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Evolution of oxygen utilization in multicellular organisms and implications for cell signalling in tissue engineering

机译:多细胞生物中氧气利用的演变及其对组织工程中细胞信号传导的影响

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Oxygen is one of the critically defining elements resulting in the existence of eukaryotic life on this planet. The rise and fall of this element can be tracked through time and corresponds with the evolution of diverse life forms, development of efficient energy production (oxidative phosphorylation) in single cell organisms, the evolution of multicellular organisms and the regulation of complex cell phenotypes. By understanding these events, we can plot the effect of oxygen on evolution and its direct influence on different forms of life today, from the whole organism to specific cells within multicellular organisms. In the emerging field of tissue engineering, understanding the role of different levels of oxygen for normal cell function as well as control of complex signalling cascades is paramount to effectively build 3D tissues in vitro and their subsequent survival when implanted.
机译:氧是导致这个星球上存在真核生物的关键元素之一。可以随时间追踪该元素的上升和下降,并与多种生命形式的进化,单细胞生物中有效能量产生(氧化磷酸化)的发展,多细胞生物的进化以及复杂细胞表型的调节相对应。通过了解这些事件,我们可以绘制出氧气对进化的影响及其对当今不同生命形式的直接影响,从整个生物体到多细胞生物体中的特定细胞。在新兴的组织工程领域,了解不同水平的氧气对正常细胞功能的作用以及对复杂信号传导级联的控制对于在体外有效构建3D组织及其植入后的存活至关重要。

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