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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Dendrimer-based nanoparticles for potential personalized therapy in chronic lymphocytic leukemia: Targeting the BCR-signaling pathway
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Dendrimer-based nanoparticles for potential personalized therapy in chronic lymphocytic leukemia: Targeting the BCR-signaling pathway

机译:基于树状聚合物的纳米颗粒可用于慢性淋巴细胞白血病的潜在个性化治疗:靶向BCR信号通路

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Chronic lymphocytic leukemia (CLL) is one of the most prevalent forms of leukemia in western society. Although classic chemoimmune therapy is still the gold standard of care for leukemic patients, effective therapy of CLL is yet to be achieved. The present study examines the influence of poly(propylene)imine (PPI) dendrimers with primary amino surface groups modified with maltotriose residues in approximately 90% (PPI-G4-DS-Mal-III) or 30% (PPI-G4-OS-Mal-III) of cases on CLL cells (MEC-1 cell line with del(17p)), and confirms that the main trigger in this interaction is the induction of the apoptotic mechanism. The efficacy of each dendrimer was compared using fludarabine (FA). Gene expression profiling (GEP) by microarray identified a group of genes in the BCR signaling pathway characterized by different levels of expression directly associated with the tested agent and type of interaction. Network analysis revealed the potential patterns involved in potential personalized therapy of CLL. The expression of most BCR genes decreased under the influence of dendrimers, which might translate into decreased maturation and proliferation of CLL lymphocytes. Moreover, PPI-G4-OS/DS-Mal-III dendrimers affected gene expression and CLL cells in a different way to FA. Thanks to unique properties, dendrimers may be specifically targeted, thus improving the effectiveness of CLL therapy. (C) 2016 Elsevier B.V. All rights reserved.
机译:慢性淋巴细胞性白血病(CLL)是西方社会最普遍的白血病形式之一。尽管经典的化学免疫疗法仍然是白血病患者治疗的金标准,但有效的CLL治疗尚待实现。本研究研究了用麦芽三糖残基修饰的伯氨基表面基团的聚(丙稀)亚胺(PPI)树状大分子的影响,大约90%(PPI-G4-DS-Mal-III)或30%(PPI-G4-OS- Mal-III)在CLL细胞(带有del(17p)的MEC-1细胞系)上的病例,并证实这种相互作用的主要触发因素是凋亡机制的诱导。使用氟达拉滨(FA)比较了每种树状聚合物的功效。通过微阵列进行的基因表达谱分析(GEP)在BCR信号通路中鉴定出一组基因,这些基因的特征在于不同水平的表达直接与被测药物和相互作用类型相关。网络分析显示了潜在的CLL个性化治疗所涉及的潜在模式。在树状大分子的影响下,大多数BCR基因的表达下降,这可能导致CLL淋巴细胞的成熟和增殖减少。此外,PPI-G4-OS / DS-Mal-III树状大分子以与FA不同的方式影响基因表达和CLL细胞。由于独特的性质,树枝状大分子可以被特异性靶向,从而提高CLL治疗的有效性。 (C)2016 Elsevier B.V.保留所有权利。

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