MicroRNAs in skin wound healing
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Summary
This work focuses on the miRNAs regulating the inflammation-proliferation transition during wound healing and proposes that these miRNas may be promising targets for development of more effective wound therapy.
- Type
- article
- Published
- 2017-06-01
- Cited by
- 37
- References
- 22
- OpenAlex
- https://openalex.org/W2753313318
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4874743
Keywords
Wound healing, microRNA, Medicine, Inflammation, Pathogenesis
References
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- Wound Repair and Regeneration
- Treatment of nonhealing ulcers with allografts.
- ENGULFMENT OF APOPTOTIC CELLS BY MACROPHAGES: A ROLE OF MICRO-RNA-21 IN THE RESOLUTION OF WOUND INFLAMMATION
- Development of microRNA therapeutics is coming of age
- MicroRNA-132 enhances transition from inflammation to proliferation during wound healing.
- The Role of MicroRNA-146a in the Pathogenesis of the Diabetic Wound-Healing Impairment
- The Role of MicroRNAs in Diabetic Complications—Special Emphasis on Wound Healing
- The Role of MicroRNAs in Human Diseases
- miR-21 Promotes Keratinocyte Migration and Re-epithelialization During Wound Healing
- miR-146a-mediated suppression of the inflammatory response in human adipocytes
- Transforming growth factor beta (TGF‐β) isoforms in wound healing and fibrosis
- Diabetic foot disease: From the evaluation of the "foot at risk" to the novel diabetic ulcer treatment modalities.
- Transition from inflammation to proliferation: a critical step during wound healing
Cited by
- MicroRNA-129 and -335 Promote Diabetic Wound Healing by Inhibiting Sp1-Mediated MMP-9 Expression
- miR-23b promotes cutaneous wound healing through inhibition of the inflammatory responses by targeting ASK1
- Immunology of Wound Healing
- Circulating Hypoxia Responsive microRNAs (HRMs) and Wound Healing Potentials of Green Tea in Diabetic and Nondiabetic Rat Models
- MicroRNA-34a deficiency leads to impaired wound closure by augmented inflammation in mice
- Investigation of Skin Wound Healing Using a Mouse Model.
- miR-19a/b and miR-20a promote wound healing by regulating the inflammatory response of keratinocytes.
- Improving Chronic Diabetic Wound Healing through an Injectable and Self-Healing Hydrogel with Platelet-Rich Plasma Release.
- Epigenetic regulation of cellular functions in wound healing
- Cellular reprogramming of diabetic foot ulcer fibroblasts triggers pro‐healing miRNA‐mediated epigenetic signature
- Mesenchymal Stem Cell-Derived Exosomes: Applications in Regenerative Medicine
- Cerium oxide nanoparticle conjugation to microRNA-146a mechanism of correction for impaired diabetic wound healing
- miR‐24‐3p obstructs the proliferation and migration of human skin fibroblasts after thermal injury by targeting PPAR‐β and positively regulated by NF‐κB
- The role of miRNAs in the inflammatory phase of skin wound healing
- miR-199a-5p Plays a Pivotal Role on Wound Healing via Suppressing VEGFA and ROCK1 in Diabetic Ulcer Foot
- Molecular Dermatology: Methods and Protocols
- Nrf2 Mediated Heme Oxygenase-1 Activation Contributes to Diabetic Wound Healing - an Overview.
- Recent Advances in Nano-Formulations for Skin Wound Repair Applications
- Severe Burn Injury Significantly Alters the Gene Expression and m6A Methylation Tagging of mRNAs and lncRNAs in Human Skin
- Adipose-derived Stem Cells Improving Inflammatory and Proliferative Responses in an Infected and Ischemic Ulcer Model in Type 1 Diabetic Rats: Insights Into Bacterial Count, Stereological Parameters, microRNA-21, and FGF2 Regulation
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