首页> 外文期刊>International Journal of Pharmaceutics >Increased tumor targeted delivery using a multistage liposome system functionalized with RGD, TAT and cleavable PEG
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Increased tumor targeted delivery using a multistage liposome system functionalized with RGD, TAT and cleavable PEG

机译:使用RGD,TAT和可裂解PEG功能化的多级脂质体系统增加肿瘤靶向递送

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Though PEGylation has been widely used to enhance the accumulation of liposomes in tumor tissues through enhanced permeability and retention (EPR) effects, it still inhibits cellular uptake and affects intracellular trafficking of carriers. Active targeting molecules displayed better cell selectivity but were shadowed by the poor tumor penetration effect. Cell penetrating peptides could increase the uptake of the carriers but were limited by their non-specificity. Dual-ligand system may possess a synergistic effect and create a more ideal drug delivery effect. Based on the above factors, we designed a multistage liposome system co-modified with RGD, TAT and cleavable PEG, which combined the advantages of PEG, specific ligand and penetrating peptide. The cleavable PEG could increase the stability and circulation time of liposomes during circulation. After the passive extravasation to tumor tissues, the previously hidden dual ligands on the liposomes were exposed in a controlled manner at the tumor site through exogenous administration of a safe reducing agent l-cysteine. The RGD specifically recognized the integrins overexpressed on various malignant tumors and mediated efficient internalization in the synergistic effect of the RGD and TAT. In vitro cellular uptake and 3D tumor spheroids penetration studies demonstrated that the system could not only be selectively and efficiently taken up by cells overexpress ingintegrins but also penetrate the tumor cells to reach the depths of the avascular tumor spheroids. In vivo imaging and fluorescent images of tumor section further demonstrated that this system achieved profoundly improved distribution within tumor tissues, and the RGD and TAT ligands on C-R/T liposomes produced a strong synergistic effect that promoted the uptake of liposomes into cells after the systemic administration of l-cysteine. The results of this study demonstrated a tremendous potential of this multistage liposomes for efficient delivery to tumor tissue and selective internalization into tumor cells.
机译:尽管聚乙二醇化已被广泛用于通过增强的渗透性和保留(EPR)效应来增强脂质体在肿瘤组织中的积累,但它仍然抑制细胞摄取并影响细胞内载体的运输。活性靶向分子显示出更好的细胞选择性,但被不良的肿瘤渗透作用所掩盖。细胞穿透肽可以增加载体的摄取,但受到其非特异性的限制。双配体系统可具有协同作用,并产生更理想的药物递送作用。基于上述因素,我们设计了结合RGD,TAT和可裂解PEG的多级脂质体体系,结合了PEG,特异性配体和穿透肽的优势。可裂解的PEG可以增加脂质体在循环过程中的稳定性和循环时间。在被动渗入肿瘤组织之后,通过外源施用安全的还原剂I-半胱氨酸,以可控的方式将脂质体上先前隐藏的双重配体暴露在肿瘤部位。 RGD专门识别在各种恶性肿瘤上过表达的整联蛋白,并介导RGD和TAT的协同作用有效地内在化。体外细胞摄取和3D肿瘤球体渗透研究表明,该系统不仅可以被过量表达整合素的细胞选择性和有效地吸收,而且可以穿透肿瘤细胞达到无血管肿瘤球体的深度。肿瘤切片的体内成像和荧光图像进一步表明,该系统极大地改善了肿瘤组织内的分布,CR / T脂质体上的RGD和TAT配体产生了强大的协同作用,促进了全身给药后脂质体向细胞中的摄取。半胱氨酸。这项研究的结果证明了这种多阶段脂质体在有效递送至肿瘤组织和选择性内化进入肿瘤细胞方面的巨大潜力。

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