Showing results (1-10 of 12) with videos related to
Sort By:
Pageof 2
Nutrients|August 27, 2021
Long-Term Caffeine Intake Exerts Protective Effects on Intestinal Aging by Regulating Vitellogenesis and Mitochondrial Function in an Aged Caenorhabditis Elegans ModelHyemin Min, Esther Youn, Yhong-Hee ShimNutrients|May 13, 2020
Maternal Caffeine Intake Disrupts Eggshell Integrity and Retards Larval Development by Reducing Yolk Production in a Caenorhabditis elegans ModelHyemin Min, Esther Youn, Yhong-Hee ShimAntioxidants (Basel, Switzerland)|May 28, 2022
3,3'-Diindolylmethane Supplementation Maintains Oocyte Quality by Reducing Oxidative Stress and CEP-1/p53-Mediated Regulation of Germ Cells in a Reproductively Aged Caenorhabditis elegans ModelMijin Lee, Esther Youn, Kyungsu Kang, et al.BMB Reports|October 5, 2016
Caffeine-induced food-avoidance behavior is mediated by neuroendocrine signals in Caenorhabditis elegansHyemin Min, Esther Youn, Ichiro Kawasaki, et al.Biochemical and Biophysical Research Communications|December 8, 2016
cdc-25.2, a Caenorhabditis elegans ortholog of cdc25, is required for male tail morphogenesisSangmi Oh, Sunghee Yoon, Esther Youn, et al.Nutrients|December 23, 2022
Maternal Gliadin Intake Reduces Oocyte Quality with Chromosomal Aberrations and Increases Embryonic Lethality through Oxidative Stress in a Caenorhabditis elegans ModelJae Hyuck Lee, Mijin Lee, Hyemin Min, et al.Biochemical and Biophysical Research Communications|August 12, 2018
Gliadin intake induces oxidative-stress responses in Caenorhabditis elegansSo Dug Lim, Hyemin Min, Esther Youn, et al.Nutrients|November 4, 2020
Effects of Phosphoethanolamine Supplementation on Mitochondrial Activity and Lipogenesis in a Caffeine Ingestion Caenorhabditis elegans ModelHyemin Min, Esther Youn, Jaehoon Kim, et al.Molecular Syndromology|July 24, 2026
MLIP-Related Myopathy: Two Unreported Pathogenic Variants - A Case ReportLeopoldo Gildardo López-Pérez, Esther Youn, Hyunjung Kim, et al.Journal of Ethnopharmacology|August 24, 2025
Kukoamine A from the root bark of Lycium chinense Miller enhances mobility in an aged Caenorhabditis elegans model by regulating mitochondrial function through HSF-1-mediated upregulation of heat shock proteinsSohyun Lee, Esther Youn, Son Hung Tran, et al.Pageof 2