Ipriflavone as a non-steroidal glucocorticoid receptor antagonist ameliorates diabetic cognitive impairment in mice.
Ruifang NieJian LuRui XuJuanzhen YangXingyi ShenXingnan OuyangDanyang ZhuYujie HuangTong ZhaoXuejian ZhaoYin LuMinyi QianJiaying WangXu ShenPublished in: Aging cell (2022)
Diabetic cognitive impairment (DCI) is a common diabetic complication with hallmarks of loss of learning ability and disorders of memory and behavior. Glucocorticoid receptor (GR) dysfunction is a main reason for neuronal impairment in brain of diabetic patients. Here, we determined that ipriflavone (IP) a clinical anti-osteoporosis drug functioned as a non-steroidal GR antagonist and efficiently ameliorated learning and memory dysfunction in both type 1 and 2 diabetic mice. The underlying mechanism has been intensively investigated by assay against the diabetic mice with GR-specific knockdown in the brain by injection of adeno-associated virus (AAV)-ePHP-si-GR. IP suppressed tau hyperphosphorylation through GR/PI3K/AKT/GSK3β pathway, alleviated neuronal inflammation through GR/NF-κB/NLRP3/ASC/Caspase-1 pathway, and protected against synaptic impairment through GR/CREB/BDNF pathway. To our knowledge, our work might be the first to expound the detailed mechanism underlying the amelioration of non-steroidal GR antagonist on DCI-like pathology in mice and report the potential of IP in treatment of DCI.
Keyphrases
- pi k akt
- cognitive impairment
- signaling pathway
- oxidative stress
- type diabetes
- anti inflammatory drugs
- healthcare
- resting state
- white matter
- wound healing
- cerebral ischemia
- emergency department
- postmenopausal women
- multiple sclerosis
- cell cycle arrest
- high resolution
- high throughput
- functional connectivity
- immune response
- mass spectrometry
- human health
- adipose tissue
- lps induced
- gene therapy
- room temperature
- toll like receptor
- mouse model
- drug induced
- blood brain barrier
- cerebrospinal fluid
- ultrasound guided
- high speed
- smoking cessation
- single cell