Development of theranostic active-targeting boron-containing gold nanoparticles for boron neutron capture therapy (BNCT)

被引:45
作者
Wu, Chun-Yi [1 ,2 ]
Lin, Jia-Jia [1 ]
Chang, Wen-Yi [3 ]
Hsieh, Cheng-Ying [4 ]
Wu, Chin-Ching [5 ]
Chen, Hong-Sen [6 ]
Hsu, Hung-Ju [6 ]
Yang, An-Suei [6 ]
Hsu, Ming-Hua [4 ]
Kuo, Wei-Ying [6 ]
机构
[1] China Med Univ, Dept Biomed Imaging & Radiol Sci, 91 Hsueh Shih Rd, Taichung 40402, Taiwan
[2] China Med Univ, Master Program Biomed Engn, Taichung, Taiwan
[3] Taipei Vet Gen Hosp, Dept Nucl Med, Taipei, Taiwan
[4] Natl Changhua Univ Educ, Dept Chem, Changhua, Taiwan
[5] China Med Univ, Dept Publ Hlth, Taichung, Taiwan
[6] Acad Sinica, Genom Res Ctr, 128 Acad Rd,Sect 2, Taipei 11529, Taiwan
关键词
Boron neutron capture therapy; Gold nanoparticle-boron cage assemblies; Anti-HER2; antibody;
D O I
10.1016/j.colsurfb.2019.110387
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Successful boron neutron capture therapy (BNCT) requires sufficient and specific delivery of boron atoms to malignant cells. Gold nanoparticles (AuNPs) have been used as a useful delivery system for selectively releasing cytotoxic payloads in the tumor. However, studies demonstrating the in vivo distribution or pharmacokinetics of boron-containing AuNPs via noninvasive imaging are lacking. This study aims to develop theranostic AuNP-boron cage assemblies (B-AuNPs) and evaluate its feasibility for BNCT. The commercial citrate-coated AuNPs were subjected to PEGylation, azide addition, and carborane modification on the surface. To further arm the AuNPs, we conjugated anti-HER2 antibody (61 IgG) with boron-containing PEGylated AuNPs to form 61-B-AuNPs. The diameter and radiolabeling efficiency of boron-containing AuNPs were determined by dynamic light scattering (DLS) and radio thin-layer chromatography (radio TLC), respectively. Noninvasive single-photon emission computed tomography (SPECT)/computed tomography (CT) imaging was performed to determine the pharmacokinetics of radioiodinated AuNPs in N87 gastric cancer xenografts, and the content of boron in tumor and muscle was assessed by inductively coupled plasma mass spectrometry (ICP-MS). After the 3-step modification, the diameter of B-AuNPs increased by (similar to)25 nm, and antibody conjugation did not affect the diameter of AuNPs. Radioactive iodine (1-123) was introduced in AuNPs by Click chemistry under copper catalysis. The radiolabeling efficiency of I-123-B-AuNPs and I-123-61-B-AuNPs was approximately 60 +/- 5%. After purification, the radiochemical purity (RCP) of these NPs was greater than 90%. MicroSPECT/CT imaging showed that the tumor-to-muscle (T/M) ratio of I-123-B-AuNP-injected mice reached 1.91 +/- 0.17 at 12 h post-injection, while that of I-123-61-B-AuNP-injected mice was 12.02 +/- 0.94. However, the increased uptake of AuNPs by the thyroid was observed at 36 h after the administration of I-123-61-B-AuNPs, indicating antibody-mediated phagocytosis. The TIM ratio, assessed by ICP-MS, of B-AuNP- and 61-B-AuNP-injected mice was 4.91 +/- 2.75 and 41.05 +/- 11.15, respectively. We successfully developed detectable HER2-targeting boron-containing AuNPs with high RCP and an acceptable yield. Noninvasive imaging could be a valuable tool for the noninvasive determination of the pharmacokinetics of AuNPs and measurement of boron concentration in the tumor.
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页数:8
相关论文
共 18 条
  • [1] Boron delivery agents for neutron capture therapy of cancer
    Barth, Rolf F.
    Mi, Peng
    Yang, Weilian
    [J]. CANCER COMMUNICATIONS, 2018, 38 : 1 - 15
  • [2] Ultrasmall targeted nanoparticles with engineered antibody fragments for imaging detection of HER2-overexpressing breast cancer
    Chen, Feng
    Ma, Kai
    Madajewski, Brian
    Zhuang, Li
    Zhang, Li
    Rickert, Keith
    Marelli, Marcello
    Yoo, Barney
    Turker, Melik Z.
    Overholtzer, Michael
    Quinn, Thomas P.
    Gonen, Mithat
    Zanzonico, Pat
    Tuesca, Anthony
    Bowen, Michael A.
    Norton, Larry
    Subramony, J. Anand
    Wiesner, Ulrich
    Bradbury, Michelle S.
    [J]. NATURE COMMUNICATIONS, 2018, 9
  • [3] Predominant structural configuration of natural antibody repertoires enables potent antibody responses against protein antigens
    Chen, Hong-Sen
    Hou, Shin-Chen
    Jian, Jhih-Wei
    Goh, King-Siang
    Shen, San-Tai
    Lee, Yu-Ching
    You, Jhong-Jhe
    Peng, Hung-Pin
    Kuo, Wen-Chih
    Chen, Shui-Tsung
    Peng, Ming-Chi
    Wang, Andrew H. -J.
    Yu, Chung-Ming
    Chen, Ing-Chien
    Tung, Chao-Ping
    Chen, Tzu-Han
    Chiu, Kuo Ping
    Ma, Che
    Wu, Chih Yuan
    Lin, Sheng-Wei
    Yang, An-Suei
    [J]. SCIENTIFIC REPORTS, 2015, 5
  • [4] Preparation and characterization of Au nanoparticles capped with mercaptocarboranyl clusters
    Cioran, Ana M.
    Teixidor, Francesc
    Krpetic, Zeljka
    Brust, Mathias
    Vinas, Clara
    [J]. DALTON TRANSACTIONS, 2014, 43 (13) : 5054 - 5061
  • [5] "Click" Synthesis and Properties of Carborane-Appended Large Dendrimers
    Djeda, Rodrigue
    Ruiz, Jaime
    Astruc, Didier
    Satapathy, Rashmirekha
    Dash, Barada Prasanna
    Hosmane, Narayan S.
    [J]. INORGANIC CHEMISTRY, 2010, 49 (22) : 10702 - 10709
  • [6] Hosmane N. S., 2019, HDB BORON SCI
  • [7] Hosmane NarayanS., 2016, Boron Science: New Technologies and Applications
  • [8] Hosmane NS., 2012, BORON GADOLINIUM NEU
  • [9] Nanoparticle-mediated cellular response is size-dependent
    Jiang, Wen
    Kim, Betty Y. S.
    Rutka, James T.
    Chan, Warren C. W.
    [J]. NATURE NANOTECHNOLOGY, 2008, 3 (03) : 145 - 150
  • [10] Evaluation of EGFR-targeted radioimmuno-gold-nanoparticles as a theranostic agent in a tumor animal model
    Kao, Hao-Wen
    Lin, Yi-Yu
    Chen, Chao-Cheng
    Chi, Kwan-Hwa
    Tien, Der-Chi
    Hsia, Chien-Chung
    Lin, Ming-Hsien
    Wang, Hsin-Ell
    [J]. BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2013, 23 (11) : 3180 - 3185