Charlotte Steenblock-Group

Stem-like Cells of the HPA axis and their role in stress

Adrenal Hormone Interactions and Metabolism: A Single Sample Multi-Omics Approach


Journal article


N. Bechmann, Deepika Watts, C. Steenblock, Paal W Wallace, A. Schürmann, S. Bornstein, B. Wielockx, G. Eisenhofer, M. Peitzsch
Hormone and Metabolic Research, 2021

Semantic Scholar DOI PubMedCentral PubMed
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APA   Click to copy
Bechmann, N., Watts, D., Steenblock, C., Wallace, P. W., Schürmann, A., Bornstein, S., … Peitzsch, M. (2021). Adrenal Hormone Interactions and Metabolism: A Single Sample Multi-Omics Approach. Hormone and Metabolic Research.


Chicago/Turabian   Click to copy
Bechmann, N., Deepika Watts, C. Steenblock, Paal W Wallace, A. Schürmann, S. Bornstein, B. Wielockx, G. Eisenhofer, and M. Peitzsch. “Adrenal Hormone Interactions and Metabolism: A Single Sample Multi-Omics Approach.” Hormone and Metabolic Research (2021).


MLA   Click to copy
Bechmann, N., et al. “Adrenal Hormone Interactions and Metabolism: A Single Sample Multi-Omics Approach.” Hormone and Metabolic Research, 2021.


BibTeX   Click to copy

@article{n2021a,
  title = {Adrenal Hormone Interactions and Metabolism: A Single Sample Multi-Omics Approach},
  year = {2021},
  journal = {Hormone and Metabolic Research},
  author = {Bechmann, N. and Watts, Deepika and Steenblock, C. and Wallace, Paal W and Schürmann, A. and Bornstein, S. and Wielockx, B. and Eisenhofer, G. and Peitzsch, M.}
}

Abstract

Abstract The adrenal gland is important for many physiological and pathophysiological processes, but studies are often restricted by limited availability of sample material. Improved methods for sample preparation are needed to facilitate analyses of multiple classes of adrenal metabolites and macromolecules in a single sample. A procedure was developed for preparation of chromaffin cells, mouse adrenals, and human chromaffin tumors that allows for multi-omics analyses of different metabolites and preservation of native proteins. To evaluate the new procedure, aliquots of samples were also prepared using conventional procedures. Metabolites were analyzed by liquid-chromatography with mass spectrometry or electrochemical detection. Metabolite contents of chromaffin cells and tissues analyzed with the new procedure were similar or even higher than with conventional methods. Catecholamine contents were comparable between both procedures. The TCA cycle metabolites, cis-aconitate, isocitate, and α-ketoglutarate were detected at higher concentrations in cells, while in tumor tissue only isocitrate and potentially fumarate were measured at higher contents. In contrast, in a broad untargeted metabolomics approach, a methanol-based preparation procedure of adrenals led to a 1.3-fold higher number of detected metabolites. The established procedure also allows for simultaneous investigation of adrenal hormones and related enzyme activities as well as proteins within a single sample. This novel multi-omics approach not only minimizes the amount of sample required and overcomes problems associated with tissue heterogeneity, but also provides a more complete picture of adrenal function and intra-adrenal interactions than previously possible.


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