Literature DB >> 23214414

Development of high boron content liposomes and their promising antitumor effect for neutron capture therapy of cancers.

Hayato Koganei1, Manabu Ueno, Shoji Tachikawa, Lisa Tasaki, Hyun Seung Ban, Minoru Suzuki, Kouichi Shiraishi, Kumi Kawano, Masayuki Yokoyama, Yoshie Maitani, Koji Ono, Hiroyuki Nakamura.   

Abstract

Mercaptoundecahydrododecaborate (BSH)-encapsulating 10% distearoyl boron lipid (DSBL) liposomes were developed as a boron delivery vehicle for neutron capture therapy. The current approach is unique because the liposome shell itself possesses cytocidal potential in addition to its encapsulated agents. BSH-encapsulating 10% DSBL liposomes have high boron content (B/P ratio: 2.6) that enables us to prepare liposome solution with 5000 ppm boron concentration. BSH-encapsulating 10% DSBL liposomes displayed excellent boron delivery efficacy to tumor: boron concentrations reached 174, 93, and 32 ppm at doses of 50, 30, and 15 mg B/kg, respectively. Magnescope was also encapsulated in the 10% DSBL liposomes and the real-time biodistribution of the Magnescope-encapsulating DSBL liposomes was measured in a living body using MRI. Significant antitumor effect was observed in mice injected with BSH-encapsulating 10% DSBL liposomes even at the dose of 15 mg B/kg; the tumor completely disappeared three weeks after thermal neutron irradiation ((1.5-1.8) × 10(12) neutrons/cm(2)). The current results enabled us to reduce the total dose of liposomes to less than one-fifth compared with that of the BSH-encapsulating liposomes without reducing the efficacy of boron neutron capture therapy (BNCT).

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Year:  2012        PMID: 23214414     DOI: 10.1021/bc300527n

Source DB:  PubMed          Journal:  Bioconjug Chem        ISSN: 1043-1802            Impact factor:   4.774


  14 in total

1.  Therapeutic efficacy of boron neutron capture therapy mediated by boron-rich liposomes for oral cancer in the hamster cheek pouch model.

Authors:  Elisa M Heber; M Frederick Hawthorne; Peter J Kueffer; Marcela A Garabalino; Silvia I Thorp; Emiliano C C Pozzi; Andrea Monti Hughes; Charles A Maitz; Satish S Jalisatgi; David W Nigg; Paula Curotto; Verónica A Trivillin; Amanda E Schwint
Journal:  Proc Natl Acad Sci U S A       Date:  2014-10-27       Impact factor: 11.205

2.  In Vitro and In Vivo Evaluation of Fluorescently Labeled Borocaptate-Containing Liposomes.

Authors:  Vladimir Kanygin; Alexander Zaboronok; Iuliia Taskaeva; Evgenii Zavjalov; Rinat Mukhamadiyarov; Aleksandr Kichigin; Anna Kasatova; Ivan Razumov; Roman Sibirtsev; Bryan J Mathis
Journal:  J Fluoresc       Date:  2020-10-19       Impact factor: 2.217

Review 3.  Preparing (Metalla)carboranes for Nanomedicine.

Authors:  Marta Gozzi; Benedikt Schwarze; Evamarie Hey-Hawkins
Journal:  ChemMedChem       Date:  2021-03-19       Impact factor: 3.466

4.  Suppression of Tumor Growth in a Rabbit Hepatic Cancer Model by Boron Neutron Capture Therapy With Liposomal Boron Delivery Systems.

Authors:  Hironobu Yanagie; Masashi Yanagawa; Yasuyuki Morishita; Atsuko Shinohara; Novriana Dewi; Yasumasa Nonaka; Yoshitaka Furuya; Ryouji Mizumachi; Yuuji Murata; Hiroyuki Nakamura; Minoru Suzuki; Yoshinori Sakurai; Hiroki Tanaka; Shinichiro Masunaga; Koji Ono; Takumichi Sugihara; Masayuki Nashimoto; Haruo Yamauchi; Minoru Ono; Jun Nakajima; Hiroyuki Takahashi
Journal:  In Vivo       Date:  2021 Nov-Dec       Impact factor: 2.155

5.  Biological interaction of living cells with COSAN-based synthetic vesicles.

Authors:  Màrius Tarrés; Elisabetta Canetta; Eleanor Paul; Jordan Forbes; Karima Azzouni; Clara Viñas; Francesc Teixidor; Adrian J Harwood
Journal:  Sci Rep       Date:  2015-01-15       Impact factor: 4.379

6.  Hemorrhage in mouse tumors induced by dodecaborate cluster lipids intended for boron neutron capture therapy.

Authors:  Tanja Schaffran; Nan Jiang; Markus Bergmann; Ekkehard Küstermann; Regine Süss; Rolf Schubert; Franz M Wagner; Doaa Awad; Detlef Gabel
Journal:  Int J Nanomedicine       Date:  2014-07-29

Review 7.  Boron delivery agents for neutron capture therapy of cancer.

Authors:  Rolf F Barth; Peng Mi; Weilian Yang
Journal:  Cancer Commun (Lond)       Date:  2018-06-19

8.  Opportunistic dose amplification for proton and carbon ion therapy via capture of internally generated thermal neutrons.

Authors:  Mitra Safavi-Naeini; Andrew Chacon; Susanna Guatelli; Daniel R Franklin; Keith Bambery; Marie-Claude Gregoire; Anatoly Rosenfeld
Journal:  Sci Rep       Date:  2018-11-02       Impact factor: 4.379

9.  Gold Nanoparticles as Boron Carriers for Boron Neutron Capture Therapy: Synthesis, Radiolabelling and In vivo Evaluation.

Authors:  Krishna R Pulagam; Kiran B Gona; Vanessa Gómez-Vallejo; Jan Meijer; Carolin Zilberfain; Irina Estrela-Lopis; Zuriñe Baz; Unai Cossío; Jordi Llop
Journal:  Molecules       Date:  2019-10-07       Impact factor: 4.411

10.  Targeting glioma stem cells enhances anti-tumor effect of boron neutron capture therapy.

Authors:  Ting Sun; Yanyan Li; Yulun Huang; Zizhu Zhang; Weilian Yang; Ziwei Du; Youxin Zhou
Journal:  Oncotarget       Date:  2016-07-12
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