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Spontan ultrasvag fotonemission i korrelation till inflammatorisk metabolism och oxidativ stress i en musmodell av collagen-inducerad artrit

Min He, Eduard van Wijk, Herman van Wietmarschen, Mei Wang, Mengmeng Sun, Slavik Koval, Roeland van Wijk, Thomas Hankemeier, Jan van der Greef
Nyckelinsikter
  1. 01Studerade en musmodell av reumatoid artrit
  2. 02Svaga ljusutsläpp kopplades till inflammatorisk metabolism
  3. 03Korrelation med markörer för oxidativ stress
  4. 04Inflammation kopplad till metaboliter associerade med muskelförtvining
  5. 05UPE kan ge en systemövergripande bild av sjukdom

Hos möss med artrit korrelerade svaga ljusutsläpp med metaboliska markörer för inflammation, vilket kan tyda på en ny diagnostisk metod.

Abstract

The increasing prevalence of rheumatoid arthritis has driven the development of new approaches and technologies for investigating the pathophysiology of this devastating, chronic disease. From the perspective of systems biology, combining comprehensive personal data such as metabolomics profiling with ultra-weak photon emission (UPE) data may provide key information regarding the complex pathophysiology underlying rheumatoid arthritis. In this article, we integrated UPE with metabolomics-based technologies in order to investigate collagen- induced arthritis, a mouse model of rheumatoid arthritis, at the systems level, and we investigated the biological underpinnings of the complex dataset. Using correlation networks, we found that elevated inflammatory and ROS-mediated plasma metabolites are strongly correlated with a systematic reduction in amine metabolites, which is linked to muscle wasting in rheumatoid arthritis. We also found that increased UPE intensity is strongly linked to metabolic processes (with correlation co-efficiency |r| value N0.7), which may be associated with lipid oxidation that related to inflammatory and/or ROS-mediated processes. Together, these results indicate that UPE is correlated with metabolomics and may serve as a valuable tool for diagnosing chronic disease by integrating inflammatory signals at the systems level. Our correlation network analysis provides important and valuable in- formation regarding the disease process from a system-wide perspective.

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APA
Min He, Eduard van Wijk, Herman van Wietmarschen, Mei Wang, Mengmeng Sun, Slavik Koval, Roeland van Wijk, Thomas Hankemeier, & Jan van der Greef (2017). Spontan ultrasvag fotonemission i korrelation till inflammatorisk metabolism och oxidativ stress i en musmodell av collagen-inducerad artrit. https://fasciaresearchdatabase.com/spontaneous-ultra-weak-photon-emission-in-correlation-to-inflammatory-metabolism-and-oxidative-stress-in-a-mouse-model-of-collagen-induced-arthritis/
MLA
Min He, et al. "Spontan ultrasvag fotonemission i korrelation till inflammatorisk metabolism och oxidativ stress i en musmodell av collagen-inducerad artrit." 2017, https://fasciaresearchdatabase.com/spontaneous-ultra-weak-photon-emission-in-correlation-to-inflammatory-metabolism-and-oxidative-stress-in-a-mouse-model-of-collagen-induced-arthritis/.
Chicago
Min He et al. 2017. "Spontan ultrasvag fotonemission i korrelation till inflammatorisk metabolism och oxidativ stress i en musmodell av collagen-inducerad artrit.". https://fasciaresearchdatabase.com/spontaneous-ultra-weak-photon-emission-in-correlation-to-inflammatory-metabolism-and-oxidative-stress-in-a-mouse-model-of-collagen-induced-arthritis/