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构建并评价基于红细胞的载药系统用于化学-光热联合治疗

Construction and evaluation of red blood cells-based drug delivery system for chemo-photothermal therapy.

机构信息

School of Pharmacy, Xiamen Medical College, Xiamen, 361023, PR China; Institute of Respiratory Diseases, Xiamen Medical College, Xiamen, 361023, PR China.

School of Pharmacy, Xiamen Medical College, Xiamen, 361023, PR China.

出版信息

Colloids Surf B Biointerfaces. 2021 Aug;204:111789. doi: 10.1016/j.colsurfb.2021.111789. Epub 2021 Apr 26.

Abstract

In this study, a novel tumor-targeting drug delivery system (DDS) based on red blood cells (RBCs) were fabricated for combinational chemo-phototherapy against cancer. Cyclic peptide (cRGD) and indocyanine green (ICG) were applied to the surface of RBCs to increase the targeting and photothermal effect, respectively. Doxorubicin (DOX) as a model drug was loaded into RBCs by the hypotonic dialysis method. A series of tests have been carried out to evaluate the RBCs-based DDS and these tasks include physicochemical properties, cellular uptake, targeting ability, and combination therapeutic efficiency. As a result, the DOX was successfully loaded into RBCs and the drug loading amount was 0.84 ± 0.09 mg/mL. There was no significant change of particle size after surface modification of RBCs. The RBCs-based DDS could target to the surface of cancer cells, which delivery DOX to the lesions efficiently and accurately. Meanwhile, due to the combined treatment effect, the RBCs-based DDS can effectively inhibit tumor growth. The RBCs-based DDS constructed in this research may have promising applications in cancer therapy due to their highly synergistic efficient therapy and to investigate its possibility for tumor therapy.

摘要

在这项研究中,构建了一种基于红细胞(RBCs)的新型肿瘤靶向药物传递系统(DDS),用于联合化学-光疗治疗癌症。将环肽(cRGD)和吲哚菁绿(ICG)应用于 RBCs 表面,以分别提高靶向性和光热效应。通过低渗透析法将阿霉素(DOX)作为模型药物载入 RBCs。进行了一系列测试来评估基于 RBCs 的 DDS,这些任务包括物理化学性质、细胞摄取、靶向能力和联合治疗效率。结果,成功地将 DOX 载入 RBCs,载药量为 0.84±0.09mg/mL。RBCs 表面修饰后粒径没有明显变化。基于 RBCs 的 DDS 可以靶向癌细胞表面,将 DOX 有效地、准确地递送到病变部位。同时,由于联合治疗效果,基于 RBCs 的 DDS 可以有效地抑制肿瘤生长。由于其高效协同治疗作用,本研究构建的基于 RBCs 的 DDS 可能在癌症治疗中有很好的应用前景,可进一步研究其用于肿瘤治疗的可能性。

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