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Design of novel multifunctional targeting nano-carrier drug delivery system based on CD44 receptor and tumor microenvironment pH condition

机译:基于CD44受体和肿瘤微环境pH条件的新型多功能靶向纳米载体药物递送系统设计

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Abstract In this study, to develop a multifunctional targeting nano-carrier drug delivery system for cancer therapy, the novel pH-sensitive ketal based oligosaccharides of hyaluronan (oHA) conjugates were synthesized by chemical conjugation of hydrophobic menthone 1,2-glycerol ketal (MGK) to the backbone of oHA with the histidine as the linker of proton sponge effect. The multifunctional oHA conjugates, oHA-histidine-MGK (oHM) carried the pH-sensitive MGK as hydrophobic moieties and oHA as the target of CD44 receptor. The oHM could self-assemble to nano-sized spherical shape with the average diameters of 128.6?nm at pH 7.4 PBS conditions. The oHM nanoparticles (oHMN) could release encapsulated curcumin (Cur) with 82.6% at pH 5.0 compared with 49.3% at pH 7.4. The results of cytotoxicity assay indicated that encapsulated Cur in oHMN (Cur-oHMN) were stable and have less toxicity compared to Cur suspension. The anti-tumor efficacy in vivo suggested that Cur-oHMN suppressed tumor growth most efficiently. These results present the promising potential of oHMN as a stable and effective nano-sized pH-sensitive drug delivery system for cancer treatment.
机译:摘要为了研究多功能靶向纳米载体用于癌症治疗的药物递送系统,通过化学偶联疏水性薄荷酮1,2-甘油缩酮(MGK)合成了新型的pH敏感的透明质酸透明质酸(oHA)结合物基于缩酮的寡糖。 )以组氨酸作为质子海绵效应的连接基连接至oHA的骨架。多功能oHA缀合物oHA-组氨酸-MGK(oHM)带有pH敏感的MGK作为疏水部分,而oHA作为CD44受体的靶标。在pH 7.4 PBS条件下,oHM可以自组装成纳米尺寸的球形,平均直径为128.6?nm。 oHM纳米颗粒(oHMN)在pH 5.0时可以释放82.6%的封装姜黄素(Cur),而在pH 7.4时为49.3%。细胞毒性测定的结果表明,与Cur悬浮液相比,oHMN(Cur-oHMN)中包封的Cur稳定且毒性较低。体内抗肿瘤功效提示Cur-oHMN最有效地抑制了肿瘤的生长。这些结果表明,oHMN作为一种稳定,有效的纳米级pH敏感药物递送系统,有望用于癌症治疗。

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