School of Cancer & Pharmaceutical Sciences, King's College London, UK.
Institute of Psychiatry, Psychology & Neuroscience, King's College London, UK.
Biomaterials. 2021 Apr;271:120758. doi: 10.1016/j.biomaterials.2021.120758. Epub 2021 Mar 16.
Triggerable nanocarriers have the potential to significantly improve the therapeutic index of existing anticancer agents. They allow for highly localised delivery and release of therapeutic cargos, reducing off-target toxicity and increasing anti-tumour activity. Liposomes may be engineered to respond to an externally applied stimulus such as focused ultrasound (FUS). Here, we report the first co-delivery of SN-38 (irinotecan's super-active metabolite) and carboplatin, using an MRI-visible thermosensitive liposome (iTSL). MR contrast enhancement was achieved by the incorporation of a gadolinium lipid conjugate in the liposome bilayer along with a dye-labelled lipid for near infrared fluorescence bioimaging. The resulting iTSL were successfully loaded with SN-38 in the lipid bilayer and carboplatin in the aqueous core - allowing co-delivery of both. The iTSL demonstrated both thermosensitivity and MR-imageability. In addition, they showed effective local targeted co-delivery of carboplatin and SN-38 after triggered release with brief FUS treatments. A single dosage induced significant improvement of anti-tumour activity (over either the free drugs or the iTSL without FUS-activation) in triple negative breast cancer xenografts tumours in mice.
可触发的纳米载体有可能显著提高现有抗癌药物的治疗指数。它们允许高度局部递送和释放治疗有效载荷,减少靶外毒性并增加抗肿瘤活性。脂质体可以被设计为响应外部施加的刺激,如聚焦超声(FUS)。在这里,我们报告了首次使用 MRI 可见热敏脂质体(iTSL)共递送 SN-38(伊立替康的超活性代谢物)和卡铂。通过在脂质体双层中掺入镧系元素脂质缀合物以及染料标记的脂质用于近红外荧光生物成像,实现了 MR 对比增强。所得的 iTSL 成功地将 SN-38 负载在脂质双层中,将卡铂负载在水核中 - 允许共递送。iTSL 表现出热敏感性和 MR 成像能力。此外,它们在触发释放后通过短暂的 FUS 处理显示出有效的局部靶向共递送卡铂和 SN-38。单次剂量在小鼠三阴性乳腺癌异种移植肿瘤中诱导了抗肿瘤活性的显著改善(超过游离药物或没有 FUS 激活的 iTSL)。