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Aging|February 26, 2026
A decline in glycolytic ATP production is the fundamental mechanism limiting lifespan; species with an optimal rate of decline over time survivedAkihiko Taguchi, Yuka Okinaka, Carsten Claussen, et al.Genes to Cells : Devoted to Molecular & Cellular Mechanisms|February 4, 2016
Essential role of Wnt5a-Ror1/Ror2 signaling in metanephric mesenchyme and ureteric bud formationXiaoyuan Qi, Yuka Okinaka, Michiru Nishita, et al.Stem Cells and Development|November 28, 2025
Administration of Glucose-Encapsulated Liposomes with Sialyl Lewis X on the Surface Improves Stroke Outcomes in MiceYuka Okinaka, Koki Kamiya, Hiromitsu Ohzeki, et al.Frontiers in Medicine|May 20, 2026
Case Report: Intravenous transplantation of autologous adipose tissue-derived mesenchymal stem cells attenuated atopic dermatitisKosuke Mabuchi, Yoshie Takahashi, Yuka Okinaka, et al.Frontiers in Medicine|December 16, 2020
Intravenous Bone Marrow Mononuclear Cells Transplantation Improves the Effect of Training in Chronic Stroke MiceYuko Ogawa, Yuka Okinaka, Yukiko Takeuchi, et al.Journal of Stroke and Cerebrovascular Diseases : the Official Journal of National Stroke Association|June 20, 2021
Bone Marrow Mononuclear Cells Transplantation and Training Increased Transplantation of Energy Source Transporters in Chronic StrokeYuko Ogawa, Orie Saino, Yuka Okinaka, et al.Journal of Alzheimer'S Disease : JAD|January 26, 2024
RNA Analysis of Circulating Leukocytes in Patients with Alzheimer's DiseaseYuka Okinaka, Yoshiyuki Shinagawa, Carsten Claussen, et al.Stroke|September 13, 2019
Clot-Derived Contaminants in Transplanted Bone Marrow Mononuclear Cells Impair the Therapeutic Effect in StrokeYuka Okinaka, Akie Kikuchi-Taura, Yukiko Takeuchi, et al.Stem Cells and Development|July 19, 2024
Direct Water-Soluble Molecules Transfer from Transplanted Bone Marrow Mononuclear Cell to Hippocampal Neural Stem CellsYuka Okinaka, Mitsuyo Maeda, Yosky Kataoka, et al.Frontiers in Aging Neuroscience|June 30, 2020
Intravenous Bone Marrow Mononuclear Cells Transplantation in Aged Mice Increases Transcription of Glucose Transporter 1 and Na<sup>+</sup>/K<sup>+</sup>-ATPase at Hippocampus Followed by Restored Neurological FunctionsYukiko Takeuchi, Yuka Okinaka, Yuko Ogawa, et al.Pageof 2