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  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
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Non-coding RNAs in cancer-associated cachexia: clinical implications and future perspectives

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Autor
Kottorou A., Dimitrakopoulos F.-I., Tsezou A.
Datum
2021
Language
en
DOI
10.1016/j.tranon.2021.101101
Schlagwort
biological marker
interleukin 6
leptin
long untranslated RNA
microRNA
myosin heavy chain
myostatin
peroxisome proliferator activated receptor gamma
polycomb repressive complex 2
prostaglandin E2
protein p53
sirtuin 1
toll like receptor 7
transcriptome
transthyretin
uncoupling protein 3
untranslated RNA
astrocytoma
cachexia
carcinogenesis
chronic myeloid leukemia
clinical outcome
cystectomy
cytokine production
disease free survival
DNA methylation
DNA sequence
down regulation
epithelial mesenchymal transition
exosome
fat mass
gene control
gene expression
gene silencing
gene therapy
genetic transfection
head and neck cancer
high throughput sequencing
human
hypercalcemia
immune response
insulin resistance
Lewis carcinoma
lung adenocarcinoma
mesenchymal stem cell
metastasis
muscle atrophy
muscle growth
muscle hypertrophy
muscle mass
muscle regeneration
muscle strength
muscular dystrophy
nuclear reprogramming
osteosarcoma
overall survival
peroperative complication
quality of life
rectus abdominis muscle
resistance training
Review
RNA editing
sarcopenia
signal transduction
skeletal muscle
spinal muscular atrophy
tumor growth
upregulation
Neoplasia Press, Inc.
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Zusammenfassung
Cachexia is a multifactorial syndrome characterized by skeletal muscle loss, with or without adipose atrophy, irreversible through nutritional support, in the context of systemic inflammation and metabolic disorders. It is mediated by inflammatory reaction and affects almost 50% of all cancer patients, due to prominent systemic inflammation associated with the disease. The comprehension of the molecular mechanisms that are implicated in cancer cachexia sheds light on its pathogenesis and lays the foundations for the discovery of new therapeutic targets and biomarkers. Recently, ncRNAs, like microRNAs as well as lncRNAs and circRNAs seem to regulate pathways that are implicated in cancer cachexia pathogenesis, as it has been observed in animal models and in cancer cachexia patients, highlighting their therapeutic potential. Moreover, increasing evidence highlights the involvement of circulating and exosomal ncRNAs in the activation and maintenance of systemic inflammation in cancer and cancer-associated cachexia. In that context, the present review focuses on the clinical significance of ncRNAs in cancer-associated cachexia. © 2021
URI
http://hdl.handle.net/11615/75251
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