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首页> 外文期刊>Nanoscale >Ultrasound-propelled nanowire motors enhance asparaginase enzymatic activity against cancer cells
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Ultrasound-propelled nanowire motors enhance asparaginase enzymatic activity against cancer cells

机译:Ultrasound-propelled纳米线汽车提高天冬酰胺酶酶活性与癌症细胞

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Ultrasound-(US) propelled nanowires consisting of Au/Ni/Au/PEDOT-PPy-COOH segments are modified with asparaginase enzyme and applied as an effective anti-cancer agent. After immobilization of asparaginase onto the surface of the nanowire motors, the enzyme displays enhanced thermal and pH stabilities, improved resistance towards protease, and higher affinity for the substrate. The fast motion of the motorcarrying asparaginase leads to greatly accelerated biocatalytic depletion of asparagine and hence to a significantly enhanced inhibition efficacy against El4 lymphoma cancer cells (92%) as compared to free enzyme counterpart (17%) and other control groups. Such enhanced enzymatic activity against cancer cells is attributed to the fast motion of the motors which facilitates the interaction between the enzyme and the cancer cells. While asparaginase and EL4 tumor cells are used as a model system in the present study for cancer cell inhibition, the same mechanism can be expanded to other types of enzymes and biomolecules for the corresponding biofunctions.
机译:(超声波)-美国推动纳米线组成的非盟/镍/金/ PEDOT-PPy-COOH部分修改天冬酰胺酶酶和作为一个应用有效的抗癌剂。天冬酰胺酶的纳米线的表面上汽车、酶显示增强的热对pH稳定性,提高了抵抗基质蛋白酶和更高的亲和力。的快速运动motorcarrying天冬酰胺酶导致biocatalytic大大加速消耗的天冬酰胺,因此显著增强的抑制效果针对El4淋巴瘤肿瘤细胞(92%)与自由酶(17%)和其他的对照组。对癌细胞是由于活动快速运动汽车的便利酶之间的相互作用和癌症细胞。作为本研究的模型系统癌细胞抑制,相同的机制扩展到其他类型的酶和相应的biofunctions生物分子。

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