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      정전분무법의 분사속도가 티타니아 나노튜브의 테트라사이클린 코팅에 미치는 영향

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      https://www.riss.kr/link?id=A99893231

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      다국어 초록 (Multilingual Abstract)

      The aim of this study was to evaluate coating method by flow rate of injection nozzle using electro spray deposition (ESD) after titania nanotube formation by anodic oxidation. The titania nanotube specimens were anodized by 0.5 w/v% hydrofluoric acid (HF) at 20 V for 60 minutes and sprayed a tetracycline (TC) dissolved in dichloromethane (DCM) from each of flow rate of 5, 20, 50, and 100 μl/min. then, surface characteristics were analyzed by FE-SEM, EDS, EPMA, TEM and DLS. The TC dissolved in DCM has particle size of about 20 nm. An adhesion of TC on titania nanotube observed at the ESD flow rate of 5, 20, and 50 μl/min. At the 50 μl/min, however, traces of DCM were remained on titania nanotube and observed particles of layered type contained with TC at the flow rate of 100 μl/min. From the this study, we could form TC-coated titania nanotube.
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      The aim of this study was to evaluate coating method by flow rate of injection nozzle using electro spray deposition (ESD) after titania nanotube formation by anodic oxidation. The titania nanotube specimens were anodized by 0.5 w/v% hydrofluoric acid...

      The aim of this study was to evaluate coating method by flow rate of injection nozzle using electro spray deposition (ESD) after titania nanotube formation by anodic oxidation. The titania nanotube specimens were anodized by 0.5 w/v% hydrofluoric acid (HF) at 20 V for 60 minutes and sprayed a tetracycline (TC) dissolved in dichloromethane (DCM) from each of flow rate of 5, 20, 50, and 100 μl/min. then, surface characteristics were analyzed by FE-SEM, EDS, EPMA, TEM and DLS. The TC dissolved in DCM has particle size of about 20 nm. An adhesion of TC on titania nanotube observed at the ESD flow rate of 5, 20, and 50 μl/min. At the 50 μl/min, however, traces of DCM were remained on titania nanotube and observed particles of layered type contained with TC at the flow rate of 100 μl/min. From the this study, we could form TC-coated titania nanotube.

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      참고문헌 (Reference)

      1 김우현, "타이타늄 표면에 항생제를 함유한 생분해성 고분자 물질의 코팅에 따른 약물방출 및 항균효과" 대한치과기재학회 37 (37): 53-60, 2010

      2 김경태, "다중 홈 노즐을 이용한 고유량 정전분무 특성 연구 및 바이오에어로졸과 PLGA 입자 발생에의 응용" 한국과학기술원 2008

      3 Andrea M, "Treatment of peri-implantitis by local delivery of tetracycline" 12 : 287-294, 2001

      4 Snauwaert K, "Time dependent failure rate and marginal bone loss of implant supported prostheses: A 15-year follow-up study" 4 : 13-20, 2000

      5 Lekholm U, "Survival of the Branemark implant in partially edentulous jaws: A 10-year prospective multicenter study" 1 : 639-645, 1999

      6 Tonetti MS, "Risk factors for osseodisintegration" 17 : 55-62, 1998

      7 Mombelli A, "Prevention and therapy of peri-implant infections" Quintessence Books 281-303, 1999

      8 Klinge B, "Periimplantitis" 49 : 661-676, 2005

      9 설영택, "Oxidized, bioactive implants are rapidly and strongly integrated in bone. Part 1 - experimental implants" 17 : 521-526, 200610

      10 O’Mahony A, "Osseointegrated implant failures" 45 : 44-51, 1999

      1 김우현, "타이타늄 표면에 항생제를 함유한 생분해성 고분자 물질의 코팅에 따른 약물방출 및 항균효과" 대한치과기재학회 37 (37): 53-60, 2010

      2 김경태, "다중 홈 노즐을 이용한 고유량 정전분무 특성 연구 및 바이오에어로졸과 PLGA 입자 발생에의 응용" 한국과학기술원 2008

      3 Andrea M, "Treatment of peri-implantitis by local delivery of tetracycline" 12 : 287-294, 2001

      4 Snauwaert K, "Time dependent failure rate and marginal bone loss of implant supported prostheses: A 15-year follow-up study" 4 : 13-20, 2000

      5 Lekholm U, "Survival of the Branemark implant in partially edentulous jaws: A 10-year prospective multicenter study" 1 : 639-645, 1999

      6 Tonetti MS, "Risk factors for osseodisintegration" 17 : 55-62, 1998

      7 Mombelli A, "Prevention and therapy of peri-implant infections" Quintessence Books 281-303, 1999

      8 Klinge B, "Periimplantitis" 49 : 661-676, 2005

      9 설영택, "Oxidized, bioactive implants are rapidly and strongly integrated in bone. Part 1 - experimental implants" 17 : 521-526, 200610

      10 O’Mahony A, "Osseointegrated implant failures" 45 : 44-51, 1999

      11 Quirynen M, "Microbiologically compromised patients and impact on oral implants" 33 : 119-128, 2003

      12 Quirynen M, "Infectious risks for oral implants: A review of the literature" 13 : 1-19, 2002

      13 Webster TJ, "Increased osteoblast adhesion on nanophase metals: Ti6Al4V, and CoCrMo" 25 : 4731-4739, 2004

      14 Burns K, "Increased chondrocyte adhesion on nanotubular anodized titanium" 88 : 561-568, 2008

      15 Rabih O. Darouiche, "In vivo efficacy of antimicrobialcoated devices" 89 : 792-797, 2007

      16 Gursel I, "In vivo application of biodegradable controlled antibiotic release systems for the treatment of implantrelated osteomyelitis" 22 : 73-80, 2001

      17 Dashti A, "In Vitro antibacterial efficacy of tetracycline hydrochloride adsorbed onto Bio-OssⓇ bone graft" 93 : 394-400, 2010

      18 Miao P, "Formation of ceramic thin films using electrospray in conejet mode" 4 : 2487-2496, 1999

      19 Wittrig EE, "Fibroblastic growth and attachment on hydroxyapatite- coated titanium surface following the use of various detoxification modalities: Part I. Non-contaminated hydroxyapatite" 1 : 189-194, 1992

      20 Yao C, "Enhanced osteoblast functions on anodized titanium with nanotube-like structures" 85 : 157-166, 2007

      21 Aninwene GE, "Enhanced osteoblast adhesion to drug-coated anodized nanotubular titanium surface" 3 : 257-264, 2008

      22 Webster TJ, "Enhanced functions of osteoblasts on nanophase ceramics" 21 : 1803-1810, 2000

      23 Xie J, "Electrohydrodynamic atomization for biodegradable polymeric particle production" 302 : 103-112, 2006

      24 Jayasinghe SN, "Electric field driven jetting: an emerging approach for processing living cells" 1 : 86-94, 2006

      25 Somerman MJ, "Effects of minocycline on fibroblast attachment and spreading" 2 : 154-159, 1988

      26 Teughels W, "Effect of material characteristics and/or surface topography on biofilm development" 17 : 68-81, 2006

      27 Quirynen M, "Dynamics of initial subgingival colonization of ‘pristine’ peri-implant pockets" 17 : 25-37, 2006

      28 Esposito M, "Differential diagnosis and treatment strategies for biologic complications and failing oral implants: A review of the literature" 14 : 473-490, 1999

      29 Tonetti MS, "Determination of the success and failure of root-form osseointegrated dental implants" 13 : 173-180, 1999

      30 Ketul CP, "Decreased Staphylococcus epidermis adhesion and increased osteoblast functionality on antibiotic-loaded titania nanotubes" 28 : 4880-4888, 2007

      31 Zhu X, "Cellular reactions of osteoblasts to micron- and submicronscale porous structures of titanium surfaces" 178 : 3-22, 2004

      32 Esposito M, "Biological factors contributing to failures of osseointegrated oral implants. I. Success criteria and epidemiology" 106 : 527-551, 1998

      33 Zhu X, "Anodic oxide films containing Ca and P of titanium biomaterial" 22 : 2199-2206, 2001

      34 Berglundh T, "A systematic review of the incidence of biological and technical complications in implant dentistry reported in prospective longitudinal studies of at least 5 years" 29 : 197-212, 2002

      35 Rosenberg ES, "A comparison of characteristics of implant failure and survival in perio-dontally compromised and periodontally healthy patients: A clinical report" 19 : 873-879, 2004

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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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