Sultan Sherif, Hynes Niamh
Department of Vascular and Endovascular Surgery, Western Vascular Institute, University College Hospital Galway, Ireland.
Vascular. 2012 Oct;20(5):243-50. doi: 10.1258/vasc.2012.ra0062. Epub 2012 Sep 27.
Cardiovascular primary prevention and regeneration programs are the contemporary frontiers in functional metabolic vascular medicine. This novel science perspective harnesses our inherent ability to modulate the interface between specialized gene receptors and bioavailable nutrients in what is labeled as the nutrient-gene interaction. By mimicking a natural process through the conveyance of highly absorbable receptor specific nutrients, it is feasible to accelerate cell repair and optimize mitochondrial function, thereby achieving cardiovascular cure. We performed a comprehensive review of PubMed, EMBASE and Cochrane Review databases for articles relating to cardiovascular regenerative medicine, nutrigenomics and primary prevention, with the aim of harmonizing their roles within contemporary clinical practice. We searched in particular for large-scale randomized controlled trials on contemporary cardiovascular pharmacotherapies and their specific adverse effects on metabolic pathways which feature prominently in cardiovascular regenerative programs, such as nitric oxide and glucose metabolism. Scientific research on 'cardiovascular-free' centenarians delineated that low sugar and low insulin are consistent findings. As we age, our insulin level increases. Those who can decelerate the rapidity of this process are prompting their cardiovascular rejuvenation. It is beginning to dawn on some clinicians that contemporary treatments are not only failing to impact on our most prevalent diseases, but they may be causing more damage than good. Primary prevention programs are crucial elements for a better outcome. Cardiovascular primary prevention and regeneration programs have enhanced clinical efficacy and quality of life and complement our conventional endovascular practice.
心血管疾病的一级预防和再生计划是功能性代谢血管医学的当代前沿领域。这种新颖的科学观点利用了我们调节特定基因受体与生物可利用营养素之间界面的内在能力,这一过程被称为营养基因相互作用。通过输送高度可吸收的受体特异性营养素来模拟自然过程,加速细胞修复并优化线粒体功能从而实现心血管疾病的治愈是可行的。我们对PubMed、EMBASE和Cochrane综述数据库进行了全面检索,以查找与心血管再生医学、营养基因组学和一级预防相关的文章,目的是协调它们在当代临床实践中的作用。我们特别搜索了当代心血管药物疗法的大规模随机对照试验及其对心血管再生计划中突出的代谢途径(如一氧化氮和葡萄糖代谢)的特定不良反应。对“无心血管疾病”的百岁老人的科学研究表明,低糖和低胰岛素是一致的发现。随着年龄的增长,我们的胰岛素水平会升高。那些能够减缓这一过程速度的人正在促使他们的心血管系统恢复活力。一些临床医生开始意识到,当代治疗不仅未能对我们最常见的疾病产生影响,而且可能弊大于利。一级预防计划是取得更好结果的关键要素。心血管疾病的一级预防和再生计划提高了临床疗效和生活质量,并补充了我们传统的血管内治疗方法。