Van Wijk Roeland, Van Wijk Eduard P A, van Wietmarschen Herman A, van der Greef Jan
Sino-Dutch Centre for Preventive and Personalized Medicine/Centre for Photonics of Living Systems, Leiden University, Leiden, The Netherlands; Meluna Research, Geldermalsen, The Netherlands.
Sino-Dutch Centre for Preventive and Personalized Medicine/Centre for Photonics of Living Systems, Leiden University, Leiden, The Netherlands; Meluna Research, Geldermalsen, The Netherlands; Division of Analytical Biosciences, LACDR, Leiden University, Leiden, The Netherlands; Samueli Institute, 1737 King Street, Suite 600, Alexandria, VA 22314, USA.
J Photochem Photobiol B. 2014 Oct 5;139:39-46. doi: 10.1016/j.jphotobiol.2013.11.014. Epub 2013 Dec 2.
For decades, the relationship between ultra-weak photon emission (UPE) and the health state of the body is being studied. With the advent of systems biology, attention shifted from the association between UPE and reactive oxygen species towards UPE as a reflection of changed metabolic networks. Essential for this shift in thinking is the development of novel photon count statistical methods that more reflect the dynamics of the systems organization. Additionally, efforts to combine and correlate UPE data with other types of measurements such as metabolomics be key to understand the complexity of the human body. This review describes the history and developments in the area of human UPE research from a technical - methodological perspective, an experimental perspective and a theoretical perspective. There is ample evidence that human UPE research will allow a better understanding of the body as a complex dynamical system. The future lies in the further development of an integrated UPE and metabolomics platform for a personalized monitoring of changes of the system towards health or disease.
几十年来,人们一直在研究超微弱光子发射(UPE)与身体健康状况之间的关系。随着系统生物学的出现,关注点从UPE与活性氧物种之间的关联转向了将UPE视为代谢网络变化的一种反映。这种思维转变的关键在于开发新的光子计数统计方法,以更准确地反映系统组织的动态变化。此外,将UPE数据与代谢组学等其他类型的测量数据相结合并进行关联分析,对于理解人体的复杂性至关重要。本文从技术方法、实验和理论角度综述了人类UPE研究领域的历史与进展。有充分证据表明,人类UPE研究将有助于更好地理解作为复杂动态系统的人体。未来在于进一步开发一个集成的UPE和代谢组学平台,用于对系统向健康或疾病状态转变进行个性化监测。