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      토끼에서 αvβ5 인테그린 항체의 결막하주사에 의한 각막신생혈관 억제효과

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      Purpose: To investigate the efficacy of a subconjunctival injection of αvβ5 integrin antibody on corneal angiogenesis induced by chemical epithelial denudation in a rabbit eye model. Methods: One week after debridement by heptanol, rabbits were treated with a subconjunctival injection of αvβ5 integrin antibody or control immunoglobulin G weekly for 2 weeks. Rabbits that did not receive injection after debridement served as the untreated group. The percentage of neovascularized corneal area was calculated by biomicroscopy, and the sectioned area and number of new vessels were calculated by histological examinations. Results: At 7 days after the first injection, αvβ5 integrin antibody-treated eyes had 9.5% (P=0.02) and 6.8% (P=0.03) less neovascularized corneal area than vector-treated eyes and untreated eyes, respectively. At 7 days after the second injection, αvβ5 integrin antibody-treated eyes had 21.1% (P=0.02) and 18.3% (P=0.02) less neovascularized corneal area than vector-treated eyes and untreated eyes, respectively. Light microscopic examination showed a smaller neovascularized corneal area and a reduced number of new vessels in the αv β5 integrin antibody-treated eyes compared to the control eyes. Conclusions: Subconjunctival injection of αvβ5 integrin antibody effectively reduces experimental corneal neovascularization induced by chemical injury, and could be used as a corneal angiogenesis inhibitor in the future.
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      Purpose: To investigate the efficacy of a subconjunctival injection of αvβ5 integrin antibody on corneal angiogenesis induced by chemical epithelial denudation in a rabbit eye model. Methods: One week after debridement by heptanol, rabbits were trea...

      Purpose: To investigate the efficacy of a subconjunctival injection of αvβ5 integrin antibody on corneal angiogenesis induced by chemical epithelial denudation in a rabbit eye model. Methods: One week after debridement by heptanol, rabbits were treated with a subconjunctival injection of αvβ5 integrin antibody or control immunoglobulin G weekly for 2 weeks. Rabbits that did not receive injection after debridement served as the untreated group. The percentage of neovascularized corneal area was calculated by biomicroscopy, and the sectioned area and number of new vessels were calculated by histological examinations. Results: At 7 days after the first injection, αvβ5 integrin antibody-treated eyes had 9.5% (P=0.02) and 6.8% (P=0.03) less neovascularized corneal area than vector-treated eyes and untreated eyes, respectively. At 7 days after the second injection, αvβ5 integrin antibody-treated eyes had 21.1% (P=0.02) and 18.3% (P=0.02) less neovascularized corneal area than vector-treated eyes and untreated eyes, respectively. Light microscopic examination showed a smaller neovascularized corneal area and a reduced number of new vessels in the αv β5 integrin antibody-treated eyes compared to the control eyes. Conclusions: Subconjunctival injection of αvβ5 integrin antibody effectively reduces experimental corneal neovascularization induced by chemical injury, and could be used as a corneal angiogenesis inhibitor in the future.

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      참고문헌 (Reference)

      1 "antagonists promote tumor regression by inducing apoptosis of angiogenic blood vessels" 1157-64,

      2 "Topical application of methotrexate for inhibition of corneal angiogenesis" 237 : 920-7, 1999

      3 "The inhibitory Effect of Ticlopidine on VEGF induced Corneal Neovascularization" 44 : 1392-6, 2003

      4 "Thalidomide prevents donor corneal graft neovascularization in an alkali burn model of corneal angiogenesis" 52 : 476-82, 2002

      5 "Supression of corneal neovascularization by culture supernatant of human amniotic cells" 21 : 62-7, 2002

      6 "Roles of thrombospondin-1 and 2 in regulating corneal and iris angiogenesis" 45 : 1117-24, 2004

      7 "Requirement of vascular integrin alpha v beta 3 for angiogenesis" 264 : 569-71, 1994

      8 "Quantitation of corneal neovascularization using computerized image analysis" 58 : 473-9, 1988

      9 "Nitric oxide-dependent cytoskeletal changes and inhibition of endothelial cell migration contribute to the suppression of angiogenesis by RAD50 gene transfer" 553 : 56-62, 2003

      10 "Mouse macrophage metalloelastase gene transfer into a murine melanoma suppresses primary tumor growth by halting angiogenesis" Clin Cancer Res 6 : 1647-54, 2000

      1 "antagonists promote tumor regression by inducing apoptosis of angiogenic blood vessels" 1157-64,

      2 "Topical application of methotrexate for inhibition of corneal angiogenesis" 237 : 920-7, 1999

      3 "The inhibitory Effect of Ticlopidine on VEGF induced Corneal Neovascularization" 44 : 1392-6, 2003

      4 "Thalidomide prevents donor corneal graft neovascularization in an alkali burn model of corneal angiogenesis" 52 : 476-82, 2002

      5 "Supression of corneal neovascularization by culture supernatant of human amniotic cells" 21 : 62-7, 2002

      6 "Roles of thrombospondin-1 and 2 in regulating corneal and iris angiogenesis" 45 : 1117-24, 2004

      7 "Requirement of vascular integrin alpha v beta 3 for angiogenesis" 264 : 569-71, 1994

      8 "Quantitation of corneal neovascularization using computerized image analysis" 58 : 473-9, 1988

      9 "Nitric oxide-dependent cytoskeletal changes and inhibition of endothelial cell migration contribute to the suppression of angiogenesis by RAD50 gene transfer" 553 : 56-62, 2003

      10 "Mouse macrophage metalloelastase gene transfer into a murine melanoma suppresses primary tumor growth by halting angiogenesis" Clin Cancer Res 6 : 1647-54, 2000

      11 "Involvement of integrins v 3 and v 5 in ocular neovascular diseases" 93 : 9764-9, 1996

      12 "Integrins:versatility,modulation and signaling in cell adhesion" 69 : 11-25, 1992

      13 "Integrin a family of cell surface receptors" 48 : 549-54, 1987

      14 "Inhibition of retinal angiogenesis by peptides derived from thrombospondin-1" 41 : 2378-88, 2000

      15 "Inhibition of rat corneal angiogenesis by 16-kDa prolactin and by endogenous prolactin-like molecules" 40 : 2498-505, 1999

      16 "Inhibition of inflammatory corneal aniogenensis by TNP-470" 42 : 2510-6, 2001

      17 "Inhibition of experimental angiogenesis of cornea by somatostatin" 241 : 63-9, 2003

      18 "Inhibition of corneal neovascularization by v-integrin antagonists in the rat" 238 : 88-93, 2000

      19 "Inhibition of corneal neovascularization by arally administered thalidomide" 38 : 2098-107, 1997

      20 "Identification of a heterodimeric RGD binding site on the vitronectin receptor" 2168-72,

      21 "Extracellular fragment of brain-specific angiogenesis inhibitor 1 suppresses endothelial cell proliferation by blocking v5 integrin" 294 : 172-84, 2004

      22 "Expression of integrins and MMPs during alkaline-burn-induced corneal angiogenesis" 43 : 955-62, 2001

      23 "Endostatin localization in the cornea" 41 : 2000

      24 "Effect of prednisolone and medroxy progesterone on corneal wound healing,ulceration,and neovascularization" 101 : 640-3, 1983

      25 "Effect of inhibitors of arachidonic acid metabolism on corneal neovascularization in the rat" 30 : 1588-93, 1989

      26 "Definition of two angiogenic pathways by distinct v integrins" 270 : 1500-2, 1995

      27 "Corneal neovascularization induced by xenografts or chemical cautery" 38 : 274-82, 1997

      28 "Corneal neo-vascualrization" 12 : 242-9, 2001

      29 "Confocal microscopic analysis of integrin expression on the microvasculature and its sprouts in the neonatal foreskin" 103 : 381-6, 1994

      30 "Characterization of mouse brain-specific angiogenesis inhibitor 1" and phyta (and phyta): 223-37, 2001

      31 "Cell surface receptors for extracellular matirx molecules" 13 : 179-205, 1987

      32 "Antiangiogenic effects of retinoids on corneal neovascularization" 37 : 1413-21, 1996

      33 "Antagonists of integrin v 3 inhibit retinal neovascularization in a murine model" 75 : 563-73, 1996

      34 "Angiostatin inhibits and regresses corneal neovascularization" 120 : 1063-8, 2002

      35 "Angiogenesis in cancer,vascular,rheumatoid and other disease" 1 : 27-31, 1995

      36 "A peptidomimetic antagonist of the integrin alpha(v)beta3 inhibits Leydig cell tumor growth and the development of hypercalcemia malignancy" 58 : 1930-5, 1998

      37 "A novel strategy for tumor angiogenesis-targeted gene therapy:generation of angiostatin from endogenous plasminigen by protease gene transfer" 7 : 589-96, 2000

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      연월일 이력구분 이력상세 등재구분
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      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2013-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2006-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2005-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2003-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.22 0.22 0.22
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.23 0.23 0.366 0.02
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