The Role of Tumor Microenvironment Cells in Colorectal Cancer (CRC) Cachexia

Роль клеток опухолевого микроокружения в кахексии при колоректальном раке (КРР)
Aldona Kasprzak
2021-02-04

cachexokinescolorectal cancer cachexiapro-inflammatory cytokinesskeletal muscle atrophytumor microenvironment
Cancer cachexia (CC) is a multifactorial syndrome in patients with advanced cancer characterized by weight loss via skeletal-muscle and adipose-tissue atrophy, catabolic activity, and systemic inflammation. CC is correlated with functional impairment, reduced therapeutic responsiveness, and poor prognosis, and is a major cause of death in cancer patients. In colorectal cancer (CRC), cachexia affects around 50-61% of patients, but remains overlooked, understudied, and uncured. The mechanisms driving CC are not fully understood but are related, at least in part, to the local and systemic immune response to the tumor. Accumulating evidence demonstrates a significant role of tumor microenvironment (TME) cells (e.g., macrophages, neutrophils, and fibroblasts) in both cancer progression and tumor-induced cachexia, through the production of multiple procachectic factors. The most important role in CRC-associated cachexia is played by pro-inflammatory cytokines, including the tumor necrosis factor α (TNFα), originally known as cachectin, Interleukin (IL)-1, IL-6, and certain chemokines (e.g., IL-8). Heterogeneous CRC cells themselves also produce numerous cytokines (including chemokines), as well as novel factors called "cachexokines". The tumor microenvironment (TME) contributes to systemic inflammation and increased oxidative stress and fibrosis. This review summarizes the current knowledge on the role of TME cellular components in CRC-associated cachexia, as well as discusses the potential role of selected mediators secreted by colorectal cancer cells in cooperation with tumor-associated immune and non-immune cells of tumor microenvironment in inducing or potentiating cancer cachexia. This knowledge serves to aid the understanding of the mechanisms of this process, as well as prevent its consequences.
1
CRC cells themselves secrete cytokines, chemokines, and cachexokines that cooperate with tumor-associated immune and non-immune cells to induce or intensify cachexia.
2
Colorectal cancer-associated cachexia affects approximately 50–61% of patients and remains understudied, overlooked, and without effective cure.
3
Pro-inflammatory mediators such as TNFα, IL-1, IL-6, and IL-8 are identified as major drivers of CRC-associated cachexia.
4
The tumor microenvironment promotes systemic inflammation, oxidative stress, and fibrosis, providing mechanisms that contribute to muscle and adipose-tissue wasting.
5
Tumor microenvironment cells, including macrophages, neutrophils, and fibroblasts, contribute to CRC cachexia by producing multiple pro-cachectic factors.

colorectal cancer tumor microenvironment and its cellular components in cancer-associated cachexia

the roles and mechanisms of tumor-microenvironment cells and colorectal cancer–derived mediators in inducing or potentiating cachexia, including systemic inflammation, oxidative stress, and fibrosis

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2021-02-04
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Aldona Kasprzak
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