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The Plant Journal : for Cell and Molecular Biology|May 6, 2016
Aminooxy-naphthylpropionic acid and its derivatives are inhibitors of auxin biosynthesis targeting l-tryptophan aminotransferase: structure-activity relationshipsMegumi Narukawa-Nara, Ayako Nakamura, Ko Kikuzato, et al.Plant & Cell Physiology|June 17, 2015
Distinct Characteristics of Indole-3-Acetic Acid and Phenylacetic Acid, Two Common Auxins in PlantsSatoko Sugawara, Kiyoshi Mashiguchi, Keita Tanaka, et al.Regenerative Therapy|February 2, 2026
Efficacy and safety of autologous adipose-derived stem cells combined with platelet-rich plasma for periodontal regeneration: a multicenter, randomized, open-label, parallel-group comparative trialMorikuni Tobita, Yosuke Masubuchi, Yorimasa Ogata, et al.Biorxiv : the Preprint Server for Biology|July 1, 2024
Hierarchical global and local auxin signals coordinate cellular interdigitation in ArabidopsisPatricio Pérez-Henríquez, Hongjiang Li, Xiang Zhou, et al.Proceedings of the National Academy of Sciences of the United States of America|May 16, 2020
Genomic evidence for convergent evolution of gene clusters for momilactone biosynthesis in land plantsLingfeng Mao, Hiroshi Kawaide, Toshiya Higuchi, et al.Plos One|December 2, 2020
Mitochondrial dysfunction underlying sporadic inclusion body myositis is ameliorated by the mitochondrial homing drug MA-5Yoshitsugu Oikawa, Rumiko Izumi, Masashi Koide, et al.Scientific Reports|May 17, 2017
A novel indole compound MA-35 attenuates renal fibrosis by inhibiting both TNF-α and TGF-β1 pathwaysHisato Shima, Kensuke Sasaki, Takehiro Suzuki, et al.Plos One|March 30, 2017
The usefulness of monomeric periostin as a biomarker for idiopathic pulmonary fibrosisShoichiro Ohta, Masaki Okamoto, Kiminori Fujimoto, et al.The Tohoku Journal of Experimental Medicine|June 30, 2015
Mitochonic Acid 5 (MA-5), a Derivative of the Plant Hormone Indole-3-Acetic Acid, Improves Survival of Fibroblasts from Patients with Mitochondrial DiseasesTakehiro Suzuki, Hiroaki Yamaguchi, Motoi Kikusato, et al.Ebiomedicine|June 6, 2017
Mitochonic Acid 5 (MA-5) Facilitates ATP Synthase Oligomerization and Cell Survival in Various Mitochondrial DiseasesTetsuro Matsuhashi, Takeya Sato, Shin-Ichiro Kanno, et al.Pageof 22