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NTIS 바로가기大韓韓醫學方劑學會誌 = Herbal formula science, v.25 no.2, 2017년, pp.123 - 134
Wounds are commonly created during almost every kind of surgery, trauma and skin diseases. Delayed wound healing affects a plenty of patients and requires prolonged treatments that seriously reduce the quality of life for patients. Skin damage involving large areas or great severity can lead to disa...
핵심어 | 질문 | 논문에서 추출한 답변 |
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상처치유는 어떤 과정들을 거쳐 진행되는가? | 상처치유는 조직의 염증(inflammation), 이동(migration), 증식(proliferation), 재상피화(re-epithelialization), 재구축(remodeling)의 복잡한 과정을 거쳐 진행된다3). 상처치유의 각 과정들은 서로 긴밀하게 연결되어 있으며, 각 단계들이 모두 상처조직의 완전하고 적절한 회복에 필수적인 역할을 하게 된다. | |
VEGF는 무엇인가? | VEGF는 granulation tissue의 형성에 필수적인신생혈관형성(angiogenesis)를 자극하는 가장 중요한 cytokine중에 하나이다7). VEGF 발현의 상승은 새롭게 형성된 모세혈관의 수를 늘려서 granulation tissue의 형성을 촉진하여 결과적으로 혈관형성과 상처치유를 증가시키게 한다8). | |
TGF-β1은 상처 주변부에 어떤 영향을 미치는가? | 또한, TGF-β1은 전체상처치유 과정에 걸쳐서 중요한 역할을 하는데, 섬유 모세포의 증식과 섬유모세포 안에서의 아교질의 생성 및 상처육아조직의 형성을 조절하며, 육아조직에서의 섬유모세포의 근육섬유모세포로의 분화를 촉진하는 것으로 알려졌다9). 또한 상처 주변부의 신생혈관 형성과 상피수축을 촉진하는 데 영향을 미치는 것으로 밝혀졌다10-12). 이전 연구를 통해 TGF-β1 유전자제거 생쥐(knockout transgenic mouse)에서 재상피화과정이 지연되는 것을 발견하였으며, 이는 각질세포 이동의 저해에 의한 것으로 밝혀졌다10). |
Hayouni EA, Miled K, Boubaker S, Bellasfar Z, Abedrabba M, Iwaski H, Oku H, Matsui T, Limam F, Hamdi M. Hydroalcoholic extract based-ointment from Punica granatum L. peels with enhanced in vivo healing potential on dermal wounds. Phytomedicine. 2011;18(11):976-984.
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Bhaskar Rao A, Prasad E, Deepthi SS, Haritha V, Ramakrishna S, Madhusudan K, Surekha MV, Venkata Rao YS. Wound healing: a new perspective on glucosylated tetrahydrocurcumin. Drug Des Devel Ther. 2015;9:3579-3588.
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Johnson KE, Wilgus TA. Vascular Endothelial Growth Factor and Angiogenesis in the Regulation of Cutaneous Wound Repair. Adv Wound Care. 2014;3(10):647-661
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Li WW, Talcott KE, Zhai AW, Kruger EA, Li VW. The role of therapeutic angiogenesis in tissue repair and regeneration. Adv Skin Wound Care. 2005;18(9):491-500.
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Wang Y, Han G, Guo B, Huang J. Hyaluronan oligosaccharides promote diabetic wound healing by increasing angiogenesis. Pharmacol Rep. 2016;68(6):1126-1132.
Pereira Lde P, Mota MR, Brizeno LA, Nogueira FC, Ferreira EG, Pereira MG, Assreuy AM. Modulator effect of a polysaccharide-rich extract from Caesalpinia ferrea stem barks in rat cutaneous wound healing: Role of TNF- ${\alpha}$ , IL-1 ${\beta}$ , NO, TGF- ${\beta}$ . J Ethnopharmacol. 2016;187:213-223.
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Okizaki S, Ito Y, Hosono K, Oba K, Ohkubo H, Amano H, Shichiri M, Majima M. Suppressed recruitment of alternatively activated macrophages reduces TGF- ${\beta}$ 1 and impairs wound healing in streptozotocin-induced diabetic mice. Biomed Pharmacother. 2015;70:317-325.
Jiang Keming, Bao Minghui. Jian ming fang ji ci dian. Shanghai: Shanghai ke xue ji shu chu ban she; 1989:1038.
Park SN, Jung HS, Lee JY. Effect of Sopungsan in BALB/c Mouse Model of Atopic Dermatitis. The Journal of Kyung Hee University. 2004;20(2):129-141.
Seo HS, Roh SS. The study on the Inhibitory effect of Allerg by SoPungSan. The Journal of Oriental Medical Surgery, Ophthalmology & Otolaryngology. 2000;13(1):22-29.
Gul Satar NY, Cangul IT, Topal A, Kurt H, Ipek V, Onel GI. The effects of Tarantula cubensis venom on open wound healing in rats. J Wound Care. 2017;26(2):66-71.
Yaseen Khan M, Ali SA, Pundarikakshudu K. Wound healing activity of extracts derived from Shorea robusta resin. Pharm Biol. 2016;54(3):542-548.
Shen HM, Chen C, Jiang JY, Zheng YL, Cai WF, Wang B, Ling Z, Tang L, Wang YH, Shi GG. The N-butyl alcohol extract from Hibiscus rosa-sinensis L. flowers enhances healing potential on rat excisional wounds. J Ethnopharmacol. 2017;198:291-301.
Han G, Ceilley R. Chronic Wound Healing: A Review of Current Management and Treatments. Adv Ther. 2017;34(3):599-610.
Woodley DT. Distinct Fibroblasts in the Papillary and Reticular Dermis: Implications for Wound Healing. Dermatol Clin. 2017;35(1):95-100.
Li M, Zhao Y, Hao H, Han W, Fu X. Theoretical and practical aspects of using fetal fibroblasts for skin regeneration. Ageing Res Rev. 2017;36:32-41.
Dik B, Bas AL, Yazihan N. The effect of midkine on growth factors and oxidative status in an experimental wound model in diabetic and healthy rats. Can J Physiol Pharmacol. 2016:1-6.
Ram M, Singh V, Kumawat S, Kumar D, Lingaraju MC, Uttam Singh T, Rahal A, Tandan SK, Kumar D. Deferoxamine modulates cytokines and growth factors to accelerate cutaneous wound healing in diabetic rats. Eur J Pharmacol. 2015;764:9-21.
Wang Y, Han G, Guo B, Huang J. Hyaluronan oligosaccharides promote diabetic wound healing by increasing angiogenesis. Pharmacol Rep. 2016;68(6):1126-1132.
Lin LX, Wang P, Wang YT, Huang Y, Jiang L, Wang XM. Aloe vera and Vitis vinifera improve wound healing in an in vivo rat burn wound model. Mol Med Rep. 2016;13(2):1070-1076.
Wedler J, Daubitz T, Schlotterbeck G, Butterweck V. In vitro anti-inflammatory and wound-healing potential of a Phyllostachys edulis leaf extract-identification of isoorientin as an active compound. Planta Med. 2014;80(18): 1678-1684.
Fan ZW, Pang YX, Wang K, Yu FL, Wang D, Yang Q, Ma QS, Li XT, Zou J, Zhang WQ, Wu LF. Blumea balsamifera Oil for the Acceleration of Healing of Burn Injuries. Molecules. 2015;20(9):17166-17179.
Tamri P, Hemmati A, Boroujerdnia MG. Wound healing properties of quince seed mucilage: in vivo evaluation in rabbit full-thickness wound model. Int J Surg. 2014;12(8):843-847.
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