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      KCI등재 SCOPUS SCIE

      Enhanced Stability of Hydroxyapatite-coated Liposomes for Ultrasound-triggered Drug Release

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      https://www.riss.kr/link?id=A103920759

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      Thermosensitive liposomes (TSLs) have been developed for enhancing drug release in the tumor microenvironment by external stimulations, such as hyperthermia, for cancer chemotherapy. However, the TSL-induced side effect of the drug on normal cells after intravenous (i.v.) injection is usually found in circulation. Therefore, we developed sterically stabilized TSLs by coating hydroxyapatite (HA) onto the liposomal surface to increase its stability in serum. HA coating on the liposomal surface was achieved via the ionic interaction of calcium acetate with phosphoric acid. The amount of HA coated on the liposomal surface was measured by inductively coupled plasma (ICP) spectroscopy. In addition, temperature-sensitive drug release was measured by fluorescence spectrophotometry. The HA-coated TSL (HA-TSL) showed lower drug release at body temperature due to the HA coating on the liposomal surface compared to TSL. Moreover, compared with TSL, HA-TSL showed increased stability in serum, thereby indicating a long circulation time in the body without protein adsorption. Taken together, we demonstrated the use of HA coating on the surface of TSL for enhancing the stability of TSL, and the results indicated the applicability of the method for prolonging the circulation of drugs with carriers within the human body. As a novel and highly effective delivery platform with long circulation in blood streams, HA-TSL shows great potential for use in a broad range of applications for the treatment of various human diseases.
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      Thermosensitive liposomes (TSLs) have been developed for enhancing drug release in the tumor microenvironment by external stimulations, such as hyperthermia, for cancer chemotherapy. However, the TSL-induced side effect of the drug on normal cells aft...

      Thermosensitive liposomes (TSLs) have been developed for enhancing drug release in the tumor microenvironment by external stimulations, such as hyperthermia, for cancer chemotherapy. However, the TSL-induced side effect of the drug on normal cells after intravenous (i.v.) injection is usually found in circulation. Therefore, we developed sterically stabilized TSLs by coating hydroxyapatite (HA) onto the liposomal surface to increase its stability in serum. HA coating on the liposomal surface was achieved via the ionic interaction of calcium acetate with phosphoric acid. The amount of HA coated on the liposomal surface was measured by inductively coupled plasma (ICP) spectroscopy. In addition, temperature-sensitive drug release was measured by fluorescence spectrophotometry. The HA-coated TSL (HA-TSL) showed lower drug release at body temperature due to the HA coating on the liposomal surface compared to TSL. Moreover, compared with TSL, HA-TSL showed increased stability in serum, thereby indicating a long circulation time in the body without protein adsorption. Taken together, we demonstrated the use of HA coating on the surface of TSL for enhancing the stability of TSL, and the results indicated the applicability of the method for prolonging the circulation of drugs with carriers within the human body. As a novel and highly effective delivery platform with long circulation in blood streams, HA-TSL shows great potential for use in a broad range of applications for the treatment of various human diseases.

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      참고문헌 (Reference)

      1 T. M. Allen, 65 : 36-, 2013

      2 M. Kusube, 1668 : 25-, 2005

      3 O. K. Nag, 5 : 542-, 2013

      4 S. Mallick, 14 : 755-, 2014

      5 G. A. Koning, 27 : 1750-, 2010

      6 T. Ta, 169 : 112-, 2013

      7 H. D. Han, 120 : 161-, 2007

      8 A. L. Barros, 9 : 1636-, 2013

      9 H. D. Han, 62 : 110-, 2006

      10 V. Frenkel, 60 : 1193-, 2008

      1 T. M. Allen, 65 : 36-, 2013

      2 M. Kusube, 1668 : 25-, 2005

      3 O. K. Nag, 5 : 542-, 2013

      4 S. Mallick, 14 : 755-, 2014

      5 G. A. Koning, 27 : 1750-, 2010

      6 T. Ta, 169 : 112-, 2013

      7 H. D. Han, 120 : 161-, 2007

      8 A. L. Barros, 9 : 1636-, 2013

      9 H. D. Han, 62 : 110-, 2006

      10 V. Frenkel, 60 : 1193-, 2008

      11 A. Schroeder, 162 : 1-, 2009

      12 R. Suzuki, 149 : 36-, 2011

      13 Q. Xu, 28 : 2687-, 2007

      14 P. Venkatesan, 32 : 3794-, 2011

      15 G. Wang, 8 : 1025-, 2011

      16 S. H. Jung, 76 : 434-, 2010

      17 A. Fritze, 1758 : 1633-, 2006

      18 S. H. Jung, 7 : 462-, 2012

      19 M. M. Bradford, 72 : 248-, 1976

      20 P. Goyal, 55 : 1-, 2005

      21 T. Y. Liu, 7 : 3927-, 2011

      22 S. H. Jung, 37 : 313-, 2009

      23 S. H. Jung, 382 : 254-, 2009

      24 H. D. Han, 9 : 209-, 2014

      25 A. Ono, 25 : 97-, 2002

      26 J. K. Mills, 2 : 5-, 2006

      27 T. J. Evjen, 75 : 327-, 2010

      28 조성근, "하이드록시아파타이트 코팅 리포솜의 초음파에 의한 약물방출" 대한화학회 57 (57): 493-498, 2013

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      공동연구자 (7)

      유사연구자 (20) 활용도상위20명

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2008-01-01 등재 SCI 등재 (기타) KCI등재
      2006-01-01 등재 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 등재 등재학술지 유지 (등재유지) KCI등재
      2001-07-01 등재 등재학술지 선정 (등재후보2차) KCI등재
      1998-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.58 0.11 0.38
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.28 0.23 0.213 0.04
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