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Current Pharmaceutical Design|November 2, 2016
Targeting the Nrf2-Heme Oxygenase-1 Axis after Intracerebral HemorrhageJing Chen-Roetling, Raymond F ReganBiochemical and Biophysical Research Communications|September 27, 2006
Effect of heme oxygenase-1 on the vulnerability of astrocytes and neurons to hemoglobinJing Chen-Roetling, Raymond F ReganJournal of Neurochemistry|July 2, 2016
Haptoglobin increases the vulnerability of CD163-expressing neurons to hemoglobinJing Chen-Roetling, Raymond F ReganFree Radical Biology & Medicine|September 24, 2011
Iron accumulation and neurotoxicity in cortical cultures treated with holotransferrinJing Chen-Roetling, Wenpei Liu, Raymond F ReganNeurobiology of Disease|June 22, 2014
Systemic hemin therapy attenuates blood-brain barrier disruption after intracerebral hemorrhageXiangping Lu, Jing Chen-Roetling, Raymond F ReganTherapeutic Targets for Neurological Diseases|February 3, 2015
Targeting heme oxygenase after intracerebral hemorrhageJing Chen-Roetling, Xiangping Lu, Raymond F ReganTranslational Stroke Research|April 16, 2013
Effect of iron chelators on methemoglobin and thrombin preconditioningJing Chen-Roetling, Jesse Sinanan, Raymond F ReganFree Radical Research|June 11, 2009
Increasing expression of H- or L-ferritin protects cortical astrocytes from hemin toxicityZhi Li, Jing Chen-Roetling, Raymond F ReganBiochemical and Biophysical Research Communications|June 16, 2009
Minocycline attenuates iron neurotoxicity in cortical cell culturesJing Chen-Roetling, Lifen Chen, Raymond F ReganNeurochemistry International|February 21, 2012
Hemopexin decreases hemin accumulation and catabolism by neural cellsJing Chen-Roetling, Wenpei Liu, Raymond F ReganPageof 4