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Development of a Biomimetic Chondroitin Sulfate-modified Hydrogel to Enhance the Metastasis of Tumor Cells

机译:仿生硫酸软骨素修饰水凝胶的开发以增强肿瘤细胞的转移。

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摘要

Tumor metastasis with resistance to anticancer therapies is the main cause of death in cancer patients. It is necessary to develop reliable tumor metastasis models that can closely recapitulate the pathophysiological features of the native tumor tissue. In this study, chondroitin sulfate (CS)-modified alginate hydrogel beads (ALG-CS) are developed to mimic the in vivo tumor microenvironment with an abnormally increased expression of CS for the promotion of tumor cell metastasis. The modification mechanism of CS on alginate hydrogel is due to the cross-linking between CS and alginate molecules via coordination of calcium ions, which enables ALG-CS to possess significantly different physical characteristics than the traditional alginate beads (ALG). And quantum chemistry calculations show that in addition to the traditional egg-box structure, novel asymmetric egg-box-like structures based on the interaction between these two kinds of polymers are also formed within ALG-CS. Moreover, tumor cell metastasis is significantly enhanced in ALG-CS compared with that in ALG, as confirmed by the increased expression of MMP genes and proteins and greater in vitro invasion ability. Therefore, ALG-CS could be a convenient and effective 3D biomimetic scaffold that would be used to construct standardized tumor metastasis models for tumor research and anticancer drug screening.
机译:具有抗癌疗法抗性的肿瘤转移是癌症患者死亡的主要原因。有必要建立可靠的肿瘤转移模型,以密切概括天然肿瘤组织的病理生理特征。在这项研究中,硫酸软骨素(CS)修饰的藻酸盐水凝胶珠(ALG-CS)被开发来模拟体内肿瘤微环境,其中CS的表达异常增加,以促进肿瘤细胞转移。 CS在藻酸盐水凝胶上的修饰机理是由于CS和藻酸盐分子之间通过钙离子的配位而发生的交联,这使得ALG-CS具有与传统藻酸盐珠(ALG)明显不同的物理特性。量子化学计算表明,除传统的卵盒结构外,ALG-CS内还形成了基于这两种聚合物之间相互作用的新型不对称卵盒结构。此外,与ALG相比,ALG-CS中的肿瘤细胞转移显着增强,这可以通过MMP基因和蛋白质表达的增加以及更高的体外侵袭能力来证实。因此,ALG-CS可能是一种方便有效的3D仿生支架,可用于构建标准化的肿瘤转移模型,用于肿瘤研究和抗癌药物筛选。

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