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Enhanced adhesion and in situ photothermal ablation of cancer cells in surface-functionalized electrospun microfiber scaffold with graphene oxide

机译:用石墨烯氧化物的表面官能化电纺微纤维支架中癌细胞增强的粘附性和原位光热消融

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摘要

The physicochemical characteristics of a biomaterial surface highly affect the interaction with living cells. Recently, much attention has been focused on the adhesion properties of functional biomaterials toward cancer cells, since is expected to control metastatic spread of a tumor, which is related to good probability containing the progression of disease burden. Here, we designed an implantable poly(caprolactone)-based electrospun microfiber scaffold, henceforth PCLMF-GO, to simultaneously capture and kill cancer cells by tuning physicochemical features of the hybrid surface through nitrogen plasma activation and hetero-phase graphene oxide (GO) covalent functionalization. The surface immobilization of GO implies enhanced cell adhesion and proliferation, promoting the selective adhesion of cancer cells, even if allowing cancer associated fibroblast (CAFs) capture. We also display that the functionalization with GO, thanks to the high near-infrared (NIR) absorbance, enables the discrete photothermal eradication of the captured cancer cells in situ (≈98%).
机译:生物材料的物理化学特性高度影响与活细胞的相互作用。最近,很多关注都专注于功能生物材料对癌细胞的粘附性质,因为预期控制肿瘤的转移性传播,这与含有疾病负担进展的良好概率有关。在这里,我们设计了一种可植入的聚(己内酯)基用于电扫描微纤维支架,从此后PCLMF-GO,通过氮素等离子体活化和杂相石墨烯(GO)共价调节杂化表面的物理化学特征来同时捕获和杀死癌细胞功能化。 Go的表面固定化意味着增强的细胞粘附和增殖,促进癌细胞的选择性粘附,即使允许癌症相关的成纤维细胞(CAFS)捕获。我们还展示通过高近红外线(NIR)吸收的功能化,使离散的光热消除捕获的癌细胞原位(≈98%)。

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