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Published on: November 28, 2019
Circadian disruption promotes tumor-immune microenvironment remodeling favoring tumor cell proliferation
I Aiello1,2, M L Mul Fedele1, F Román1
1Laboratorio de Cronobiología, Universidad Nacional de Quilmes, Buenos Aires, Argentina.
Abstract:
Circadian disruption negatively affects physiology, posing a global health threat that manifests in proliferative, metabolic, and immune diseases, among others. Because outputs of the circadian clock regulate daily fluctuations in the immune response, we determined whether circadian disruption results in tumor-associated immune cell remodeling, facilitating tumor growth. Our findings show that tumor growth rate increased and latency decreased under circadian disruption conditions compared to normal light-dark (LD) schedules in a murine melanoma model. Circadian disruption induced the loss or inversion of daily patterns of M1 (proinflammatory) and M2 (anti-inflammatory) macrophages and cytokine levels in spleen and tumor tissues. Circadian disruption also induced (i) deregulation of rhythmic expression of clock genes and (ii) of cyclin genes in the liver, (iii) increased CcnA2 levels in the tumor, and (iv) dampened expression of the cell cycle inhibitor p21 , all of which contribute to a proliferative phenotype.
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