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Published in: International Journal of Diabetes in Developing Countries 4/2018

01-10-2018 | Editorial

Sleep and diabetes and the kidney

Author: Krishna G. Seshadri

Published in: International Journal of Diabetes in Developing Countries | Issue 4/2018

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Excerpt

We spend a third of our lives sleeping. And forever we have been speculating why?. Sleep is universal in vertebrates and has been described in invertebrates. The unraveling of this mystery started with the the discovery of “glymphatic” channels carrying toxic wastes in the brain. Prior to this, the only known waste disposal recognized was a recycling process internal to the neuronal cells themselves. Glial cells control the transport of CSF through channels in cell membranes. Since the energy required to transport across membranes is considerable it was clear that membrane transport and sensory processing were probably not occuring at the same time. A “downtime” from sensory processing was required to divert energy to perform housekeeping. After training mice to sleep on a two photon microscope and using real time iontophoresis Xie et al. found out that larger amounts of CSF flowed into interstitial brain spaces during sleep and to a greater depth than when awake [1]. The interstitial volume expanded by 60% during sleep leading to clearance of accumulated toxins such as beta amyloid (which is implicated in Alzheimer’s) twice as fast as when awake. Thus sleep is a state that prepares the brain for waking through obligatory self regulating cycles of brain states. …
Literature
1.
go back to reference Xie L, et al. Sleep drives metabolite clearance from the adult brain. Science. 2013;342:373–7.CrossRef Xie L, et al. Sleep drives metabolite clearance from the adult brain. Science. 2013;342:373–7.CrossRef
2.
go back to reference Buxton OM, et al. Sleep restriction for 1 week reduces insulin sensitivity in healthy men. Diabetes. 2010;59:2126–33.CrossRef Buxton OM, et al. Sleep restriction for 1 week reduces insulin sensitivity in healthy men. Diabetes. 2010;59:2126–33.CrossRef
3.
go back to reference Reutrakul S, Van Cauter E. Interactions between sleep, circadian function, and glucose metabolism: implications for risk and severity of diabetes. Ann N Y Acad Sci. 2014;1311:151–73.CrossRef Reutrakul S, Van Cauter E. Interactions between sleep, circadian function, and glucose metabolism: implications for risk and severity of diabetes. Ann N Y Acad Sci. 2014;1311:151–73.CrossRef
4.
go back to reference Turek NF, Ricardo AC, Lash JP. Sleep disturbances as nontraditional risk factors for development and progression of CKD: review of the evidence. Am J Kidney Dis. 2012;60:823–33.CrossRef Turek NF, Ricardo AC, Lash JP. Sleep disturbances as nontraditional risk factors for development and progression of CKD: review of the evidence. Am J Kidney Dis. 2012;60:823–33.CrossRef
5.
go back to reference Kosseifi S, et al. The association between obstructive sleep apnea syndrome and microvascular complications in well-controlled diabetic patients. Mil Med. 2010;175:913–6.CrossRef Kosseifi S, et al. The association between obstructive sleep apnea syndrome and microvascular complications in well-controlled diabetic patients. Mil Med. 2010;175:913–6.CrossRef
6.
go back to reference Neumann J, Ligtenberg G, Klein II, Koomans HA, Blankestijn PJ. Sympathetic hyperactivity in chronic kidney disease: pathogenesis, clinical relevance, and treatment. Kidney Int. 2004;65:1568–76.CrossRef Neumann J, Ligtenberg G, Klein II, Koomans HA, Blankestijn PJ. Sympathetic hyperactivity in chronic kidney disease: pathogenesis, clinical relevance, and treatment. Kidney Int. 2004;65:1568–76.CrossRef
7.
go back to reference Cheungpasitporn W, et al. The effects of short sleep duration on proteinuria and chronic kidney disease: a systematic review and meta-analysis. Nephrol Dial Transplant. 2017;32:991–6.PubMed Cheungpasitporn W, et al. The effects of short sleep duration on proteinuria and chronic kidney disease: a systematic review and meta-analysis. Nephrol Dial Transplant. 2017;32:991–6.PubMed
8.
go back to reference Yamamoto R, et al. Self-reported sleep duration and prediction of proteinuria: a retrospective cohort study. Am J Kidney Dis. 2012;59:343–55.CrossRef Yamamoto R, et al. Self-reported sleep duration and prediction of proteinuria: a retrospective cohort study. Am J Kidney Dis. 2012;59:343–55.CrossRef
9.
go back to reference Pilz S, et al. Insulin sensitivity and albuminuria: the RISC study. Diabetes Care. 2014;37:1597–603.CrossRef Pilz S, et al. Insulin sensitivity and albuminuria: the RISC study. Diabetes Care. 2014;37:1597–603.CrossRef
10.
go back to reference Whaley-Connell A, Sowers JR. Insulin resistance in kidney disease: is there a distinct role separate from that of diabetes or obesity? Cardiorenal Med. 2017;8:41–9.CrossRef Whaley-Connell A, Sowers JR. Insulin resistance in kidney disease: is there a distinct role separate from that of diabetes or obesity? Cardiorenal Med. 2017;8:41–9.CrossRef
Metadata
Title
Sleep and diabetes and the kidney
Author
Krishna G. Seshadri
Publication date
01-10-2018
Publisher
Springer India
Published in
International Journal of Diabetes in Developing Countries / Issue 4/2018
Print ISSN: 0973-3930
Electronic ISSN: 1998-3832
DOI
https://doi.org/10.1007/s13410-018-0703-5

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