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Archives of Toxicology|March 9, 2019
NF-κB/mTOR-mediated autophagy can regulate diquat-induced apoptosisAeri Park, Hyun Chul KohToxicology Letters|May 8, 2023
The role of CK2 in the regulation of mitochondrial autophagy induced by rotenoneBeom Hee Kim, Hyun Chul KohFood and Chemical Toxicology : an International Journal Published for the British Industrial Biological Research Association|February 1, 2020
FUNDC1 regulates receptor-mediated mitophagy independently of the PINK1/Parkin-dependent pathway in rotenone-treated SH-SY5Y cellsSi Yeon Park, Hyun Chul KohFood and Chemical Toxicology : an International Journal Published for the British Industrial Biological Research Association|December 1, 2021
Chaperon-mediated autophagy can regulate diquat-induced apoptosis by inhibiting α-synuclein accumulation cooperatively with macroautophagyHong Ju Kim, Hyun Chul KohAutonomic Neuroscience : Basic & Clinical|January 14, 2009
Modification of the cardiovascular response of posterior hypothalamic adenosine A(2A) receptor stimulation by adenylate cyclase and KATP channel blockade in anesthetized ratsChang Beom Lee, Hyun Chul KohJournal of Cardiovascular Pharmacology|February 4, 2009
Involvement of NO and KATP channel in adenosine A2B receptors induced cardiovascular regulation in the posterior hypothalamus of ratsTae-Kyung Lee, Hyun Chul KohAutonomic Neuroscience : Basic & Clinical|March 17, 2007
Involvement of guanylate cyclase in the cardiovascular response induced by adenosine A2B receptor stimulation in the posterior hypothalamus of the anesthetized ratsMin Jeong Kang, Hyun Chul KohMolecular Neurobiology|November 18, 2025
CK2α Regulates Endoplasmic Reticulum Stress-Mediated Mitophagy via the PERK/ATF4/CHOP Pathway in Rotenone-Treated SH-SY5Y CellsKyung Mi Lim, Jungwook Hwang, Hyun Chul KohEnvironmental Toxicology|February 28, 2018
NF-κB/p53-activated inflammatory response involves in diquat-induced mitochondrial dysfunction and apoptosisSu Eun Choi, Yun Sun Park, Hyun Chul KohToxicology Letters|May 19, 2009
Paraquat induces alternation of the dopamine catabolic pathways and glutathione levels in the substantia nigra of miceMin Jeong Kang, Suk Ju Gil, Hyun Chul KohPageof 8