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营养基因组学与癌症预防。

Nutritional Genomics and Cancer Prevention.

机构信息

Department of Biological Sciences, National University of Medical Sciences (NUMS), Rawalpindi, Pakistan.

Department of Zoology, Government College University, Lahore, Pakistan.

出版信息

Cancer Treat Res. 2024;191:217-244. doi: 10.1007/978-3-031-55622-7_9.

Abstract

The scientific innovations have emphasized the importance of diet for one's health and wellbeing. The genetic revolution has enhanced our understanding about the effect of nutrients on genomic and transcriptomic profiles and gene-nutrition interactions (nutritional genomics). Furthermore, the contribution of micronutrient insufficiencies and macronutrient excess is evident in the development and progression of many diseases, especially cancer. It is speculated that nutrients have capacity to implicitly affect the physiological and pathophysiological processes via gene expression various regulatory processes. Moreover, the nutrients are known to affect the cellular networks involved in cancer progression and cancer inhibitory mechanisms targeting apoptosis or impaired angiogenesis. The interplay of regulatory processes in physiological systems and nutrients provides basis for the nutrigenomics. The functional genomics data further argue that cellular and molecular processes involved in the cancer progression are possibly programed genes during early development which may persist into adulthood and become detrimental. The incorporation of the functional interactions between nutrients and the genome has revolutionized the field of personalized medicine and provided the foundation for targeted cancer therapy through nutrients. There is growing evidence on the beneficial impacts of eating habits on lowering the risk of cancer, even if it can be difficult to pinpoint the precise role of nutrients. The nutrigenomic information may provide bases to develop disease prevention and treatment via nutrition, at the molecular level.

摘要

科学创新强调了饮食对健康和幸福的重要性。基因革命增强了我们对营养素对基因组和转录组谱以及基因-营养相互作用(营养基因组学)的影响的理解。此外,微量营养素不足和大量营养素过剩在许多疾病(尤其是癌症)的发展和进展中都有明显的表现。据推测,营养素通过各种调节过程的基因表达,具有潜在地影响生理和病理生理过程的能力。此外,已知营养素会影响涉及癌症进展和靶向细胞凋亡或受损血管生成的癌症抑制机制的细胞网络。生理系统中调节过程与营养素的相互作用为营养基因组学提供了基础。功能基因组学数据进一步表明,癌症进展中涉及的细胞和分子过程可能是早期发育过程中编程的基因,这些基因可能会持续到成年期并产生有害影响。营养素与基因组之间的功能相互作用的结合彻底改变了个性化医学领域,并为通过营养素进行靶向癌症治疗提供了基础。越来越多的证据表明,饮食习惯对降低癌症风险有有益影响,即使很难确定营养素的确切作用。营养基因组学信息可能为通过营养在分子水平上预防和治疗疾病提供依据。

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