Amyloid Beta Peptides Inhibit Glucose Transport at the Blood-brain Barrier by Disrupting Insulin-Akt Pathway in Alzheimer's Disease
Wang, L.; Curran, G. L.; Min, P. H.; Li, L.; Lowe, V. J.; Kandimalla, K. K.
Show abstract
Disruptions in glucose uptake and metabolism in the brain are implicated in metabolic disorders and Alzheimers disease (AD). Toxic soluble amyloid-beta (sA{beta}) peptides accumulating in the brain and plasma of AD patients were suggested to promote blood-brain barrier (BBB) dysfunction, brain hypometabolism, and cognitive decline. Exposure to sA{beta} peptides is reported to interfere with glucose metabolism in the brain parenchyma, although their effects on the BBB have not been fully characterized. Our data showed that the brain uptake of glucose surrogate, [18F]-fluorodeoxyglucose (18FDG), was reduced significantly in APP/PS1 transgenic mice (overproduce A{beta}) compared to wild-type (WT) mice. In addition, the influx rate of 18FDG was also decreased in both A{beta}40 and A{beta}42 pre-infused mice compared to control mice. Glucose is primarily delivered from blood into the brain via glucose transporter 1 (GLUT1). The confocal microscopy experiment showed that A{beta}40 and A{beta}42 peptides significantly decreased GLUT1 expression in polarized human cerebral microvascular endothelial cell (hCMEC/D3) monolayers. Insulin-AKT pathway has been observed to induce glucose uptake via regulating the expression of TXNIP, the only -arrestin protein known to bind to thioredoxin. We found that A{beta}40 and A{beta}42 peptides decreased p-AKT and increased TXNIP expression in the hCMEC/D3 cell monolayers. MK2206, a kinase inhibitor of AKT, was used to confirm that inhibition of insulin/AKT pathway reduced GLUT1 expression in an insulin-independent manner in the hCMEC/D3 cell monolayers. These results suggest that inhibitory effects of sA{beta} on GLUT1 expression are mediated by inhibition of the insulin/AKT pathway. The role of TXNIP on endothelial GLUT1 expression was investigated using resveratrol, which has been reported to downregulate TXNIP overexpression. Consistently, resveratrol treatment led to a significant increase in GLUT1 expression in the hCMEC/D3 cell monolayers. Furthermore, by co-incubation of resveratrol and sA{beta} peptides in hCMEC/D3 cell monolayers, we found that resveratrol rectified the aberrant TXNIP expression caused by sA{beta} peptides. Together, these findings provide novel evidence that toxic sA{beta} peptide exposure inhibits glucose transport at the BBB by decreasing GLUT1 expression via the insulin/Akt/TXNIP axis.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Neuroprotection in early stages of Alzheimers Disease is promoted by Transthyretin angiogenic properties 96%
- A comparative study of the effects of Aducanumab and scanning ultrasound on amyloid plaques and behavior in the APP23 mouse model of Alzheimer disease 94%
- New insights into the 17β-hydroxysteroid dehydrogenase type 10 and amyloid-β 42 derived cytotoxicity relevant to Alzheimer's disease 94%
Similar papers in this journal
- Quantitative 3D histochemistry reveals region-specific amyloid-β reduction by the antidiabetic drug netoglitazone 95%
- Queuine, a bacterial derived hypermodified nucleobase, shows protection in in vitro models of neurodegeneration 95%
- Screening of Tau Protein Kinase Inhibitors in a Tauopathy-relevant cell-based model of Tau Hyperphosphorylation and Oligomerization 95%
Similar papers in this journal
- α-lipoic acid has the potential to normalize copper metabolism, which is dysregulated in Alzheimer's disease 94%
- Trimethylamine N-oxide reduces neurite density and plaque intensity in a murine model of Alzheimer disease 93%
- Exenatide reverts the high-fat-diet-induced impairment of BDNF signaling and inflammatory response in an animal model of Alzheimer’s disease 93%
Similar papers in this journal
- Ladostigil attenuates the oxidative and ER stress in human neuroblast-like SH-SY5Y cells 94%
- UBL3 Interacts with Alpha-synuclein in Cells and the Interaction is Downregulated by the EGFR Pathway Inhibitor Osimertinib 94%
- MicroRNAs and mRNA Regulatory Network of Parenchymal Hematoma after Endovascular Mechanical Reperfusion for Acute Ischemic Stroke in Rat 92%
Similar papers in this journal
- Arginase Inhibition Supports Survival and Differentiation of Neuronal Precursors in Adult Alzheimer's Disease Mice 95%
- NDR2 Kinase Regulate Microglial Metabolic Adaptation and Inflammatory Response: Critical Role in Glucose-Dependent Functional Plasticity 94%
- Thermal cycling-hyperthermia attenuates rotenone-induced cell injury in SH-SY5Y cells through heat-activated mechanisms 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.