Skip Navigation
Skip to contents

Endocrinol Metab : Endocrinology and Metabolism

clarivate
OPEN ACCESS
SEARCH
Search

Search

Page Path
HOME > Search
3 "Lipogenesis"
Filter
Filter
Article type
Keywords
Publication year
Authors
Funded articles
Original Article
Endocrine Research
Serotonin Regulates De Novo Lipogenesis in Adipose Tissues through Serotonin Receptor 2A
Ko Eun Shong, Chang-Myung Oh, Jun Namkung, Sangkyu Park, Hail Kim
Endocrinol Metab. 2020;35(2):470-479.   Published online June 24, 2020
DOI: https://doi.org/10.3803/EnM.2020.35.2.470
Correction in: Endocrinol Metab 2020;35(3):672
  • 10,650 View
  • 283 Download
  • 27 Web of Science
  • 26 Crossref
AbstractAbstract PDFSupplementary MaterialPubReader   ePub   
Background
Obesity is defined as excessive fat mass and is a major cause of many chronic diseases such as diabetes, cardiovascular disease, and cancer. Increasing energy expenditure and regulating adipose tissue metabolism are important targets for the treatment of obesity. Serotonin (5-hydroxytryptophan [5-HT]) is a monoamine metabolite of the essential amino acid tryptophan. Here, we demonstrated that 5-HT in mature adipocytes regulated energy expenditure and lipid metabolism.
Methods
Tryptophan hydroxylase 1 (TPH1) is the rate-limiting enzyme during 5-HT synthesis in non-neural peripheral tissues. We generated adipose tissue-specific Tph1 knockout (Tph1 FKO) mice and adipose tissue-specific serotonin receptor 2A KO (Htr2a FKO) mice and analyzed their phenotypes during high-fat diet (HFD) induced obesity.
Results
Tph1 FKO mice fed HFD exhibited reduced lipid accumulation, increased thermogenesis, and resistance to obesity. In addition, Htr2a FKO mice fed HFD showed reduced lipid accumulation in white adipose tissue and resistance to obesity.
Conclusion
These data suggest that the inhibition of serotonin signaling might be an effective strategy in obesity.

Citations

Citations to this article as recorded by  
  • Serotonin signaling to regulate energy metabolism: a gut microbiota perspective
    Guoli Li, Sijing Dong, Chunhao Liu, Jing Yang, Patrick C N Rensen, Yanan Wang
    Life Metabolism.2025;[Epub]     CrossRef
  • Gut Bacteria-Derived Tryptamine Ameliorates Diet-Induced Obesity and Insulin Resistance in Mice
    Jongjun Lee, Hye-Rim Jang, Dongjin Lee, Yeonmi Lee, Hui-Young Lee
    International Journal of Molecular Sciences.2025; 26(3): 1327.     CrossRef
  • Linking serotonin homeostasis to gut function: Nutrition, gut microbiota and beyond
    Lili Jiang, Dandan Han, Youling Hao, Zhuan Song, Zhiyuan Sun, Zhaolai Dai
    Critical Reviews in Food Science and Nutrition.2024; 64(21): 7291.     CrossRef
  • Gut microbiota dysbiosis and decreased levels of acetic and propionic acid participate in glucocorticoid-induced glycolipid metabolism disorder
    Qin Zhang, Gaopeng Guan, Jie Liu, Wenmu Hu, Ping Jin, Yung-Fu Chang
    mBio.2024;[Epub]     CrossRef
  • Exploring the contribution of mammary-derived serotonin on liver and pancreas metabolism during lactation
    Sena L. Field, Everardo Anta Galvan, Laura L. Hernandez, Jimena Laporta, Sina Safayi
    PLOS ONE.2024; 19(6): e0304910.     CrossRef
  • Metabolic profiling of tryptophan pathways: Implications for obesity and metabolic dysfunction‐associated steatotic liver disease
    Carmen Arto, Elena Cristina Rusu, Helena Clavero‐Mestres, Andrea Barrientos‐Riosalido, Laia Bertran, Razieh Mahmoudian, Carmen Aguilar, David Riesco, Javier Ugarte Chicote, David Parada, Salomé Martínez, Fàtima Sabench, Cristóbal Richart, Teresa Auguet
    European Journal of Clinical Investigation.2024;[Epub]     CrossRef
  • Peripheral Serotonin Controls Dietary Fat Absorption and Chylomicron Secretion via 5-HT4 Receptor in Males
    Fitore Raka, Simon Hoffman, Asal Nady, Henry Guan, Rianna Zhang, Huaqing Wang, Waliul I Khan, Khosrow Adeli
    Endocrinology.2024;[Epub]     CrossRef
  • The 5-HT-related gut-brain axis in obesity
    Chaoyong Jiang, Qiong Zhan, Chang Zeng
    Life Sciences.2024; 358: 123171.     CrossRef
  • The Chain-Mediating Effect of Obesity, Depressive Symptoms on the Association between Dietary Quality and Cardiovascular Disease Risk
    Shuai Zhang, Limei E, Zhonghai Lu, Yingying Yu, Xuebin Yang, Yao Chen, Xiubo Jiang
    Nutrients.2023; 15(3): 629.     CrossRef
  • Metabolic and Molecular Response to High-Fat Diet Differs between Rats with Constitutionally High and Low Serotonin Tone
    Petra Baković, Maja Kesić, Darko Kolarić, Jasminka Štefulj, Lipa Čičin-Šain
    International Journal of Molecular Sciences.2023; 24(3): 2169.     CrossRef
  • Serotonin transporter-deficient mice display enhanced adipose tissue inflammation after chronic high-fat diet feeding
    Johannes Hoch, Niklas Burkhard, Shanshan Zhang, Marina Rieder, Timoteo Marchini, Vincent Geest, Krystin Krauel, Timm Zahn, Nicolas Schommer, Muataz Ali Hamad, Carolina Bauer, Nadine Gauchel, Daniela Stallmann, Claus Normann, Dennis Wolf, Rüdiger Eberhard
    Frontiers in Immunology.2023;[Epub]     CrossRef
  • The role of serotonin in prenatal ontogenesis
    Inna I. Evsyukova
    Journal of obstetrics and women's diseases.2023; 72(4): 81.     CrossRef
  • Genome-wide survey and functional analysis reveal TCF21 promotes chicken preadipocyte differentiation by directly upregulating HTR2A
    Xinyang Zhang, Bohan Cheng, Yanyan Ma, Yumeng Liu, Ning Wang, Hui Zhang, Yumao Li, Yuxiang Wang, Peng Luan, Zhiping Cao, Hui Li
    Biochemical and Biophysical Research Communications.2022; 587: 131.     CrossRef
  • Maternal Metabolic State and Fetal Sex and Genotype Modulate Methylation of the Serotonin Receptor Type 2A Gene (HTR2A) in the Human Placenta
    Marina Horvatiček, Maja Perić, Ivona Bečeheli, Marija Klasić, Maja Žutić, Maja Kesić, Gernot Desoye, Sandra Nakić Radoš, Marina Ivanišević, Dubravka Hranilovic, Jasminka Štefulj
    Biomedicines.2022; 10(2): 467.     CrossRef
  • Synthesis and biological evaluation of tyrosine derivatives as peripheral 5HT2A receptor antagonists for nonalcoholic fatty liver disease
    Minhee Kim, Wonil Choi, Jihyeon Yoon, Byung-kwan Jeong, Suvarna H. Pagire, Haushabhau S. Pagire, Jungsun Park, Jung Eun Nam, Chang Joo Oh, Jae-Han Jeon, Seong Soon Kim, Byung Hoi Lee, Jin Sook Song, Myung Ae Bae, In-Kyu Lee, Hail Kim, Jin Hee Ahn
    European Journal of Medicinal Chemistry.2022; 239: 114517.     CrossRef
  • Serotonin in the regulation of systemic energy metabolism
    Joon Ho Moon, Chang‐Myung Oh, Hail Kim
    Journal of Diabetes Investigation.2022; 13(10): 1639.     CrossRef
  • Traumatic brain injury alters the gut-derived serotonergic system and associated peripheral organs
    Natosha M. Mercado, Guanglin Zhang, Zhe Ying, Fernando Gómez-Pinilla
    Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease.2022; 1868(11): 166491.     CrossRef
  • Modulation of adipose tissue metabolism by microbial-derived metabolites
    Wenyun Liu, Ge Yang, Pinyi Liu, Xin Jiang, Ying Xin
    Frontiers in Microbiology.2022;[Epub]     CrossRef
  • Risperidone Exacerbates Glucose Intolerance, Nonalcoholic Fatty Liver Disease, and Renal Impairment in Obese Mice
    Hsiao-Pei Tsai, Po-Hsun Hou, Frank-Chiahung Mao, Chia-Chia Chang, Wei-Cheng Yang, Ching-Feng Wu, Huei-Jyuan Liao, Tzu-Chun Lin, Lan-Szu Chou, Li-Wei Hsiao, Geng-Ruei Chang
    International Journal of Molecular Sciences.2021; 22(1): 409.     CrossRef
  • Pancreatic Sirtuin 3 Deficiency Promotes Hepatic Steatosis by Enhancing 5-Hydroxytryptamine Synthesis in Mice With Diet-Induced Obesity
    Xing Ming, Arthur C.K. Chung, Dandan Mao, Huanyi Cao, Baoqi Fan, Willy K.K. Wong, Chin Chung Ho, Heung Man Lee, Kristina Schoonjans, Johan Auwerx, Guy A. Rutter, Juliana C.N. Chan, Xiao Yu Tian, Alice P.S. Kong
    Diabetes.2021; 70(1): 119.     CrossRef
  • Peripheral Selective Oxadiazolylphenyl Alanine Derivatives as Tryptophan Hydroxylase 1 Inhibitors for Obesity and Fatty Liver Disease
    Eun Jung Bae, Won Gun Choi, Haushabhau S. Pagire, Suvarna H. Pagire, Saravanan Parameswaran, Jun-Ho Choi, Jihyeon Yoon, Won-il Choi, Ji Hun Lee, Jin Sook Song, Myung Ae Bae, Mijin Kim, Jae-Han Jeon, In-Kyu Lee, Hail Kim, Jin Hee Ahn
    Journal of Medicinal Chemistry.2021; 64(2): 1037.     CrossRef
  • A Systems Biology Approach to Investigating the Interaction between Serotonin Synthesis by Tryptophan Hydroxylase and the Metabolic Homeostasis
    Suhyeon Park, Yumin Kim, Jibeom Lee, Jeong Yun Lee, Hail Kim, Sunjae Lee, Chang-Myung Oh
    International Journal of Molecular Sciences.2021; 22(5): 2452.     CrossRef
  • Metabolic Disturbances in Rat Sublines with Constitutionally Altered Serotonin Homeostasis
    Maja Kesić, Petra Baković, Ranko Stojković, Jasminka Štefulj, Lipa Čičin-Šain
    International Journal of Molecular Sciences.2021; 22(10): 5400.     CrossRef
  • The Mechanism of Secretion and Metabolism of Gut-Derived 5-Hydroxytryptamine
    Ning Liu, Shiqiang Sun, Pengjie Wang, Yanan Sun, Qingjuan Hu, Xiaoyu Wang
    International Journal of Molecular Sciences.2021; 22(15): 7931.     CrossRef
  • Inhibiting serotonin signaling through HTR2B in visceral adipose tissue improves obesity-related insulin resistance
    Won Gun Choi, Wonsuk Choi, Tae Jung Oh, Hye-Na Cha, Inseon Hwang, Yun Kyung Lee, Seung Yeon Lee, Hyemi Shin, Ajin Lim, Dongryeol Ryu, Jae Myoung Suh, So-Young Park, Sung Hee Choi, Hail Kim
    Journal of Clinical Investigation.2021;[Epub]     CrossRef
  • Serotonergic Regulation of Hepatic Energy Metabolism
    Jiwon Park, Wooju Jeong, Chahyeon Yun, Hail Kim, Chang-Myung Oh
    Endocrinology and Metabolism.2021; 36(6): 1151.     CrossRef
Close layer
Review Article
The SCAP/SREBP Pathway: A Mediator of Hepatic Steatosis
Young-Ah Moon
Endocrinol Metab. 2017;32(1):6-10.   Published online January 19, 2017
DOI: https://doi.org/10.3803/EnM.2017.32.1.6
  • 10,874 View
  • 254 Download
  • 86 Web of Science
  • 83 Crossref
AbstractAbstract PDFPubReader   

Nonalcoholic fatty liver disease (NAFLD) is strongly associated with insulin resistance, obesity, and dyslipidemia. NAFLD encompasses a wide range of states from the simple accumulation of triglycerides in the hepatocytes to serious states accompanied by inflammation and fibrosis in the liver. De novo lipogenesis has been shown to be a significant factor in the development of hepatic steatosis in insulin-resistant states. Sterol regulatory element binding protein-1c (SREBP-1c) is the main transcription factor that mediates the activation of lipogenesis, and SREBP cleavage activating protein (SCAP) is required for the activation of SREBPs. Here, recent animal studies that suggest SCAP as a therapeutic target for hepatic steatosis and hypertriglyceridemia are discussed.

Citations

Citations to this article as recorded by  
  • Female C57BL/6 mice exhibit protection against nonalcoholic fatty liver disease and diabesity accompanied by differential regulation of hepatic lipocalin prostaglandin D2 synthase
    Md Asrarul Islam, Rhema Khairnar, Joshua Fleishman, Sandra E. Reznik, Louis Ragolia, Shruthi Gobbooru, Sunil Kumar
    Molecular and Cellular Endocrinology.2025; 595: 112404.     CrossRef
  • Cholesterol Depletion Activate Hepatic Stellate Cells Mediated Through SREBP‐2 Signaling
    Nivya Vijayan, Madan Kumar Perumal
    Journal of Cellular Physiology.2025;[Epub]     CrossRef
  • The mechanism of DEHP-induced lipid accumulation in liver of female zebrafish
    Yueyue Mi, Jiamin Shi, Xuan Ma, Dongqiong Wei, Rongjian Liu, Samra, Cong Yuan, Yongmei Qi, Dejun Huang
    Environmental Pollution.2025; 366: 125455.     CrossRef
  • Cepharanthine relieves nonalcoholic steatohepatitis through inhibiting STAT1/CXCL10 axis-mediated lipogenesis and inflammatory responses
    Pan Li, Ruoyu Zhang, Pingping Hu, Tingting Wang, Jianwei Wang
    Journal of Ethnopharmacology.2025; 341: 119358.     CrossRef
  • Ergosterol alleviates hepatic steatosis and insulin resistance via promoting fatty acid β-oxidation by activating mitochondrial ACSL1
    Zu-Guo Zheng, Yi-Ping Zhang, Xiao-Yu Zhang, Meng-Yao Qin, Yin-Yue Xu, He Wu, Run-Qing Liu, Qiu-Yi Wu, Ming-Su Wang, Chong Zhang, Yue-Qin Zheng, Jian-Ye Dai, Ping Li, Hua Yang
    Cell Reports.2025; 44(1): 115203.     CrossRef
  • Dietary Methionine Hydroxy Analog Regulates Hepatic Lipid Metabolism via SIRT1/AMPK Signaling Pathways in Largemouth Bass Micropterus salmodies
    Ju Zhao, Zhongjie Yang, Haifeng Liu, Chao Yang, Yujun Chen, Quanquan Cao, Jun Jiang
    Biology.2025; 14(3): 227.     CrossRef
  • SREBPs as the potential target for solving the polypharmacy dilemma
    Xue Wang, Yanqiu Chen, Heyu Meng, Fanbo Meng
    Frontiers in Physiology.2024;[Epub]     CrossRef
  • The Role of SCAP/SREBP as Central Regulators of Lipid Metabolism in Hepatic Steatosis
    Preethi Chandrasekaran, Ralf Weiskirchen
    International Journal of Molecular Sciences.2024; 25(2): 1109.     CrossRef
  • Expression and correlation analysis of silent information regulator 1 (SIRT1), sterol regulatory element-binding protein-1 (SREBP1), and pyroptosis factor in gestational diabetes mellitus
    Ning Han, Xin-yuan Chang, Zi-li Yuan, Yi-zhan Wang
    The Journal of Maternal-Fetal & Neonatal Medicine.2024;[Epub]     CrossRef
  • Uxi (Endopleura uchi (Huber) Cuatrec) bark extract mitigates HFD-induced adiposity in rats via targeting oxidative stress, and lipogenic genes expression
    Eman A.R. Abdelghffar, Zuhair M. Mohammedsaleh, Raha Osailan, Aisha Elaimi, Wafae Ouchari, Mohamed A.O. Abdelfattah, Mona F. Mahmoud, Mansour Sobeh
    Journal of Functional Foods.2024; 114: 106034.     CrossRef
  • Robinetin Alleviates Metabolic Failure in Liver through Suppression of p300-CD38 Axis
    Ji-Hye Song, Hyo-Jin Kim, Jangho Lee, Seung-Pyo Hong, Min-Yu Chung, Yu-Geun Lee, Jae Ho Park, Hyo-Kyoung Choi, Jin-Taek Hwang
    Biomolecules & Therapeutics.2024; 32(2): 214.     CrossRef
  • Regeneration of Non-Alcoholic Fatty Liver Cells Using Chimeric FGF21/HGFR: A Novel Therapeutic Approach
    Sung-Jun Kim, So-Jung Kim, Jeongeun Hyun, Hae-Won Kim, Jun-Hyeog Jang
    International Journal of Molecular Sciences.2024; 25(6): 3092.     CrossRef
  • Suppression of hepatic ChREBP⍺-CYP2C50 axis-driven fatty acid oxidation sensitizes mice to diet-induced MASLD/MASH
    Deqiang Zhang, Yuee Zhao, Gary Zhang, Daniel Lank, Sarah Cooke, Sujuan Wang, Alli Nuotio-Antar, Xin Tong, Lei Yin
    Molecular Metabolism.2024; 85: 101957.     CrossRef
  • Nutraceutical and dietary measures with potential for preventing/controlling non-alcoholic fatty liver disease and its complications
    Lidianys María Lewis Lujan, Mark F. McCarty, Juan Carlos Galvez Ruiz, Sergio Trujillo Lopez, Simon Bernard Iloki-Assanga
    Human Nutrition & Metabolism.2024; 37: 200281.     CrossRef
  • Ubiquitination and De-Ubiquitination in the Synthesis of Cow Milk Fat: Reality and Prospects
    Rui Gao, Yanni Wu, Yuhao Wang, Zhangping Yang, Yongjiang Mao, Yi Yang, Chunhua Yang, Zhi Chen
    Molecules.2024; 29(17): 4093.     CrossRef
  • Mitochondria-targeted hydrogen sulfide donor reduces fatty liver and obesity in mice fed a high fat diet by inhibiting de novo lipogenesis and inflammation via mTOR/SREBP-1 and NF-κB signaling pathways
    Aneta Stachowicz, Klaudia Czepiel, Anna Wiśniewska, Kamila Stachyra, Magdalena Ulatowska-Białas, Beata Kuśnierz-Cabala, Marcin Surmiak, Grzegorz Majka, Katarzyna Kuś, Mark E. Wood, Roberta Torregrossa, Matthew Whiteman, Rafał Olszanecki
    Pharmacological Research.2024; 209: 107428.     CrossRef
  • Zhimu-Huangbai herb-pair ameliorates hepatic steatosis in mice by regulating IRE1α/XBP1s pathway to inhibit SREBP-1c
    Wenjun Zhao, Xiaoying Wang, Wenlong Nie, Min Jiang, Yuan Zhao, Tong Zhang, Yue Ding
    Phytomedicine.2024; 134: 156017.     CrossRef
  • Evolutionary analysis of buffalo sterol regulatory element-binding factor (SREBF) family genes and their affection on milk traits
    Tingzhu Ye, Jing Yuan, Sayed Haidar Abbas Raza, Tingxian Deng, Lv Yang, Muhammad Jamil Ahmad, Seyed Mahdi Hosseini, Xinxin Zhang, Muna O Alamoudi, Qwait AlGabbani, Youssef S Alghamdi, Chao Chen, Aixin Liang, Nicola M. Schreurs, Liguo Yang
    Animal Biotechnology.2023; 34(7): 2082.     CrossRef
  • Hepatic Pin1 Expression, Particularly in Nuclei, Is Increased in NASH Patients in Accordance with Evidence of the Role of Pin1 in Lipid Accumulation Shown in Hepatoma Cell Lines
    Machi Kanna, Yusuke Nakatsu, Takeshi Yamamotoya, Akifumi Kushiyama, Midori Fujishiro, Hideyuki Sakoda, Hiraku Ono, Koji Arihiro, Tomoichiro Asano
    International Journal of Molecular Sciences.2023; 24(10): 8847.     CrossRef
  • Dietary acetate promotes growth and nutrients deposition in Nile tilapia (Oreochromis niloticus) through increasing acetyl-CoA-triggered energy production
    Wen-Hao Zhou, Samwel M. Limbu, Yuan Luo, Rui-Xin Li, Jiong Ren, Fang Qiao, Mei-Ling Zhang, Zhen-Yu Du
    Aquaculture.2023; 575: 739750.     CrossRef
  • Palmitate로 유발된 비알코올성 지방간 세포 모델에서 블랙커런트 초임계 추출물의 지방증 개선효과
    수정 이, 은숙 양, 영호 김, 혜연 김, 혜란 최, 석 김, 태호 류
    Korean Journal of Food and Cookery Science.2023; 39(3): 178.     CrossRef
  • PM2.5 induced liver lipid metabolic disorders in C57BL/6J mice
    Chenxiao Zhang, Tengfei Ma, Chang Liu, Ding Ma, Jian Wang, Meng Liu, Jinjun Ran, Xueting Wang, Xiaobei Deng
    Frontiers in Endocrinology.2023;[Epub]     CrossRef
  • High Gamma-Aminobutyric Acid (GABA) Oolong Tea Alleviates High-Fat Diet-Induced Metabolic Disorders in Mice
    Monthana Weerawatanakorn, Sang He, Chun-Han Chang, Yen-Chun Koh, Meei-Ju Yang, Min-Hsiung Pan
    ACS Omega.2023; 8(37): 33997.     CrossRef
  • MicroRNA-19a regulates milk fat metabolism by targeting SYT1 in bovine mammary epithelial cells
    Baojun Yu, Jiamin Liu, Zhengyun Cai, Tong Mu, Di Zhang, Xiaofang Feng, Yaling Gu, Juan Zhang
    International Journal of Biological Macromolecules.2023; 253: 127096.     CrossRef
  • SREBP Regulation of Lipid Metabolism in Liver Disease, and Therapeutic Strategies
    Na Li, Xiaodan Li, Yifu Ding, Xiao Liu, Karin Diggle, Tatiana Kisseleva, David A. Brenner
    Biomedicines.2023; 11(12): 3280.     CrossRef
  • Daidzein stimulates fatty acid-induced fat deposition in C2C12 myoblast cells via the G protein-coupled receptor 30 pathway
    Chengjian Zhou, Ping Li, Meihong Han, Xuejun Gao
    Animal Biotechnology.2022; 33(5): 851.     CrossRef
  • Hepatocyte steatosis inhibits hepatitis B virus secretion via induction of endoplasmic reticulum stress
    Qichuang Liu, Maoyuan Mu, Huan Chen, Guoyuan Zhang, Yanqing Yang, Jun Chu, Ying Li, Fangwan Yang, Shide Lin
    Molecular and Cellular Biochemistry.2022; 477(11): 2481.     CrossRef
  • The cholesterol pathway: impact on immunity and cancer
    Ryan J. King, Pankaj K. Singh, Kamiya Mehla
    Trends in Immunology.2022; 43(1): 78.     CrossRef
  • Hepatic retinaldehyde dehydrogenases are modulated by tocopherol supplementation in mice with hepatic steatosis
    Amanda D'Espessailles, Valeria Campos, Nevenka Juretić, Gladys S. Tapia, Paulina Pettinelli
    Nutrition.2022; 94: 111539.     CrossRef
  • CD36 promotes de novo lipogenesis in hepatocytes through INSIG2-dependent SREBP1 processing
    Han Zeng, Hong Qin, Meng Liao, Enze Zheng, Xiaoqing Luo, Anhua Xiao, Yiyu Li, Lin Chen, Li Wei, Lei Zhao, Xiong Z. Ruan, Ping Yang, Yaxi Chen
    Molecular Metabolism.2022; 57: 101428.     CrossRef
  • Biogenesis and Breakdown of Lipid Droplets in Pathological Conditions
    Claudio M. Fader Kaiser, Patricia S. Romano, M. Cristina Vanrell, Cristian A. Pocognoni, Julieta Jacob, Benjamín Caruso, Laura R. Delgui
    Frontiers in Cell and Developmental Biology.2022;[Epub]     CrossRef
  • Efficacy and safety of an orally administered DGAT2 inhibitor alone or coadministered with a liver-targeted ACC inhibitor in adults with non-alcoholic steatohepatitis (NASH): rationale and design of the phase II, dose-ranging, dose-finding, randomised, pl
    Neeta B Amin, Amanda Darekar, Quentin M Anstee, Vincent Wai-Sun Wong, Frank Tacke, Manoli Vourvahis, Douglas S Lee, Michael Charlton, Naim Alkhouri, Atsushi Nakajima, Carla Yunis
    BMJ Open.2022; 12(3): e056159.     CrossRef
  • Identification of microRNA Transcriptome Involved in Bovine Intramuscular Fat Deposition
    Susan K. Duckett, Maslyn A. Greene
    Frontiers in Veterinary Science.2022;[Epub]     CrossRef
  • Camellia (Camellia oleifera bel.) seed oil reprograms gut microbiota and alleviates lipid accumulation in high fat-fed mice through the mTOR pathway
    Jing Gao, Li Ma, Jie Yin, Gang Liu, Jie Ma, SiTing Xia, SaiMing Gong, Qi Han, TieJun Li, YongZhong Chen, YuLong Yin
    Food & Function.2022; 13(9): 4977.     CrossRef
  • The Perirenal Fat Thickness Was Associated with Nonalcoholic Fatty Liver Disease in Patients with Type 2 Diabetes Mellitus
    Yuxian Yang, Shuting Li, Yuechao Xu, Jing Ke, Dong Zhao
    Diabetes, Metabolic Syndrome and Obesity: Targets and Therapy.2022; Volume 15: 1505.     CrossRef
  • Vanadium(IV)-Chlorodipicolinate Protects against Hepatic Steatosis by Ameliorating Lipid Peroxidation, Endoplasmic Reticulum Stress, and Inflammation
    Yuanli Wang, Rulong Chen, Jingyi Li, Guodong Zeng, Juntao Yuan, Jingran Su, Chunyan Wu, Zhongbing Lu, Fang Zhang, Wenjun Ding
    Antioxidants.2022; 11(6): 1093.     CrossRef
  • Inhibiting SCAP/SREBP exacerbates liver injury and carcinogenesis in murine nonalcoholic steatohepatitis
    Satoshi Kawamura, Yuki Matsushita, Shigeyuki Kurosaki, Mizuki Tange, Naoto Fujiwara, Yuki Hayata, Yoku Hayakawa, Nobumi Suzuki, Masahiro Hata, Mayo Tsuboi, Takahiro Kishikawa, Hiroto Kinoshita, Takuma Nakatsuka, Masaya Sato, Yotaro Kudo, Yujin Hoshida, At
    Journal of Clinical Investigation.2022;[Epub]     CrossRef
  • Baicalein Prevents Fructose-Induced Hepatic Steatosis in Rats: In the Regulation of Fatty Acid De Novo Synthesis, Fatty Acid Elongation and Fatty Acid Oxidation
    Pan Li, Ruoyu Zhang, Meng Wang, Yuwei Chen, Zhiwei Chen, Xiumei Ke, Ling Zuo, Jianwei Wang
    Frontiers in Pharmacology.2022;[Epub]     CrossRef
  • Identification and validation of immune related core transcription factors GTF2I in NAFLD
    Minbo Zhang, Yu Zhang, Xiaoxiao Jiao, Linying Lai, Yiting Qian, Bo Sun, Wenzhuo Yang
    PeerJ.2022; 10: e13735.     CrossRef
  • Lipid-lowering effect of microencapsulated peptides from brewer's spent grain in high-sucrose diet-fed rats
    M.R. Ferreira, A.G. Garzón, M.E. Oliva, R.E. Cian, S.R. Drago, M.E. D'Alessandro
    Food Bioscience.2022; 49: 101981.     CrossRef
  • The SREBP-dependent regulation of cyclin D1 coordinates cell proliferation and lipid synthesis
    Arwa Aldaalis, Maria T. Bengoechea-Alonso, Johan Ericsson
    Frontiers in Oncology.2022;[Epub]     CrossRef
  • Targets of statins intervention in LDL-C metabolism: Gut microbiota
    ChangXin Sun, ZePing Wang, LanQing Hu, XiaoNan Zhang, JiYe Chen, ZongLiang Yu, LongTao Liu, Min Wu
    Frontiers in Cardiovascular Medicine.2022;[Epub]     CrossRef
  • Regulation of lipid droplet (LD) formation in hepatocytes via regulation of SREBP1c by non-coding RNAs
    Shereen A. El Sobky, Nourhan K. Aboud, Nihal M. El Assaly, Injie O. Fawzy, Nada El-Ekiaby, Ahmed I. Abdelaziz
    Frontiers in Medicine.2022;[Epub]     CrossRef
  • Aspalathin-rich green rooibos tea in combination with glyburide and atorvastatin enhances lipid metabolism in a db/db mouse model
    Oelfah Patel, Christo J. F. Muller, Elizabeth Joubert, Bernd Rosenkranz, Johan Louw, Charles Awortwe
    Frontiers in Clinical Diabetes and Healthcare.2022;[Epub]     CrossRef
  • Capparis spinosa improves non-alcoholic steatohepatitis through down-regulating SREBP-1c and a PPARα-independent pathway in high-fat diet-fed rats
    Rasoul Akbari, Hamid Yaghooti, Mohammad Taha Jalali, Laya Sadat Khorsandi, Narges Mohammadtaghvaei
    BMC Research Notes.2022;[Epub]     CrossRef
  • Gypenosides counteract hepatic steatosis and intestinal barrier injury in rats with metabolic associated fatty liver disease by modulating the adenosine monophosphate activated protein kinase and Toll-like receptor 4/nuclear factor kappa B pathways
    Shuhua Shen, Kungen Wang, Yihui Zhi, Yue Dong
    Pharmaceutical Biology.2022; 60(1): 1949.     CrossRef
  • CYP51-mediated cholesterol biosynthesis is required for the proliferation of CD4+ T cells in Sjogren’s syndrome
    Junhao Yin, Jiayao Fu, Yanxiong Shao, Jiabao Xu, Hui Li, Changyu Chen, Yijie Zhao, Zhanglong Zheng, Chuangqi Yu, Lingyan Zheng, Baoli Wang
    Clinical and Experimental Medicine.2022; 23(5): 1691.     CrossRef
  • Differential TM4SF5‐mediated SIRT1 modulation and metabolic signaling in nonalcoholic steatohepatitis progression
    Jihye Ryu, Eunmi Kim, Min‐Kyung Kang, Dae‐Geun Song, Eun‐Ae Shin, Haesong Lee, Jae Woo Jung, Seo Hee Nam, Ji Eon Kim, Hye‐Jin Kim, Taekwon Son, Semi Kim, Hwi Young Kim, Jung Weon Lee
    The Journal of Pathology.2021; 253(1): 55.     CrossRef
  • Changes in Glutathione Content in Liver Diseases: An Update
    Mariapia Vairetti, Laura Giuseppina Di Pasqua, Marta Cagna, Plinio Richelmi, Andrea Ferrigno, Clarissa Berardo
    Antioxidants.2021; 10(3): 364.     CrossRef
  • Metreleptin therapy for nonalcoholic steatohepatitis: Open-label therapy interventions in two different clinical settings
    Baris Akinci, Angela Subauste, Nevin Ajluni, Nazanene H. Esfandiari, Rasimcan Meral, Adam H. Neidert, Akin Eraslan, Rita Hench, Diana Rus, Barbara Mckenna, Hero K. Hussain, Thomas L. Chenevert, Marwan K. Tayeh, Amit R. Rupani, Jeffrey W. Innis, Christos S
    Med.2021; 2(7): 814.     CrossRef
  • Prediction of Srebp-1 as a Key Target of Qing Gan San Against MAFLD in Rats via RNA-Sequencing Profile Analysis
    Bendong Yang, Jingyue Sun, Shufei Liang, Peixuan Wu, Rui Lv, Yanping He, Deqi Li, Wenlong Sun, Xinhua Song
    Frontiers in Pharmacology.2021;[Epub]     CrossRef
  • Structural insights into the mechanism of human NPC1L1-mediated cholesterol uptake
    Miaoqing Hu, Fan Yang, Yawen Huang, Xin You, Desheng Liu, Shan Sun, Sen-Fang Sui
    Science Advances.2021;[Epub]     CrossRef
  • Identification and Optimization of a Minor Allele-Specific siRNA to Prevent PNPLA3 I148M-Driven Nonalcoholic Fatty Liver Disease
    Justin K. Murray, Jason Long, Lei Liu, Shivani Singh, Danielle Pruitt, Michael Ollmann, Elissa Swearingen, Miki Hardy, Oliver Homann, Bin Wu, Jerry Ryan Holder, Kelvin Sham, Brad Herberich, Mei-Chu Lo, Hui Dou, Artem Shkumatov, Monica Florio, Ingrid C. Ru
    Nucleic Acid Therapeutics.2021; 31(5): 324.     CrossRef
  • Molecular mechanism of DLBS3733, a bioactive fraction of Lagerstroemia speciosa (L.) Pers., on ameliorating hepatic lipid accumulation in HepG2 cells
    Olivia M. Tandrasasmita, Guntur Berlian, Raymond R. Tjandrawinata
    Biomedicine & Pharmacotherapy.2021; 141: 111937.     CrossRef
  • The Role of Gut Microbiota on Cholesterol Metabolism in Atherosclerosis
    Margaret Vourakis, Gaétan Mayer, Guy Rousseau
    International Journal of Molecular Sciences.2021; 22(15): 8074.     CrossRef
  • Inhibition of Atherosclerosis and Liver Steatosis by Agmatine in Western Diet-Fed apoE-Knockout Mice Is Associated with Decrease in Hepatic De Novo Lipogenesis and Reduction in Plasma Triglyceride/High-Density Lipoprotein Cholesterol Ratio
    Anna Wiśniewska, Aneta Stachowicz, Katarzyna Kuś, Magdalena Ulatowska-Białas, Justyna Totoń-Żurańska, Anna Kiepura, Kamila Stachyra, Maciej Suski, Mariusz Gajda, Jacek Jawień, Rafał Olszanecki
    International Journal of Molecular Sciences.2021; 22(19): 10688.     CrossRef
  • Therapeutic Targeting of Nonalcoholic Fatty Liver Disease by Downregulating SREBP-1C Expression via AMPK-KLF10 Axis
    Yu-Chi Chen, Rong-Jane Chen, Szu-Yuan Peng, Winston C. Y. Yu, Vincent Hung-Shu Chang
    Frontiers in Molecular Biosciences.2021;[Epub]     CrossRef
  • Regulation of Key Genes for Milk Fat Synthesis in Ruminants
    Tong Mu, Honghong Hu, Yanfen Ma, Xiaofang Feng, Juan Zhang, Yaling Gu
    Frontiers in Nutrition.2021;[Epub]     CrossRef
  • Visceral-to-Subcutaneous Abdominal Fat Ratio Is Associated with Nonalcoholic Fatty Liver Disease and Liver Fibrosis
    Chan-Hee Jung, Eun-Jung Rhee, Hyemi Kwon, Yoosoo Chang, Seungho Ryu, Won-Young Lee
    Endocrinology and Metabolism.2020; 35(1): 165.     CrossRef
  • Lipidomic profiling analysis of the phospholipid molecules in SCAP-induced lipid droplet formation in bovine mammary epithelial cells
    Liqiang Han, Kun Pang, Xiu ling Li, Juan J Loor, Guo yu Yang, Tengyun Gao
    Prostaglandins & Other Lipid Mediators.2020; 149: 106420.     CrossRef
  • Sexual Dimorphism of NAFLD in Adults. Focus on Clinical Aspects and Implications for Practice and Translational Research
    Amedeo Lonardo, Ayako Suzuki
    Journal of Clinical Medicine.2020; 9(5): 1278.     CrossRef
  • Smurf1 aggravates non‐alcoholic fatty liver disease by stabilizing SREBP‐1c in an E3 activity‐independent manner
    Xin Zhang, Yutao Zhan, Wenjun Lin, Fei Zhao, Chaojing Guo, Yujiao Chen, Mengge Du, Dongnian Li, Lingqiang Zhang, Wei An, Hong‐Rui Wang, Ping Xie
    The FASEB Journal.2020; 34(6): 7631.     CrossRef
  • Beneficial Effects of SREBP Decoy Oligodeoxynucleotide in an Animal Model of Hyperlipidemia
    Hyun-Jin An, Jung-Yeon Kim, Mi-Gyeong Gwon, Hyemin Gu, Hyun-Ju Kim, Jaechan Leem, Sung Won Youn, Kwan-Kyu Park
    International Journal of Molecular Sciences.2020; 21(2): 552.     CrossRef
  • Lack of Augmenter of Liver Regeneration Disrupts Cholesterol Homeostasis of Liver in Mice by Inhibiting the AMPK Pathway
    Xin Wang, Ling‐yue Dong, Qu‐jing Gai, Wei‐lun Ai, Yuan Wu, Wei‐chun Xiao, Jing Zhang, Wei An
    Hepatology Communications.2020; 4(8): 1149.     CrossRef
  • HESA-A Attenuates Hepatic Steatosis in NAFLD Rat Model Through the Suppression of SREBP-1c and NF-kβ
    M. Efati, M. Khorrami, Z. Jangravi, A. Z. Mahmoudabadi, M. Raeiszadeh, J. R. Sarshoori
    International Journal of Peptide Research and Therapeutics.2020; 26(3): 1283.     CrossRef
  • Prevention of Nonalcoholic Hepatic Steatosis by Shenling Baizhu Powder: Involvement of Adiponectin-Induced Inhibition of Hepatic SREBP-1c
    Kairui Tang, Yuanjun Deng, Chuiyang Zheng, Huan Nie, Maoxing Pan, Runsen Chen, Jiqian Xie, Qinhe Yang, Yupei Zhang
    Oxidative Medicine and Cellular Longevity.2020; 2020: 1.     CrossRef
  • (−)-Epicatechin and the comorbidities of obesity
    Eleonora Cremonini, Dario E. Iglesias, Jiye Kang, Giovanni E. Lombardo, Zahra Mostofinejad, Ziwei Wang, Wei Zhu, Patricia I. Oteiza
    Archives of Biochemistry and Biophysics.2020; 690: 108505.     CrossRef
  • microRNAs targeting cellular cholesterol: implications for combating anticancer drug resistance
    Bernice Monchusi, Mandeep Kaur
    Genes & Cancer.2020; 11(1-2): 20.     CrossRef
  • Cellular acidosis triggers human MondoA transcriptional activity by driving mitochondrial ATP production
    Blake R Wilde, Zhizhou Ye, Tian-Yeh Lim, Donald E Ayer
    eLife.2019;[Epub]     CrossRef
  • Differential Recovery Speed of Activity and Metabolic Rhythms in Rats After an Experimental Protocol of Shift-Work
    Nadia Saderi, Adrián Báez-Ruiz, Lucia E. Azuara-Álvarez, Carolina Escobar, Roberto C. Salgado-Delgado
    Journal of Biological Rhythms.2019; 34(2): 154.     CrossRef
  • Genetically modified mouse models to study hepatic neutral lipid mobilization
    Guenter Haemmerle, Achim Lass
    Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease.2019; 1865(5): 879.     CrossRef
  • Preventive effect of trans-chalcone on non-alcoholic steatohepatitis: Improvement of hepatic lipid metabolism
    Elham Karimi-Sales, Abbas Ebrahimi-Kalan, Mohammad Reza Alipour
    Biomedicine & Pharmacotherapy.2019; 109: 1306.     CrossRef
  • A new pathway to eSCAPe lipotoxicity
    Fadila Benhamed, Catherine Postic
    Clinics and Research in Hepatology and Gastroenterology.2018; 42(1): 3.     CrossRef
  • Overexpression of SREBF chaperone (SCAP) enhances nuclear SREBP1 translocation to upregulate fatty acid synthase (FASN) gene expression in bovine mammary epithelial cells
    L.Q. Han, T.Y. Gao, G.Y. Yang, J.J. Loor
    Journal of Dairy Science.2018; 101(7): 6523.     CrossRef
  • Statin use and the risk of hepatocellular carcinoma in patients at high risk: A nationwide nested case-control study
    Gyuri Kim, Suk-Yong Jang, Chung Mo Nam, Eun Seok Kang
    Journal of Hepatology.2018; 68(3): 476.     CrossRef
  • Changes of the Fatty Acid Profile in Erythrocyte Membranes of Patients following 6-Month Dietary Intervention Aimed at the Regression of Nonalcoholic Fatty Liver Disease (NAFLD)
    Dominika Maciejewska, Wojciech Marlicz, Karina Ryterska, Marcin Banaszczak, Dominika Jamioł-Milc, Ewa Stachowska
    Canadian Journal of Gastroenterology and Hepatology.2018; 2018: 1.     CrossRef
  • Systems Analysis of the Liver Transcriptome in Adult Male Zebrafish Exposed to the Plasticizer (2-Ethylhexyl) Phthalate (DEHP)
    Matthew Huff, Willian A. da Silveira, Oliana Carnevali, Ludivine Renaud, Gary Hardiman
    Scientific Reports.2018;[Epub]     CrossRef
  • Inactivation of ceramide synthase 2 catalytic activity in mice affects transcription of genes involved in lipid metabolism and cell division
    Andreas Bickert, Paul Kern, Martina van Uelft, Stefanie Herresthal, Thomas Ulas, Katharina Gutbrod, Bernadette Breiden, Joachim Degen, Konrad Sandhoff, Joachim L. Schultze, Peter Dörmann, Dieter Hartmann, Reinhard Bauer, Klaus Willecke
    Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids.2018; 1863(7): 734.     CrossRef
  • Paradoxical Protective Effect of Perfluorooctanesulfonic Acid Against High-Fat Diet–Induced Hepatic Steatosis in Mice
    Ian Huck, Kevin Beggs, Udayan Apte
    International Journal of Toxicology.2018; 37(5): 383.     CrossRef
  • Developmental and extrahepatic physiological functions of SREBP pathway genes in mice
    Luke J. Engelking, Mary Jo Cantoria, Yanchao Xu, Guosheng Liang
    Seminars in Cell & Developmental Biology.2018; 81: 98.     CrossRef
  • Herbacetin, a flaxseed flavonoid, ameliorates high percent dietary fat induced insulin resistance and lipid accumulation through the regulation of hepatic lipid metabolizing and lipid-regulating enzymes
    Chinnadurai Veeramani, Mohammed A. Alsaif, Khalid S. Al-Numair
    Chemico-Biological Interactions.2018; 288: 49.     CrossRef
  • Isocaloric Dietary Changes and Non-Alcoholic Fatty Liver Disease in High Cardiometabolic Risk Individuals
    Giuseppe Della Pepa, Claudia Vetrani, Gianluca Lombardi, Lutgarda Bozzetto, Giovanni Annuzzi, Angela Rivellese
    Nutrients.2017; 9(10): 1065.     CrossRef
  • MDG-1, a Potential Regulator of PPARα and PPARγ, Ameliorates Dyslipidemia in Mice
    Xu Wang, Linlin Shi, Sun Joyce, Yuan Wang, Yi Feng
    International Journal of Molecular Sciences.2017; 18(9): 1930.     CrossRef
Close layer
Original Article
Obesity and Metabolism
Glycogen Synthase Kinase 3 Inactivation Induces Cell Senescence through Sterol Regulatory Element Binding Protein 1-Mediated Lipogenesis in Chang Cells
You-Mie Kim, Insun Song, Yong-Hak Seo, Gyesoon Yoon
Endocrinol Metab. 2013;28(4):297-308.   Published online December 12, 2013
DOI: https://doi.org/10.3803/EnM.2013.28.4.297
  • 5,981 View
  • 41 Download
  • 17 Crossref
AbstractAbstract PDFPubReader   
Background

Enhanced lipogenesis plays a critical role in cell senescence via induction of expression of the mature form of sterol regulatory element binding protein 1 (SREBP1), which contributes to an increase in organellar mass, one of the indicators of senescence. We investigated the molecular mechanisms by which signaling molecules control SREBP1-mediated lipogenesis and senescence.

Methods

We developed cellular models for stress-induced senescence, by exposing Chang cells, which are immortalized human liver cells, to subcytotoxic concentrations (200 µM) of deferoxamine (DFO) and H2O2.

Results

In this model of stress-induced cell senescence using DFO and H2O2, the phosphorylation profile of glycogen synthase kinase 3α (GSK3α) and β corresponded closely to the expression profile of the mature form of SREBP-1 protein. Inhibition of GSK3 with a subcytotoxic concentration of the selective GSK3 inhibitor SB415286 significantly increased mature SREBP1 expression, as well as lipogenesis and organellar mass. In addition, GSK3 inhibition was sufficient to induce senescence in Chang cells. Suppression of GSK3 expression with siRNAs specific to GSK3α and β also increased mature SREBP1 expression and induced senescence. Finally, blocking lipogenesis with fatty acid synthase inhibitors (cerulenin and C75) and siRNA-mediated silencing of SREBP1 and ATP citrate lyase (ACL) significantly attenuated GSK3 inhibition-induced senescence.

Conclusion

GSK3 inactivation is an important upstream event that induces SREBP1-mediated lipogenesis and consequent cell senescence.

Citations

Citations to this article as recorded by  
  • Senoinflammation as the underlying mechanism of aging and its modulation by calorie restriction
    Sang Gyun Noh, Hyun Woo Kim, Seungwoo Kim, Ki Wung Chung, Young-Suk Jung, Jeong-Hyun Yoon, Byung Pal Yu, Jaewon Lee, Hae Young Chung
    Ageing Research Reviews.2024; 101: 102503.     CrossRef
  • Mammalian eIF4E2-GSK3β maintains basal phosphorylation of p53 to resist senescence under hypoxia
    Lei Sun, He Yang, Dong He, Jian Chen, Zhiqiang Dong, Shaoxiang Luo, Huiting Liang, Yu Cao, Bingcheng Cai, Min Zhang
    Cell Death & Disease.2022;[Epub]     CrossRef
  • The Impact of Oxidative Stress and AKT Pathway on Cancer Cell Functions and Its Application to Natural Products
    Jun-Ping Shiau, Ya-Ting Chuang, Jen-Yang Tang, Kun-Han Yang, Fang-Rong Chang, Ming-Feng Hou, Ching-Yu Yen, Hsueh-Wei Chang
    Antioxidants.2022; 11(9): 1845.     CrossRef
  • Treadmill Exercise Reduces Neuroinflammation, Glial Cell Activation and Improves Synaptic Transmission in the Prefrontal Cortex in 3 × Tg-AD Mice
    Lianwei Mu, Dongdong Xia, Jiajia Cai, Boya Gu, Xiaojie Liu, Vladislav Friedman, Qing-Song Liu, Li Zhao
    International Journal of Molecular Sciences.2022; 23(20): 12655.     CrossRef
  • Lysosomes in T Cell Immunity and Aging
    Jun Jin, Huimin Zhang, Cornelia M. Weyand, Jorg J. Goronzy
    Frontiers in Aging.2021;[Epub]     CrossRef
  • FOXO1 deficiency impairs proteostasis in aged T cells
    Jun Jin, Xuanying Li, Bin Hu, Chulwoo Kim, Wenqiang Cao, Huimin Zhang, Cornelia M. Weyand, Jorg J. Goronzy
    Science Advances.2020;[Epub]     CrossRef
  • Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations
    Kim Cuong Cap, Yeon-Joo Jung, Bo Young Choi, Seung Jae Hyeon, Jae-Gyu Kim, Jung-Ki Min, Rokibul Islam, Abu Jubayer Hossain, Won-Suk Chung, Sang Won Suh, Hoon Ryu, Jae-Bong Park
    Redox Biology.2020; 32: 101446.     CrossRef
  • Metabolic features and regulation in cell senescence
    So Mee Kwon, Sun Mi Hong, Young-Kyoung Lee, Seongki Min, Gyesoon Yoon
    BMB Reports.2019; 52(1): 5.     CrossRef
  • DNA repair deficiency and senescence in concussed professional athletes involved in contact sports
    Nicole Schwab, Karl Grenier, Lili-Naz Hazrati
    Acta Neuropathologica Communications.2019;[Epub]     CrossRef
  • Oxidative stress-induced downregulation of glycogen synthase kinase 3 beta in fetal membranes promotes cellular senescence†
    Narmada Lavu, Lauren Richardson, Enkhtuya Radnaa, Talar Kechichian, Rheanna Urrabaz-Garza, Samantha Sheller-Miller, Elizabeth Bonney, Ramkumar Menon
    Biology of Reproduction.2019; 101(5): 1018.     CrossRef
  • Blocking lysophosphatidic acid receptor 1 signaling inhibits diabetic nephropathy in db/db mice
    Hui Ying Li, Yoon Sin Oh, Ji-Woong Choi, Ji Yong Jung, Hee-Sook Jun
    Kidney International.2017; 91(6): 1362.     CrossRef
  • Expression of senescence-associated genes in multipotent mesenchymal stromal cells during long-term cultivation at various hypoxic levels
    M. V. Lobanova, A. Y. Ratushnyy, L. B. Buravkova
    Doklady Biochemistry and Biophysics.2016; 470(1): 326.     CrossRef
  • The PI3K pathway in B cell metabolism
    Julia Jellusova, Robert C. Rickert
    Critical Reviews in Biochemistry and Molecular Biology.2016; 51(5): 359.     CrossRef
  • Deferoxamine attenuates lipopolysaccharide-induced neuroinflammation and memory impairment in mice
    Xiao-Ying Zhang, Jiang-Bei Cao, Li-Ming Zhang, Yun-Feng Li, Wei-Dong Mi
    Journal of Neuroinflammation.2015;[Epub]     CrossRef
  • Anti-diabetic efficacy of KICG1338, a novel glycogen synthase kinase-3β inhibitor, and its molecular characterization in animal models of type 2 diabetes and insulin resistance
    Kyoung Min Kim, Kuy-Sook Lee, Gha Young Lee, Hyunjin Jin, Eunice Sung Durrance, Ho Seon Park, Sung Hee Choi, Kyong Soo Park, Young-Bum Kim, Hak Chul Jang, Soo Lim
    Molecular and Cellular Endocrinology.2015; 409: 1.     CrossRef
  • Brief Review of Articles in 'Endocrinology and Metabolism' in 2013
    Won-Young Lee
    Endocrinology and Metabolism.2014; 29(3): 251.     CrossRef
  • Immunosenescence in monocytes, macrophages, and dendritic cells: Lessons learned from the lung and heart
    Phyllis-Jean Linton, Marilyn L. Thoman
    Immunology Letters.2014; 162(1): 290.     CrossRef
Close layer

Endocrinol Metab : Endocrinology and Metabolism
TOP