All Relations between scar and hypertrophic

Publication Sentence Publish Date Extraction Date Species
Luis Rodriguez-Menocal, Stephen S Davis, Sandra Becerra, Marcela Salgado, Joel Gill, Jose Valdes, Ambar Candanedo, Shanmugasundaram Natesan, Michael Solis, Wellington Guzman, Alex Higa, Carl I Schulman, Robert J Christy, Jill Waibel, Evangelos V Badiava. Assessment of Ablative Fractional CO2 Laser and Er:YAG Laser to Treat Hypertrophic Scars in a Red Duroc Pig Model. Journal of burn care & research : official publication of the American Burn Association. vol 39. issue 6. 2020-03-02. PMID:29718376. in addition, deficiency of a relevant animal model limits our ability to gain a better understanding of hypertrophic scar pathophysiology. 2020-03-02 2023-08-13 Not clear
Giuseppe Giudice, Angela Filoni, Giulio Maggio, Domenico Bonamonte, Michele Maruccia, Eleonora Nacchiero, Domenico Ribatti, Tiziana Annese, Michelangelo Vestit. Use of the Stromal Vascular Fraction in Intermediate-Deep Acute Burns: A Case With Its Own Control. Journal of burn care & research : official publication of the American Burn Association. vol 39. issue 5. 2020-02-26. PMID:29931257. at the 3 months follow-up, the vancouver scar scale was 9 for the case side and 10 for the control side, with a tendency to hypertrophic scarring in both areas, while patient satisfaction visual analogue scale was 7 for the case side and 2 for the control side. 2020-02-26 2023-08-13 Not clear
Katharina Lust, Elly M Tanak. A Comparative Perspective on Brain Regeneration in Amphibians and Teleost Fish. Developmental neurobiology. vol 79. issue 5. 2020-02-25. PMID:30600647. in mammals, neuronal cell death often leads to glial cell hypertrophy, restricted proliferation, and formation of a gliotic scar, which prevents neuronal regeneration. 2020-02-25 2023-08-13 Not clear
Bonnie C Carney, Jason H Chen, Rhett A Kent, Maha Rummani, Abdulnaser Alkhalil, Lauren T Moffatt, Dean S Rosenthal, Jeffrey W Shup. Reactive Oxygen Species Scavenging Potential Contributes to Hypertrophic Scar Formation. The Journal of surgical research. vol 244. 2020-02-25. PMID:31302330. reactive oxygen species scavenging potential contributes to hypertrophic scar formation. 2020-02-25 2023-08-13 Not clear
Bonnie C Carney, Jason H Chen, Rhett A Kent, Maha Rummani, Abdulnaser Alkhalil, Lauren T Moffatt, Dean S Rosenthal, Jeffrey W Shup. Reactive Oxygen Species Scavenging Potential Contributes to Hypertrophic Scar Formation. The Journal of surgical research. vol 244. 2020-02-25. PMID:31302330. this balance is perturbed in hypertrophic scar (hts). 2020-02-25 2023-08-13 Not clear
A E K Deliaert, J F Mermans, S J Schop, T S Dormaar, E M Heerdt, S A Xanthoulea, J G Maessen, E van den Kerckhove, R R W J van der Huls. The Effect of Smoking on Sternal Scar Healing: A Prospective Cohort Study. Wounds : a compendium of clinical research and practice. vol 31. issue 8. 2020-02-10. PMID:31184995. cardiothoracic surgery with a median sternotomy is an electing factor for the development of a hypertrophic scar. 2020-02-10 2023-08-13 Not clear
Davina J Cross, Lawrence A DiDomenic. Calcaneal Bone Graft Procedures: An Analysis of Postsurgical Complications. The Journal of foot and ankle surgery : official publication of the American College of Foot and Ankle Surgeons. vol 58. issue 4. 2020-02-07. PMID:31053381. overall, the incidence of experiencing any form of complication was 2.43% (6 of 247); these included 5 (2.02%) feet that displayed donor site sural neuritis and 1 (0.41) that displayed a painful, hypertrophic scar at the donor site. 2020-02-07 2023-08-13 Not clear
Edoardo Gronda, Stefania Sacchi, Giuditta Benincasa, Emilio Vanoli, Claudio Napol. Unresolved issues in left ventricular postischemic remodeling and progression to heart failure. Journal of cardiovascular medicine (Hagerstown, Md.). vol 20. issue 10. 2020-02-03. PMID:31343451. we focused our attention on multiple factors, which include myocyte loss, hypertrophy, hyperplasia, extracellular matrix changes linked to myocardial fibrosis and scar, metabolic imbalance, as well as immunologic response occurring in the acute myocardial aftermath. 2020-02-03 2023-08-13 Not clear
Li Lin, Peng Guo, Xining Wang, Ran Huo, Qiang Li, Siyuan Yin, Yongqian Ca. Effective treatment for hypertrophic scar with dual-wave-length PDL and Nd:YAG in Chinese patients. Journal of cosmetic and laser therapy : official publication of the European Society for Laser Dermatology. vol 21. issue 4. 2020-01-31. PMID:30260709. effective treatment for hypertrophic scar with dual-wave-length pdl and nd:yag in chinese patients. 2020-01-31 2023-08-13 Not clear
Li Lin, Peng Guo, Xining Wang, Ran Huo, Qiang Li, Siyuan Yin, Yongqian Ca. Effective treatment for hypertrophic scar with dual-wave-length PDL and Nd:YAG in Chinese patients. Journal of cosmetic and laser therapy : official publication of the European Society for Laser Dermatology. vol 21. issue 4. 2020-01-31. PMID:30260709. the resultsshowed that hypertrophic scar was significantly improved after several laser treatments, and no severe adverse effects were observed. 2020-01-31 2023-08-13 Not clear
Ru-Lin Huang, Chia-Kang Ho, Mathias Tremp, Yun Xie, Qingfeng Li, Tao Za. Early Postoperative Application of Botulinum Toxin Type A Prevents Hypertrophic Scarring after Epicanthoplasty: A Split-Face, Double-Blind, Randomized Trial. Plastic and reconstructive surgery. vol 144. issue 4. 2020-01-29. PMID:31568286. botulinum toxin type a has been reported for hypertrophic scar and keloid treatment. 2020-01-29 2023-08-13 Not clear
Jiajun Song, Xue Li, Jingyun L. Emerging evidence for the roles of peptide in hypertrophic scar. Life sciences. vol 241. 2020-01-23. PMID:31843531. emerging evidence for the roles of peptide in hypertrophic scar. 2020-01-23 2023-08-13 mouse
Jiajun Song, Xue Li, Jingyun L. Emerging evidence for the roles of peptide in hypertrophic scar. Life sciences. vol 241. 2020-01-23. PMID:31843531. hypertrophic scar is a dermal fibroproliferative disorder characterized by excess collagen deposition. 2020-01-23 2023-08-13 mouse
Jiajun Song, Xue Li, Jingyun L. Emerging evidence for the roles of peptide in hypertrophic scar. Life sciences. vol 241. 2020-01-23. PMID:31843531. recently, evidence is increasing that peptides can play crucial roles in the prevention or treatment of hypertrophic scar. 2020-01-23 2023-08-13 mouse
Jiajun Song, Xue Li, Jingyun L. Emerging evidence for the roles of peptide in hypertrophic scar. Life sciences. vol 241. 2020-01-23. PMID:31843531. here, we review current research progress on the roles of peptides and underlying mechanisms in hypertrophic scar. 2020-01-23 2023-08-13 mouse
Jiajun Song, Xue Li, Jingyun L. Emerging evidence for the roles of peptide in hypertrophic scar. Life sciences. vol 241. 2020-01-23. PMID:31843531. finally, the functions of several peptide-related compounds in hypertrophic scar are summarized. 2020-01-23 2023-08-13 mouse
Xiao-Ping Li, Pei Liu, Yan-Feng Li, Gan-Lin Zhang, De-Shan Zeng, Da-Lie Li. LPS induces activation of the TLR4 pathway in fibroblasts and promotes skin scar formation through collagen I and TGF-β in skin lesions. International journal of clinical and experimental pathology. vol 12. issue 6. 2020-01-17. PMID:31934034. the biological mechanism of hypertrophic scar formation is still unclear and has received much attention in plastic surgery. 2020-01-17 2023-08-13 Not clear
Xiao-Ping Li, Pei Liu, Yan-Feng Li, Gan-Lin Zhang, De-Shan Zeng, Da-Lie Li. LPS induces activation of the TLR4 pathway in fibroblasts and promotes skin scar formation through collagen I and TGF-β in skin lesions. International journal of clinical and experimental pathology. vol 12. issue 6. 2020-01-17. PMID:31934034. therefore, we hypothesized that lps can activate tlr4 signaling, leading to the overexpression of collagen i and tgf-β and the induction of hypertrophic scar formation. 2020-01-17 2023-08-13 Not clear
Si-Yi Guo, Gui-Tian Chen, Jun Shi, Yan-Ting Wu, Jian-Hui Lai, Xiao-Qi X. [Study on physicochemical properties of paeonol-Helix aspersa muller nanogel and its inhibitory effects on hypertrophic scar tissue in rabbit ear]. Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica. vol 44. issue 22. 2020-01-10. PMID:31872593. [study on physicochemical properties of paeonol-helix aspersa muller nanogel and its inhibitory effects on hypertrophic scar tissue in rabbit ear]. 2020-01-10 2023-08-13 mouse
Si-Yi Guo, Gui-Tian Chen, Jun Shi, Yan-Ting Wu, Jian-Hui Lai, Xiao-Qi X. [Study on physicochemical properties of paeonol-Helix aspersa muller nanogel and its inhibitory effects on hypertrophic scar tissue in rabbit ear]. Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica. vol 44. issue 22. 2020-01-10. PMID:31872593. to prepare helix aspersa muller-paeonol nanogel( pae-ham-gels) with anti-proliferative scar effect,evaluate its skin penetration,retention and irritation,and to investigate its prevention and treatment effect for hypertrophic scar in rabbit ears. 2020-01-10 2023-08-13 mouse