CX3CR1-microglia mediates neuroinflammation and blood pressure regulation in the nucleus tractus solitarii of fructose-induced hypertensive ratsChiu‐Yi Ho, Ching-Jiunn Tseng, Yu‐Te Lin et al.|Journal of Neuroinflammation|2020Cited by 54
Dapagliflozin Prevents NOX- and SGLT2-Dependent Oxidative Stress in Lens Cells Exposed to Fructose-Induced Diabetes MellitusYingying Chen, Pei‐Wen Cheng, Tsung‐Tien Wu et al.|International Journal of Molecular Sciences|2019Cited by 40
Blocking of SGLT2 to Eliminate NADPH-Induced Oxidative Stress in Lenses of Animals with Fructose-Induced Diabetes MellitusYingying Chen, Pei‐Wen Cheng, Tsung‐Tien Wu et al.|International Journal of Molecular Sciences|2022Cited by 21
Attenuation of epithelial-mesenchymal transition via SGLT2 inhibition and diabetic cataract suppression by dapagliflozin nanoparticles treatmentYingying Chen, Pei‐Wen Cheng, Chih‐Kuang Chen et al.|Life Sciences|2023Cited by 19
μ-Opioid Receptor-Mediated AT1R–TLR4 Crosstalk Promotes Microglial Activation to Modulate Blood Pressure Control in the Central Nervous SystemGwo‐Ching Sun, Pei‐Wen Cheng, Jockey Tse et al.|Antioxidants|2021Cited by 12