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首页> 外文期刊>Biomaterials >The effects of an RGD-PAMAM dendrimer conjugate in 3D spheroid culture on cell proliferation, expression and aggregation
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The effects of an RGD-PAMAM dendrimer conjugate in 3D spheroid culture on cell proliferation, expression and aggregation

机译:RGD-PAMAM树状聚合物偶联物在3D球体培养中对细胞增殖,表达和聚集的影响

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摘要

By presenting biomolecular ligands on the surface in high density, ligand-decorated dendrimers are capable of binding to membrane receptors and cells with specificity and avidity. Despite the various uses, fundamental investigations on ligand-dendrimer conjugates have mainly focused on their binding behavior with cells, whereas their potential bioactivity and applications in multicellular systems, especially in three-dimensional (3D) culture systems, remains untapped. In this study, a typical adhesive peptide ligand - RGD - was modified to generation 4 polyamidoamine (PAMAM), and the bioactivity of suspended RGD-PAMAM conjugates was investigated on cells cultured as multicellular spheroids. Our results demonstrate that the RGD-PAMAM conjugates, after being incorporated into the 3D spheroids, were able to promote cellular proliferation and aggregation, and affect the mRNA expression of extracellular factors by NIH 3T3 cells. These bioactive functions were multivalency-dependent, as none of similar effects was observed for monovalent RGD ligand. Our study suggests that multivalent ligand-dendrimer conjugates may act as a unique type of artificial factors to mediate the cellular microenvironment in 3D culture, a property attributable to the spatial organization of the ligands and possible " cell-gluing" function of multivalent conjugates. This new finding opens the door for further exploring multivalent ligand-dendrimer conjugates for applications in 3D cell culture and tissue engineering.
机译:通过以高密度将生物分子配体呈现在表面上,配体修饰的树枝状聚合物能够以特异性和亲和力与膜受体和细胞结合。尽管有各种用途,但对配体-树状聚合物共轭物的基础研究主要集中在它们与细胞的结合行为上,而在多细胞系统中,特别是在三维(3D)培养系统中的潜在生物活性和应用仍未开发。在这项研究中,将典型的粘性肽配体RGD修饰为第4代聚酰胺酰胺(PAMAM),并在培养为多细胞球体的细胞上研究了悬浮的RGD-PAMAM共轭物的生物活性。我们的结果表明,RGD-PAMAM共轭物在掺入3D球体后能够促进细胞增殖和聚集,并通过NIH 3T3细胞影响细胞外因子的mRNA表达。这些生物活性功能是多价依赖性的,因为对于单价RGD配体没有观察到相似的作用。我们的研究表明,多价配体-树状聚合物共轭物可能是介导3D培养中细胞微环境的一种独特类型的人工因子,这归因于配体的空间组织和多价共轭物的可能的“细胞胶粘”功能。这一新发现为进一步探索在3D细胞培养和组织工程中应用的多价配体-树状聚合物缀合物打开了大门。

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