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      KCI등재 SCIE SCOPUS

      Expression and in vitro function of anti-cancer mAbs in transgenic Arabidopsis thaliana

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      https://www.riss.kr/link?id=A106839250

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      다국어 초록 (Multilingual Abstract)

      The anti-colorectal cancer monoclonal antibody CO17-1A (mAb CO), which recognizes the tumor-associated antigen EpCAM, was expressed in transgenic Arabidopsis plants. PCR and western blot analyses showed the insertion and expression of heavy chain (HC)/HC fused to the KDEL ER retention modif (HCK) and light chain (LC) of mAb CO and mAb CO with HCK (mAb COK) in Arabidopsis transformants. Both plantderived mAbP CO and mAbP COK were purified from a biomass of approximately 1,000 seedlings grown in a greenhouse. In sandwich ELISA, both mAbP CO showed a slightly higher binding affinity for the target, EpCAM, compared to mAbM CO.
      In cell ELISA, both mAbsP COs showed binding affinity to the human colorectal cancer cell line SW480. Furthermore, mAbM CO, mAbP CO, and mAbP COK exhibited dose and timedependent regression effects on SW480 cells in vitro. In summation, both mAbP CO and mAbP COK, expressed in Arabidopsis, recognized the target antigen EpCAM and showed anti-proliferative activity against human colorectal cancer cells.
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      The anti-colorectal cancer monoclonal antibody CO17-1A (mAb CO), which recognizes the tumor-associated antigen EpCAM, was expressed in transgenic Arabidopsis plants. PCR and western blot analyses showed the insertion and expression of heavy chain (HC)...

      The anti-colorectal cancer monoclonal antibody CO17-1A (mAb CO), which recognizes the tumor-associated antigen EpCAM, was expressed in transgenic Arabidopsis plants. PCR and western blot analyses showed the insertion and expression of heavy chain (HC)/HC fused to the KDEL ER retention modif (HCK) and light chain (LC) of mAb CO and mAb CO with HCK (mAb COK) in Arabidopsis transformants. Both plantderived mAbP CO and mAbP COK were purified from a biomass of approximately 1,000 seedlings grown in a greenhouse. In sandwich ELISA, both mAbP CO showed a slightly higher binding affinity for the target, EpCAM, compared to mAbM CO.
      In cell ELISA, both mAbsP COs showed binding affinity to the human colorectal cancer cell line SW480. Furthermore, mAbM CO, mAbP CO, and mAbP COK exhibited dose and timedependent regression effects on SW480 cells in vitro. In summation, both mAbP CO and mAbP COK, expressed in Arabidopsis, recognized the target antigen EpCAM and showed anti-proliferative activity against human colorectal cancer cells.

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      참고문헌 (Reference)

      1 Pogue GP, "Production of pharmaceutical-grade recombinant aprotinin and a monoclonal antibody product using plant-based transient expression systems" 8 : 638-654, 2010

      2 Moussavou G, "Production of monoclonal antibodies in plants for cancer immunotherapy" 2015 : 306164-, 2015

      3 Ko K, "Production of antibodies in plants : approaches and perspectives" 332 : 55-78, 2009

      4 이정환, "Production of Recombinant Anti-Cancer Vaccines in Plants" 한국응용약물학회 25 (25): 345-353, 2017

      5 Besufekad Y, "Production of Monoclonal Antibodies in Transgenic Plants" 12 : 1-8, 2017

      6 Ma JK, "Plant-derived pharmaceuticals–the road forward" 10 : 580-585, 2005

      7 Fischer R, "Plant-based production of biopharmaceuticals" 7 : 152-158, 2004

      8 Kim DS, "Plant recycling for molecular biofarming to produce recombinant anti-cancer mAb" 7 : 1037-, 2016

      9 Park SR, "Optimization of ammonium sulfate concentration for purification of colorectal cancer vaccine candidate recombinant protein GA733-FcK isolated from plants" 6 : 1040-, 2015

      10 Ahn J, "Optimization of ELISA conditions to quantify colorectal cancer antigen-antibody complex protein(GA733-FcK)expressed in transgenic plant" 33 : 1-7, 2014

      1 Pogue GP, "Production of pharmaceutical-grade recombinant aprotinin and a monoclonal antibody product using plant-based transient expression systems" 8 : 638-654, 2010

      2 Moussavou G, "Production of monoclonal antibodies in plants for cancer immunotherapy" 2015 : 306164-, 2015

      3 Ko K, "Production of antibodies in plants : approaches and perspectives" 332 : 55-78, 2009

      4 이정환, "Production of Recombinant Anti-Cancer Vaccines in Plants" 한국응용약물학회 25 (25): 345-353, 2017

      5 Besufekad Y, "Production of Monoclonal Antibodies in Transgenic Plants" 12 : 1-8, 2017

      6 Ma JK, "Plant-derived pharmaceuticals–the road forward" 10 : 580-585, 2005

      7 Fischer R, "Plant-based production of biopharmaceuticals" 7 : 152-158, 2004

      8 Kim DS, "Plant recycling for molecular biofarming to produce recombinant anti-cancer mAb" 7 : 1037-, 2016

      9 Park SR, "Optimization of ammonium sulfate concentration for purification of colorectal cancer vaccine candidate recombinant protein GA733-FcK isolated from plants" 6 : 1040-, 2015

      10 Ahn J, "Optimization of ELISA conditions to quantify colorectal cancer antigen-antibody complex protein(GA733-FcK)expressed in transgenic plant" 33 : 1-7, 2014

      11 Xu J, "On the way to commercializing plant cell culture for biopharmaceuticals : present status and prospect" 2 : 499-, 2014

      12 Ludwig DL, "Monoclonal antibody therapeutics and apoptosis" 22 : 9097-, 2003

      13 Glassman PM, "Mechanistic considerations for the use of monoclonal antibodies for cancer therapy" 11 : 20-, 2014

      14 Bressan RA, "Learning from the Arabidopsis experience. The next gene search paradigm" 127 : 1354-1360, 2001

      15 Lee JH, "Intracellular reprogramming of expression, glycosylation, and function of a plant-derived antiviral therapeutic monoclonal antibody" 8 : e68772-, 2013

      16 Ko K, "Inhibition of tumor growth by plant-derived mAb" 102 : 7026-7030, 2005

      17 신천하, "Immune response of heterologous recombinant antigenic protein of viral hemorrhagic septicemia virus (VHSV) in mice" 한국통합생물학회 23 (23): 97-105, 2019

      18 So Y, "Glycomodification and characterization of anti-colorectal cancer immunotherapeutic monoclonal antibodies in transgenic tobacco" 113 : 41-49, 2013

      19 Clough SJ, "Floral dip : a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana" 16 : 735-743, 1998

      20 송일찬, "Expression, glycosylation, and function of an anti‑rabies virus monoclonal antibody in tobacco and Arabidopsis plants" 한국원예학회 59 (59): 285-292, 2018

      21 Ko K, "Expression of recombinant vaccines and antibodies in plants" 33 : 192-198, 2014

      22 Kang YJ, "Expression of a human prostatic acid phosphatase(PAP)-IgM Fc fusion protein in plants using in vitro tissue subculture" 8 : 274-, 2017

      23 김득수, "Expression and function of plant-derived recombinant multiple monoclonal antibodies for the recognition of human colorectal cancer cells" 한국식물생명공학회 9 (9): 361-368, 2015

      24 Song I, "Endoplasmic reticulum retention motif fused to recombinant anti-cancer monoclonal antibody(mAb)CO17-1A affects mAb expression and plant stress response" 13 : e0198978-, 2018

      25 Lim CY, "Effect of the developmental stage and tissue position on the expression and glycosylation of recombinant glycoprotein GA733-FcK in transgenic plants" 5 : 778-, 2015

      26 송일찬, "Comparison of Total Soluble Protein in Various Horticultural Crops and Evaluation of Its Quantification Methods" 한국원예학회 56 (56): 123-129, 2015

      27 Haggar FA, "Colorectal cancer epidemiology : incidence, mortality, survival, and risk factors" 22 : 191-, 2009

      28 Yusibov V, "Clinical development of plant-produced recombinant pharmaceuticals : vaccines, antibodies and beyond" 7 : 313-321, 2011

      29 Song M, "Characterization of N-glycan structures and biofunction of anti-colorectal cancer monoclonal antibody CO17-1A produced in baculovirus-insect cell expression system" 110 : 135-140, 2010

      30 Ghislain Moussavou, "Baculovirus titration method based on MOI values for optimizing recombinant protein expression of the anti‐cancer vaccine candidate GA733‐Fc using Sf9 insect cells" 한국곤충학회 48 (48): 73-79, 2018

      31 Carneiro JMT, "Arabidopsis thaliana and omics approaches : a review" 5 : 1-16, 2015

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      학술지등록 한글명 : BMB reports
      외국어명 : BMB reports
      2024 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2021-01-01 평가 등재학술지 선정 (해외등재 학술지 평가) KCI등재
      2020-12-01 평가 등재후보로 하락 (해외등재 학술지 평가) KCI등재후보
      2013-07-17 학술지명변경 한글명 : BMB reports -> BMB Reports
      외국어명 : BMB reports -> BMB Reports
      KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-09-21 학회명변경 한글명 : 대한생화학ㆍ분자생물학회 -> 생화학분자생물학회
      영문명 : Korean Society Of Medical Biochemistry And Molecular Biology -> Korean Society Of Biochemistry And Molecular Biology
      KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2002-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1999-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 2.76 0.5 1.94
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      1.45 1.12 0.646 0.12
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