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      KCI등재 SCOPUS

      Radio-graphene in Theranostic Perspectives

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      https://www.riss.kr/link?id=A103549455

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      다국어 초록 (Multilingual Abstract)

      Owing to its unique physicochemical properties such as high surface area, notable biocompatibility, robust mechanical strength, high thermal conductivity, and ease of functionalization, 2D-layered graphene has received tremendous attention as a futuri...

      Owing to its unique physicochemical properties such as high surface area, notable biocompatibility, robust mechanical strength, high thermal conductivity, and ease of functionalization, 2D-layered graphene has received tremendous attention as a futuristic nanomaterial and its-associated research has been rapidly evolving in a variety of fields.With the remarkable advances of graphene especially in the biomedical realm, in vivo evaluation techniques to examine in vivo behavior of graphene are largely demanded under the hope of clinical translation. Many different types of drugs such as the antisense oligomer and chemotherapeutics require optimal delivery conveyor and graphene is now recognized as a suitable candidate due to its simple and high drug loading property. Termed as ‘radio-graphene’, radioisotope-labeled graphene approach was recently harnessed in the realm of biomedicine including cancer diagnosis and therapy, contributing to the acquisition of in vivo information for targeted drug delivery. In this review, we highlight current examples for bioapplication of radiolabeled graphene with brief perspectives on future strategies in its extensive bio- or clinical applications.

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      참고문헌 (Reference)

      1 Shi S, "VEGFR targeting leads to significantly enhanced tumor uptake of nanographene oxide in vivo" 39 : 39-46, 2015

      2 Shi S, "Tumor vasculature targeting and imaging in living mice with reduced graphene oxide" 34 : 3002-3009, 2013

      3 Zhang Y, "Toxicity and efficacy of carbon nanotubes and graphene : the utility of carbon-based nanoparticles in nanomedicine" 46 : 232-246, 2014

      4 Jasim DA, "Tissue distribution and urinary excretion of intravenously administered chemically functionalized graphene oxide sheets" 6 : 3952-3964, 2015

      5 Yu D, "The structure-dependent electric release and enhanced oxidation of drug in graphene oxide-based nanocarrier loaded with anticancer herbal drug berberine" 104 : 2489-2500, 2015

      6 Yang K, "The advancing uses of nano-graphene in drug delivery" 12 : 601-612, 2015

      7 Wu C, "Synergistic anticancer activity of photo-and chemoresponsive nanoformulation based on polylysine-functionalized graphene" 6 : 21615-21623, 2014

      8 Dong H, "Surface-engineered graphenebased nanomaterials for drug delivery" 10 : 2086-2106, 2014

      9 Song J, "Sequential drug release and enhanced photothermal and photoacoustic effect of hybrid reduced graphene oxide-loaded ultrasmall gold nanorod vesicles for cancer therapy" 9 : 9199-9209, 2015

      10 Li Y, "Response of microRNAs to in vitro treatment with graphene oxide" 8 : 2100-2110, 2014

      1 Shi S, "VEGFR targeting leads to significantly enhanced tumor uptake of nanographene oxide in vivo" 39 : 39-46, 2015

      2 Shi S, "Tumor vasculature targeting and imaging in living mice with reduced graphene oxide" 34 : 3002-3009, 2013

      3 Zhang Y, "Toxicity and efficacy of carbon nanotubes and graphene : the utility of carbon-based nanoparticles in nanomedicine" 46 : 232-246, 2014

      4 Jasim DA, "Tissue distribution and urinary excretion of intravenously administered chemically functionalized graphene oxide sheets" 6 : 3952-3964, 2015

      5 Yu D, "The structure-dependent electric release and enhanced oxidation of drug in graphene oxide-based nanocarrier loaded with anticancer herbal drug berberine" 104 : 2489-2500, 2015

      6 Yang K, "The advancing uses of nano-graphene in drug delivery" 12 : 601-612, 2015

      7 Wu C, "Synergistic anticancer activity of photo-and chemoresponsive nanoformulation based on polylysine-functionalized graphene" 6 : 21615-21623, 2014

      8 Dong H, "Surface-engineered graphenebased nanomaterials for drug delivery" 10 : 2086-2106, 2014

      9 Song J, "Sequential drug release and enhanced photothermal and photoacoustic effect of hybrid reduced graphene oxide-loaded ultrasmall gold nanorod vesicles for cancer therapy" 9 : 9199-9209, 2015

      10 Li Y, "Response of microRNAs to in vitro treatment with graphene oxide" 8 : 2100-2110, 2014

      11 Lewis B, "Radium-223 in bonemetastatic prostate cancer : current data and future prospects" 29 : 483-488, 2015

      12 Chen L, "Radionuclide(131)I labeled reduced graphene oxide for nuclear imaging guided combined radio-and photothermal therapy of cancer" 66 : 21-28, 2015

      13 Ramenda T, "Radiolabelling of proteins with fluorine-18 via click chemistry" 28 : 7521-7523, 2009

      14 Bitounis D, "Prospects and challenges of graphene in biomedical applications" 25 : 2258-2268, 2013

      15 Yang K, "Preparation and functionalization of graphene nanocomposites for biomedical applications" 8 : 2392-2403, 2013

      16 Li J, "Photosensitive graphene transistors" 26 : 5239-5273, 2014

      17 Nahain AA, "Photoresponsive fluorescent reduced graphene oxide by spiropyran conjugated hyaluronic acid for in vivo imaging and target delivery" 14 : 4082-4090, 2013

      18 Koppens FH, "Photodetectors based on graphene, other two-dimensional materials and hybrid systems" 9 : 780-793, 2014

      19 Lu FM, "PET/SPECT molecular imaging in clinical neuroscience : recent advances in the investigation of CNS diseases" 5 : 433-447, 2015

      20 Xu H, "PEGylated graphene oxide for tumor-targeted delivery of paclitaxel" 10 : 1247-1262, 2015

      21 Kim YK, "One-pot synthesis of multifunctional Au@graphene oxide nanocolloid core@shell nanoparticles for Raman bioimaging, photothermal, and photodynamic therapy" 11 : 2527-2535, 2015

      22 Feng L, "New horizons for diagnostics and therapeutic applications of graphene and graphene oxide" 25 : 168-186, 2013

      23 Jung HS, "Nanographene oxide-hyaluronic acid conjugate for photothermal ablation therapy of skin cancer" 8 : 260-268, 2014

      24 Hong H, "In vivo targeting and positron emission tomography imaging of tumor vasculature with(66)Ga-labeled nano-graphene" 33 : 4147-4156, 2012

      25 HongH, "In vivo targeting and imaging of tumor vasculature with radiolabeled, antibody-conjugated nanographene" 6 : 2361-2370, 2012

      26 Yang K, "In vivo pharmacokinetics, long-term biodistribution, and toxicology of PEGylated graphene in mice" 5 : 516-522, 2011

      27 Zhu Y, "In vivo molecular MRI imaging of prostate cancer by targeting PSMAwith polypeptide-labeled superparamagnetic iron oxide nanoparticles" 16 : 9573-9587, 2015

      28 Fazaeli Y, "In vivo SPECT imaging of tumors by 198, 199Au-labeled graphene oxide nanostructures" 45 : 196-204, 2014

      29 Kim SH, "In vitro and in vivo tumor targeted photothermal cancer therapy using functionalized graphene nanoparticles" 16 : 3519-3529, 2015

      30 Miao W, "Imageguided synergistic photothermal therapy using photoresponsive imaging agent-loaded graphene-based nanosheets" 211 : 28-36, 2015

      31 Goenka S, "Graphene-based nanomaterials for drug delivery and tissue engineering" 173 : 75-88, 2014

      32 You P, "Graphene oxidebased nanocarriers for cancer imaging and drug delivery" 21 : 3215-3222, 2015

      33 Zhang H, "Graphene oxide-BaGdF5 nanocomposites for multi-modal imaging and photothermal therapy" 42 : 66-77, 2015

      34 Orecchioni M, "Graphene as cancer theranostic tool : progress and future challenges" 5 : 710-723, 2015

      35 Liu J, "Graphene and graphene oxide as new nanocarriers for drug delivery applications" 9 : 9243-9257, 2013

      36 Wang Y, "Graphene and graphene oxide : biofunctionalization and applications in biotechnology" 29 : 205-212, 2011

      37 MaoHY, "Graphene : promises, facts, opportunities, and challenges in nanomedicine" 113 : 3407-3424, 2013

      38 Zhang Y, "Graphene : a versatile nanoplatform for biomedical applications" 4 : 3833-3842, 2012

      39 Tran TH, "Development of a graphene oxide nanocarrier for dual-drug chemophototherapy to overcome drug resistance in cancer" 7 : 28647-28655, 2015

      40 Huang Y, "DNA single-base mismatch study using graphene oxide nanosheets-based fluorometric biosensors" 87 : 9132-9136, 2015

      41 Zhou L, "Combination of chemotherapy and photodynamic therapy using graphene oxide as drug delivery system" 5 (5): 7-16, 2014

      42 최지영, "Click Reaction: An Applicable Radiolabeling Method for Molecular Imaging" 대한핵의학회 49 (49): 258-267, 2015

      43 Chung C, "Biomedical applications of graphene and graphene oxide" 46 : 2211-2224, 2013

      44 Shen H, "Biomedical applications of graphene" 2 : 283-294, 2012

      45 Liu Y, "Biological and chemical sensors based on graphene materials" 41 : 2283-2307, 2012

      46 Wang K, "Biocompatibility of graphene oxide" 6 : 1-8, 2011

      47 Scheinberg DA, "Actinium-225 in targeted alphaparticle therapeutic applications" 4 : 306-320, 2011

      48 Prim D, "ADIBO-based Bclick chemistry for diagnostic peptide micro-array fabrication : physicochemical and assay characteristics" 18 : 9833-9849, 2013

      49 Novoselov KS, "A roadmap for graphene" 490 : 192-200, 2012

      50 Li JL, "A review of optical imaging and therapy using nanosized graphene and graphene oxide" 34 : 9519-9534, 2013

      51 장홍제, "A New Helicase Assay Based on Graphene Oxide for Anti-Viral Drug Development" 한국분자세포생물학회 35 (35): 269-273, 2013

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2016-12-26 학술지명변경 한글명 : Nuclear Medicine and Molecular Imaging -> Nuclear Medicine and Molecular Imaging
      외국어명 : 미등록 -> Nuclear Medicine and Molecular Imaging
      KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2010-03-12 학술지명변경 한글명 : 핵의학 분자영상 -> Nuclear Medicine and Molecular Imaging 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

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.06 0.06 0.06
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.09 0.08 0.275 0
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