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PLGA-PLL-PEG-Tf-based targeted nanoparticles drug delivery system enhance antitumor efficacy via intrinsic apoptosis pathway

机译:基于PLGA-PLL-PEG-Tf的靶向纳米颗粒药物递送系统通过固有的凋亡途径增强抗肿瘤功效

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摘要

Chemotherapy offers a systemic cancer treatment; however, it is limited in clinical administration due to its serious side effects. In cancer medicine, the use of nanoparticles (NPs) drug delivery system (DDS) can sustainedly release anticancer drug at the specific site and reduce the incidence of toxicity in normal tissues. In the present study, we aimed to evaluate the benefit of a novel chemotherapeutic DDS and its underlying mechanisms. Daunorubicin (DNR) was loaded into poly (lactic-co-glycolic acid) (PLGA)-poly-l-lysine (PLL)-polyethylene glycol (PEG)-transferrin (Tf) NPs to construct DNR-PLGA-PLL-PEG-Tf-NPs (DNR-loaded NPs) as a DDS. After incubating with PLGA-PLL-PEG-Tf-NPs, DNR, and DNR-loaded NPs, the leukemia K562 cells were collected and the intracellular concentration of DNR was detected by flow cytometry, respectively. Furthermore, the effect of drugs on the growth of tumors in K562 xenografts was observed and the relevant toxicity of therapeutic drugs on organs was investigated in vivo. Meanwhile, cell apoptosis in the excised xenografts was measured by transferase-mediated dUTP nick-end labeling assay, and the expression of apoptosis-related proteins, including Bcl-2, Bax, Caspase-9, Caspase-3, and cleaved-PARP, was determined by Western blotting analysis. Results showed that DNR-loaded NPs increased intracellular concentration of DNR in K562 cells in vitro and induced a remarkable improvement in anticancer activity in the xenografts in vivo. The expression of Bcl-2 protein was downregulated and that of Bax, Caspase-9, Caspase-3, and cleaved-PARP proteins were obviously upregulated in the DNR-loaded NPs group than that in other ones. Interestingly, pathological assessment showed no apparent damage to the main organs. In summary, the results obtained from this study showed that the novel NPs DDS could improve the efficacy of DNR in the treatment of leukemia and induce apoptosis via intrinsic pathway. Thus, it can be inferred that the new drug delivery may be a useful clinical tool.
机译:化学疗法可提供全身性癌症治疗;然而,由于其严重的副作用,其在临床给药中受到限制。在癌症医学中,使用纳米颗粒(NPs)药物递送系统(DDS)可以在特定部位持续释放抗癌药物,并减少正常组织中毒性的发生率。在本研究中,我们旨在评估新型化疗DDS的益处及其潜在机制。将柔红霉素(DNR)加载到聚(乳酸-乙醇酸共聚物)(PLGA)-聚-1-赖氨酸(PLL)-聚乙二醇(PEG)-转铁蛋白(Tf)NP中以构建DNR-PLGA-PLL-PEG- Tf-NP(装有DNR的NP)作为DDS。与PLGA-PLL-PEG-Tf-NPs,DNR和载有DNR的NPs孵育后,收集白血病K562细胞,并通过流式细胞仪检测DNR的细胞内浓度。此外,观察到药物对K562异种移植物中肿瘤生长的影响,并在体内研究了治疗药物对器官的相关毒性。同时,通过转移酶介导的dUTP缺口末端标记测定法检测切除的异种移植物中的细胞凋亡,以及凋亡相关蛋白的表达,包括Bcl-2,Bax,Caspase-9,Caspase-3和裂解的PARP,通过蛋白质印迹分析确定。结果表明,负载DNR的NPs体外增加了K562细胞中DNR的细胞内浓度,并在体内诱导了抗癌活性的显着改善。 DNR负载的NP组中Bcl-2蛋白的表达下调,而Bax,Caspase-9,Caspase-3和裂解的PARP蛋白的表达明显上调。有趣的是,病理评估未显示对主要器官的明显损害。总之,从该研究中获得的结果表明,新型NPs DDS可以改善DNR在治疗白血病中的功效并通过内在途径诱导细胞凋亡。因此,可以推断出新药物递送可能是有用的临床工具。

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