Summary of Study ST002037

This data is available at the NIH Common Fund's National Metabolomics Data Repository (NMDR) website, the Metabolomics Workbench, https://www.metabolomicsworkbench.org, where it has been assigned Project ID PR001288. The data can be accessed directly via it's Project DOI: 10.21228/M8771V This work is supported by NIH grant, U2C- DK119886.

See: https://www.metabolomicsworkbench.org/about/howtocite.php

This study contains a large results data set and is not available in the mwTab file. It is only available for download via FTP as data file(s) here.

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Study IDST002037
Study TitleIrradiation causes alterations of polyamine, purine and sulfur metabolism in red blood cells and multiple organs (Liver)
Study SummaryInvestigating the metabolic effects of radiation is critical to understand the impact of radiotherapy (e.g., for bone marrow irradiation prior to hematopoietic stem cell transplantation in the clinic or in laboratory studies), space travel, and exposure to environmental radiation. In patients undergoing hemopoietic stem cell transplantation, iron overload is a common risk factor for poor outcomes. Previous studies assert that both irradiation and iron independently modulate tryptophan and indole metabolism of the microbiome, which may in turn impact host immune response. However, no studies have interrogated the multi-organ effects of these treatments concurrently. Herein, we use a model that recapitulate transfusional iron overload, a condition often observed in chronically transfused patients with thalassemia, sickle cell disease, or myelodysplastic syndrome. We applied an omics approach to investigate the impact of both iron load and irradiation on the host metabolome. Our results revealed dose-dependent effects of irradiation in red blood cells (RBC), plasma, spleen, and liver energy and redox metabolism. Increases in polyamines and purine salvage metabolites were observed in organs with high oxygen consumption including the heart, kidney, and brain. Irradiation also impacted the metabolism of the duodenum, colon, and stool, suggesting a potential effect on the microbiome. Iron infusion affected the respose to radiation in the organs and blood, especially in RBC polyamine metabolism and spleen antioxidant metabolism, and affected glucose, sulfur (especially methionine and glutathione systems) and tryptophan metabolism in the liver, stool, and brain. Together, the results suggest that radiation impacts metabolism on a multi-organ level with a significant interaction of host iron status.
Institute
University of Colorado Anschutz Medical Campus
Last NameRoy
First NameMicaela
Address13001 E 17th Pl, Aurora, CO 80045
Emailmicaela.roy@cuanschutz.edu
Phone303-724-3339
Submit Date2021-12-28
Raw Data AvailableYes
Raw Data File Type(s)raw(Thermo)
Analysis Type DetailLC-MS
Release Date2022-01-21
Release Version1
Micaela Roy Micaela Roy
https://dx.doi.org/10.21228/M8771V
ftp://www.metabolomicsworkbench.org/Studies/ application/zip

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Factors:

Subject type: Mammal; Subject species: Mus musculus (Factor headings shown in green)

mb_sample_id local_sample_id Treatment
SA19160349IV iron | Radiation Dose:Gy10
SA19160450IV iron | Radiation Dose:Gy10
SA19160547IV iron | Radiation Dose:Gy10
SA19160648IV iron | Radiation Dose:Gy10
SA19160746IV iron | Radiation Dose:Gy10
SA19160857IV iron | Radiation Dose:Gy11
SA19160958IV iron | Radiation Dose:Gy11
SA19161056IV iron | Radiation Dose:Gy11
SA19161159IV iron | Radiation Dose:Gy11
SA19161260IV iron | Radiation Dose:Gy11
SA19161319IV iron | Radiation Dose:Gy7
SA19161420IV iron | Radiation Dose:Gy7
SA19161518IV iron | Radiation Dose:Gy7
SA19161617IV iron | Radiation Dose:Gy7
SA19161716IV iron | Radiation Dose:Gy7
SA19161828IV iron | Radiation Dose:Gy8
SA19161929IV iron | Radiation Dose:Gy8
SA19162030IV iron | Radiation Dose:Gy8
SA19162126IV iron | Radiation Dose:Gy8
SA19162227IV iron | Radiation Dose:Gy8
SA19162337IV iron | Radiation Dose:Gy9
SA19162439IV iron | Radiation Dose:Gy9
SA19162540IV iron | Radiation Dose:Gy9
SA19162636IV iron | Radiation Dose:Gy9
SA19162738IV iron | Radiation Dose:Gy9
SA1916286IV iron | Radiation Dose:no irradiated
SA1916297IV iron | Radiation Dose:no irradiated
SA1916308IV iron | Radiation Dose:no irradiated
SA19163110IV iron | Radiation Dose:no irradiated
SA1916329IV iron | Radiation Dose:no irradiated
SA19163341Saline | Radiation Dose:Gy10
SA19163444Saline | Radiation Dose:Gy10
SA19163545Saline | Radiation Dose:Gy10
SA19163643Saline | Radiation Dose:Gy10
SA19163742Saline | Radiation Dose:Gy10
SA19163851Saline | Radiation Dose:Gy11
SA19163953Saline | Radiation Dose:Gy11
SA19164054Saline | Radiation Dose:Gy11
SA19164155Saline | Radiation Dose:Gy11
SA19164252Saline | Radiation Dose:Gy11
SA19164315Saline | Radiation Dose:Gy7
SA19164414Saline | Radiation Dose:Gy7
SA19164513Saline | Radiation Dose:Gy7
SA19164611Saline | Radiation Dose:Gy7
SA19164725Saline | Radiation Dose:Gy8
SA19164822Saline | Radiation Dose:Gy8
SA19164924Saline | Radiation Dose:Gy8
SA19165023Saline | Radiation Dose:Gy8
SA19165121Saline | Radiation Dose:Gy8
SA19165232Saline | Radiation Dose:Gy9
SA19165331Saline | Radiation Dose:Gy9
SA19165435Saline | Radiation Dose:Gy9
SA19165533Saline | Radiation Dose:Gy9
SA19165634Saline | Radiation Dose:Gy9
SA1916572Saline | Radiation Dose:no irradiated
SA1916583Saline | Radiation Dose:no irradiated
SA1916591Saline | Radiation Dose:no irradiated
SA1916604Saline | Radiation Dose:no irradiated
Showing results 1 to 58 of 58
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