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    KCI등재 SCOPUS SCIE

    Improvement of Beta Cell Function in Intraportal Transplantation of Islet Cell Cluster Using Secretion Signal Peptide-Linked Exendin-4 Gene

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    https://www.riss.kr/link?id=A103994543

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    One of the major obstacles to successful intraportal islet transplantation is the early portal vein embolizationelicited by the infused islets. Thus, reducing the size and the number of islets is an important process to alleviatethe damage of liver after intraportal islet transplantation. In our previous studies, we developed a strategy to constructgenetically modified islet cell clusters (ICCs) and demonstrated their superiority in maintaining better viabilityand functionality in vivo. In this study, signal-peptide linked exendin-4 transduced islet cell clusters (Sp-Ex-4 ICCs)were used to reverse diabetes after intraportal islet transplantation in hyperglycemic mouse model. Group of micereceiving 500 islet equivalent (IEQ) of unmodified ICCs failed to restore normoglycemia following transplantation.
    Although 500 IEQ of ICCs was insufficient to reverse hyperglycemia in diabetic mice, no significant acute liverdamage or life-threatening liver embolization was observed. When 1000 IEQ ICCs were infused into the portal vein,all animals died within 24 h post-surgery. In order to clarify the effect of Sp-Ex-4 gene transduction in improvingICCs functionality, 500 IEQ of Sp-Ex-4 ICCs were infused into the portal vein of diabetic mice. Following transplantation,75% of diabetic mice returned to normoglycemia and the survival fraction was 100%. In conclusion, intraportaltransplantation of Sp-Ex-4 ICCs successfully reversed diabetes in hyperglycemic mice by reducing the mass requiredfor the treatment. Therefore, intraportal transplantation of small islets (genetically engineered ICCs) can be proposedas a new strategy to overcome early graft embolization after intraportal transplantation.
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    One of the major obstacles to successful intraportal islet transplantation is the early portal vein embolizationelicited by the infused islets. Thus, reducing the size and the number of islets is an important process to alleviatethe damage of liver af...

    One of the major obstacles to successful intraportal islet transplantation is the early portal vein embolizationelicited by the infused islets. Thus, reducing the size and the number of islets is an important process to alleviatethe damage of liver after intraportal islet transplantation. In our previous studies, we developed a strategy to constructgenetically modified islet cell clusters (ICCs) and demonstrated their superiority in maintaining better viabilityand functionality in vivo. In this study, signal-peptide linked exendin-4 transduced islet cell clusters (Sp-Ex-4 ICCs)were used to reverse diabetes after intraportal islet transplantation in hyperglycemic mouse model. Group of micereceiving 500 islet equivalent (IEQ) of unmodified ICCs failed to restore normoglycemia following transplantation.
    Although 500 IEQ of ICCs was insufficient to reverse hyperglycemia in diabetic mice, no significant acute liverdamage or life-threatening liver embolization was observed. When 1000 IEQ ICCs were infused into the portal vein,all animals died within 24 h post-surgery. In order to clarify the effect of Sp-Ex-4 gene transduction in improvingICCs functionality, 500 IEQ of Sp-Ex-4 ICCs were infused into the portal vein of diabetic mice. Following transplantation,75% of diabetic mice returned to normoglycemia and the survival fraction was 100%. In conclusion, intraportaltransplantation of Sp-Ex-4 ICCs successfully reversed diabetes in hyperglycemic mice by reducing the mass requiredfor the treatment. Therefore, intraportal transplantation of small islets (genetically engineered ICCs) can be proposedas a new strategy to overcome early graft embolization after intraportal transplantation.

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    참고문헌 (Reference)

    1 R. P. Robertson, 350 : 694-, 2004

    2 M. Ferdaoussi, 57 : 1205-, 2008

    3 A. M. Shapiro, 343 : 230-, 2000

    4 D. Yin, 6 : 60-, 2006

    5 T. Okaya, 16 : 141-, 2003

    6 S. H. Hyon, 13 : 61-, 2004

    7 L. Ozmen, 51 : 1779-, 2002

    8 H. Johansson, 6 : 305-, 2006

    9 Y. S. Jung, 33 : 295-, 2012

    10 S. Cabric, 56 : 2008-, 2007

    1 R. P. Robertson, 350 : 694-, 2004

    2 M. Ferdaoussi, 57 : 1205-, 2008

    3 A. M. Shapiro, 343 : 230-, 2000

    4 D. Yin, 6 : 60-, 2006

    5 T. Okaya, 16 : 141-, 2003

    6 S. H. Hyon, 13 : 61-, 2004

    7 L. Ozmen, 51 : 1779-, 2002

    8 H. Johansson, 6 : 305-, 2006

    9 Y. S. Jung, 33 : 295-, 2012

    10 S. Cabric, 56 : 2008-, 2007

    11 Z. Su, 72 : 504-, 2010

    12 S. Yook, 21 : 1775-, 2012

    13 I. Konstantinova, 129 : 359-, 2007

    14 J. H. Jeong, 159 : 368-, 2012

    15 P. E. Lacy, 16 : 35-, 1967

    16 C. Ricordi, 6 : 242-, 1991

    17 E. A. Ryan, 51 : 2148-, 2002

    18 M. Hara, 78 : 615-, 2004

    19 E. Rafael, 76 : 1280-, 2003

    20 N. R. Barshes, 200 : 353-, 2005

    21 D. J. van der Windt, 14 : 288-, 2007

    22 T. J. Walsh, 91 : 485-, 1982

    23 A. Kojima, 60 : 638-, 1971

    24 L. Farilla, 143 : 4397-, 2002

    25 김형일, "Comparison of Four Pancreatic Islet Implantation Sites" 대한의학회 25 (25): 203-210, 2010

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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    2004-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2001-07-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    1999-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 1.4 0.33 0.97
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.75 0.62 0.296 0.21
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