Match tier
Listed
Presence
Current · Arkansas
Last published
2020
Sources
OpenAlex · ORCID
Refreshed
2026-09-26
J
Research Areas
Biomedical Subjects
Biography and Research Information
Metrics
- h-index: 5
- Publications: 9
- Citations: 70
Selected Publications
-
The role of microRNA-33 as a key regulator in hepatic lipogenesis signaling and a potential serological biomarker for NAFLD with excessive dietary fructose consumption in C57BL/6N mice (2020)
-
IDH2 Deficiency Is Critical in Myogenesis and Fatty Acid Metabolism in Mice Skeletal Muscle (2020)
-
An Integration of Transcriptomics And Proteomics Reveals That miR‐33‐5p Is A Key Player of Lipogenesis Signaling in Fructose‐Induced NAFLD in C57BL/6N Mice (2019)
-
Acute Alcohol Exposure‐Induced let‐7a Inhibition Exacerbates Hepatic Apoptosis by Regulating Caspase‐3 in Mice (2019)
-
Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice (2019)
-
Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice (2019)
-
Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice (2019)
-
Hepatic Transcriptome Reveals That Fructose Downregulated Xenobiotics Metabolizing Enzymes Through Aryl Hydrocarbon Receptor Signaling Suppression in C57BL/6 N Mice (P15-011-19) (2019)
-
IDH2 Deficiency Disrupts Energy Homeostasis and Skeletal Muscle Development by Upregulating UCP1 Expression in Mice (2018)
Collaboration Network
Top Collaborators
Jae Kyeom Kim
University of Arkansas at Fayetteville
10 shared publications
In database
- The role of microRNA-33 as a key regulator in hepatic lipogenesis signaling and a potential serological biomarker for NAFLD with excessive dietary fructose consumption in C57BL/6N mice
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
Showing 5 of 10 shared publications
Jeong Hoon Pan
University of Arkansas at Fayetteville (US)
9 shared publications
- The role of microRNA-33 as a key regulator in hepatic lipogenesis signaling and a potential serological biomarker for NAFLD with excessive dietary fructose consumption in C57BL/6N mice
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
- IDH2 Deficiency Is Critical in Myogenesis and Fatty Acid Metabolism in Mice Skeletal Muscle
Showing 5 of 9 shared publications
Jin Hyup Lee
Korea University (KR)
8 shared publications
- The role of microRNA-33 as a key regulator in hepatic lipogenesis signaling and a potential serological biomarker for NAFLD with excessive dietary fructose consumption in C57BL/6N mice
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
- IDH2 Deficiency Is Critical in Myogenesis and Fatty Acid Metabolism in Mice Skeletal Muscle
Showing 5 of 8 shared publications
Byung‐Whi Kong
University of Arkansas at Fayetteville (US)
7 shared publications
- The role of microRNA-33 as a key regulator in hepatic lipogenesis signaling and a potential serological biomarker for NAFLD with excessive dietary fructose consumption in C57BL/6N mice
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
- Hepatic Transcriptome Reveals That Fructose Downregulated Xenobiotics Metabolizing Enzymes Through Aryl Hydrocarbon Receptor Signaling Suppression in C57BL/6 N Mice (P15-011-19)
Showing 5 of 7 shared publications
Kaleigh E. Beane
University of Arkansas at Fayetteville
6 shared publications
In database
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
- Hepatic Transcriptome Reveals That Fructose Downregulated Xenobiotics Metabolizing Enzymes Through Aryl Hydrocarbon Receptor Signaling Suppression in C57BL/6 N Mice (P15-011-19)
- Acute Alcohol Exposure‐Induced let‐7a Inhibition Exacerbates Hepatic Apoptosis by Regulating Caspase‐3 in Mice
Showing 5 of 6 shared publications
Jiangchao Zhao
University of Arkansas at Fayetteville
6 shared publications
In database
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
- IDH2 Deficiency Is Critical in Myogenesis and Fatty Acid Metabolism in Mice Skeletal Muscle
- Hepatic Transcriptome Reveals That Fructose Downregulated Xenobiotics Metabolizing Enzymes Through Aryl Hydrocarbon Receptor Signaling Suppression in C57BL/6 N Mice (P15-011-19)
Showing 5 of 6 shared publications
Mersady C. Redding
University of Arkansas at Fayetteville
5 shared publications
In database
- The role of microRNA-33 as a key regulator in hepatic lipogenesis signaling and a potential serological biomarker for NAFLD with excessive dietary fructose consumption in C57BL/6N mice
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
- Hepatic Transcriptome Reveals That Fructose Downregulated Xenobiotics Metabolizing Enzymes Through Aryl Hydrocarbon Receptor Signaling Suppression in C57BL/6 N Mice (P15-011-19)
- An Integration of Transcriptomics And Proteomics Reveals That miR‐33‐5p Is A Key Player of Lipogenesis Signaling in Fructose‐Induced NAFLD in C57BL/6N Mice
Eui‐Cheol Shin
Gyeongnam National University of Science and Technology (KR)
4 shared publications
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- IDH2 Deficiency Is Critical in Myogenesis and Fatty Acid Metabolism in Mice Skeletal Muscle
- Acute Alcohol Exposure‐Induced let‐7a Inhibition Exacerbates Hepatic Apoptosis by Regulating Caspase‐3 in Mice
Young Jun Kim
Korea University (KR)
3 shared publications
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- IDH2 Deficiency Is Critical in Myogenesis and Fatty Acid Metabolism in Mice Skeletal Muscle
Yun Jeong Cho
University of Arkansas at Fayetteville
2 shared publications
In database
- Hepatic transcriptomics analysis reveals that fructose intervention down-regulated xenobiotics-metabolising enzymes through aryl hydrocarbon receptor signalling suppression in C57BL/6N mice
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
Jeen‐Woo Park
Kyungpook National University (KR)
2 shared publications
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice
- Acute Alcohol Exposure‐Induced let‐7a Inhibition Exacerbates Hepatic Apoptosis by Regulating Caspase‐3 in Mice
Yan Huang
University of Arkansas at Fayetteville
2 shared publications
In database
- IDH2 Deficiency Is Critical in Myogenesis and Fatty Acid Metabolism in Mice Skeletal Muscle
- IDH2 Deficiency Disrupts Energy Homeostasis and Skeletal Muscle Development by Upregulating UCP1 Expression in Mice
Cara L. Conner
University of Arkansas at Fayetteville
1 shared publication
In database
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
Jun Ho Kim
Gyeongguk National University (KR)
1 shared publication
- Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice
SeongBae Kong
University of Arkansas at Fayetteville (US)
1 shared publication
- Acute alcohol consumption-induced let-7a inhibition exacerbates hepatic apoptosis by regulating Rb1 in mice