Fliri Anton Franz, Kajiji Shama
Emergent System Analytics LLC, Clinton, CT, United States.
Front Nutr. 2022 Aug 15;9:885364. doi: 10.3389/fnut.2022.885364. eCollection 2022.
It is well recognized that redox imbalance, nitric oxide (NO), and vitamin D deficiencies increase risk of cardiovascular, metabolic, and infectious diseases. However, clinical studies assessing efficacy of NO and vitamin D supplementation have failed to produce unambiguous efficacy outcomes suggesting that the understanding of the pharmacologies involved is incomplete. This raises the need for using systems pharmacology tools to better understand cause-effect relationships at biological systems levels. We describe the use of spectral clustering methodology to analyze protein network interactions affected by a complex nutraceutical, Cardio Miracle (CM), that contains arginine, citrulline, vitamin D, and antioxidants. This examination revealed that caveolae-mediated endocytosis (CME), TGF beta activity, vitamin D efficacy and host defense systems. Identification of this regulatory scheme and the working of embedded reciprocal feedback loops has significant implications for treatment of vitamin D deficiencies, atherosclerosis, metabolic and infectious diseases such as COVID-19.
众所周知,氧化还原失衡、一氧化氮(NO)和维生素D缺乏会增加患心血管疾病、代谢性疾病和感染性疾病的风险。然而,评估补充NO和维生素D疗效的临床研究未能得出明确的疗效结果,这表明对其中涉及的药理学的理解并不完整。这就需要使用系统药理学工具,以便在生物系统层面更好地理解因果关系。我们描述了使用光谱聚类方法来分析受一种复杂的营养保健品“心脏奇迹”(CM)影响的蛋白质网络相互作用,该营养保健品含有精氨酸、瓜氨酸、维生素D和抗氧化剂。这项研究揭示了小窝介导的内吞作用(CME)、转化生长因子β活性、维生素D疗效和宿主防御系统。识别这种调节机制以及嵌入式相互反馈回路的作用,对于治疗维生素D缺乏症、动脉粥样硬化、代谢性疾病和感染性疾病(如COVID-19)具有重要意义。