瘤胃球菌
促炎细胞因子
厚壁菌
糖尿病
链脲佐菌素
肠道菌群
内分泌学
乳酸菌
拟杆菌
内科学
势垒函数
医学
药理学
炎症
生物
免疫学
生物化学
基因
发酵
细胞生物学
16S核糖体RNA
作者
Yanfang Zheng,Xian Zhou,Chenxiang Wang,Jialin Zhang,Dennis Hsu-Tung Chang,Shuting Zhuang,Xiaoyan Wen,Yong Chen,Xiaoning Wang,Lihong Nan,Yibin Sun,Xiaohui Lin,Wei Lin,Caigu He,Dai Lian,Jieping Zhang,Jianyu Chen,Hong Shi,Mingqing Huang
标识
DOI:10.1016/j.biopha.2022.112891
摘要
Dendrobium mixture (DM) is a patent Chinese herbal formulation consisting of Dendrobii Caulis, Astragali Radix, Rehmanniae Radix as the main ingredients. DM has been shown to alleviate diabetic related symptoms attributed to its anti-hyperglycaemic and anti-inflammatory activities. However, the effect on diabetic induced cognitive dysfunction has not been investigated. This study aims to investigate the effect of DM in improving diabetic cognitive impairment and associated mechanisms. Our study confirmed the anti-hyperglycaemic effect of DM and showed its capacity to restore the cognitive and memory function in high fat/high glucose and streptozotocin-induced diabetic rats. The neuroprotective effect was manifested as improved learning and memory behaviours, restored blood-brain barrier tight junction, and enhanced expressions of neuronal survival related biomarkers. DM protected the colon tight junction, and effectively lowered the circulated proinflammatory mediators including tumour necrosis factor-α, interleukin-6 and lipopolysaccharides. In the gut microbiota, DM corrected the increase in the abundance of Firmicutes, the increase in the ratio of Firmicutes/Bacteroidetes, and the decrease in the abundance of Bacteroidetes in diabetic rats. It also reversed the abundance of Lactobacillus, Ruminococcus and Allobaculum genera. Short chain fatty acids, isobutyric acid and ethylmethylacetic acid, were negatively and significantly correlated to Ruminococcus and Allobaculum. Isovaleric acid was positively and significantly correlated with Lactobacillus, which all contributing to the improvement in glucose level, systemic inflammation and cognitive function in diabetic rats. Our results demonstrated the potential of DM as a promising therapeutic agent in treating diabetic cognitive impairment and the underlying mechanism may be associated with regulating gut microbiota.
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