journal article Apr 15, 2022

Improvement of sleep by resistant dextrin prebiotic in type 2 diabetic women coincides with attenuation of metabolic endotoxemia: involvement of gut–brain axis

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Abstract
AbstractBACKGROUNDResistant dextrin, as a prebiotic and functional food, may possess favorable effects in type 2 diabetes. This study was conducted to assess whether supplementation with resistant dextrin can improve sleep and quality of life in obese type 2 diabetic women.RESULTSIn this randomized controlled trial, female obese type 2 diabetic patients (n = 76) were randomly assigned into intervention group (n = 38) and placebo group (n = 38), and received 10 g day−1 of resistant dextrin or maltodextrin for a period of 8 weeks, respectively. Sleep quality and quality of life (QOL) were assessed by Pittsburgh Sleep Quality Index (PSQI) and SF‐36 health survey, respectively. Fasting blood samples were driven to measure serum bacterial endotoxin, fasting blood sugar, glycosylated hemoglobin (HbA1c), pro‐inflammatory/anti‐inflammatory biomarkers (IL‐18, IL‐6, IL‐10, TNF‐α), and biomarkers of hypothalamic‐pituitary‐adrenal (HPA) axis function [tryptophan (TRP), adrenocorticotropic hormone (ACTH), kynurenine (KYN), cortisol]. Supplementation with resistant dextrin improved sleep (P < 0.001) and QOL (P < 0.001) significantly. It also caused a significant decrease in levels of endotoxin, HbA1c, IL‐18, IL‐6, TNF‐α and a significant increase in IL‐10 levels. Significant and positive correlations were found between endotoxin (r = 0.488, P = 0.003), IL‐6 (r = 0.436, P = 0.008), IL‐18 (r = 0.475, P = 0.003), cortisol (r = 0.545, P = 0.048), KYN/TRP (r = 0.527, P = 0.001), and PSQI scores.CONCLUSIONSIt is concluded that resistant dextrin improves sleep and QOL in obese women with type 2 diabetes. Its beneficial effects may be attributed in part to modulation of glycemia, metabolic endotoxemia and subsequently a decrease in biomarkers of inflammation and HPA axis activity. © 2022 Society of Chemical Industry.
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References
45
[2]
World Health Organization Global Report on Diabetes. (2016).https://apps.who.int/iris/bitstream/10665/204871/1/9789241565257_eng pdf
[5]
Plantinga L "Prevalence of self‐reported sleep problems among people with diabetes in the United States, 2005–2008" Prev Chronic Dis (2012)
[12]
The Gut Microbiome and the Brain

Leo Galland

Journal of Medicinal Food 10.1089/jmf.2014.7000
[13]
Metabolic endotoxemia and cardiovascular disease: A systematic review about potential roles of prebiotics and probiotics

Jalal Moludi, Vahid Maleki, Hamed Jafari‐Vayghyan et al.

Clinical and Experimental Pharmacology and Physiol... 10.1111/1440-1681.13250
[15]
Carabotti M "The gut‐brain axis: interactions between enteric microbiota, central and enteric nervous systems" Ann Gastroenterol (2015)
[30]
International Physical Activity Questionnaire: 12-Country Reliability and Validity

Cora L. Craig, ALISON L. MARSHALL, MICHAEL SJ??STR??M et al.

Medicine & Science in Sports & Exercise 10.1249/01.mss.0000078924.61453.fb
[31]
The Pittsburgh sleep quality index: A new instrument for psychiatric practice and research

Daniel J. Buysse, Charles F. Reynolds, Timothy H. Monk et al.

Psychiatry Research 10.1016/0165-1781(89)90047-4
[32]
The MOS 36-ltem Short-Form Health Survey (SF-36)

John E. Ware, Cathy Donald Sherbourne

Medical Care 10.1097/00005650-199206000-00002
[41]
Yaghini N "Serum levels of interleukin 10 (IL‐10) in patients with type 2 diabetes" Iran Red Crescent Med J (2011)
[42]
GaffneyM The effects of dietary prebiotics and chronic circadian disruption on sleep cognition and adrenal sensitivity. MSc thesis University of Colorado at Boulder(2018).
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Published
Apr 15, 2022
Vol/Issue
102(12)
Pages
5229-5237
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Sevda Saleh‐Ghadimi, Parvin Dehghan, Bahareh Sarmadi, et al. (2022). Improvement of sleep by resistant dextrin prebiotic in type 2 diabetic women coincides with attenuation of metabolic endotoxemia: involvement of gut–brain axis. Journal of the Science of Food and Agriculture, 102(12), 5229-5237. https://doi.org/10.1002/jsfa.11876