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Use of nano-sized clay crystallites to restore adhesion among tumor and aging stem cells - a molecular simulations approach

机译:使用纳米级粘土微晶恢复肿瘤和衰老干细胞之间的粘附-分子模拟方法

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摘要

Adhesion of cells to the ECM is key to the regulation of cellular morphology, migration, proliferation, survival, and differentiation. The decrease in or loss of the cell’s ability of mutual adhesiveness has been considered as one of the specific abnormalities in the surface properties of malignant cells. A change in the association of plasma membrane with cytoskeletal structures also seems to have a close relation with these abnormalities. Similar to the role of adhesions in tumor cells, stem cells’ self-renewal is also tightly controlled by the concerted action of stem cell-intrinsic factors and signals within the niche. This study has demonstrated through molecular simulations the potential use of smectite (Na-montmorillonite) clay crystallites to create adhesions among tumor and stem cells. High electrostatic energies and cohesive energy densities measured in the simulations after the sorption of clay crystallites on cell-cell and cell-ECM complexes validate the concept of using these crystallites for the purposes. As results of this study are quite promising and clay crystallites could be considered as an option to restore adhesions in tumor and stem cells, other confirmatory tests and live cell culture studies are in process for the final validation.
机译:细胞对ECM的粘附是调节细胞形态,迁移,增殖,存活和分化的关键。细胞相互粘附能力的降低或丧失被认为是恶性细胞表面特性的特殊异常之一。质膜与细胞骨架结构的关联改变似乎也与这些异常密切相关。与粘附在肿瘤细胞中的作用相似,干细胞的自我更新也受到干细胞内在因子和利基内部信号的协同作用的严格控制。这项研究已通过分子模拟证明了蒙脱石(钠蒙脱石)粘土微晶在肿瘤和干细胞之间形成粘附的潜在用途。在粘土微晶吸附在细胞-细胞和细胞-ECM络合物上后,模拟中测得的高静电能和内聚能密度验证了将这些微晶用于此目的的概念。由于这项研究的结果是非常有希望的,粘土微晶可以被认为是恢复肿瘤和干细胞粘附的一种选择,其他验证性试验和活细胞培养研究也在进行最终验证。

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