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首页> 外文期刊>Proceedings of the Nutrition Society >Investigating cholesterol metabolism and ageing using a systems biology approach
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Investigating cholesterol metabolism and ageing using a systems biology approach

机译:使用系统生物学方法研究胆固醇代谢和老化

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CVD accounted for 27 % of all deaths in the UK in 2014, and was responsible for 1·7 million hospital admissions in 2013/2014. This condition becomes increasingly prevalent with age, affecting 34·1 and 29·8 % of males and females over 75 years of age respectively in 2011. The dysregulation of cholesterol metabolism with age, often observed as a rise in LDL-cholesterol, has been associated with the pathogenesis of CVD. To compound this problem, it is estimated by 2050, 22 % of the world's population will be over 60 years of age, in culmination with a growing resistance and intolerance to pre-existing cholesterol regulating drugs such as statins. Therefore, it is apparent research into additional therapies for hypercholesterolaemia and CVD prevention is a growing necessity. However, it is also imperative to recognise this complex biological system cannot be studied using a reductionist approach; rather its biological uniqueness necessitates a more integrated methodology, such as that offered by systems biology. In this review, we firstly discuss cholesterol metabolism and how it is affected by diet and the ageing process. Next, we describe therapeutic strategies for hypercholesterolaemia, and finally how the systems biology paradigm can be utilised to investigate how ageing interacts with complex systems such as cholesterol metabolism. We conclude by emphasising the need for nutritionists to work in parallel with the systems biology community, to develop novel approaches to studying cholesterol metabolism and its interaction with ageing.
机译:CVD于2014年占英国所有死亡人员的27%,并在2013/2014年负责1·700万所医院入学。这种情况变得越来越普遍,年龄越来越普遍,影响到2011年75岁以上的男性和女性的34·1和29岁。随着年龄的增长,胆固醇代谢的失调通常被观察到LDL-胆固醇的升高与CVD发病机制有关。为了复制这个问题,据估计到2050年,世界人口的22%超过60岁,高达60岁,患有越来越多的抵抗力和不容忍于预先存在的胆固醇等他汀类药物。因此,对高胆固醇症和CVD预防的额外疗法是显而易见的研究。但是,它也必须识别这种复杂的生物系统不能使用还原剂方法进行研究;相反,它的生物唯一性需要更具综合的方法,例如由系统生物学提供的方法。在本综述中,我们首先讨论了胆固醇代谢以及如何受饮食和老化过程的影响。接下来,我们描述了高胆固醇血症的治疗策略,最后如何利用系统生物学范例来研究老化与复杂的系统相互作用,例如胆固醇代谢。我们通过强调营养师与系统生物社区平行工作的需求,开发学习胆固醇代谢及其与老龄化的互动的新方法。

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