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Citations to this article

MicroRNA-132 enhances transition from inflammation to proliferation during wound healing
Dongqing Li, … , Mona Ståhle, Ning Xu Landén
Dongqing Li, … , Mona Ståhle, Ning Xu Landén
Published June 29, 2015
Citation Information: J Clin Invest. 2015;125(8):3008-3026. https://doi.org/10.1172/JCI79052.
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Research Article Inflammation Article has an altmetric score of 45

MicroRNA-132 enhances transition from inflammation to proliferation during wound healing

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Abstract

Wound healing is a complex process that is characterized by an initial inflammatory phase followed by a proliferative phase. This transition is a critical regulatory point; however, the factors that mediate this process are not fully understood. Here, we evaluated microRNAs (miRs) in skin wound healing and characterized the dynamic change of the miRNome in human skin wounds. miR-132 was highly upregulated during the inflammatory phase of wound repair, predominantly expressed in epidermal keratinocytes, and peaked in the subsequent proliferative phase. TGF-β1 and TGF-β2 induced miR-132 expression in keratinocytes, and transcriptome analysis of these cells revealed that miR-132 regulates a large number of immune response– and cell cycle–related genes. In keratinocytes, miR-132 decreased the production of chemokines and the capability to attract leukocytes by suppressing the NF-κB pathway. Conversely, miR-132 increased activity of the STAT3 and ERK pathways, thereby promoting keratinocyte growth. Silencing of the miR-132 target heparin-binding EGF-like growth factor (HB-EGF) phenocopied miR-132 overexpression in keratinocytes. Using mouse and human ex vivo wound models, we found that miR-132 blockade delayed healing, which was accompanied by severe inflammation and deficient keratinocyte proliferation. Together, our results indicate that miR-132 is a critical regulator of skin wound healing that facilitates the transition from the inflammatory to the proliferative phase.

Authors

Dongqing Li, Aoxue Wang, Xi Liu, Florian Meisgen, Jacob Grünler, Ileana R. Botusan, Sampath Narayanan, Erdem Erikci, Xi Li, Lennart Blomqvist, Lei Du, Andor Pivarcsi, Enikö Sonkoly, Kamal Chowdhury, Sergiu-Bogdan Catrina, Mona Ståhle, Ning Xu Landén

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 Total
Citations: 3 11 10 16 14 13 8 7 6 7 2 97
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2016 (7)

Title and authors Publication Year
EGF receptor ligands: recent advances
B Singh, G Carpenter, RJ Coffey
F1000Research 2016
Transition from inflammation to proliferation: a critical step during wound healing
NX Landén, D Li, M Ståhle
Cellular and Molecular Life Sciences 2016
Biochemical and Biophysical Cues in Matrix Design for Chronic and Diabetic Wound Treatment
Y Xiao, S Ahadian, M Radisic
Tissue Engineering Part B: Reviews 2016
The integrin αv-TGFβ signaling axis is necessary for epidermal proliferation during cutaneous wound healing
EK Duperret, CA Natale, C Monteleon, A Dahal, TW Ridky
Cell cycle (Georgetown, Tex.) 2016
Identification of a novel PPARβ/δ/miR‐21‐3p axis in UV‐induced skin inflammation
G Degueurce, I D'Errico, C Pich, M Ibberson, F Schütz, A Montagner, M Sgandurra, L Mury, P Jafari, A Boda, J Meunier, R Rezzonico, NC Brembilla, D Hohl, A Kolios, G Hofbauer, I Xenarios, L Michalik
EMBO Molecular Medicine 2016
MicroRNA-143-3p inhibits hyperplastic scar formation by targeting connective tissue growth factor CTGF/CCN2 via the Akt/mTOR pathway
S Mu, B Kang, W Zeng, Y Sun, F Yang
Molecular and Cellular Biochemistry 2016
Let-7c miRNA Inhibits the Proliferation and Migration of Heat-Denatured Dermal Fibroblasts Through Down-Regulating HSP70
Jiang T, Wang X, Wu W, Zhang F, Wu S
Molecules and Cells 2016

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