AISYAH RAHMAWATI

Last Updated :2025/11/04

Affiliations, Positions
Graduate School of Integrated Sciences for Life, Assistant Professor (Special Appointment)
E-mail
rahmahiroshima-u.ac.jp
Self-introduction
My research mainly focuses on the molecular metabolism in skeletal muscle. Recently I focus on the role of membrane phospholipid in muscle physiology. I am also interested in the effect of food factors on diseases.

Basic Information

Major Professional Backgrounds

  • 2025/04/01, Hiroshima University, Graduate School of Integrated Sciences for Life, Special Appointed Assistant Professor

Educational Backgrounds

  • Hiroshima University, Graduate School of Integrated Sciences for Life, Food and AgriLife Sciences (Doctoral), 2022/04, 2025/03
  • Hiroshima University, Graduate School of Integrated Sciences for Life, Food and AgriLife Sciences (Master), 2020/04, 2022/03
  • Universitas Gadjah Mada, Faculty of Medicine, Public Health and Nursing, Nutrition and Health (Undergraduate Program), 2013/09, 2017/05

Academic Degrees

  • Hiroshima University

Research Fields

  • Agricultural sciences;Agricultural chemistry;Food science

Research Keywords

  • membrane phospholipids, choline metabolism, skeletal muscle metabolism, nutrition, functional foods

Research Activities

Academic Papers

  1. Serum amyloid A3 promoter-luciferase reporter mice are useful for early drug-induced nephrotoxicity detection, Int J Mol Sci, 25, 5124, 2024
  2. ★, GDE5/Gpcpd1 activity determines phosphatidylcholine composition in skeletal muscle and regulates contractile force in mice, Commun Biol, 7, 604, 2024
  3. ★, Comparative study on muscle function in two different streptozotocin-induced diabetic models, Acta Diabetol, 61, 1443-1453, 2024
  4. Role of Gpcpd1 in intestinal alpha-glycerophosphocholine metabolism and trimethylamine N-oxide production, J Biol Chem, 300, 107965, 2024
  5. Glucosyl hesperidin supplementation prevents tubulointerstitial fibrosis and immune activation in diabetic nephropathy in mice, Nutrients, 17, 383, 2025
  6. Beta-hydroxybutyrate attenuates diabetic renal and muscular pathologies in a streptozotocin-induced diabetic model, Nutrition, 137, 2025
  7. Overexpression of GDE1 decreases glycerophosphoinositol in intestinal epithelial cells in vivo, Biosci Biotechnol Biochem, 2025
  8. Anti-Obesity Effects of Peucedanum Japonicum Thunb Root Extract With Induction of Hepatic Cyp2b10 Gene Expression in Mice, J Food Sci, 90(9), 2025

Invited Lecture, Oral Presentation, Poster Presentation

  1. Functional relationship between phosphatidylcholine profiles and skeletal muscle function—Metabolic analyses of skeletal muscle-specific GDE5 deficient mouse, 22nd International Congress of Nutrition (IUNS-ICN), 2022/12, Without Invitation, English, Tokyo, Japan
  2. Functional analysis of skeletal muscle-specific GDE5 deficient mouse— Crosstalk of Choline Metabolism and Other Metabolisms in Muscle, 2023 International Symposium on the UN's Sustainable Development Goals, 2023/09, With Invitation, English, Higashihiroshima, Japan
  3. Anti-obesity effect of root extract of Peucedanum japonicum Thunb in mice and induction of hepatic CYP2B gene expression, 14th Asian Congress of Nutrition (ACN), 2023/09, Without Invitation, English, Chengdu, China
  4. Skeletal muscle-specific deletion of GDE5/Gpcpd1, enzyme involved in phospholipid metabolism, leads to lower DHA-rich phospholipid and decreased contraction force, The 78th Annual Meeting of Japan Society of Nutrition and Food Science, 2024/05, Without Invitation, English, Fukuoka, Japan
  5. Evaluating animal models for diabetic myopathy: Comparison of skeletal muscle functions in two different streptozotocin-induced diabetic models, 23rd International Congress of Nutrition (IUNS-ICN), 2025/08, Without Invitation, English, Paris, France

Awards

  1. 2024/11/23, Runner Up HIRAKU 3-minute Thesis (3MT) Competition 2024