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首页> 外文期刊>RSC Advances >Indocyanine green conjugated lipid microbubbles as an ultrasound-responsive drug delivery system for dual-imaging guided tumor-targeted therapy
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Indocyanine green conjugated lipid microbubbles as an ultrasound-responsive drug delivery system for dual-imaging guided tumor-targeted therapy

机译:吲哚菁绿共轭脂质微泡作为超声响应药物输送系统,用于双成像引导的肿瘤靶向治疗

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Herein, a multifunctional traceable and ultrasound-responsive drug targeted delivery system based on indocyanine green (ICG) and folic acid (FA) covalently conjugated lipid microbubbles (ILMBs–FA) is proposed. After encapsulation of the anticancer drug resveratrol (RV), the composite (RILMBs–FA) with fluorescence and ultrasound imaging capacity was studied for highly sensitive dual-imaging guided tumor targeted therapy. The resulting RILMBs–FA with an average particle size of 1.32 ± 0.14 μm exhibited good stability and biocompatibility characteristics. The RILMBs–FA featured a high RV loading ratio and the encapsulated RV has been demonstrated to be released from the microbubbles triggered by ultrasound (US) waves. In addition, it was found that the linked FA could facilitate a high cellular uptake of RILMBs–FA via the FA receptor-mediated endocytosis pathway. Compared to free RV and RILMBs, RILMBs–FA with US irradiation demonstrated a more significant tumor cell-killing efficacy mediated by apoptosis in vitro . Eight hours post intravenous injection of RILMBs–FA, the composites showed maximum accumulation in tumorous tissues according to in vivo fluorescence and US images. This ultimately led to the best tumor inhibition effect among all tested drugs under US irradiation. In vivo biosafety evaluations showed that RILMBs–FA featured high biocompatibility characteristics and no significant systemic toxicity over the course of one month. Taken in concert, these results demonstrate the versatility of this drug delivery system with dual-imaging and ultrasound-triggered drug release characteristics for potential future applications in cancer theranostics.
机译:在此,提出了一种基于吲哚菁绿(ICG)和叶酸(FA)共价结合脂质微泡(ILMBs–FA)的多功能可追踪和超声响应的药物靶向递送系统。包封抗癌药物白藜芦醇(RV)后,研究了具有荧光和超声成像功能的复合材料(RILMBs–FA)用于高敏感度双成像引导的肿瘤靶向治疗。所得RILMBs–FA的平均粒径为1.32±0.14μm,具有良好的稳定性和生物相容性。 RILMBs – FA具有较高的RV加载率,并且已证明封装的RV是由超声波(US)触发的微气泡释放的。此外,还发现连接的FA可以通过FA受体介导的内吞途径促进RILMBs-FA的高细胞摄取。与游离RV和RILMBs相比,US照射的RILMBs–FA表现出更显着的体外凋亡介导的肿瘤细胞杀伤作用。静脉注射RILMBs-FA后8小时,根据体内荧光和US图像,复合材料在肿瘤组织中显示出最大的积累。最终,这导致了在US辐射下所有测试药物中最佳的肿瘤抑制效果。体内生物安全性评估显示RILMBs-FA具有高生物相容性特征,并且在一个月的过程中没有明显的全身毒性。一致地,这些结果证明了这种具有双重成像和超声触发的药物释放特性的药物输送系统的多功能性,有望在癌症治疗学中潜在的未来应用。

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