All Relations between scar and hypertrophic

Publication Sentence Publish Date Extraction Date Species
Peng-Hui Wang, Ben-Shian Huang, Huann-Cheng Horng, Chang-Ching Yeh, Yi-Jen Che. Wound healing. Journal of the Chinese Medical Association : JCMA. vol 81. issue 2. 2018-09-18. PMID:29169897. aberration of wound healing, such as excessive wound healing (hypertrophic scar and keloid) or chronic wound (ulcer) impairs the normal physical function. 2018-09-18 2023-08-13 Not clear
[The application of iTRAQ quantitative proteomics in familial keloid]. Zhonghua zheng xing wai ke za zhi = Zhonghua zhengxing waike zazhi = Chinese journal of plastic surgery. vol 33. issue 2. 2018-09-17. PMID:30070812. to identify the special biomarkers and the differentially expressed proteins in keloid tissue and to explore the pathogenesis characteristics of familial keloid by comparing the protein expression differences among familial keloid(fk),sporadic keloid (sk),hypertrophy scar (hs),normal scar (ns). 2018-09-17 2023-08-13 Not clear
Hae Woong Lee, Chang Gyun Kim, Ji Sun Song, In Chang Koh, Hoon Kim, Kyu Nam Ki. Management of epidermal cysts arising from scar tissues: A retrospective clinical study. Medicine. vol 97. issue 35. 2018-09-06. PMID:30170469. two patients with anterior chest wall scars, 1 with a shoulder scar, and 1 with an ear lobule scar had keloid scars, whereas the other patients had hypertrophic scars. 2018-09-06 2023-08-13 Not clear
Hae Woong Lee, Chang Gyun Kim, Ji Sun Song, In Chang Koh, Hoon Kim, Kyu Nam Ki. Management of epidermal cysts arising from scar tissues: A retrospective clinical study. Medicine. vol 97. issue 35. 2018-09-06. PMID:30170469. finally, postoperative scar care is necessary to prevent hypertrophic and keloid scar recurrences. 2018-09-06 2023-08-13 Not clear
Lianbo Zhang, Haiyan Qin, Zhuoxia Wu, Wanying Chen, Guang Zhan. Identification of the potential targets for keloid and hypertrophic scar prevention. The Journal of dermatological treatment. vol 29. issue 6. 2018-09-04. PMID:29271272. identification of the potential targets for keloid and hypertrophic scar prevention. 2018-09-04 2023-08-13 Not clear
Jing-Chun Zhao, Bo-Ru Zhang, Lei Hong, Kai Shi, Wei-Wei Wu, Jia-Ao Y. Extracorporeal shock wave therapy with low-energy flux density inhibits hypertrophic scar formation in an animal model. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393337. extracorporeal shock wave therapy with low-energy flux density inhibits hypertrophic scar formation in an animal model. 2018-08-21 2023-08-13 rabbit
Jing-Chun Zhao, Bo-Ru Zhang, Lei Hong, Kai Shi, Wei-Wei Wu, Jia-Ao Y. Extracorporeal shock wave therapy with low-energy flux density inhibits hypertrophic scar formation in an animal model. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393337. hypertrophic scar is characterized by excessive deposits of collagen during skin wound healing, which could become a challenge to clinicians. 2018-08-21 2023-08-13 rabbit
Jing-Chun Zhao, Bo-Ru Zhang, Lei Hong, Kai Shi, Wei-Wei Wu, Jia-Ao Y. Extracorporeal shock wave therapy with low-energy flux density inhibits hypertrophic scar formation in an animal model. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393337. this study assessed the effects of the extracorporeal shock wave therapy (eswt) on hypertrophic scar formation and the underlying gene regu-lation. 2018-08-21 2023-08-13 rabbit
Jing-Chun Zhao, Bo-Ru Zhang, Lei Hong, Kai Shi, Wei-Wei Wu, Jia-Ao Y. Extracorporeal shock wave therapy with low-energy flux density inhibits hypertrophic scar formation in an animal model. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393337. a rabbit ear hypertrophic scar model was generated and randomly divided into three groups: l-eswt group to receive l-eswt (energy flux density of 0.1 mj/mm2), h-eswt (energy flux density of 0.2 mj/mm2) and sham eswt group (s-eswt). 2018-08-21 2023-08-13 rabbit
Jing-Chun Zhao, Bo-Ru Zhang, Lei Hong, Kai Shi, Wei-Wei Wu, Jia-Ao Y. Extracorporeal shock wave therapy with low-energy flux density inhibits hypertrophic scar formation in an animal model. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393337. hypertrophic scar tissues were then collected and stained with hematoxylin and eosin (h&e) and masson's trichrome staining, respectively, to assess scar elevation index (sei), fibroblast density and collagen fiber arrangement. 2018-08-21 2023-08-13 rabbit
Jing-Chun Zhao, Bo-Ru Zhang, Lei Hong, Kai Shi, Wei-Wei Wu, Jia-Ao Y. Extracorporeal shock wave therapy with low-energy flux density inhibits hypertrophic scar formation in an animal model. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393337. expression of cell proliferation marker proliferating cell nuclear antigen (pcna) and α-smooth muscle actin (α-sma) were assessed using rt-pcr and immunohistochemistry in hypertrophic scar tissues. 2018-08-21 2023-08-13 rabbit
Jing-Chun Zhao, Bo-Ru Zhang, Lei Hong, Kai Shi, Wei-Wei Wu, Jia-Ao Y. Extracorporeal shock wave therapy with low-energy flux density inhibits hypertrophic scar formation in an animal model. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393337. in conclusion, l-eswt could be effective on suppression of hypertrophic scar formation by inhibition of scar elevation index and fibroblast density as well as α-sma expression in hypertrophic scar tissues of the rabbit model. 2018-08-21 2023-08-13 rabbit
Longxiang Tu, Qi Huang, Shangfeng Fu, Dewu Li. Aberrantly expressed long noncoding RNAs in hypertrophic scar fibroblasts in vitro: A microarray study. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393369. aberrantly expressed long noncoding rnas in hypertrophic scar fibroblasts in vitro: a microarray study. 2018-08-21 2023-08-13 Not clear
Longxiang Tu, Qi Huang, Shangfeng Fu, Dewu Li. Aberrantly expressed long noncoding RNAs in hypertrophic scar fibroblasts in vitro: A microarray study. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393369. a hypertrophic scar is the result of abnormal repair of the body after trauma. 2018-08-21 2023-08-13 Not clear
Longxiang Tu, Qi Huang, Shangfeng Fu, Dewu Li. Aberrantly expressed long noncoding RNAs in hypertrophic scar fibroblasts in vitro: A microarray study. International journal of molecular medicine. vol 41. issue 4. 2018-08-21. PMID:29393369. the present study investigated the profiles of differentially expressed lncrnas between fibroblasts derived from a hypertrophic scar and normal skin, and explored the possible mechanisms underlying the development of hypertrophic scars. 2018-08-21 2023-08-13 Not clear
Ho Jun Lee, Yong Ju Jan. Recent Understandings of Biology, Prophylaxis and Treatment Strategies for Hypertrophic Scars and Keloids. International journal of molecular sciences. vol 19. issue 3. 2018-08-16. PMID:29498630. there have been many studies on hypertrophic scars and keloids; but the mechanisms underlying scar formation have not yet been well established, and prophylactic and treatment strategies remain unsatisfactory. 2018-08-16 2023-08-13 Not clear
Dai-Zun Zhang, Feng Liu, Wen-Lin Xiao, Wen-Wen Con. Longitudinal Study of Scar Hyperplasia Formation Following Cleft Lip Wound Healing. The Journal of craniofacial surgery. vol 29. issue 2. 2018-08-07. PMID:29381621. the purpose of this study was to observe the hyperplasia trend of scar after the cleft lip surgery in a rabbit animal model, and determine the time-point of the highest hypertrophic degree of scar after cleft lip repair. 2018-08-07 2023-08-13 human
Zixian Chen, Guoqian Yin, Xinyuan Pan, Siding Lu, Shenghua Tang, Qinxi Wei, Jiangying Zh. [Expression of Egr-1, Nab2 and Cav-1 and its relationship with scar hyperplasia]. Zhonghua zheng xing wai ke za zhi = Zhonghua zhengxing waike zazhi = Chinese journal of plastic surgery. vol 32. issue 6. 2018-08-06. PMID:30067326. objective to investigate the expression of early growth response protein 1 (egr-1),ngfi-a binding protein 2 (nab2) and caveolin 1 (cav-1) in normal skin,flat-cicatrix and hypertrophic scar,and explore its role in the formation of hypertrophic scar.methods the expression of egr-1,nab2 and cav-1 protein in 9 normal skin tissues,8 flat-cicatrix tissues and 9 hypertrophic scar tissues were examined with immunohistochemistry sp method and were analyzed statistically.results the expression of egr-1 in epidermal cells of hypertrophic scar was significantly higher than that in normal skin and flat scar tissue.the expression of egr-1 increased in the course of scar proliferation.the distribution patterns of nab2 were different from egr-1.the expression of egr-1 was increased,while expression of nab2 was decreased.the expression of cav-1 in normal skin and flat-cicatrix was significantly higher than that in hypertrophic scar.conclusions the expression of egr-1,nab2 and cav-1 is closely related to the formation of hypertrophic scar,and the up-regulated expression of egr-1 and the deficient expression of nab2 and cav-1 may be the indicators of the progress of formation of hypertrophic scar. 2018-08-06 2023-08-13 Not clear
[Long-term effect of botulinum toxin type A injection on hypertrophic acne scar]. Zhonghua zheng xing wai ke za zhi = Zhonghua zhengxing waike zazhi = Chinese journal of plastic surgery. vol 32. issue 6. 2018-08-06. PMID:30067322. [long-term effect of botulinum toxin type a injection on hypertrophic acne scar]. 2018-08-06 2023-08-13 Not clear
[Long-term effect of botulinum toxin type A injection on hypertrophic acne scar]. Zhonghua zheng xing wai ke za zhi = Zhonghua zhengxing waike zazhi = Chinese journal of plastic surgery. vol 32. issue 6. 2018-08-06. PMID:30067322. to investigate both the short-and long-term effect of botulinum toxin type a (btxa) injection on hypertrophic ache scar. 2018-08-06 2023-08-13 Not clear