Disclosures: Jing ZHAO: Nothing to Disclose, Shan Ren: Nothing to Disclose, Sujun Zheng: Nothing to Disclose, Bingliang Lin: Nothing to Disclose, Yongfang Jiang: Nothing to Disclose, Qingfa Ruan: Nothing to Disclose, Yan Huang: Nothing to Disclose, Yilan Zeng: Nothing to Disclose, Jiawei Geng: Nothing to Disclose, Haifang Cao: Nothing to Disclose, Wenhua Zhang: Nothing to Disclose, Ying Guo: Nothing to Disclose, Xiaorong Mao: Nothing to Disclose, Zhiliang Gao: Nothing to Disclose, Tianyuan Shi: Nothing to Disclose, Yueyong Zhu: Nothing to Disclose, Zujiang Yu: Nothing to Disclose, Xiaoping Wu: Nothing to Disclose, Qing Mao: Nothing to Disclose, Xiulan Xue: Nothing to Disclose, Yingli He: Nothing to Disclose, Jia Shang: Nothing to Disclose, Shuangsuo Dang: Nothing to Disclose, Haidong Zhao: Nothing to Disclose, Rongshan Fan: Nothing to Disclose, Jiangling Yang: Nothing to Disclose, Jianqi Lian: Nothing to Disclose, Haibing Gao: Nothing to Disclose, Xinyue Chen: Nothing to Disclose 400 CORONARY ARTERY DISEASE RISK AFTER LIVER TRANSPLANTATION IS 2-FOLD HIGHER THAN THE GENERAL POPULATION: A NATIONWIDE SWEDISH COHORT STUDY OF 2925 PATIENTS Christian Lewinter 1 Linnea Widman 2 Ying Shang 1 Axel Wester 1 Rickard Strandberg 1 Hannes Hagstrm 1 , 1 The Karolinska Institute, 2 Karolinska Background: The risk of coronary artery disease (CAD) is increased in liver transplant (LT) recipients

Factors that Deplete Glutathione Several factors can deplete glutathione levels, compromising the body's ability to detoxify and defend against oxidative stress: Acetaminophen (Paracetamol) : Widely used for pain relief and fever reduction, acetaminophen is a well-known depleter of glutathione
Glutamate Transport: Systems X G and X C Studies using isolated membranes from the BBB revealed that facilitative carriers for glutamate (Glu) only existed on the luminal side, while sodium-dependent active co-transporters were confined to the abluminal membrane ( + -independent transporter was a path for Glu entry into the brain
This characteristic may contribute to its effectiveness in promoting sustainable dietary change (114)
Discovery and optimization of anthranilic acid sulfonamides as inhibitors of methionine aminopeptidase-2: a structural basis for the reduction of albumin binding
Roles of microglial mitophagy in neurological disorders