All Relations between scar and hypertrophic

Publication Sentence Publish Date Extraction Date Species
Xiaolin Nong, Girju Rajbanshi, Ling Chen, Jiaquan Li, Zhan Li, Taotao Liu, Shihai Chen, Gao Wei, Jushang L. Effect of artesunate and relation with TGF-β1 and SMAD3 signaling on experimental hypertrophic scar model in rabbit ear. Archives of dermatological research. vol 311. issue 10. 2020-04-20. PMID:31396694. punched defects were established on each rabbit's ear which resulted in a hypertrophic scar. 2020-04-20 2023-08-13 rabbit
Xiaolin Nong, Girju Rajbanshi, Ling Chen, Jiaquan Li, Zhan Li, Taotao Liu, Shihai Chen, Gao Wei, Jushang L. Effect of artesunate and relation with TGF-β1 and SMAD3 signaling on experimental hypertrophic scar model in rabbit ear. Archives of dermatological research. vol 311. issue 10. 2020-04-20. PMID:31396694. amongst the six groups, findings showed that the medium-concentration artesunate group (0.92%) efficiently decreased hypertrophic scar formation and significantly reduced fibroblasts and collagen synthesis. 2020-04-20 2023-08-13 rabbit
Gil Soon Park, Min Kyun An, Ji Ha Yoon, Seok Soon Park, Sung Hoon Koh, Theodora M Mauro, Eun Byul Cho, Eun Joo Park, Kwang Ho Kim, Kwang Joong Ki. Botulinum toxin type A suppresses pro-fibrotic effects via the JNK signaling pathway in hypertrophic scar fibroblasts. Archives of dermatological research. vol 311. issue 10. 2020-04-20. PMID:31501922. botulinum toxin type a suppresses pro-fibrotic effects via the jnk signaling pathway in hypertrophic scar fibroblasts. 2020-04-20 2023-08-13 human
Gil Soon Park, Min Kyun An, Ji Ha Yoon, Seok Soon Park, Sung Hoon Koh, Theodora M Mauro, Eun Byul Cho, Eun Joo Park, Kwang Ho Kim, Kwang Joong Ki. Botulinum toxin type A suppresses pro-fibrotic effects via the JNK signaling pathway in hypertrophic scar fibroblasts. Archives of dermatological research. vol 311. issue 10. 2020-04-20. PMID:31501922. hypertrophic scar is a dermal fibroproliferative disease characterized by the overproduction and deposition of extracellular matrix, and the hyperproliferation and enhanced angiogenesis of fibroblasts, along with their enhanced differentiation to myofibroblasts. 2020-04-20 2023-08-13 human
Gil Soon Park, Min Kyun An, Ji Ha Yoon, Seok Soon Park, Sung Hoon Koh, Theodora M Mauro, Eun Byul Cho, Eun Joo Park, Kwang Ho Kim, Kwang Joong Ki. Botulinum toxin type A suppresses pro-fibrotic effects via the JNK signaling pathway in hypertrophic scar fibroblasts. Archives of dermatological research. vol 311. issue 10. 2020-04-20. PMID:31501922. botulinum toxin type a shows potential for prevention of hypertrophic scar formation; however, its effectiveness in attenuating skin fibrosis and the related mechanism are unclear. 2020-04-20 2023-08-13 human
Xiaobing Fang, Xiaolong Hu, Zhao Zheng, Ke Tao, Hongtao Wang, Hao Guan, Jihong Shi, Peng Ji, Weixia Cai, Xiaozhi Bai, Xiongxiang Zhu, Juntao Han, Jiaqi Liu, Dahai H. Smad interacting protein 1 influences transforming growth factor-β Journal of molecular histology. vol 50. issue 6. 2020-04-20. PMID:31595443. smad interacting protein 1 influences transforming growth factor-β the transforming growth factor (tgf)-β/smad signal transduction pathway is closely associated with hypertrophic scar (hs) formation. 2020-04-20 2023-08-13 Not clear
Ahmed S Fahmy, Ulf Neisius, Raymond H Chan, Ethan J Rowin, Warren J Manning, Martin S Maron, Reza Nezafa. Three-dimensional Deep Convolutional Neural Networks for Automated Myocardial Scar Quantification in Hypertrophic Cardiomyopathy: A Multicenter Multivendor Study. Radiology. vol 294. issue 1. 2020-04-20. PMID:31714190. three-dimensional deep convolutional neural networks for automated myocardial scar quantification in hypertrophic cardiomyopathy: a multicenter multivendor study. 2020-04-20 2023-08-13 Not clear
Ahmed S Fahmy, Ulf Neisius, Raymond H Chan, Ethan J Rowin, Warren J Manning, Martin S Maron, Reza Nezafa. Three-dimensional Deep Convolutional Neural Networks for Automated Myocardial Scar Quantification in Hypertrophic Cardiomyopathy: A Multicenter Multivendor Study. Radiology. vol 294. issue 1. 2020-04-20. PMID:31714190. background cardiac mri late gadolinium enhancement (lge) scar volume is an important marker for outcome prediction in patients with hypertrophic cardiomyopathy (hcm); however, its clinical application is hindered by a lack of measurement standardization. 2020-04-20 2023-08-13 Not clear
Yifan Zhang, Shengzhou Shan, Jing Wang, Xinyu Cheng, Bo Yi, Jia Zhou, Qingfeng L. Correction to: Galangin inhibits hypertrophic scar formation via ALK5/Smad2/3 signaling pathway. Molecular and cellular biochemistry. vol 468. issue 1-2. 2020-04-20. PMID:32144517. correction to: galangin inhibits hypertrophic scar formation via alk5/smad2/3 signaling pathway. 2020-04-20 2023-08-13 Not clear
Liying Cheng, Xiaoming Sun, Bin Li, Changmin Hu, Huilin Yang, Yuguang Zhang, Wenguo Cu. Electrospun Ginsenoside Rg3/poly(lactic-co-glycolic acid) fibers coated with hyaluronic acid for repairing and inhibiting hypertrophic scars. Journal of materials chemistry. B. vol 1. issue 35. 2020-04-08. PMID:32261115. however, most of them inhibit hypertrophic scars after their formation, without taking into account repairing tissue damage in the early stage and inhibiting scar hyperplasia in the late stage through combining treatments. 2020-04-08 2023-08-13 Not clear
Bonnie C Carney, Jason H Chen, Jenna N Luker, Abdulnaser Alkhalil, Daniel Y Jo, Taryn E Travis, Lauren T Moffatt, Cynthia M Simbulan-Rosenthal, Dean S Rosenthal, Jeffrey W Shup. Pigmentation Diathesis of Hypertrophic Scar: An Examination of Known Signaling Pathways to Elucidate the Molecular Pathophysiology of Injury-Related Dyschromia. Journal of burn care & research : official publication of the American Burn Association. vol 40. issue 1. 2020-03-23. PMID:30189005. pigmentation diathesis of hypertrophic scar: an examination of known signaling pathways to elucidate the molecular pathophysiology of injury-related dyschromia. 2020-03-23 2023-08-13 Not clear
Bonnie C Carney, Jason H Chen, Jenna N Luker, Abdulnaser Alkhalil, Daniel Y Jo, Taryn E Travis, Lauren T Moffatt, Cynthia M Simbulan-Rosenthal, Dean S Rosenthal, Jeffrey W Shup. Pigmentation Diathesis of Hypertrophic Scar: An Examination of Known Signaling Pathways to Elucidate the Molecular Pathophysiology of Injury-Related Dyschromia. Journal of burn care & research : official publication of the American Burn Association. vol 40. issue 1. 2020-03-23. PMID:30189005. hypertrophic scar (hts) occurs frequently after burn injury. 2020-03-23 2023-08-13 Not clear
Asim Uslu, Abdullah Sürücü, Mehmet Ali Korkmaz, Fatih Uygu. Acquired Localized Hypertrichosis Following Pressure Garment and/or Silicone Therapy in Burn Patients. Annals of plastic surgery. vol 82. issue 2. 2020-03-20. PMID:30562202. pressure garment/silicone therapy is often used to prevent hypertrophic scar formation. 2020-03-20 2023-08-13 Not clear
Nicole Coghlan, Jodie Copley, Tammy Aplin, Jenny Stron. How to improve compression garment wear after burns: Patient and therapist perspectives. Burns : journal of the International Society for Burn Injuries. vol 45. issue 6. 2020-03-16. PMID:31138434. compression garments are a widely used intervention for the management of hypertrophic scar and recent research demonstrates the varied experiences of patients wearing compression garments. 2020-03-16 2023-08-13 Not clear
Jian Zhang, Qin Zhou, Hongtao Wang, Meiling Huang, Jihong Shi, Fu Han, Weixia Cai, Yan Li, Ting He, Dahai H. MicroRNA-130a has pro-fibroproliferative potential in hypertrophic scar by targeting CYLD. Archives of biochemistry and biophysics. vol 671. 2020-03-16. PMID:31283910. microrna-130a has pro-fibroproliferative potential in hypertrophic scar by targeting cyld. 2020-03-16 2023-08-13 mouse
Jian Zhang, Qin Zhou, Hongtao Wang, Meiling Huang, Jihong Shi, Fu Han, Weixia Cai, Yan Li, Ting He, Dahai H. MicroRNA-130a has pro-fibroproliferative potential in hypertrophic scar by targeting CYLD. Archives of biochemistry and biophysics. vol 671. 2020-03-16. PMID:31283910. in this study, we found that microrna-130a (mir-130a) was increased in hypertrophic scar tissues and derived primary fibroblasts, accompanied by up-regulation of collagen1/3 and α-sma. 2020-03-16 2023-08-13 mouse
K C Lee, A Bamford, F Gardiner, A Agovino, B Ter Horst, J Bishop, A Sitch, L Grover, A Logan, N S Moieme. Investigating the intra- and inter-rater reliability of a panel of subjective and objective burn scar measurement tools. Burns : journal of the International Society for Burn Injuries. vol 45. issue 6. 2020-03-16. PMID:31327551. research into the treatment of hypertrophic burn scar is hampered by the variability and subjectivity of existing outcome measures. 2020-03-16 2023-08-13 Not clear
Juan Zhang, Dan Xu, Na Li, Yan Li, Yongjing He, Xingbo Hu, Lechun Lyu, Li H. Downregulation of microRNA-31 inhibits proliferation and induces apoptosis by targeting Oncotarget. vol 8. issue 43. 2020-03-06. PMID:29088812. integrative analysis of the previous mirna microarray revealed mirna-31 was among the most frequently altered mirnas in keloid and hypertrophic scar. 2020-03-06 2023-08-13 Not clear
F Duteille, A Kanlagna, F Bellier Waast, A Leduc, P Perrot, J Saboye, D Casanov. [Brachioplasty and its complications]. Annales de chirurgie plastique et esthetique. vol 64. issue 5-6. 2020-03-05. PMID:31481252. minor complication is more common : hypertrophic scar, large scar, paresthesia, and wound dehiscence. 2020-03-05 2023-08-13 Not clear
Riccardo Proietti, Vincenzo Russo, Ahmed AlTurk. Anti-arrhythmic therapy in patients with non-ischemic cardiomyopathy. Pharmacological research. vol 143. 2020-03-03. PMID:30844534. in patients with hypertrophic cardiomyopathy (hcm) and dilated cardiomyopathy (dcm), the prevalence of ventricular arrhythmias correlates with the volume of scar as characterized by late gadolinium enhancement. 2020-03-03 2023-08-13 Not clear