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      스트렙토조토신 유도 당뇨 흰쥐에서 전기자극이 상처치유와 피부 비만세포에 미치는 영향 = Effects of Electrical Stimulation on Wound Healing and Skin Mast Cells in Streptozotocin-Induced Diabetic Rats

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      https://www.riss.kr/link?id=A101247792

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      다국어 초록 (Multilingual Abstract)

      The aim of this study was to investigate the effect of electrical stimulation on healing of impaired wound and alteration of mast cells in experimental diabetic rats. Thirty male Sprague-Dawley rats were divided into three groups : incision (control),...

      The aim of this study was to investigate the effect of electrical stimulation on healing of impaired wound and alteration of mast cells in experimental diabetic rats. Thirty male Sprague-Dawley rats were divided into three groups : incision (control), diabetes+incision (diabetes) and diabetes + incision + electrical stimulation (D/ES). Diabetes was induced in rats by streptozotocin (STZ) injection (60 mg/kg, one time) and 20 mm length incision wounds were created on the back after shaving hair. The electrical stimulation rats were treated with a current intensity of 30~50 V at 120 pps and 140 μs for 10 days from 3 days after STZ injection. The lesion and adjacent skin tissues were fixed with 10% buffered formalin, embedded with paraffin. For wound healing analysis, hematoxylin-eosin (HE) and picrosirius red staining were performed. Mast cells (MC) were stained with toluidine blue (pH 0.5) and quantified at ×200 using a light microscope. The density of keratinocyte proliferation and microvessels in skin tissues were analyzed using a computerized image analysis system on sections immunostained with proliferative cell nuclear antigen (PCNA) and α-smooth muscle actin (α-SMA), respectively. The results showed that the wound healing rate, collagen density and neoepidermis thickness, density of PCNA-positive cells and density of α-SMA-positive vessels were significantly higher in D/ES rats than in diabetic rats. The density of MCs and degranulated MCs in D/ES rats were also significantly higher than those in diabetic rats. These findings suggest that the electrical stimulation may promote the tissue repair process by accelerating collagen production, keratinocyte proliferation and angiogenesis in the diabetic rats, and MCs are required for wound healing of skin in rats.

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      참고문헌 (Reference)

      1 Jude EB, "Transforming growth factor-beta 1, 2, 3 and receptor type I and II in diabetic foot ulcers" 19 (19): 440-447, 2002

      2 Pavlovic MD, "The prevalence of cutaneous manifestation in young patients with type 1 diabetes" 30 (30): 1964-1967, 2007

      3 Blakytny R, "The molecular biology of chronic wounds and delayed healing in diabetes" 23 (23): 594-608, 2006

      4 Maurer M, "The mast cell products histamine and serotonin stimulate and TNF-alpha inhibits the proliferation of murine epidermal keratinocytes in situ" 16 (16): 79-84, 1997

      5 Deiters U, "The macrophage-activating lipopeptide-2 accelerates wound healing in diabetic mice" 13 (13): 731-739, 2004

      6 Stallmeyer B, "The function of nitric oxide in wound repair : inhibition of inducible nitric oxide-synthase severely impairs wound reepithelialization" 113 : 1090-1093, 1999

      7 Metze D, "The biology of the skin" Parthenon Publishing 265-270, 2001

      8 Goodson WH 3rd, "Studies of wound healing in experimental diabetes mellitus" 22 (22): 221-227, 1977

      9 Werner S, "Regulation of wound healing by growth factors and cytokines" 83 (83): 835-870, 2003

      10 Vodovotz Y, "Regulation of transforming growth factor beta I by nitric oxide" 59 : 2142-2144, 1999

      1 Jude EB, "Transforming growth factor-beta 1, 2, 3 and receptor type I and II in diabetic foot ulcers" 19 (19): 440-447, 2002

      2 Pavlovic MD, "The prevalence of cutaneous manifestation in young patients with type 1 diabetes" 30 (30): 1964-1967, 2007

      3 Blakytny R, "The molecular biology of chronic wounds and delayed healing in diabetes" 23 (23): 594-608, 2006

      4 Maurer M, "The mast cell products histamine and serotonin stimulate and TNF-alpha inhibits the proliferation of murine epidermal keratinocytes in situ" 16 (16): 79-84, 1997

      5 Deiters U, "The macrophage-activating lipopeptide-2 accelerates wound healing in diabetic mice" 13 (13): 731-739, 2004

      6 Stallmeyer B, "The function of nitric oxide in wound repair : inhibition of inducible nitric oxide-synthase severely impairs wound reepithelialization" 113 : 1090-1093, 1999

      7 Metze D, "The biology of the skin" Parthenon Publishing 265-270, 2001

      8 Goodson WH 3rd, "Studies of wound healing in experimental diabetes mellitus" 22 (22): 221-227, 1977

      9 Werner S, "Regulation of wound healing by growth factors and cytokines" 83 (83): 835-870, 2003

      10 Vodovotz Y, "Regulation of transforming growth factor beta I by nitric oxide" 59 : 2142-2144, 1999

      11 Masini E, "Rat mast cells synthesize a nitric oxide like-factor which modulates the release of histamine" 33 (33): 61-63, 1991

      12 Amadeu TP, "Nitric oxide synthesis inhibition alters rat cutaneous wound healing" 33 (33): 465-473, 2006

      13 Ziche M, "Nitric oxide and angiogenesis" 50 : 139-142, 2000

      14 Katayama I, "Mastcell-derived mediators induce epidermal cell proliferation : clue for lichenified skin lesion formation in atopic dermatitis" 98 (98): 410-414, 1992

      15 Levi-Schaffer F, "Mast cells enhance migration and proliferation of fibroblasts into an in vitro wound" 188 (188): 42-49, 1990

      16 Ramos BF, "Mast cell mediators regulate vascular permeability changes in Arthus reaction" 262 (262): 559-565, 1992

      17 Blakytny R, "Lack of insulin-like growth factor 1(IGF1)in the basal keratinocyte layer of diabetic skin and diabetic foot ulcers" 190 (190): 589-594, 2000

      18 Canseven AG, "Is it possible to trigger collagen synthesis by electrical current in skin wound?" 33 (33): 223-227, 1996

      19 Seifter E, "Impaired wound healing in streptozotocin diabetes. Prevention by supplemental vitamin A" 194 (194): 42-50, 1981

      20 Ma L, "Endothelial nitric oxide synthase modulates gastric ulcer healing in rats" 279 (279): 341-346, 2000

      21 Bourguignon GJ, "Electrical stimulation of protein and DNA synthesis in human fibroblast" 1 (1): 398-402, 1987

      22 Lee JH, "Electrical stimulation induces TGF-β1 mRNA expression and collagen deposition in skin wound of rat" 2007

      23 Kauhanen P, "Effects of skin mast cells on bleeding time and coagulation activation at the site of platelet plug formation" 79 (79): 843-847, 1998

      24 Guzelsu N, "Effect of electromagnetic stimulation with different waveforms on cultured chick tendon fibroblasts" 15 (15): 115-131, 1994

      25 Fahey TJ 3rd, "Diabetes impairs the late inflammatory response to wound healing" 50 (50): 308-313, 1991

      26 Singer AJ, "Cutaneous wound healing" 341 (341): 738-746, 1999

      27 Gum SL, "Combined ultrasound, electrical stimulation, and laser promote collagen synthesis with moderate changes in tendon biomechanics" 76 (76): 288-296, 1997

      28 Connelly K, "Clinically relevant models of diabetic cardiac complications" 101 (101): 78-80, 2007

      29 Brem H, "Cellular and molecular basis of wound healing in diabetes" 117 (117): 1219-1222, 2007

      30 Tsuboi R, "A wound healing model using healing-impaired diabetic mice" 19 (19): 673-675, 1992

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      학술지 이력

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      영문명 : The Korean Society for Clinical Laboratory Science -> Korean Society for Clinical Laboratory Science
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