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      KCI등재 SCIE SCOPUS

      The effect of photodynamic therapy on Aggregatibacter actinomycetemcomitans attached to surface-modified titanium

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      https://www.riss.kr/link?id=A103902182

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      다국어 초록 (Multilingual Abstract)

      Purpose: The purpose of this study was to evaluate the effect of photodynamic therapy (PDT) using erythrosine and a green light emitting diode (LED) light source on biofilms of Aggregatibacter actinomycetemcomitans attached to resorbable blasted media...

      Purpose: The purpose of this study was to evaluate the effect of photodynamic therapy (PDT) using erythrosine and a green light emitting diode (LED) light source on biofilms of Aggregatibacter actinomycetemcomitans attached to resorbable blasted media (RBM) and sandblasted, large-grit, acid-etched (SLA) titanium surfaces in vitro.
      Methods: RBM and SLA disks were subdivided into four groups, including one control group and three test groups (referred to as E0, E30, E60), in order to evaluate the effect of PDT on each surface. The E0 group was put into 500 μL of 20 μM erythrosine for 60 seconds without irradiation, the E30 group was put into erythrosine for 60 seconds and was then irradiated with a LED for 30 seconds, and the E60 group was put into erythrosine for 60 seconds and then irradiated with a LED for 60 seconds. After PDT, sonication was per\-formed in order to detach the bacteria, the plates were incubated under anaerobic condi\-tions on brucella blood agar plates for 72 hours at 37°C, and the number of colony-forming units (CFUs) was determined.
      Results: Significant differences were found between the control group and the E30 and E60 groups (P<0.05). A significantly lower quantity of CFU/mL was found in the E30 and E60 groups on both titanium disk surfaces. In confocal scanning laser microscopy images, increased bacterial death was observed when disks were irradiated for a longer period of time.
      Conclusions: These findings suggest that PDT using erythrosine and a green LED is effective in reducing the viability of A. actinomycetemcomitans attached to surface-modified titanium in vitro.

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      참고문헌 (Reference)

      1 송국현, "토끼 경골에서 치과용 임프란트의RBM 및SLA 표면처리에 따른 조직계측학적 연구" 대한구강악안면외과학회 32 (32): 514-523, 2006

      2 Marotti J, "de Campos TT. Decontamination of dental implant surfaces by means of photodynamic therapy" 28 : 303-309, 2013

      3 Shibli JA, "Treatment of ligature-induced peri-implantitis by lethal photosensitization and guided bone regeneration: a preliminary histologic study in dogs" 74 : 338-345, 2003

      4 Qin Y, "Toluidine blue-mediated photoinactivation of periodontal pathogens from supragingival plaques" 23 : 49-54, 2008

      5 Mombelli A, "The microbiota of osseointegrated implants in patients with a history of periodontal disease" 22 : 124-130, 1995

      6 Mombelli A, "The microbiota associated with successful or failing osseointegrated titanium implants" 2 : 145-151, 1987

      7 Eriksson RA, "The effect of heat on bone regeneration: an experimental study in the rabbit using the bone growth chamber" 42 : 705-711, 1984

      8 Mombelli A, "The diagnosis and treatment of peri-implantitis" 1998 (1998): 63-76, 2000

      9 Mouhyi J, "Temperature increases during surface decontamination of titanium implants using CO2 laser" 10 : 54-61, 1999

      10 Geminiani A, "Temperature change during non-contact diode laser irradiation of implant surfaces" 27 : 339-342, 2012

      1 송국현, "토끼 경골에서 치과용 임프란트의RBM 및SLA 표면처리에 따른 조직계측학적 연구" 대한구강악안면외과학회 32 (32): 514-523, 2006

      2 Marotti J, "de Campos TT. Decontamination of dental implant surfaces by means of photodynamic therapy" 28 : 303-309, 2013

      3 Shibli JA, "Treatment of ligature-induced peri-implantitis by lethal photosensitization and guided bone regeneration: a preliminary histologic study in dogs" 74 : 338-345, 2003

      4 Qin Y, "Toluidine blue-mediated photoinactivation of periodontal pathogens from supragingival plaques" 23 : 49-54, 2008

      5 Mombelli A, "The microbiota of osseointegrated implants in patients with a history of periodontal disease" 22 : 124-130, 1995

      6 Mombelli A, "The microbiota associated with successful or failing osseointegrated titanium implants" 2 : 145-151, 1987

      7 Eriksson RA, "The effect of heat on bone regeneration: an experimental study in the rabbit using the bone growth chamber" 42 : 705-711, 1984

      8 Mombelli A, "The diagnosis and treatment of peri-implantitis" 1998 (1998): 63-76, 2000

      9 Mouhyi J, "Temperature increases during surface decontamination of titanium implants using CO2 laser" 10 : 54-61, 1999

      10 Geminiani A, "Temperature change during non-contact diode laser irradiation of implant surfaces" 27 : 339-342, 2012

      11 Persson LG, "Re-osseointegration after treatment of peri-implantitis at different implant surfaces. An experimental study in the dog" 12 : 595-603, 2001

      12 Rams TE, "Microbiology of failing dental implants in humans: electron microscopic observations" 11 : 93-100, 1983

      13 Begue WJ, "Microbial inhibition by erythrosin" 45 : 1464-1467, 1966

      14 Alcoforado GA, "Microbial aspects of failing osseointegrated dental implants in humans" 10 : 11-18, 1991

      15 Shibli JA, "Marcantonio EJ. Lethal photosensitization in microbiological treatment of ligature-induced peri-implantitis: a preliminary study in dogs" 45 : 17-23, 2003

      16 Matarasso S, "Maintenance of implants: an in vitro study of titanium implant surface modifications subsequent to the application of different prophylaxis procedures" 7 : 64-72, 1996

      17 Haas R, "Lethal photosensitization, autogenous bone, and e-PTFE membrane for the treatment of peri-implantitis: preliminary results" 15 : 374-382, 2000

      18 Dörtbudak O, "Lethal photosensitization for decontamination of implant surfaces in the treatment of peri-implantitis" 12 : 104-108, 2001

      19 Shibli JA, "Lethal photosensitization and guided bone regeneration in treatment of peri-implantitis: an experimental study in dogs" 17 : 273-281, 2006

      20 Bürgers R, "In vivo and in vitro biofilm formation on two different titanium implant surfaces" 21 : 156-164, 2010

      21 Mombelli A, "Etiology, diagnosis, and treatment considerations in peri-implantitis" 4 : 127-136, 1997

      22 Wood S, "Erythrosine is a potential photosensitizer for the photodynamic therapy of oral plaque biofilms" 57 : 680-684, 2006

      23 Takasaki AA, "Er:YAG laser therapy for peri-implant infection: a histological study" 22 : 143-157, 2007

      24 Metcalf D, "Enhancement of erythrosine-mediated photodynamic therapy of Streptococcus mutans biofilms by light fractionation" 58 : 190-192, 2006

      25 Haas R, "Elimination of bacteria on different implant surfaces through photosensitization and soft laser. An in vitro study" 8 : 249-254, 1997

      26 Romanos GE, "Effects of diode and Nd:YAG laser irradiation on titanium discs: a scanning electron microscope examination" 71 : 810-815, 2000

      27 Kreisler M, "Effect of Nd:YAG, Ho:YAG, Er:YAG, CO2, and GaAIAs laser irradiation on surface properties of endosseous dental implants" 17 : 202-211, 2002

      28 이시영, "Comparison of photodynamic bactericidal effects of erythrosine against Streptococcus mutans and Streptococcus sobrinus by different wavelength of LED lights" 대한예방치과·구강보건학회 36 (36): 20-25, 2012

      29 Tawakoli PN, "Comparison of different live/dead stainings for detection and quantification of adherent microorganisms in the initial oral biofilm" 17 : 841-850, 2013

      30 Becker W, "Clinical and microbiologic findings that may contribute to dental implant failure" 5 : 31-38, 1990

      31 Sanz M, "Characterization of the subgingival microbial flora around endosteal sapphire dental implants in partially edentulous patients" 5 : 247-253, 1990

      32 Oyster DK, "CO2 lasers and temperature changes of titanium implants" 66 : 1017-1024, 1995

      33 Lang NP, "Biological complications with dental implants: their prevention, diagnosis and treatment" 11 (11): 146-155, 2000

      34 Kreisler M, "Bactericidal effect of the Er:YAG laser on dental implant surfaces: an in vitro study" 73 : 1292-1298, 2002

      35 Takasaki AA, "Application of antimicrobial photodynamic therapy in periodontal and peri-implant diseases" 2009 (2009): 109-140, 2000

      36 Sbordone L, "Antimicrobial susceptibility of periodontopathic bacteria associated with failing implants" 66 : 69-74, 1995

      37 Marsh PD, "Antibacterial activity of some plaque-disclosing agents and dyes" 23 : 348-350, 1989

      38 Baab DA, "A comparison of antimicrobial activity of four disclosant dyes" 62 : 837-841, 1983

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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      2012-03-21 학술지명변경 한글명 : The Journal of the Korean Academy of Periodontology (JPIS) -> Journal of Periodontal & Implant Science
      외국어명 : THE JOURNAL OF KOREAN ACADEMY OF PERIODONTOLOGY -> Journal of Periodontal & Implant Science
      KCI등재
      2011-03-22 학술지명변경 한글명 : 대한치주과학회지 -> The Journal of the Korean Academy of Periodontology (JPIS) KCI등재
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      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
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      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.91 0.14 0.66
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.56 0.45 0.49 0.02
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