1,739
Views
1
CrossRef citations to date
0
Altmetric
Research Paper

Highly-expressed lncRNA FOXD2-AS1 in adipose mesenchymal stem cell derived exosomes affects HaCaT cells via regulating miR-185-5p/ROCK2 axis

, , , &
Article: 2173513 | Received 08 Nov 2022, Accepted 24 Jan 2023, Published online: 12 Feb 2023

References

  • Du H, Zhou Y, Suo Y, et al. CCN1 accelerates re-epithelialization by promoting keratinocyte migration and proliferation during cutaneous wound healing. Biochem Biophys Res Commun. 2018;505(4):966–13.
  • Pradhan L, Andersen ND, Nabzdyk C. Wound-healing Abnormalities in Diabetes and New Therapeutic Interventions. US Endocrinol. 2007;5:68.
  • Eming SA, Martin P, Tomic-Canic M. Wound repair and regeneration: mechanisms, signaling, and translation. Sci Transl Med. 2014;6:265sr6–265sr6.
  • Vizoso FJ, Eiro N, Costa L, et al. Mesenchymal Stem Cells in Homeostasis and Systemic Diseases: hypothesis, Evidences, and Therapeutic Opportunities. Int J Mol Sci. 2019;20:3738.
  • Lee MJ, Kim JK, Kim MY, et al. Proteomic Analysis of Tumor Necrosis Factor-α-Induced Secretome of Human Adipose Tissue-Derived Mesenchymal Stem Cells. J Proteome Res. 2010;9(4):1754–1762.
  • Liu W, Sui X, Liu Z, et al. Exosomal lncRNA-p21 derived from mesenchymal stem cells protects epithelial cells during LPS-induced acute lung injury by sponging miR-181. Acta Biochim Biophys Sin (Shanghai). 2021;53:748–757.
  • Tian X, Bo J, Hong Y. Effect of adipose-derived mesenchymal stem cell exosomes on the proliferation and migration of keratinocytes and the underlying mechanisms. Chin J Tissue Eng Res. 2019;23:68.
  • Ma T, Fu B, Yang X, et al. Adipose mesenchymal stem cell‐derived exosomes promote cell proliferation, migration, and inhibit cell apoptosis via Wnt/β‐catenin signaling in cutaneous wound healing. J Cell Biochem. 2019;123:10847.
  • Zhang Y, Han F, Gu L, et al. Adipose mesenchymal stem cell exosomes promote wound healing through accelerated keratinocyte migration and proliferation by activating the AKT/HIF-1α axis. J Mol Histol. 2020;51:375.
  • Heo JS, Kim S, Yang CE, et al. Human Adipose Mesenchymal Stem Cell-Derived Exosomes: a Key Player in Wound Healing. Tissue Engineering Regenerat Medi. 2021;18(4):537–548.
  • Li H, Wang J, Xin Z, et al. Exosomes derived from human adipose mesenchymal stem cells accelerates cutaneous wound healing via optimizing the characteristics of fibroblasts. Rep. 2016;6:32993.
  • Gezer U, Zgür E, Cetinkaya M, et al. Long non-coding RNAs with low expression levels in cells are enriched in secreted exosomes. Cell Biol Int. 2014;38:1076–1079.
  • Qian L, Pi L, Fang BR, et al. Adipose mesenchymal stem cell-derived exosomes accelerate skin wound healing via the lncRNA H19/miR-19b/SOX9 axis, Laboratory Investigation.
  • Yu M, Song XG, Zhao YJ, et al. Circulating Serum Exosomal Long Non-Coding RNAs FOXD2-AS1, NRIR, and XLOC_009459 as Diagnostic Biomarkers for Colorectal Cancer. Front Oncol. 2021;11:618967.
  • Chen Z, Zhang Z, Zhao D, et al. Long Noncoding RNA (lncRNA) FOXD2-AS1 Promotes Cell Proliferation and Metastasis in Hepatocellular Carcinoma by Regulating MiR-185/AKT Axis. Med Sci Monit. 2019;25:9618–9629.
  • Gao J, Liu F, Zhao X, et al. Long non-coding RNA FOXD2-AS1 promotes proliferation, migration and invasion of ovarian cancer cells via regulating the expression of miR-4492. Exp Ther Med. 2021;21(4):307.
  • Chen G, Sun W, Hua X, et al. Long non-coding RNA FOXD2-AS1 aggravates nasopharyngeal carcinoma carcinogenesis by modulating miR-363-5p/S100A1 pathway. Gene. 2018;645:76–84.
  • Zhang L, Bo H, Chen T, et al. FOXD2-AS1 promotes migration and invasion of head and neck squamous cell carcinoma and predicts poor prognosis. Future Oncology (London, England). 2020;16(28):2209–2218.
  • Zhang Y, Chen X. lncRNA FOXD2-AS1 affects trophoblast cell proliferation, invasion and migration through targeting miRNA. Zygote. 2020;1–8. DOI:10.1017/S0967199419000807
  • Zhao Q, Zhao F, Liu C, et al. LncRNA FOXD2-AS1 promotes cell proliferation and invasion of fibroblast-like synoviocytes by regulation of miR-331-3p/PIAS3 pathway in rheumatoid arthritis. Autoimmunity. 2021;54:254–263.
  • Wang Y, Cao L, Wang Q, et al. LncRNA FOXD2-AS1 induces chondrocyte proliferation through sponging miR-27a-3p in osteoarthritis. Artif Cells Nanomed Biotechnol. 2019;47:1241–1247.
  • Seeger MA, Paller AS. The Roles of Growth Factors in Keratinocyte Migration. Adv Wound Care. 2015;4(4):213.
  • Gurtner GC, Werner S, Barrandon Y, et al. Wound Repair and Regeneration. Nature. 2008;453(7193):314–321.
  • Eric T, Ma Q, Castillo DE, et al. The Effects of Aloe vera on Wound Healing in Cell Proliferation, Migration, and Viability. Wound Compend Clin Res Pract. 2018;30:263
  • He L, Zhu C, Jia J, et al. ADSC-Exos containing MALAT1 promotes wound healing by targeting miR-124 through activating Wnt/β-catenin pathway. Biosci Rep. 2020;40(5). DOI:10.1042/BSR20192549
  • Chen C, Luo Y, He W, et al. Exosomal long noncoding RNA LNMAT2 promotes lymphatic metastasis in bladder cancer. J Clin Invest. 2019;130:404–421.
  • Zhao T, Zhang J, Ye C, et al. lncRNA FOXD2-AS1 promotes hemangioma progression through the miR-324-3p/PDRG1 pathway. Cancer Cell Int. 2020;20(1). DOI:10.1186/s12935-020-01277-w
  • Lei C, Yang W, Wang Q, et al. LncRNA FOXD2-AS1 regulates chondrocyte proliferation in osteoarthritis by acting as a sponge of miR-206 to modulate CCND1 expression. Biomed Pharmacothe. 2018;106:1220–1226.
  • Meng Z, Zhou, D, Gao, Y, et al. miRNA delivery for skin wound healing. Adv Drug Deliv Rev. 2018; 129:308-318.
  • Tang H, Wang X, Zhang M, et al. MicroRNA-200b/c-3p regulate epithelial plasticity and inhibit cutaneous wound healing by modulating TGF-β-mediated RAC1 signaling. Cell Death Dis. 2020;11:931.
  • Cao MX, Jiang YP, Tang YL, et al. The crosstalk between lncRNA and microRNA in cancer metastasis: orchestrating the epithelial-mesenchymal plasticity. Oncotarget. 2017;8:55.
  • He Z.Y, Huang M, Cui X, et al. Long noncoding RNA GAS5 accelerates diabetic wound healing and promotes lymphangiogenesis via miR-217/Prox1 axis. Mol Cell Endocrinol. 2021;532:111283.
  • Zhu Y, Qiao L, Zhou Y, et al. Long non-coding RNA FOXD2-AS1 contributes to colorectal cancer proliferation through its interaction with microRNA-185-5p. Cancer Sci. 2018;109:2235–2242.
  • Li H, Han Q, Chen Y, et al. Upregulation of the long non-coding RNA FOXD2-AS1 is correlated with tumor progression and metastasis in papillary thyroid cancer. Am J Transl Res. 2019;11:5457–5471.
  • Ni W, Xia Y, Bi Y, et al. FoxD2-AS1 promotes glioma progression by regulating miR-185-5P/HMGA2 axis and PI3K/AKT signaling pathway. Aging (Albany NY). 2019;11:1427–1439.
  • Bartel DP. MicroRNAs: genomics, Biogenesis, Mechanism, and Function. Cell. 2004;116(2):281–297.
  • Deng X, Yi X, Deng J, et al. ROCK2 promotes osteosarcoma growth and metastasis by modifying PFKFB3 ubiquitination and degradation. Exp Cell Res. 2019;385:111689.
  • Mani S, Jindal D, Chopra H, et al. ROCK2 inhibition: A futuristic approach for the management of Alzheimer's disease. Neurosci Biobehav Rev. 2022;142:104871.
  • Soliman H, Nyamandi V, Garcia-Patino M, et al. ROCK2 promotes ryanodine receptor phosphorylation and arrhythmic calcium release in diabetic cardiomyocytes. Int J Cardiol. 2019;281:90–98.
  • Deng B, Deng J, Yi, X. ROCK2 Promotes Osteosarcoma Growth and Glycolysis by Up-Regulating HKII via Phospho-PI3K/AKT Signalling. Cancer Manag Res. 2021.
  • Du Y, Lu S, Ge J, et al. ROCK2 disturbs MKP1 expression to promote invasion and metastasis in hepatocellular carcinoma. Am J Cancer Res. 2020;10:884–896.
  • Croze RH, Thi W, J.Clegg DO. ROCK Inhibition Promotes Attachment, Proliferation, and Wound Closure in Human Embryonic Stem Cell–Derived Retinal Pigmented Epithelium. Trans Vision Sci Technol. 2016;5(6):7.
  • Liu J, Shu B, Zhou Z, et al. Involvement of miRNA203 in the proliferation of epidermal stem cells during the process of DM chronic wound healing through Wnt signal pathways. Stem Cell Res Ther. 2020;11. DOI:10.1186/s13287-020-01829-x
  • Niu Y, Tang G. miR1855p targets ROCK2 and inhibits cell migration and invasion of hepatocellular carcinoma. Oncol Lett. 2019. DOI:10.3892/ol.2019.10144
  • Dai XW, Luo W, Lv CL. lncRNAMIAT facilitates the differentiation of adipose derived mesenchymal stem cells into lymphatic endothelial cells via the miR495/Prox1 axis. Mol Med Rep. 2021;23. DOI:10.3892/mmr.2021.11962
  • Liu H, Sun X, Gong X, et al. Human umbilical cord mesenchymal stem cells derived exosomes exert antiapoptosis effect via activating PI3K/Akt/mTOR pathway on H9C2 cells. Journal of Cellular Biochemistry. 2019;120:14455–14464.