Dietary antioxidants significantly attenuate hyperoxia-induced acute inflammatory lung injury by enhancing macrophage function via reducing the accumulation of airway HMGB1 V Patel, K Dial, J Wu, AG Gauthier, W Wu, M Lin, MG Espey, DD Thomas, ... International journal of molecular sciences 21 (3), 977, 2020 | 93 | 2020 |
The role of HMGB1, a nuclear damage-associated molecular pattern molecule, in the pathogenesis of lung diseases M Wang, A Gauthier, LA Daley, K Dial, J Wu, J Woo, M Lin, C Ashby, ... Antioxidants & Redox Signaling 31 (13), 954-993, 2019 | 79 | 2019 |
BrainOS: a novel artificial brain-alike automatic machine learning framework N Howard, N Chouikhi, A Adeel, K Dial, A Howard, A Hussain Frontiers in computational neuroscience 14, 16, 2020 | 11 | 2020 |
A Standardized Botanical Composition Mitigated Acute Inflammatory Lung Injury and Reduced Mortality through Extracellular HMGB1 Reduction M Yimam, T Horm, A O’Neal, P Jiao, M Hong, L Brownell, Q Jia, M Lin, ... Molecules 28 (18), 6560, 2023 | 3 | 2023 |
CRA, Mantell LL.(2020) Dietary Antioxidants Significantly Attenuate Hyperoxia-Induced Acute Inflammatory Lung Injury by Enhancing Macrophage Function via Reducing the … V Patel, K Dial, J Wu, AG Gauthier, W Wu, M Lin, MG Espey, ... Int J Mol Sci 21 (3), 0 | 1 | |
A standardized bioflavonoid composition mitigated acute inflammatory lung injury and reduced mortality through HMGB1 reduction M Yimam, T Horm, A O'neal, P Jiao, M Hong, L Brownell, Q Jia, M Lin, ... Preprints, 2023 | | 2023 |
Dietary Antioxidants Significantly Improve Macrophage Function in Hyperoxia-Induced Acute Lung Injury by Reducing Oxidative Potential and Extracellular HMGB1 Accumulation J Wu, K Dial, V Patel, W Wu, A Gauthier, M Espey, D Thomas, C Ashby, ... FREE RADICAL BIOLOGY AND MEDICINE 145, S60-S60, 2019 | | 2019 |
NRF2 Inducers Sulforaphane and Resveratrol Attenuate Hyperoxia-compromised Macrophage Functions by Ameliorating Oxidative Stress K Dial St. John's University, 2019 | | 2019 |
Antioxidants ameliorate hyperoxia-induced lung injury by inhibition of HMGB1 K Dial, V Patel, W Wu, L Mantell Free Radical Biology and Medicine 128, S102-S103, 2018 | | 2018 |
Nrf-2 Activators Improve Hyperoxia-Compromised Macrophage Functions K Dial, W Wu, L Mantell Free Radical Biology and Medicine 120, S92, 2018 | | 2018 |
Nrf-2 Inducers Ameliorate Hyperoxia-Compromised Macrophage Functions K Dial, W Wu, M Wang, J Wu, L Mantell D27. REDOX AND BEYOND: MITOCHONDRIA, ER STRESS, AND PROTEASOMES, A6372-A6372, 2018 | | 2018 |
Sulforaphane Improves Hyperoxia Compromised Phagocytic Function In Macrophages K Dial, W Wu, L Mantell B79. ROLE OF IMMUNE CELLS IN ACUTE LUNG INJURY, A4386-A4386, 2017 | | 2017 |