1) Reppert SM, Weaver D. Coordination of circadian timing in mammals. Nature. 2002; 418: 935-41
|
|
|
2) Hastings MH, Maywood ES, OʼNeil JS. Cellular circadian pacemaking and the role of cytosolic rhythms. Curr Biol. 2008; 18: R805-15
|
|
|
3) Okamura H, Doi M, Fustin JM, et al. Mammalian circadian clock system: molecular mechanisms for pharmaceutical and medical sciences. Adv Drug Deliv Rev. 2010; 62: 876-84
|
|
|
4) Suwazono Y, Dochi M, Sakata K, et al. Shift work is a risk factor for increased blood pressure in Japanese men: a 14-year historical cohort study. Hypertension. 2008; 52: 581-6
|
|
|
5) Scheer FA, Hilton MF, Mantzoros CS, et al. Adverse metabolic and cardiovascular consequences of circadian misalignment. Proc Natl Acad Sci U S A. 2009; 106: 4453-8
|
|
|
6) Toh KL, Jones CR, He Y, et al. An hPer2 phosphorylation site mutation in familial advanced sleep phase syndrome. Science. 2001; 291: 1040-3
|
|
|
7) He Y, Jones CR, Fujiki N, et al. The transcriptional repressor DEC2 regulates sleep length in mammals. Science. 2009; 325: 866-70
|
|
|
8) Matsuo T, Yamaguchi S, Mitsui S, et al. Control mechanism of the circadian clock for timing of cell division. Science. 2003; 302: 255-9
|
|
|
9) Fu L, Pelicano H, Liu J, et al. The circadian gene Period2 plays an important role in tumor suppression and DNA damage response in vivo. Cell. 2002; 111: 41-50
|
|
|
10) Turek FW, Joshu C, Kohsaka A, et al. Obesity and metabolic syndrome in circadian Clock mutant mice. Science. 2005; 308: 1043-5
|
|
|
11) Marcheva B, Ramsey KM, Buhr ED, et al. Disruption of the clock components CLOCK and BMAL1 leads to hypoinsulinaemia and diabetes. Nature. 2010; 466: 627-31
|
|
|
12) Doi M, Takahashi Y, Komatsu R, et al. Salt-sensitive hypertension in circadian clock-deficient mice involves dysregulated adrenal Hsd3b6. Nat Med. 2010; 16: 67-74
|
|
|
13) Sega R, Facchetti R, Bombelli M, et al. Prognostic values of ambulatory and home blood pressure compared with office blood pressure in the beneral population follow up results from the Pressioni Arteriose Monitorate e Loro Associazioni (PAMELA) study. Circulation. 2005; 111: 1777-83
|
|
|
14) Okamura H, Miyake S, Sumi Y, et al. Photic induction of mPer1 and mPer2 in Cry-deficient mice lacking a biological clock. Science. 1999; 286: 2531-4
|
|
|
15) Yagita K, Tamanini F, van der Horst GTJ, et al. Molecular mechanisms of the biological clock in cultured fibroblasts. Science. 2001; 292: 278-92
|
|
|
16) Gordon RD, Laragh JH, Funder JW. Low renin hypertensive states: perspectives, unsolved problems, future research. Trends Endocrinol Metab. 2005; 16: 108-13
|
|
|
17) Funder JW. Aldosterone and mineralocorticoid receptors: past, present, and future. Endocrinology. 2010; 151: 5098-102
|
|
|
18) Rosmond R, Chagnon M, Bouchard C, et al. Polymorphism in exon 4 of the human 3 beta-hydroxysteroid dehydrogenase type I gene (HSD3B1) and blood pressure. Biochem Biophys Res Commun. 2002; 293: 629-32
|
|
|
19) Shimodaira M, Nakayama T, Sato N, et al. Association of HSD3B1 and HSD3B2 gene polymorphisms with essential hypertension, aldosterone level, and left ventricular structure. Eur J Endocrinol. 2010; 163: 671-80
|
|
|
20) Masuki S, Todo T, Nakano Y, et al. Reduced alpha-adrenoceptor responsiveness and enhanced baroreflex sensitivity in Cry-deficient mice lacking biological clock. J Physiology (London). 2005; 566: 213-24
|
|
|