Research map: Deciphering keloid formation and treatment: insights from mechanobiology
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Papers in this map
- Role of YAP/TAZ in mechanotransduction · Sirio Dupont · 2011 · 6157 citations · Cited by this paper
- Beyond fibroblast activation: expanding the role of the amphiregulin–epidermal growth factor receptor axis in keloid pathogenesis · Zihao Li · 2026 · Cites this paper
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- The immunology of the porcine skin and its value as a model for human skin · Artur Summerfield · 2014 · 560 citations · Cited by this paper
- Fibroblast Dynamics in Keloid Pathogenesis: Unraveling Cellular Crosstalk and Novel Therapeutic Targets · 2026 · Related
- Myofibroblast proliferation and heterogeneity are supported by macrophages during skin repair · Brett A. Shook · 2018 · 533 citations · Cited by this paper
- Focal adhesion kinase links mechanical force to skin fibrosis via inflammatory signaling · Victor W Wong · 2011 · 519 citations · Cited by this paper
- Single-cell RNA-seq reveals fibroblast heterogeneity and increased mesenchymal fibroblasts in human fibrotic skin diseases · Cheng‐Cheng Deng · 2021 · 509 citations · Cited by this paper
- Current potential therapeutic strategies targeting the TGF-β/Smad signaling pathway to attenuate keloid and hypertrophic scar formation · Tao� Zhang · 2020 · 443 citations · Cited by this paper
- Integrin β1 Signaling Is Necessary for Transforming Growth Factor-β Activation of p38MAPK and Epithelial Plasticity · Neil A. Bhowmick · 2001 · 398 citations · Cited by this paper
- Lamin A and ZMPSTE24 (FACE-1) defects cause nuclear disorganization and identify restrictive dermopathy as a lethal neonatal laminopathy · Claire Laure Navarro · 2004 · 382 citations · Cited by this paper
- The Keloid Disorder: Heterogeneity, Histopathology, Mechanisms and Models · Grace C. Limandjaja · 2020 · 362 citations · Cited by this paper
- The Most Current Algorithms for the Treatment and Prevention of Hypertrophic Scars and Keloids: A 2020 Update of the Algorithms Published 10 Years Ago · Rei Ogawa · 2021 · 356 citations · Cited by this paper
- Allometric scaling of skin thickness, elasticity, viscoelasticity to mass for micro-medical device translation: from mice, rats, rabbits, pigs to humans · Jonathan C. J. Wei · 2017 · 308 citations · Cited by this paper
- The relationship between skin stretching/contraction and pathologic scarring: The important role of mechanical forces in keloid generation · Rei Ogawa · 2012 · 302 citations · Cited by this paper
- Histopathological Differential Diagnosis of Keloid and Hypertrophic Scar · Julia Yu‐Yun Lee · 2004 · 286 citations · Cited by this paper
- The Single-Molecule Mechanics of the Latent TGF-β1 Complex · Lara Buscemi · 2011 · 264 citations · Cited by this paper
- Mechanical Forces in Cutaneous Wound Healing: Emerging Therapies to Minimize Scar Formation · Leandra A. Barnes · 2017 · 255 citations · Cited by this paper
- Prestress in the extracellular matrix sensitizes latent TGF-β1 for activation · Franco Klingberg · 2014 · 223 citations · Cited by this paper
- Pushing Back: Wound Mechanotransduction in Repair and Regeneration · Victor W. Wong · 2011 · 222 citations · Cited by this paper
- The tension biology of wound healing · Hans I‐Chen Harn · 2017 · 218 citations · Cited by this paper
- Pruritus, pain, and small nerve fiber function in keloids: A controlled study · Siong-See Lee · 2004 · 184 citations · Cited by this paper
- TGF-β1 promotes scar fibroblasts proliferation and transdifferentiation via up-regulating MicroRNA-21 · Ying Liu · 2016 · 180 citations · Cited by this paper
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