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Published on: January 23, 2018
Thioredoxin is implicated in the anti‑apoptotic effects of grape seed proanthocyanidin extract during hyperglycemia
Xiang Ren1, Heyuan Lu1, Nina Wang1
1Department of Histology and Embryology, Dalian Medical University, Dalian, Liaoning 116044, P.R. China.
Abstract:
Diabetic retinopathy has long been recognized as a microvascular disease, however, recent research has indicated that diabetic retinopathy may also be considered a neurodegenerative disease. The elucidation of the molecular mechanisms underlying the development of diabetic retinopathy is imperative for the development of preventive and treatment strategies for patients with diabetes. In the present study, grape seed proanthocyanidin extract (GSPE) was used to upregulate the expression of thioredoxin (Trx), in order to evaluate its potential as a novel agent for the prevention and treatment of neurodegenerative diseases, including diabetic retinopathy. Hematoxylin and eosin staining was performed to observe the morphology of retinal neurons, whereas flow cytometry and terminal deoxynucleotidyl transferase 2'‑deoxyuridine, 5'‑triphosphate nick‑end labeling were employed to investigate cellular apoptosis. Reverse transcription‑quantitative polymerase chain reaction and western blot analysis were performed to assess the mRNA and protein expression of target proteins in order to investigate the underlying molecular mechanisms. In vivo, it was found that the photoreceptor cell was damaged in diabetic mice but following GSPE treatment, the process could be inhibited. In vitro, the results of the current study demonstrated that, under hyperglycemic culture conditions, the expression of 78 kDa glucose‑regulated protein, which is an endoplasmic reticulum stress marker, was upregulated. In addition, the expression of Trx was downregulated and cell apoptosis was enhanced. Notably, treatment with GSPE was revealed to inhibit the neurodegenerative process induced by hyperglycemia. However, treatment with the Trx inhibitor PX12 in combination with GSPE was demonstrated to potentiate apoptosis compared with GSPE treatment alone under hyperglycemic conditions. Furthermore, the protein expression of apoptosis signal‑regulating kinase (ASK) 1 and Trx‑interacting protein (Txnip) was also upregulated by hyperglycemia, whereas GSPE was revealed to counteract this upregulation. In conclusion, the results of the present study indicate that Trx may be implicated in the mechanisms underlying the protective effects of GSPE against hyperglycemia‑induced cell degeneration and apoptosis. The molecular mechanisms may also involve inhibition of the activation of the Trx/ASK1/Txnip signaling pathway.
Insights
Grape seed proanthocyanidin extract (GSPE) shows promise in preventing diabetic retinopathy, a neurodegenerative disease. GSPE upregulates thioredoxin (Trx), inhibiting hyperglycemia-induced cell damage and apoptosis by modulating the Trx/ASK1/Txnip pathway.
Area of Science:
- Ophthalmology
- Neuroscience
- Endocrinology
Background:
- Diabetic retinopathy is increasingly recognized as a neurodegenerative disease, necessitating research into its underlying molecular mechanisms.
- Understanding these mechanisms is crucial for developing effective preventive and therapeutic strategies for diabetic patients.
Purpose of the Study:
- To investigate the potential of grape seed proanthocyanidin extract (GSPE) as a novel agent for preventing and treating neurodegenerative diseases, specifically diabetic retinopathy.
- To elucidate the role of thioredoxin (Trx) in the protective effects of GSPE against hyperglycemia-induced retinal neurodegeneration.
Main Methods:
- In vivo studies using diabetic mice and in vitro experiments with hyperglycemic cell cultures.
- Hematoxylin and eosin staining for retinal neuron morphology.
- Flow cytometry and TUNEL assay for apoptosis assessment.
- RT-qPCR and Western blot analysis for gene and protein expression (Trx, 78 kDa glucose-regulated protein, ASK1, Txnip).
Main Results:
- GSPE treatment inhibited photoreceptor cell damage in diabetic mice.
- In vitro, hyperglycemia upregulated endoplasmic reticulum stress markers and downregulated Trx, enhancing apoptosis.
- GSPE treatment counteracted hyperglycemia-induced neurodegeneration and apoptosis.
- GSPE inhibited the upregulation of apoptosis signal-regulating kinase 1 (ASK1) and Trx-interacting protein (Txnip).
Conclusions:
- Thioredoxin (Trx) plays a significant role in the protective effects of GSPE against hyperglycemia-induced cell degeneration and apoptosis.
- GSPE exerts neuroprotective effects by inhibiting the activation of the Trx/ASK1/Txnip signaling pathway.
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