciation in biological systems, leading to inactivation and/or potential side effects. This is the case of the widely studied Cu(II) complexes featuring phenanthroline ligands, with potent antiproliferative effects in vitro, but often failing in vivo. Aiming to overcome these limitations and maximize its anticancer effects in vivo, the Cu(II) complex (Cu(1,10-phenanthroline)Cl) (Cuphen), displaying IC values <6 μM against different tumor cell lines, was loaded in long circulating liposomes with pH-sensitive properties (F1, DMPC:CHEMS:DSPE-PEG; F2, DOPE:CHEMS:DMPC:DSPE-PEG). This enabled a pH-dependent Cuphen release, with F1 and F2 releasing 36/78% and 47/94% of Cuphen at pH 6/4.5, respectively. The so formed nanoformulations preserved Cuphen effects towards cancer cell lines, with F2 presenting IC of 2.7 μM and 4.9 μM towards colon cancer CT-26 and HCT-116 cells, respectively. Additional in vitro studies confirmed that Cuphen antiproliferative activity towards colon cancer cells does not rely on cell cycle effect. Furthermore, in these cells, Cuphen reduced glycerol permeation and impaired cell migration. At 24 h incubation, wound closure was reduced by Cuphen, with migration values of 29% vs 54% (control) and 45% (1,10-phenanthroline) in CT-26 cells, and 33% vs ~44% (control and 1,10-phenanthroline) in HCT-116 cells. These effects were probably due to inhibition of aquaglyceroporins, membrane water and glycerol channels that are often abnormally expressed in tumors. In a syngeneic murine colon cancer model, F2 significantly reduced tumor progression, compared to the control group and to mice treated with free Cuphen or with the ligand, 1,10-phenanthroline, without eliciting toxic side effects. F2 led to a tumor volume reduction of ca. 50%. This was confirmed by RTV analysis, where F2 reached a value of 1.3 vs 4.4 (Control), 5.8 (Phen) and 3.8 (free Cuphen). These results clearly demonstrated the important role of the Cu(II) for the observed biological activity that was maximized following the association to a lipid-based nanosystem. Overall, this study represents a step forward in the development of pH-sensitive nanotherapeutic strategies of metallodrugs for colon cancer management.

摘要

结直肠癌是一种复杂的恶性肿瘤,目前的治疗方法受到全身毒性和肿瘤对治疗的耐药性的阻碍。在癌症治疗领域,铜 (Cu) 化合物具有很大的应用前景,其中一些已经进入临床试验。然而,由于生物系统中的形态,Cu 配合物的抗癌潜力尚未得到充分揭示,导致失活和/或潜在的副作用。这就是广泛研究的以菲咯啉为配体的 Cu(II) 配合物的情况,其在体外具有很强的抗增殖作用,但在体内往往失败。为了克服这些限制并最大限度地提高其体内抗癌效果,Cu(II) 配合物(Cu(1,10-菲咯啉)Cl)(Cuphen),对不同的肿瘤细胞系的 IC 值<6 μM,被负载在具有 pH 敏感性的长循环脂质体中(F1,DMPC:CHEMS:DSPE-PEG;F2,DOPE:CHEMS:DMPC:DSPE-PEG)。这使得 Cuphen 能够在 pH 依赖性释放,F1 和 F2 在 pH 6/4.5 下分别释放 36/78%和 47/94%的 Cuphen。形成的纳米制剂保留了 Cuphen 对癌细胞系的作用,F2 对结肠癌 CT-26 和 HCT-116 细胞的 IC 值分别为 2.7 μM 和 4.9 μM。此外的体外研究证实,Cuphen 对结肠癌的抗增殖活性不依赖于细胞周期效应。此外,在这些细胞中,Cuphen 减少了甘油的渗透并损害了细胞迁移。在 24 小时孵育时,与对照组和 1,10-菲咯啉相比,Cuphen 减少了 CT-26 细胞的伤口闭合,迁移值为 29%对 54%,而在 HCT-116 细胞中为 33%对 44%。这些作用可能是由于抑制了 aquaglyceroporins,即细胞膜水和甘油通道,这些通道在肿瘤中经常异常表达。在同种异体结肠癌小鼠模型中,与对照组和用游离 Cuphen 或配体 1,10-菲咯啉治疗的小鼠相比,F2 显著降低了肿瘤的进展,而没有引起毒副作用。F2 导致肿瘤体积缩小约 50%。RTV 分析证实了这一点,其中 F2 达到 1.3 对 4.4(对照)、5.8(苯)和 3.8(游离 Cuphen)。这些结果清楚地表明了 Cu(II) 的重要作用,这种作用在与基于脂质的纳米系统结合后得到了最大化。总的来说,这项研究代表了朝着开发用于结直肠癌管理的 pH 敏感金属药物纳米治疗策略迈出了一步。

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