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The role of cell cycle in the efficiency and activity of cancer nanomedicines

机译:细胞周期在癌症纳米药物效率和活性中的作用

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Introduction: With a wealth of knowledge on the effect of nanoparticle properties, including size, shape, charge and composition, on intracellular delivery, little has been reported on the effect of the cell cycle on the intracellular delivery and activity of nanomedicines including non-viral gene delivery systems. The aim of this review is to shed a light on this topic. Areas covered: It is now evident that nanoparticle cell uptake varies with the cell cycle phase. This review addresses this variation by dissecting the effect of cell population heterogeneity on the intracellular delivery and activity of nanomedicines with a special focus on non-viral gene delivery and combination therapy modalities that utilize cell cycle inhibitors as co-targets for therapy. In addition, the importance of three-dimensional (3D) culture systems in the drug delivery field within the context of the cell cycle will be addressed. Expert opinion: The understanding of the cell cycle machinery has improved dramatically over the last few decades. Developing combination therapy modalities that target the cell cycle to achieve better cancer patient outcome should now be the focus. Furthermore, more effort should be placed on developing a reliable, consistent, high throughput 3D cell culture system since these systems more closely resemble the cell cycle status of in vivo tumors. A switch from 2D to 3D culture systems, to more accurately predict the in vivo efficacy of nanoparticle drug delivery systems, is desirable.
机译:简介:凭借对纳米粒子特性(包括大小,形状,电荷和组成)对细胞内递送的影响的丰富知识,关于细胞周期对纳米药物(包括非病毒)的细胞内递送和活性的影响的报道很少。基因传递系统。这篇综述的目的是阐明这个主题。覆盖的区域:现在很明显,纳米颗粒细胞的吸收随细胞周期阶段而变化。这篇综述通过剖析细胞群体异质性对纳米药物的细胞内递送和活性的影响来解决这种变化,特别关注非病毒基因递送和利用细胞周期抑制剂作为治疗共同靶点的联合治疗方式。另外,将解决三维(3D)培养系统在细胞周期内药物输送领域的重要性。专家意见:在过去的几十年中,对细胞周期机制的了解已大大提高。现在,开发针对细胞周期以达到更好的癌症患者预后的联合治疗方式应成为重点。此外,应该更加努力地开发可靠,一致,高通量的3D细胞培养系统,因为这些系统更类似于体内肿瘤的细胞周期状态。从2D到3D培养系统的转换,以更准确地预测纳米颗粒药物递送系统的体内功效是理想的。

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