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      SLA 처리된 임플란트 표면에서 상온대기압 공기 플라즈마가 세포활성에 미치는 영향

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      https://www.riss.kr/link?id=A99912888

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      다국어 초록 (Multilingual Abstract)

      Surface properties of titanium implants are known as important factors for successful osseointegration. The purpose of this research is to apply recently highlighted non-thermal atmospheric pressure plasma jet (NTAPPJ) on sand blast, large grit, acid etching(SLA) treated Titaniumi surface to improve the hydrophilicity and cellular response. The change in the chemical binding state of SLA-treated Ti before and after the NTAPPJ treatment were determined using field emission scanning electron icroscope, optical surface roughness system, X-ray photoelectron spectroscope, and water contact angle measuring system. MC3T3-E1 cells (murine osteoblastic cell line) attachments and proliferations were examined by the PrestoBlue reagent. This study found that the compressed air-based NTAPPJ treatment on SLA-treated Ti surface significantly increased the hydrophilicity and MC3T3-E1 cell attachments and proliferations. These results suggested that compressed air-based NTAPPJ treatment on the SLA-treated Ti surface had an effect on increasing attachments and proliferations of MC3T3-E1 cell for better osseointegration in vitro.
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      Surface properties of titanium implants are known as important factors for successful osseointegration. The purpose of this research is to apply recently highlighted non-thermal atmospheric pressure plasma jet (NTAPPJ) on sand blast, large grit, acid ...

      Surface properties of titanium implants are known as important factors for successful osseointegration. The purpose of this research is to apply recently highlighted non-thermal atmospheric pressure plasma jet (NTAPPJ) on sand blast, large grit, acid etching(SLA) treated Titaniumi surface to improve the hydrophilicity and cellular response. The change in the chemical binding state of SLA-treated Ti before and after the NTAPPJ treatment were determined using field emission scanning electron icroscope, optical surface roughness system, X-ray photoelectron spectroscope, and water contact angle measuring system. MC3T3-E1 cells (murine osteoblastic cell line) attachments and proliferations were examined by the PrestoBlue reagent. This study found that the compressed air-based NTAPPJ treatment on SLA-treated Ti surface significantly increased the hydrophilicity and MC3T3-E1 cell attachments and proliferations. These results suggested that compressed air-based NTAPPJ treatment on the SLA-treated Ti surface had an effect on increasing attachments and proliferations of MC3T3-E1 cell for better osseointegration in vitro.

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      참고문헌 (Reference)

      1 Kang BS, "XPS, AES and SEM analysis of recent dental implants" 5 (5): 2222-2229, 2009

      2 Dahotre NB, "Wetting behaviour of laser synthetic surface microtextures on Ti-6Al-4V for bioapplication" 368 (368): 1863-1889, 2010

      3 Kasemo B, "Tissue-integrated prostheses, Osseointegration in clinical dentistry Metal selection and surface characteristics. In:Bråanemark PI, Zarb GA, Albrektsson T(eds.),. Quintessence" 99-116, 1985

      4 Gu YX, "The roles of PI3K/Akt signaling pathway in regulating MC3T3-E1 preosteoblast proliferation and differentiation on SLA and SLActive titanium surfaces" 101 (101): 748-754, 2013

      5 Lee EJ, "The effects of non-thermal atmospheric pressure plasma jet on cellular activity at SLA-treated titanium surfaces" 13 : S36-S41, 2013

      6 Aita H, "The effect of ultraviolet functionalization of titanium on integration with bone" 30 (30): 1015-1025, 2009

      7 Lin YH, "The effect of titanium with electrochemical anodization on the response of the adherent osteoblast-like cell" 21 (21): 344-349, 2012

      8 Tugulu S, "Preparation of superhydrophilic microrough titanium implant surfaces by alkali treatment" 21 (21): 2751-2763, 2010

      9 Morent R, "Plasma Surface Modification of Biodegradable Polymers: A Review" 8 (8): 171-190, 2011

      10 Sawase T, "Photo-induced hydrophilicity enhances initial cell behavior and early bone apposition" 19 (19): 491-496, 2008

      1 Kang BS, "XPS, AES and SEM analysis of recent dental implants" 5 (5): 2222-2229, 2009

      2 Dahotre NB, "Wetting behaviour of laser synthetic surface microtextures on Ti-6Al-4V for bioapplication" 368 (368): 1863-1889, 2010

      3 Kasemo B, "Tissue-integrated prostheses, Osseointegration in clinical dentistry Metal selection and surface characteristics. In:Bråanemark PI, Zarb GA, Albrektsson T(eds.),. Quintessence" 99-116, 1985

      4 Gu YX, "The roles of PI3K/Akt signaling pathway in regulating MC3T3-E1 preosteoblast proliferation and differentiation on SLA and SLActive titanium surfaces" 101 (101): 748-754, 2013

      5 Lee EJ, "The effects of non-thermal atmospheric pressure plasma jet on cellular activity at SLA-treated titanium surfaces" 13 : S36-S41, 2013

      6 Aita H, "The effect of ultraviolet functionalization of titanium on integration with bone" 30 (30): 1015-1025, 2009

      7 Lin YH, "The effect of titanium with electrochemical anodization on the response of the adherent osteoblast-like cell" 21 (21): 344-349, 2012

      8 Tugulu S, "Preparation of superhydrophilic microrough titanium implant surfaces by alkali treatment" 21 (21): 2751-2763, 2010

      9 Morent R, "Plasma Surface Modification of Biodegradable Polymers: A Review" 8 (8): 171-190, 2011

      10 Sawase T, "Photo-induced hydrophilicity enhances initial cell behavior and early bone apposition" 19 (19): 491-496, 2008

      11 McCombs GB, "New discoveries and directions for medical, dental and dental hygiene research: low temperature atmospheric pressure plasma" 8 (8): 10-15, 2010

      12 Meredith DO, "Is surface chemical composition important for orthopaedic implant materials" 18 : 405-413, 2007

      13 Lee DS, "Improvement of Hydrophilicity of Interconnected Porous Hydroxyapatite by Dielectric Barrier Discharge Plasma Treatment" 39 (39): 2166-2167, 2011

      14 Ungvari K, "Effects on titanium implant surfaces of chemical agents used for the treatment of peri-implantitis" 94 (94): 222-229, 2010

      15 Anselme K, "Effect of a goldpalladium coating on the long-term adhesion of human osteoblasts on biocompatible metallic materials" 200 : 6325-6330, 2006

      16 Duske K, "Atmospheric plasma enhances wettability and cell spreading on dental implant metals" 39 (39): 400-407, 2012

      17 Uggeri J, "Adhesion of human osteoblasts to titanium: A morpho- functional analysis with confocal microscopy" 41 (41): 210-219, 2010

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2026 평가예정 재인증평가 신청대상 (재인증)
      2020-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2014-11-11 학회명변경 한글명 : 대한치과기재학회 -> 대한치과재료학회
      영문명 : The Korea Research Society For Dental Materials -> Korean Society For Dental Materials
      KCI등재
      2014-11-11 학술지명변경 한글명 : 대한치과기재학회지 -> 대한치과재료학회지
      외국어명 : J. Korea Res. Soc. Dent. Mater. -> Korean Journal of Dental Materials
      KCI등재
      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2010-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2000-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.33 0.33 0.25
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.2 0.18 0.408 0.07
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