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Publication Name World Journal of Stem Cells
Manuscript ID 119895
Country China
Received
2026-02-10 02:51
Peer-Review Started
2026-02-10 02:53
First Decision by Editorial Office Director
2026-02-28 06:41
Return for Revision
2026-02-28 06:41
Revised
2026-04-11 06:46
Publication Fee Transferred
2026-04-22 02:38
Second Decision by Editor
2026-05-29 09:40
Second Decision by Editor-in-Chief
Final Decision by Editorial Office Director
2026-06-04 08:56
Articles in Press
2026-06-04 08:56
Edit the Manuscript by Language Editor
Typeset the Manuscript
2026-07-01 00:51
Publish the Manuscript Online
2026-07-24 10:16
ISSN 1948-0210 (online)
Open Access This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution-NonCommercial (CC BY-NC 4.0) license. No commercial re-use. See Permissions. Published by Baishideng Publishing Group Inc.
Copyright ©Author(s) (or their employer(s)) 2026. No commercial re-use. See Permissions. Published by Baishideng Publishing Group Inc.
Article Reprints For details, please visit: http://www.wjgnet.com/bpg/gerinfo/247
Permissions For details, please visit: http://www.wjgnet.com/bpg/gerinfo/207
Publisher Baishideng Publishing Group Inc, 7041 Koll Center Parkway, Suite 160, Pleasanton, CA 94566, USA
Website http://www.wjgnet.com
Category Cell Biology
Manuscript Type Basic Study
Article Title Platelet-derived mitochondria transfer accelerates fracture healing by promoting osteogenic differentiation and metabolic reprogramming of adipose-derived stem cells
Manuscript Source Unsolicited Manuscript
All Author List Zhu Pan, Rui Zhang, Gai-Mei Du, Ji-Hai Yi, Jin Bao and Cai-Dong Liu
ORCID
Author(s) ORCID Number
Cai-Dong Liu http://orcid.org/0009-0000-1432-4354
Funding Agency and Grant Number
Funding Agency Grant Number
2024 Jiangsu Blood Transfusion Association Research Fund JSYK2024005
Corresponding Author Cai-Dong Liu, Department of Blood Transfusion, Nanjing First Hospital, No. 68 Changle Road, Qinhuai District, Nanjing 210006, Jiangsu Province, China. liucd2281@163.com
Key Words Adipose-derived stem cells; Platelet-derived mitochondria; Osteogenic differentiation; Glycolysis; Histone lactylation; Fracture healing; Metabolic reprogramming; Epigenetic regulation
Core Tip Platelets promote glycolysis and osteogenic differentiation of adipose-derived stem cells (ASCs) by transferring mitochondria. Mechanically, mitochondria facilitate H3K18 lactylation, thereby inducing transcription of AXIN2, BMPR1B, COL1A1, and OSTN. Moreover, platelet-derived mitochondria enhance the effect of ASCs on fracture healing through glycolysis. Collectively, platelet-derived mitochondria transfer promotes the lactylation of H3K18 through lactate produced by glycolysis, promotes the transcription of osteogenesis-related genes, thereby promoting the osteogenic differentiation of ASCs and then accelerating fracture healing.
Publish Date 2026-07-24 10:16
Citation

Pan Z, Zhang R, Du GM, Yi JH, Bao J, Liu CD. Platelet-derived mitochondria transfer accelerates fracture healing by promoting osteogenic differentiation and metabolic reprogramming of adipose-derived stem cells. World J Stem Cells 2026; 18(7): 119895

URL https://www.wjgnet.com/1948-0210/full/v18/i7/119895.htm
DOI https://doi.org/10.4252/wjsc.119895
Full Article (PDF) WJSC-18-119895-with-cover.pdf
The ARRIVE Guidelines 119895-The-ARRIVE-Guidelines.pdf
Manuscript File 119895_Auto_Edited_053720.docx
Answering Reviewers 119895-answering-reviewers.pdf
Audio Core Tip 119895-audio.mp3
Biostatistics Review Certificate 119895-biostatistics-statement.pdf
Conflict-of-Interest Disclosure Form 119895-conflict-of-interest-statement.pdf
Copyright License Agreement 119895-copyright-assignment.pdf
Institutional Animal Care and Use Committee Approval Form or Document 119895-institutional-animal-care-and-use-committee-statement.pdf
Non-Native Speakers of English Editing Certificate 119895-non-native-speakers.pdf
Supplementary Material 119895-supplementary-material.pdf
Peer-review Report 119895-peer-reviews.pdf
Scientific Misconduct Check 119895-scientific-misconduct-check.png
Scientific Editor Work List 119895-scientific-editor-work-list.pdf
CrossCheck Report 119895-crosscheck-report.pdf