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Potential Roles of Sex-linked Differences in Obesity and Cancer Immunotherapy: Revisiting the Obesity Paradox

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Publisher Nature Portfolio
Date 2024 May 27
PMID 38800540
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Abstract

Obesity, a condition of excess adiposity usually defined by a BMI > 30, can have profound effects on both metabolism and immunity, connecting the condition with a broad range of diseases, including cancer and negative outcomes. Obesity and cancer have been associated with increased incidence, progression, and poorer outcomes of multiple cancer types in part due to the pro-inflammatory state that arises. Surprisingly, obesity has also recently been demonstrated in both preclinical models and clinical outcomes to be associated with improved response to immune checkpoint inhibition (ICI). These observations have laid the foundation for what has been termed the "obesity paradox". The mechanisms underlying these augmented immunotherapy responses are still unclear given the pleiotropic effects obesity exerts on cells and tissues. Other important variables such as age and sex are being examined as further affecting the obesity effect. Sex-linked factors exert significant influences on obesity biology, metabolism as well as differential effects of different immune cell-types. Age can be another confounding factor contributing to the effects on both sex-linked changes, immune status, and obesity. This review aims to revisit the current body of literature describing the immune and metabolic changes mediated by obesity, the role of obesity on cancer immunotherapy, and to highlight questions on how sex-linked differences may influence obesity and immunotherapy outcome.

References
1.
Zhang L, Han L, He J, Lv J, Pan R, Lv T . A high serum-free fatty acid level is associated with cancer. J Cancer Res Clin Oncol. 2019; 146(3):705-710. PMC: 7039835. DOI: 10.1007/s00432-019-03095-8. View

2.
Turbitt W, Collins S, Meng H, Rogers C . Increased Adiposity Enhances the Accumulation of MDSCs in the Tumor Microenvironment and Adipose Tissue of Pancreatic Tumor-Bearing Mice and in Immune Organs of Tumor-Free Hosts. Nutrients. 2019; 11(12). PMC: 6950402. DOI: 10.3390/nu11123012. View

3.
Amano S, Cohen J, Vangala P, Tencerova M, Nicoloro S, Yawe J . Local proliferation of macrophages contributes to obesity-associated adipose tissue inflammation. Cell Metab. 2013; 19(1):162-171. PMC: 3931314. DOI: 10.1016/j.cmet.2013.11.017. View

4.
Ishikawa A, Wada T, Nishimura S, Ito T, Okekawa A, Onogi Y . Estrogen regulates sex-specific localization of regulatory T cells in adipose tissue of obese female mice. PLoS One. 2020; 15(4):e0230885. PMC: 7117686. DOI: 10.1371/journal.pone.0230885. View

5.
Overpeck J, Colson S, HOHMANN J, Applestine M, Reilly J . Concentrations of circulating steroids in normal prepubertal and adult male and female humans, chimpanzees, rhesus monkeys, rats, mice, and hamsters: a literature survey. J Toxicol Environ Health. 1978; 4(5-6):785-803. DOI: 10.1080/15287397809529700. View