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Wanida Ono, DDS, PhD

Title(s)Professor, Orofacial Sciences
SchoolSchool of Dentistry
Address707 Parnassus Avenue, #616B
San Francisco CA 94143
Phone415-353-9131
PronounsShe/Her/Hers
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    Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Researchers can login to make corrections and additions, or contact us for help. to make corrections and additions.
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    1. Mesenchymal Stem Cells in Socket Healing and MRONJ. Orthod Craniofac Res. 2025 Sep 11. Arai Y, Tsutsumi-Arai C, English JD, Ono N, Ono W. PMID: 40932045.
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    2. A Hedgehog-Foxf axis coordinates dental follicle-derived alveolar bone formation. Nat Commun. 2025 Jul 02; 16(1):6061. Nagata M, Gadhvi GT, Komori T, Arai Y, Tsutsumi-Arai C, Chu AKY, Nye SN, Yang Y, Orikasa S, Takahashi A, Carlsson P, Zheng WJ, Welch JD, Ono N, Ono W. PMID: 40593802; PMCID: PMC12219665.
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    3. Wnt-directed CXCL12-expressing apical papilla progenitor cells drive tooth root formation. Nat Commun. 2025 Jul 01; 16(1):5510. Nagata M, Gadhvi GT, Komori T, Arai Y, Manabe H, Chu AKY, Kaur R, Ali M, Yang Y, Tsutsumi-Arai C, Nakai Y, Matsushita Y, Tokavanich N, Zheng WJ, Welch JD, Ono N, Ono W. PMID: 40595672; PMCID: PMC12216879.
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    4. RUNX2 is essential for maintaining synchondrosis chondrocytes and cranial base growth. Bone Res. 2025 May 29; 13(1):57. Hallett SA, Dixon A, Marrale I, Batoon L, Brenes J, Zhou A, Arbiv A, Kaartinen V, Allen B, Ono W, Franceschi RT, Ono N. PMID: 40442075; PMCID: PMC12122814.
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    5. Control of alveolar bone development, homeostasis, and socket healing by salt-inducible kinases. J Bone Miner Res. 2025 May 24; 40(5):656-670. Tokavanich N, Chan B, Strauss K, Castro Andrade CD, Arai Y, Nagata M, Foretz M, Brooks DJ, Ono N, Ono W, Wein MN. PMID: 40057979.
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    6. Mandibular Condylar Cartilage in Development and Diseases: A PTHrP-Centric View. Orthod Craniofac Res. 2025 Apr 19. Tsutsumi-Arai C, Tran A, Arai Y, Ono W, Ono N. PMID: 40251915.
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    7. Control of alveolar bone development, homeostasis, and socket healing by salt inducible kinases. bioRxiv. 2024 Sep 06. Tokavanich N, Chan B, Strauss K, Castro Andrade CD, Arai Y, Nagata M, Foretz M, Brooks DJ, Ono N, Ono W, Wein MN. PMID: 39282451; PMCID: PMC11398370.
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    8. Etiological Mechanisms and Genetic/Biological Modulation Related to PTH1R in Primary Failure of Tooth Eruption. Calcif Tissue Int. 2024 Aug; 115(2):101-116. Li XX, Wang MT, Wu ZF, Sun Q, Ono N, Nagata M, Zang XL, Ono W. PMID: 38833001.
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    9. Hedgehog activation promotes osteogenic fates of growth plate resting zone chondrocytes through transient clonal competency. JCI Insight. 2024 01 23; 9(2). Orikasa S, Matsushita Y, Manabe H, Fogge M, Lee Z, Mizuhashi K, Sakagami N, Ono W, Ono N. PMID: 38051593; PMCID: PMC10906233.
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    10. Endosteal stem cells at the bone-blood interface: A double-edged sword for rapid bone formation: Bone marrow endosteal stem cells provide a robust source of bone-making osteoblasts both in normal and abnormal bone formation. Bioessays. 2024 03; 46(3):e2300173. Matsushita Y, Liu J, Chu AKY, Ono W, Welch JD, Ono N. PMID: 38161246; PMCID: PMC11729589.
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    11. Mechanisms of Osteoclastogenesis in Orthodontic Tooth Movement and Orthodontically Induced Tooth Root Resorption. J Bone Metab. 2023 Nov; 30(4):297-310. Nakai Y, Praneetpong N, Ono W, Ono N. PMID: 38073263; PMCID: PMC10721376.
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    12. Multi-omics analysis in developmental bone biology. Jpn Dent Sci Rev. 2023 Dec; 59:412-420. Matsushita Y, Noguchi A, Ono W, Ono N. PMID: 38022387; PMCID: PMC10665596.
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    13. Growth plate resting zone chondrocytes acquire transient clonal competency upon Hedgehog activation and efficiently transform into trabecular bone osteoblasts. bioRxiv. 2023 Jun 04. Orikasa S, Matsushita Y, Fogge M, Mizuhashi K, Sakagami N, Ono W, Ono N. PMID: 37398296; PMCID: PMC10312548.
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    14. Hes1 marks peri-condensation mesenchymal cells that generate both chondrocytes and perichondrial cells in early bone development. J Biol Chem. 2023 06; 299(6):104805. Matsushita Y, Manabe H, Ohyama T, Nakamura S, Nagata M, Ono W, Ono N. PMID: 37172728; PMCID: PMC10267520.
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    15. Bone marrow endosteal stem cells dictate active osteogenesis and aggressive tumorigenesis. Nat Commun. 2023 04 25; 14(1):2383. Matsushita Y, Liu J, Chu AKY, Tsutsumi-Arai C, Nagata M, Arai Y, Ono W, Yamamoto K, Saunders TL, Welch JD, Ono N. PMID: 37185464; PMCID: PMC10130060.
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    16. Effects of antiresorptive medications on tooth root formation and tooth eruption in paediatric patients. Orthod Craniofac Res. 2023 Dec; 26 Suppl 1:29-38. Arai Y, English JD, Ono N, Ono W. PMID: 36714970; PMCID: PMC10864015.
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    17. The fate of early perichondrial cells in developing bones. Nat Commun. 2022 11 28; 13(1):7319. Matsushita Y, Chu AKY, Tsutsumi-Arai C, Orikasa S, Nagata M, Wong SY, Welch JD, Ono W, Ono N. PMID: 36443296; PMCID: PMC9705540.
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    18. Primary failure of tooth eruption: Etiology and management. Jpn Dent Sci Rev. 2022 Nov; 58:258-267. Yamaguchi T, Hosomichi K, Shirota T, Miyamoto Y, Ono W, Ono N. PMID: 36159186; PMCID: PMC9489741.
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    19. Diverse stem cells for periodontal tissue formation and regeneration. Genesis. 2022 09; 60(8-9):e23495. Nagata M, English JD, Ono N, Ono W. PMID: 35916433; PMCID: PMC9492631.
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    20. Cranial Base Synchondrosis Lacks PTHrP-Expressing Column-Forming Chondrocytes. Int J Mol Sci. 2022 Jul 17; 23(14). Hallett SA, Zhou A, Herzog C, Arbiv A, Ono W, Ono N. PMID: 35887221; PMCID: PMC9315528.
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    21. Cranial Base Synchondrosis: Chondrocytes at the Hub. Int J Mol Sci. 2022 Jul 15; 23(14). Hallett SA, Ono W, Franceschi RT, Ono N. PMID: 35887171; PMCID: PMC9317907.
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    22. Toward Marrow Adipocytes: Adipogenic Trajectory of the Bone Marrow Stromal Cell Lineage. Front Endocrinol (Lausanne). 2022; 13:882297. Matsushita Y, Ono W, Ono N. PMID: 35528017; PMCID: PMC9075612.
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    23. Synergy of single-cell sequencing analyses and in vivo lineage-tracing approaches: A new opportunity for stem cell biology. Biocell. 2022; 46(5):1157-1162. Matsushita Y, Ono W, Ono N. PMID: 35475293; PMCID: PMC9037299.
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    24. The Role of Wnt Signaling in Postnatal Tooth Root Development. Front Dent Med. 2021; 2. Tokavanich N, Wein MN, English JD, Ono N, Ono W. PMID: 35782525; PMCID: PMC9248717.
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    25. Single-Cell Transcriptomic Analysis Reveals Developmental Relationships and Specific Markers of Mouse Periodontium Cellular Subsets. Front Dent Med. 2021 Aug; 2. Nagata M, Chu AKY, Ono N, Welch JD, Ono W. PMID: 34966906; PMCID: PMC8713353.
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    26. Chondrocytes in the resting zone of the growth plate are maintained in a Wnt-inhibitory environment. Elife. 2021 07 26; 10. Hallett SA, Matsushita Y, Ono W, Sakagami N, Mizuhashi K, Tokavanich N, Nagata M, Zhou A, Hirai T, Kronenberg HM, Ono N. PMID: 34309509; PMCID: PMC8313235.
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    27. The hypertrophic chondrocyte: To be or not to be. Histol Histopathol. 2021 Oct; 36(10):1021-1036. Hallett SA, Ono W, Ono N. PMID: 34137454; PMCID: PMC8678381.
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    28. Intercellular Interactions of an Adipogenic CXCL12-Expressing Stromal Cell Subset in Murine Bone Marrow. J Bone Miner Res. 2021 06; 36(6):1145-1158. Matsushita Y, Chu AKY, Ono W, Welch JD, Ono N. PMID: 33651379; PMCID: PMC8605623.
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    29. Flow Cytometry-Based Analysis of the Mouse Bone Marrow Stromal and Perivascular Compartment. Methods Mol Biol. 2021; 2308:83-94. Matsushita Y, Ono W, Ono N. PMID: 34057716; PMCID: PMC8580286.
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    30. Bone regeneration via skeletal cell lineage plasticity: All hands mobilized for emergencies: Quiescent mature skeletal cells can be activated in response to injury and robustly participate in bone regeneration through cellular plasticity. Bioessays. 2021 01; 43(1):e2000202. Matsushita Y, Ono W, Ono N. PMID: 33155283; PMCID: PMC7902387.
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    31. Unveiling diversity of stem cells in dental pulp and apical papilla using mouse genetic models: a literature review. Cell Tissue Res. 2021 Feb; 383(2):603-616. Nagata M, Ono N, Ono W. PMID: 32803323; PMCID: PMC7887138.
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    32. Skeletal Stem Cells for Bone Development and Repair: Diversity Matters. Curr Osteoporos Rep. 2020 06; 18(3):189-198. Matsushita Y, Ono W, Ono N. PMID: 32172443; PMCID: PMC7255932.
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    33. Growth plate skeletal stem cells and their transition from cartilage to bone. Bone. 2020 07; 136:115359. Matsushita Y, Ono W, Ono N. PMID: 32276155; PMCID: PMC7246136.
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    34. A Wnt-mediated transformation of the bone marrow stromal cell identity orchestrates skeletal regeneration. Nat Commun. 2020 01 16; 11(1):332. Matsushita Y, Nagata M, Kozloff KM, Welch JD, Mizuhashi K, Tokavanich N, Hallett SA, Link DC, Nagasawa T, Ono W, Ono N. PMID: 31949165; PMCID: PMC6965122.
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    35. A three-dimensional analysis of primary failure of eruption in humans and mice. Oral Dis. 2020 Mar; 26(2):391-400. Tokavanich N, Gupta A, Nagata M, Takahashi A, Matsushita Y, Yatabe M, Ruellas A, Cevidanes L, Maki K, Yamaguchi T, Ono N, Ono W. PMID: 31802584; PMCID: PMC7608053.
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    36. Salt-inducible kinases dictate parathyroid hormone 1 receptor action in bone development and remodeling. J Clin Invest. 2019 12 02; 129(12):5187-5203. Nishimori S, O'Meara MJ, Castro CD, Noda H, Cetinbas M, da Silva Martins J, Ayturk U, Brooks DJ, Bruce M, Nagata M, Ono W, Janton CJ, Bouxsein ML, Foretz M, Berdeaux R, Sadreyev RI, Gardella TJ, Jüppner H, Kronenberg HM, Wein MN. PMID: 31430259; PMCID: PMC6877304.
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    37. Growth Plate Chondrocytes: Skeletal Development, Growth and Beyond. Int J Mol Sci. 2019 Nov 29; 20(23). Hallett SA, Ono W, Ono N. PMID: 31795305; PMCID: PMC6929081.
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    38. Growth Plate Borderline Chondrocytes Behave as Transient Mesenchymal Precursor Cells. J Bone Miner Res. 2019 08; 34(8):1387-1392. Mizuhashi K, Nagata M, Matsushita Y, Ono W, Ono N. PMID: 30888720; PMCID: PMC6697228.
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    39. Autocrine regulation of mesenchymal progenitor cell fates orchestrates tooth eruption. Proc Natl Acad Sci U S A. 2019 01 08; 116(2):575-580. Takahashi A, Nagata M, Gupta A, Matsushita Y, Yamaguchi T, Mizuhashi K, Maki K, Ruellas AC, Cevidanes LS, Kronenberg HM, Ono N, Ono W. PMID: 30509999; PMCID: PMC6329940.
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    40. Resting zone of the growth plate houses a unique class of skeletal stem cells. Nature. 2018 11; 563(7730):254-258. Mizuhashi K, Ono W, Matsushita Y, Sakagami N, Takahashi A, Saunders TL, Nagasawa T, Kronenberg HM, Ono N. PMID: 30401834; PMCID: PMC6251707.
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    41. Parathyroid hormone receptor signalling in osterix-expressing mesenchymal progenitors is essential for tooth root formation. Nat Commun. 2016 Apr 12; 7:11277. Ono W, Sakagami N, Nishimori S, Ono N, Kronenberg HM. PMID: 27068606; PMCID: PMC4832076.
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    42. A subset of chondrogenic cells provides early mesenchymal progenitors in growing bones. Nat Cell Biol. 2014 Dec; 16(12):1157-67. Ono N, Ono W, Nagasawa T, Kronenberg HM. PMID: 25419849; PMCID: PMC4250334.
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    43. Vasculature-associated cells expressing nestin in developing bones encompass early cells in the osteoblast and endothelial lineage. Dev Cell. 2014 May 12; 29(3):330-9. Ono N, Ono W, Mizoguchi T, Nagasawa T, Frenette PS, Kronenberg HM. PMID: 24823376; PMCID: PMC4083679.
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    44. A novel population of cells expressing both hematopoietic and mesenchymal markers is present in the normal adult bone marrow and is augmented in a murine model of marrow fibrosis. Am J Pathol. 2012 Feb; 180(2):811-8. Ohishi M, Ono W, Ono N, Khatri R, Marzia M, Baker EK, Root SH, Wilson TL, Iwamoto Y, Kronenberg HM, Aguila HL, Purton LE, Schipani E. PMID: 22155108; PMCID: PMC3349873.
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