4.6 Article

Walker-256 Tumour-Induced Cachexia Altered Liver Metabolomic Profile and Function in Weanling and Adult Rats

Journal

METABOLITES
Volume 11, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/metabo11120831

Keywords

cachexia; experimental model; liver; metabolomics

Funding

  1. CAPES
  2. CNPq [302524/2016-9, 301771/2019-7]
  3. FAPESP [2015/21890-0, 2017/02739-4, 2018/20637-7, 2019/13937-7, 2019/14803-4, 2019/20558-2]

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This study found that Walker-256 tumor-induced cachexia impacts liver metabolism, with more severe effects in weanling hosts, characterized by increased levels of amino acids and impaired glucose metabolism. The study further revealed that liver alterations in tumor-bearing rats are related to energy status and nucleotide metabolites.
Cancer cachexia occurs in up to 85% of advanced cancer patients, affecting different tissues and organs, mainly the liver, which plays a central role in body metabolism control. However, liver responses to cancer cachexia progression are still poorly understood. Considering the possible different challenges provided by the rodent's phase of life and the cachexia progression, we evaluated the liver metabolic alterations affected by Walker-256 tumour growth in weanling and young-adult rats. For this, we applied a metabolomics approach associated with protein and gene expression analyses. Higher amino acid levels and impaired glucose metabolism were important features in tumour-bearing animals' liver tissue. The weanling hosts had more pronounced cachexia, with higher carcass spoliation, liver lipid metabolism and impaired CII and CIV mitochondrial complexes. The liver alterations in young adult tumour-bearing rats were related to energy status and nucleotide metabolites, such as uridine, NAD+, xanthosine, hypoxanthine and inosine. In conclusion, the Walker-256 tumour-induced cachexia impaired liver metabolism, being more severe in the weanling hosts. Further studies are needed to correlate these changes in the preclinical model, which can be correlated to the clinical features of cancer cachexia, allowing for a translational potential involving the liver function and its responses to potential treatments.

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