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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Chitosan oligosaccharide-based dual pH responsive nano-micelles for targeted delivery of hydrophobic drugs
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Chitosan oligosaccharide-based dual pH responsive nano-micelles for targeted delivery of hydrophobic drugs

机译:基于壳聚糖的寡糖基响应纳米胶束进行靶向疏水药物的靶向纳米胶束

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摘要

In this study, chitosan oligosaccharide (COS)-vanillin imine (COS-Vani Imine)-based dual pH responsive nanomicelles (DPRNs) were synthesized. The resultant DPRNs were used for encapsulating genistein and its ultimate release upon pH change. The overall concept of DPRNs for the targeted delivery of hydrophobic anticancer drugs was successfully demonstrated. The DPRNs were spherical in shape, nanoscale in dimension (71.2-163.4 nm), with dual pH response. The encapsulation/loading of genistein into DPRNs was achieved and the resultant genistein-loaded DPRNs were stable under the physiological pH ((similar to)7.4); under the cancer cell extracellular pH ((similar to)6.8), the amino groups in COS is protonated, thus becoming positively charged, facilitating their adsorption onto negatively charged cancer cells. Under the cancer cell intracellular pH ((similar to)5.0), the genistein-loaded DPRNs were destroyed as a result of the cleavage of pH sensitive benzoic imine, thereby releasing the loaded genistein.
机译:在该研究中,合成了壳聚糖寡糖(COS)-Vanillin亚胺(COS-VANI亚胺)基础的双pH响应纳米(DPRNS)。所得DPRNS用于在pH变化时封装Genistein及其最终释放。成功地证明了疏水性抗癌药物靶向递送的DPRNS的总体概念。 DPRNS是球形的形状,纳米尺寸(71.2-163.4nm),具有双pH反应。达到了将Genistein的包封/加载到DPRNS中,并在生理pH((类似于)7.4)下稳定所得的Genistein-Loaded Dprns;在癌细胞细胞外pH((类似于)6.8)下,氨基中的氨基被质子化,从而产生正电荷,促进其吸附到带负电荷的癌细胞上。在癌细胞细胞内pH((类似于)5.0)下,由于pH敏感的苯甲酸骨的切割而被破坏了Genistein加载的DPRN,从而释放了负载的核酸脂。

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