Tae Yeon Kim
Biochemistry, Genetics and Molecular Biology · The Ohio State University
Publications
42
Citations
616
Est. group size
~2
Recurring co-author estimate
Active years
24
Publishing since 2003
Tae Yeon Kim's work centers on kidney disease, particularly renal fibrosis and anemia, and explores how mesenchymal stem cells, erythropoietin, and extracellular vesicles (tiny cell-released particles that carry molecules between cells) might be used to protect or repair damaged kidneys. The research also branches into related biomedical topics such as hydrogel-based drug delivery and tissue regeneration, neuroprotection from natural food compounds, and biomarker discovery using proteomic (protein-based) analysis. This suggests a translational, experimentally driven research program spanning nephrology, regenerative medicine, and biomaterials.
Publication output has been variable over the past decade with some gap years, but has increased notably in 2024-2025 compared to earlier periods.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Expression of Lysyl Oxidase-Related Protein and Effect of Lysyl Oxidase Inhibition in Cyclosporine-Induced Nephropathy Mouse Model
Pharmaceuticals · 2026
- Excitonic Emission Modulation in GaSe/MoS<sub>2</sub> Van Der Waals Heterostructure Via Plasmonic Control of Interlayer Charge Transfer
Advanced Functional Materials · 2025
- Erythropoiesis-Stimulating Agent Protects Against Kidney Fibrosis by Inhibiting G2/M Cell Cycle Arrest
Cells · 2025
- Neuroprotection of fermented small black soybean (Rhynchosia nulubilis) on hippocampal neurons through antioxidant effect
Food Science and Biotechnology · 2025
- Identifying overtraining biomarkers through proteomic analysis of extracellular vesicles derived from the central nervous system of male mice
Physiological Reports · 2025
- Customized Hydrogel Films for MicroRNA Super‐Resolution Imaging in Liquid Biopsies
Advanced Healthcare Materials · 2024
- Preventing Renal Tubulointerstitial Fibrosis: Effect of Rosuvastatin on the HOXA13- USAG-1-BMP7 Pathway
Research Square · 2024
- MO425: Rosuvastatin Activates Hox13-Usag-1 Pathway and Prevents Renal Fibrosis
Nephrology Dialysis Transplantation · 2022
- Biomimetic Supramolecular Drug Delivery Hydrogels for Accelerated Skin Tissue Regeneration
ACS Biomaterials Science & Engineering · 2021
- Kidney Mesenchymal Stem Cell‐derived Extracellular Vesicles Engineered to Express Erythropoietin Improve Renal Anemia in Mice with Chronic Kidney Disease
Stem Cell Reviews and Reports · 2021
- Supramolecular Injectable Hyaluronate Hydrogels for Cartilage Tissue Regeneration
ACS Applied Bio Materials · 2020
- Microparticles derived from human erythropoietin mRNA-transfected mesenchymal stem cells inhibit epithelial-to-mesenchymal transition and ameliorate renal interstitial fibrosis
Stem Cell Research & Therapy · 2020
- Microparticles derived from human erythropoietin mRNA-transfected mesenchymal stem cells inhibit epithelial-to-mesenchymal transition and ameliorate renal interstitial fibrosis
Research Square · 2020
- Microparticles derived from human erythropoietin mRNA-transfected mesenchymal stem cells inhibit epithelial-to-mesenchymal transition and ameliorate renal interstitial fibrosis
Research Square · 2020
- Microparticles derived from human erythropoietin mRNA-transfected mesenchymal stem cells inhibit epithelial-to-mesenchymal transition and ameliorate renal interstitial fibrosis
Research Square · 2020
- Research Square×4
- Food Science and Biotechnology×2
- Neural Regeneration Research×2
- Alzheimer s & Dementia×2
- Biochemical and Biophysical Research Communications×1
- Shridhar Sanghvi
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Shubha Gururaja Rao
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Ana Laura López-Serrano
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Dan J. Bare
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Yang Zheng
Biochemistry, Genetics and Molecular Biology · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile