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Reverse anti-breast cancer drug resistance effects by a novel two-step assembled nano-celastrol medicine

机译:反向anti-breast肿瘤耐药性的影响由小说两步nano-celastrol组装医学

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Multidrug resistance (MDR) has become one of the most intractable problems in clinics as it would cause failure in chemotherapy. In this study, we demonstrated that a nanoscale self-assembled nanomedicine, which almost consisted of a pure chemo-drug, could efficiently overcome MDR. Celastrol (CST) was directly assembled into a discrete nanomedicine by precipitation, and then CST nanoparticles (CNPs) inhibited drug efflux pumps by activating HSF-1 expression and promoting HSF-1 translocation into nucleus to suppress the Pgp expression. The more drug accumulated in cells could activate apoptosis signals simultaneously and realize drug resistance reversal. CNPs significantly increased the level of ROS to regulate ERK/JNK signaling, which would further induce resistant cell apoptosis. The tandem apoptosis strategy used the same concentration of CST but achieved a higher antitumor effect. Overall, our study provides a new translational and alternative strategy using conventional natural products to overcome MDR with high efficacy.
机译:多药耐药性(MDR)已经成为其中一个在诊所,因为它将最棘手的问题导致化疗失败。表明纳米自组装纳米,这几乎是一个纯粹的chemo-drug,可以有效地克服多药抗药性肺结核病的病人。直接组装到一个Celastrol (CST)离散纳米沉淀,然后中科纳米颗粒(cnp)抑制药物流出泵通过激活和HSF-1表达式促进HSF-1易位到细胞核抑制Pgp表达式。积累在细胞可以激活细胞凋亡信号的同时,实现药物耐药性的逆转。ROS水平调节ERK /物信号,这将进一步诱导耐药细胞细胞凋亡。相同浓度的CST但实现更高抗肿瘤的效果。新的转化和替代策略使用传统的天然产物来克服多药抗药性肺结核病的病人高功效。

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