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Oncogenesis lipids rafts and liquid crystals: A nanoscopic supplementary field for applied researches and a new hope of advances in cancer

机译:致癌作用脂质筏和液晶:应用研究的纳米补充领域和癌症进展的新希望

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摘要

Liquid crystals (LC) are an intermediate state between an ordered crystalline solid and a more disordered liquid. LCs (or mesophases) are ubiquitous in living systems, optimizing multiple biological functions that could not operate in purely solid or liquid environments as both mobility and organization are needed. One of us recently suggested that there is an information vector, shared by neurodegenerative and infectious pathologies, to be found within lipid rafts in an ordered liquid (Lo) form mediated by cholesterol. Here we extend this underlying mechanism to oncogenic processes. The specificity of our approach lies in highlighting the direct involvement of liquid crystals in early carcinogenic processes, by identifying specific metabolic pathways, with the intention of focusing research effort on this level, now that this has become technically feasible. Exploring LCs in living bodies reveals links between numerous oncogenic mechanisms. The approach is based on the geometric properties of amphiphilic (hydrophilic and lipophilic) plasma and intracellular membranes, the phospholipids of which are an example of the lamellar LC phase. These LCs underlie cell signaling and signaling pathways disorders at membrane level: consequently, they are directly concerned with deregulation underlying many cancerous processes.We demonstrate the implication of cancer cell membranes mesophases. That is in the membranes mesophases that are initiated most of metabolic pathways, leading to downstream pathogenic intracellular mechanisms. The concepts of order and of symmetry, in the mathematical sense, involved in condensed matter accompany informed adaptive supramolecular chemical processes in forming self-organizing mesogenic molecular assemblies. Multidisciplinary teamwork combining knowledge from different fields holds out the hope of therapeutic progress upstream of irreversible cancerous processes, while conserving the physiological integrity of the cells themselves.
机译:液晶(LC)是有序结晶固体与无序液体之间的中间状态。液相色谱(或中间相)在生物系统中无处不在,因为需要流动性和组织性,因此优化了无法在纯固体或液体环境中运行的多种生物学功能。我们中的一个人最近建议在脂质筏中以胆固醇介导的有序液体(Lo)形式存在一种信息载体,该信息载体可以被神经退行性和感染性病理学共享。在这里,我们将这种潜在机制扩展到致癌过程。我们的方法的特殊性在于,通过确定特定的代谢途径,突出液晶在早期致癌过程中的直接参与,目的是将研究精力集中在这一水平上,因为这在技术上已经变得可行。探索生物体内的LC可揭示众多致癌机制之间的联系。该方法基于两亲性(亲水性和亲脂性)质膜和细胞内膜的几何特性,其磷脂是层状LC相的一个例子。这些LC在膜水平上是细胞信号传导和信号通路障碍的基础:因此,它们直接与许多癌变过程中潜在的放松调控有关。我们证明了癌细胞膜中间相的含义。那就是在膜的中间相中,大多数的代谢途径都开始了,从而导致下游的病原性细胞内机制。从数学意义上讲,涉及凝聚态的顺序和对称性概念在形成自组织介晶分子组装过程中伴随着知情的适应性超分子化学过程。多学科的团队合作结合了来自不同领域的知识,为在不可逆的癌变过程上游发展治疗方法带来了希望,同时又能保护细胞自身的生理完整性。

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