Dietary rumen-protected choline supplementation regulates blood biochemical profiles and urinary metabolome and improves growth performance of growing lambs

2021 ◽  
pp. 1-11
Author(s):  
Yaqian Jin ◽  
Huawei Li ◽  
Hongrong Wang
2016 ◽  
Vol 9 (4) ◽  
pp. 396-402
Author(s):  
Hemanta Nath ◽  
Mousumi Hazorika ◽  
Dipjyoti Rajkhowa ◽  
Mrinmoy Datta ◽  
Avijit Haldar

Nutrients ◽  
2021 ◽  
Vol 13 (2) ◽  
pp. 434
Author(s):  
Yee Xing You ◽  
Suzana Shahar ◽  
Nor Fadilah Rajab ◽  
Hasnah Haron ◽  
Hanis Mastura Yahya ◽  
...  

Cosmos caudatus (CC) contains high flavonoids and might be beneficial in neuroprotection. It has the potential to prevent neurodegenerative diseases. Therefore, we aimed to investigate the effects of 12 weeks of Cosmos caudatus supplement on cognitive function, mood status, blood biochemical profiles and biomarkers among older adults with mild cognitive impairment (MCI) through a double-blind, placebo-controlled trial. The subjects were randomized into CC supplement (n = 24) and placebo group (n = 24). Each of them consumed one capsule of CC supplement (250 mg of CC/capsule) or placebo (500 mg maltodextrin/capsule) twice daily for 12 weeks. Cognitive function and mood status were assessed at baseline, 6th week, and 12th week using validated neuropsychological tests. Blood biochemical profiles and biomarkers were measured at baseline and 12th week. Two-way mixed analysis of variance (ANOVA) analysis showed significant improvements in mini mental state examination (MMSE) (partial η2 = 0.150, p = 0.049), tension (partial η2 = 0.191, p = 0.018), total mood disturbance (partial η2 = 0.171, p = 0.028) and malondialdehyde (MDA) (partial η2 = 0.097, p = 0.047) following CC supplementation. In conclusion, 12 weeks CC supplementation potentially improved global cognition, tension, total mood disturbance, and oxidative stress among older adults with MCI. Larger sample size and longer period of intervention with incorporation of metabolomic approach should be conducted to further investigate the underlying mechanism of CC supplementation in neuroprotection.


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