All Relations between hypertrophic and scar

Publication Sentence Publish Date Extraction Date Species
Pietro Francia, Giulio Falasconi, Diego Penela, Daniel Viveros, José Alderete, Andrea Saglietto, Aldo Francisco Bellido, Julio Marti-Almor, Paula Ocaña-Franco, David Soto-Iglesias, Fatima Zaraket, Dario Turturiello, Antonio Berruez. Scar Architecture Affects the Electrophysiological Characteristics of Induced Ventricular Arrhythmias in Hypertrophic Cardiomyopathy. Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology. 2024-02-20. PMID:38375690. scar architecture affects the electrophysiological characteristics of induced ventricular arrhythmias in hypertrophic cardiomyopathy. 2024-02-20 2024-02-22 Not clear
Maedeh Karimi Kivi, Alireza Jafarzadeh, Fatemeh Sadat Hosseini-Baharanchi, Sadaf Salehi, Azadeh Goodarz. The efficacy, satisfaction, and safety of carbon dioxide (CO2) fractional laser in combination with pulsed dye laser (PDL) versus each one alone in the treatment of hypertrophic burn scars: a single-blinded randomized controlled trial. Lasers in medical science. vol 39. issue 1. 2024-02-20. PMID:38376542. the present study thus aimed to assess the efficacy of two laser-based techniques including pulsed dye laser (pdl) and ablative fractional co2 laser (afcl) and its combination on improving different aspects of burning scars regardless of the types of scar as hypertrophic or keloid scars. 2024-02-20 2024-02-22 Not clear
Jun Zuo, Shaolin M. Resveratrol-laden mesoporous silica nanoparticles regulate the autophagy and apoptosis via ROS-mediated p38-MAPK/HIF-1a /p53 signaling in hypertrophic scar fibroblasts. Heliyon. vol 10. issue 4. 2024-02-19. PMID:38370262. resveratrol-laden mesoporous silica nanoparticles regulate the autophagy and apoptosis via ros-mediated p38-mapk/hif-1a /p53 signaling in hypertrophic scar fibroblasts. 2024-02-19 2024-02-21 Not clear
Jun Zuo, Shaolin M. Resveratrol-laden mesoporous silica nanoparticles regulate the autophagy and apoptosis via ROS-mediated p38-MAPK/HIF-1a /p53 signaling in hypertrophic scar fibroblasts. Heliyon. vol 10. issue 4. 2024-02-19. PMID:38370262. recent investigations demonstrated effective inhibition of resveratrol on hypertrophic scar fibroblasts (hsfs). 2024-02-19 2024-02-21 Not clear
Chao Wang, Duyin Jian. Exogenous PRAS40 reduces KLF4 expression and alleviates hypertrophic scar fibrosis and collagen deposition through inhibiting mTORC1. Burns : journal of the International Society for Burn Injuries. 2024-02-18. PMID:38369439. exogenous pras40 reduces klf4 expression and alleviates hypertrophic scar fibrosis and collagen deposition through inhibiting mtorc1. 2024-02-18 2024-02-21 Not clear
Zhi-Tao Fan, Xue-Xia Wang, Wen-Xin Dong, Tong Qiao, Jing-Rui Liu, Yue-Tang Wang, Chao-Bing Li. Oropharyngeal Stenosis Caused by Significant Scar Hyperplasia Following Tonsillectomy: A Case Report. Ear, nose, & throat journal. 2024-02-15. PMID:38357741. this is the first reported case of ops due to significant scar hyperplasia; however, whether it is as prone to recurrence as skin scar hypertrophy remains unknown. 2024-02-15 2024-02-17 Not clear
Qian Liang, Fuqiang Pan, Houhuang Qiu, Xiang Zhou, Jieyun Cai, Ruijin Luo, Zenghui Xiong, Huawei Yang, Liming Zhan. CLC-3 regulates TGF-β/smad signaling pathway to inhibit the process of fibrosis in hypertrophic scar. Heliyon. vol 10. issue 3. 2024-02-09. PMID:38333829. clc-3 regulates tgf-β/smad signaling pathway to inhibit the process of fibrosis in hypertrophic scar. 2024-02-09 2024-02-11 human
Qian Liang, Fuqiang Pan, Houhuang Qiu, Xiang Zhou, Jieyun Cai, Ruijin Luo, Zenghui Xiong, Huawei Yang, Liming Zhan. CLC-3 regulates TGF-β/smad signaling pathway to inhibit the process of fibrosis in hypertrophic scar. Heliyon. vol 10. issue 3. 2024-02-09. PMID:38333829. to study the role and mechanism of chloride channel-3 (clc-3) in the formation of hypertrophic scar by constructing clc-3 interference vectors and examining their effects on human hypertrophic scar fibroblasts (hsfb). 2024-02-09 2024-02-11 human
Stem Cells Internationa. Retracted: Human Umbilical Mesenchymal Stem Cells-Derived Microvesicles Attenuate Formation of Hypertrophic Scar through Multiple Mechanisms. Stem cells international. vol 2024. 2024-02-08. PMID:38328461. retracted: human umbilical mesenchymal stem cells-derived microvesicles attenuate formation of hypertrophic scar through multiple mechanisms. 2024-02-08 2024-02-10 human
Shaohui Li, Yunwei Wang, Yang Chen, Hao Zhang, Peng Cao, Kuo Shen, Hao Gua. PTEN hinders the formation of scars by regulating the levels of proteins in the extracellular matrix and promoting the apoptosis of dermal fibroblasts through Bcl-xL. Archives of biochemistry and biophysics. 2024-02-07. PMID:38325773. hypertrophic scar (hs) is a dermatological condition characterized by an excessive accumulation of proteins in the extracellular matrix (ecm) and an elevated cell count. 2024-02-07 2024-02-10 Not clear
Shaohui Li, Yunwei Wang, Yang Chen, Hao Zhang, Peng Cao, Kuo Shen, Hao Gua. PTEN hinders the formation of scars by regulating the levels of proteins in the extracellular matrix and promoting the apoptosis of dermal fibroblasts through Bcl-xL. Archives of biochemistry and biophysics. 2024-02-07. PMID:38325773. however, the precise mechanisms by which pten regulates hypertrophic scar fibroblasts (hsfs) and its overall role in scar formation are still not fully understood. 2024-02-07 2024-02-10 Not clear
Shaohui Li, Yunwei Wang, Yang Chen, Hao Zhang, Peng Cao, Kuo Shen, Hao Gua. PTEN hinders the formation of scars by regulating the levels of proteins in the extracellular matrix and promoting the apoptosis of dermal fibroblasts through Bcl-xL. Archives of biochemistry and biophysics. 2024-02-07. PMID:38325773. the objective of this study was to investigate the influence of pten on hypertrophic scars(hs) and its function in the regulation of scar formation, with the aim of identifying a pivotal molecular target for scar treatment. 2024-02-07 2024-02-10 Not clear
Shaohui Li, Yunwei Wang, Yang Chen, Hao Zhang, Peng Cao, Kuo Shen, Hao Gua. PTEN hinders the formation of scars by regulating the levels of proteins in the extracellular matrix and promoting the apoptosis of dermal fibroblasts through Bcl-xL. Archives of biochemistry and biophysics. 2024-02-07. PMID:38325773. the findings of our study provide validation for the role of pten in inhibiting the development of hypertrophic scars (hs) by modulating the expression of extracellular matrix (ecm) proteins and promoting apoptosis in hypertrophic scar fibroblasts (hsfs) via bcl-xl. 2024-02-07 2024-02-10 Not clear
Ichiro Kurokawa, Kanako Kita, Takashi Hashimot. Successful treatment of ulceration in hidradenitis suppurativa with topical bucladesine: A case report. Skin health and disease. vol 4. issue 1. 2024-02-05. PMID:38312248. he was successfully treated with topical bucladesine ointment treatment, resulting in a hypertrophic scar 2 months after the treatment. 2024-02-05 2024-02-07 Not clear
Yixiu Zhong, Youfan Zhang, Beibei Lu, Zhenjun Deng, Zhiwen Zhang, Qi Wang, Jianglin Zhan. Hydrogel Loaded with Components for Therapeutic Applications in Hypertrophic Scars and Keloids. International journal of nanomedicine. vol 19. 2024-01-31. PMID:38293605. these hydrogels attenuate keloid and hypertrophic scar formation and progression by loading organic chemicals, drugs, or bioactive molecules (such as growth factors, genes, proteins/peptides, and stem cells/exosomes). 2024-01-31 2024-02-02 Not clear
Xiaoqing Liu, Yiming Sun, Jie Wang, Yongyuan Kang, Zhaolong Wang, Wangbei Cao, Juan Ye, Changyou Ga. A tough, antibacterial and antioxidant hydrogel dressing accelerates wound healing and suppresses hypertrophic scar formation in infected wounds. Bioactive materials. vol 34. 2024-01-23. PMID:38261887. a tough, antibacterial and antioxidant hydrogel dressing accelerates wound healing and suppresses hypertrophic scar formation in infected wounds. 2024-01-23 2024-01-26 Not clear
Boya Yu, Yalei Cao, Shiyi Li, Ruiqi Bai, Guiwen Zhou, Qiang Fu, Liming Liang, Weijie Gu, Lixia Zhang, Minliang Che. Identification and validation of CRLF1 and NRG1 as immune-related signatures in hypertrophic scar. Genomics. 2024-01-23. PMID:38262564. identification and validation of crlf1 and nrg1 as immune-related signatures in hypertrophic scar. 2024-01-23 2024-01-26 Not clear
Boya Yu, Yalei Cao, Shiyi Li, Ruiqi Bai, Guiwen Zhou, Qiang Fu, Liming Liang, Weijie Gu, Lixia Zhang, Minliang Che. Identification and validation of CRLF1 and NRG1 as immune-related signatures in hypertrophic scar. Genomics. 2024-01-23. PMID:38262564. hypertrophic scar (hts) is a prevalent chronic inflammatory skin disorder characterized by abnormal proliferation and extracellular matrix deposition and the precise mechanisms underlying hts remain elusive. 2024-01-23 2024-01-26 Not clear
Boya Yu, Yalei Cao, Shiyi Li, Ruiqi Bai, Guiwen Zhou, Qiang Fu, Liming Liang, Weijie Gu, Lixia Zhang, Minliang Che. Identification and validation of CRLF1 and NRG1 as immune-related signatures in hypertrophic scar. Genomics. 2024-01-23. PMID:38262564. this study aimed to identify and validate potential immune-related genes associated with hypertrophic scar formation. 2024-01-23 2024-01-26 Not clear
Suyeon Kim, Yu Ri Woo, Sang Hyun Cho, Jeong Deuk Lee, Hei Sung Ki. Clinical Efficacy of 5-Fluorouracil and Bleomycin in Dermatology. Journal of clinical medicine. vol 13. issue 2. 2024-01-23. PMID:38256469. this review outlines the action mechanisms of both drugs and compares their clinical efficacies in a wide range of dermatologic diseases including hypertrophic scar, wart, skin cancer, vascular malformation, hemangioma, and vitiligo, and discusses the overall safety of the drugs. 2024-01-23 2024-01-25 Not clear