Literature DB >> 26031842

Tumor vascular targeted liposomal-bortezomib minimizes side effects and increases therapeutic activity in human neuroblastoma.

Guendalina Zuccari1, Andrea Milelli1, Fabio Pastorino2, Monica Loi2, Andrea Petretto3, Amelia Parise1, Chiara Marchetti4, Anna Minarini4, Michele Cilli5, Laura Emionite5, Daniela Di Paolo2, Chiara Brignole2, Francesca Piaggio2, Patrizia Perri2, Vincenzo Tumiatti1, Vito Pistoia2, Gabriella Pagnan2, Mirco Ponzoni6.   

Abstract

Neuroblastoma is a childhood cancer with poor long-term prognosis in advanced stages. A major aim in neuroblastoma therapy is to develop targeted drug delivery systems to ameliorate drug therapeutic index and efficacy. In this study, a novel bortezomib (BTZ) liposomal formulation was set-up and characterized. Since BTZ is freely permeable across the lipidic bilayer, an amino-lactose (LM) was synthesized as complexing agent to entrap BTZ inside the internal aqueous compartment of stealth liposomes. High encapsulation efficiency was achieved by a loading method based on the formation of boronic esters between the boronic acid moiety of BTZ and the hydroxyl groups of LM. Next, NGR peptides were linked to the liposome surface as a targeting-ligand for the tumor endothelial cell marker, aminopeptidase N. Liposomes were characterized for size, Z-potential, polydispersity index, drug content, and release. Lyophilization in the presence of cryoprotectants (trehalose, sucrose) was also examined in terms of particle size changes and drug leakage. BTZ was successfully loaded into non-targeted (SL[LM-BTZ]) and targeted (NGR-SL[LM-BTZ]) liposomes with an entrapment efficiency of about 68% and 57%, respectively. These nanoparticles were suitable for intravenous administration, presenting an average diameter of 170nm and narrow polydispersity. Therefore, orthotopic NB-bearing mice were treated with 1.0 or 1.5mg/kg of BTZ, either in free form or encapsulated into liposomes. BTZ loaded liposomes showed a significant reduction of drug systemic adverse effects with respect to free drug, even at the highest dose tested. Moreover, mice treated with 1.5mg/kg of NGR-SL[LM-BTZ] lived statistically longer than untreated mice (P=0.0018) and SL[LM-BTZ]-treated mice (P=0.0256). Our results demonstrate that the novel vascular targeted BTZ formulation is endowed with high therapeutic index and low toxicity, providing a new tool for future applications in neuroblastoma clinical studies.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Bortezomib; Neuroblastoma; Stealth liposomes; Targeted therapy; Vascular targeting

Mesh:

Substances:

Year:  2015        PMID: 26031842     DOI: 10.1016/j.jconrel.2015.05.286

Source DB:  PubMed          Journal:  J Control Release        ISSN: 0168-3659            Impact factor:   9.776


  11 in total

1.  Multifunctional Telodendrimer Nanocarriers Restore Synergy of Bortezomib and Doxorubicin in Ovarian Cancer Treatment.

Authors:  Lili Wang; Changying Shi; Forrest A Wright; Dandan Guo; Xu Wang; Dongliang Wang; Richard J H Wojcikiewicz; Juntao Luo
Journal:  Cancer Res       Date:  2017-04-10       Impact factor: 12.701

2.  Succinimide Formation from an NGR-Containing Cyclic Peptide: Computational Evidence for Catalytic Roles of Phosphate Buffer and the Arginine Side Chain.

Authors:  Ryota Kirikoshi; Noriyoshi Manabe; Ohgi Takahashi
Journal:  Int J Mol Sci       Date:  2017-02-16       Impact factor: 5.923

3.  Enhanced anticancer efficacy of paclitaxel through multistage tumor-targeting liposomes modified with RGD and KLA peptides.

Authors:  Jiawei Sun; Lei Jiang; Yi Lin; Ethan Michael Gerhard; Xuehua Jiang; Li Li; Jian Yang; Zhongwei Gu
Journal:  Int J Nanomedicine       Date:  2017-02-27

4.  The Proteasome Inhibitor Ixazomib Inhibits the Formation and Growth of Pulmonary and Abdominal Osteosarcoma Metastases in Mice.

Authors:  Michael A Harris; Mark A Miles; Tanmay M Shekhar; Carmelo Cerra; Smitha R Georgy; Stewart D Ryan; Claire M Cannon; Christine J Hawkins
Journal:  Cancers (Basel)       Date:  2020-05-11       Impact factor: 6.639

5.  A light-driven dual-nanotransformer with deep tumor penetration for efficient chemo-immunotherapy.

Authors:  Jiahui Peng; Fangman Chen; Yulu Liu; Fan Zhang; Lei Cao; Qiannan You; Dian Yang; Zhimin Chang; Mingfeng Ge; Li Li; Zheng Wang; Qian Mei; Dan Shao; Meiwan Chen; Wen-Fei Dong
Journal:  Theranostics       Date:  2022-01-24       Impact factor: 11.556

6.  Cell surface Nucleolin represents a novel cellular target for neuroblastoma therapy.

Authors:  Chiara Brignole; Veronica Bensa; Nuno A Fonseca; Genny Del Zotto; Silvia Bruno; Ana F Cruz; Fabiana Malaguti; Barbara Carlini; Fabio Morandi; Enzo Calarco; Patrizia Perri; Vera Moura; Laura Emionite; Michele Cilli; Francesco De Leonardis; Annalisa Tondo; Loredana Amoroso; Massimo Conte; Alberto Garaventa; Angela R Sementa; Maria V Corrias; Mirco Ponzoni; Joao N Moreira; Fabio Pastorino
Journal:  J Exp Clin Cancer Res       Date:  2021-06-02

Review 7.  Novel Treatments and Technologies Applied to the Cure of Neuroblastoma.

Authors:  Irene Paraboschi; Laura Privitera; Gabriela Kramer-Marek; John Anderson; Stefano Giuliani
Journal:  Children (Basel)       Date:  2021-06-07

8.  Role of Nrf2, HO-1 and GSH in Neuroblastoma Cell Resistance to Bortezomib.

Authors:  A L Furfaro; S Piras; C Domenicotti; D Fenoglio; A De Luigi; M Salmona; L Moretta; U M Marinari; M A Pronzato; N Traverso; M Nitti
Journal:  PLoS One       Date:  2016-03-29       Impact factor: 3.240

9.  Phosphate-Catalyzed Succinimide Formation from an NGR-Containing Cyclic Peptide: A Novel Mechanism for Deammoniation of the Tetrahedral Intermediate.

Authors:  Ryota Kirikoshi; Noriyoshi Manabe; Ohgi Takahashi
Journal:  Molecules       Date:  2018-08-31       Impact factor: 4.411

Review 10.  Progress on the Application of Bortezomib and Bortezomib-Based Nanoformulations.

Authors:  Jianhao Liu; Ruogang Zhao; Xiaowen Jiang; Zhaohuan Li; Bo Zhang
Journal:  Biomolecules       Date:  2021-12-30
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