Literature DB >> 20395208

Cancer inhibition through circadian reprogramming of tumor transcriptome with meal timing.

Xiao-Mei Li1, Franck Delaunay, Sandrine Dulong, Bruno Claustrat, Sinisa Zampera, Yoshiro Fujii, Michèle Teboul, Jacques Beau, Francis Lévi.   

Abstract

Circadian disruption accelerates cancer progression, whereas circadian reinforcement could halt it. Mice with P03 pancreatic adenocarcinoma (n = 77) were synchronized and fed ad libitum (AL) or with meal timing (MT) from Zeitgeber time (ZT) 2 to ZT6 with normal or fat diet. Tumor gene expression profiling was determined with DNA microarrays at endogenous circadian time (CT) 4 and CT16. Circadian mRNA expression patterns were determined for clock genes Rev-erbalpha, Per2, and Bmal1, cellular stress genes Hspa8 and Cirbp, and cyclin A2 gene Ccna2 in liver and tumor. The 24-hour patterns in telemetered rest-activity and body temperature and plasma corticosterone and insulin-like growth factor-I (IGF-I) were assessed. We showed that MT inhibited cancer growth by approximately 40% as compared with AL (P = 0.011) irrespective of calorie intake. Clock gene transcription remained arrhythmic in tumors irrespective of feeding schedule or diet. Yet, MT upregulated or downregulated the expression of 423 tumor genes, according to CT. Moreover, 36 genes involved in cellular stress, cell cycle, and metabolism were upregulated at one CT and downregulated 12 h apart. MT induced >10-fold circadian expression of Hspa8, Cirbp, and Ccna2 in tumors. Corticosterone or IGF-I patterns played no role in tumor growth inhibition. In contrast, MT consistently doubled the circadian amplitude of body temperature. Peak and trough respectively corresponded to peak expressions of Hspa8 and Cirbp in tumors. The reinforcement of the host circadian timing system with MT induced 24-hour rhythmic expression of critical genes in clock-deficient tumors, which translated into cancer growth inhibition. Targeting circadian clocks represents a novel potential challenge for cancer therapeutics. (c)2010 AACR.

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Year:  2010        PMID: 20395208     DOI: 10.1158/0008-5472.CAN-09-4235

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  43 in total

1.  Multiscale modeling of tumor growth induced by circadian rhythm disruption in epithelial tissue.

Authors:  D A Bratsun; D V Merkuriev; A P Zakharov; L M Pismen
Journal:  J Biol Phys       Date:  2015-08-21       Impact factor: 1.365

Review 2.  Circadian rhythms of liver physiology and disease: experimental and clinical evidence.

Authors:  Yu Tahara; Shigenobu Shibata
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2016-02-24       Impact factor: 46.802

3.  Intermittent fasting from dawn to sunset for 30 consecutive days is associated with anticancer proteomic signature and upregulates key regulatory proteins of glucose and lipid metabolism, circadian clock, DNA repair, cytoskeleton remodeling, immune system and cognitive function in healthy subjects.

Authors:  Ayse L Mindikoglu; Mustafa M Abdulsada; Antrix Jain; Jong Min Choi; Prasun K Jalal; Sridevi Devaraj; Melissa P Mezzari; Joseph F Petrosino; Antone R Opekun; Sung Yun Jung
Journal:  J Proteomics       Date:  2020-01-09       Impact factor: 4.044

4.  Thoracic surface temperature rhythms as circadian biomarkers for cancer chronotherapy.

Authors:  Véronique Pasquale Roche; Ali Mohamad-Djafari; Pasquale Fabio Innominato; Abdoulaye Karaboué; Alexander Gorbach; Francis Albert Lévi
Journal:  Chronobiol Int       Date:  2014-01-07       Impact factor: 2.877

5.  On the analysis of complex biological supply chains: From Process Systems Engineering to Quantitative Systems Pharmacology.

Authors:  Rohit T Rao; Megerle L Scherholz; Clara Hartmanshenn; Seul-A Bae; Ioannis P Androulakis
Journal:  Comput Chem Eng       Date:  2017-06-03       Impact factor: 3.845

Review 6.  The Potential of Circadian Realignment in Rheumatoid Arthritis.

Authors:  Rohit T Rao; Kamau K Pierre; Naomi Schlesinger; Ioannis P Androulakis
Journal:  Crit Rev Biomed Eng       Date:  2016

Review 7.  Sex differences in circadian timing systems: implications for disease.

Authors:  Matthew Bailey; Rae Silver
Journal:  Front Neuroendocrinol       Date:  2013-11-25       Impact factor: 8.606

8.  Quantitative Systems Pharmacology: A Framework for Context.

Authors:  Ioannis P Androulakis
Journal:  Curr Pharmacol Rep       Date:  2016-04-08

9.  Therapeutic Time-restricted Feeding Reduces Renal Tumor Bioluminescence in Mice but Fails to Improve Anti-CTLA-4 Efficacy.

Authors:  William J Turbitt; Rachael M Orlandella; Justin T Gibson; Courtney M Peterson; Lyse A Norian
Journal:  Anticancer Res       Date:  2020-10       Impact factor: 2.480

Review 10.  Systems biology of circadian-immune interactions.

Authors:  P D Mavroudis; J D Scheff; S E Calvano; I P Androulakis
Journal:  J Innate Immun       Date:  2012-09-18       Impact factor: 7.349

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