Literature DB >> 28345871

In Vivo Targeting and Positron Emission Tomography Imaging of Tumor with Intrinsically Radioactive Metal-Organic Frameworks Nanomaterials.

Daiqin Chen1, Dongzhi Yang1,2, Casey A Dougherty1, Weifei Lu1,3, Hongwei Wu1, Xianran He4, Ting Cai5, Marcian E Van Dort1,6, Brian D Ross1,6, Hao Hong1,4,6.   

Abstract

Nanoscale metal-organic frameworks (nMOF) materials represent an attractive tool for various biomedical applications. Due to the chemical versatility, enormous porosity, and tunable degradability of nMOFs, they have been adopted as carriers for delivery of imaging and/or therapeutic cargos. However, the relatively low stability of most nMOFs has limited practical in vivo applications. Here we report the production and characterization of an intrinsically radioactive UiO-66 nMOF (89Zr-UiO-66) with incorporation of positron-emitting isotope zirconium-89 (89Zr). 89Zr-UiO-66 was further functionalized with pyrene-derived polyethylene glycol (Py-PGA-PEG) and conjugated with a peptide ligand (F3) to nucleolin for targeting of triple-negative breast tumors. Doxorubicin (DOX) was loaded onto UiO-66 with a relatively high loading capacity (1 mg DOX/mg UiO-66) and served as both a therapeutic cargo and a fluorescence visualizer in this study. Functionalized 89Zr-UiO-66 demonstrated strong radiochemical and material stability in different biological media. Based on the findings from cellular targeting and in vivo positron emission tomography (PET) imaging, we can conclude that 89Zr-UiO-66/Py-PGA-PEG-F3 can serve as an image-guidable, tumor-selective cargo delivery nanoplatform. In addition, toxicity evaluation confirmed that properly PEGylated UiO-66 did not impose acute or chronic toxicity to the test subjects. With selective targeting of nucleolin on both tumor vasculature and tumor cells, this intrinsically radioactive nMOF can find broad application in cancer theranostics.

Entities:  

Keywords:  cancer targeting; image-guided drug delivery; intrinsic radiolabel; metal−organic frameworks (MOF); nucleolin; positron emission tomography

Mesh:

Substances:

Year:  2017        PMID: 28345871      PMCID: PMC5477053          DOI: 10.1021/acsnano.7b01530

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  41 in total

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Authors:  Myunghyun Paik Suh; Hye Jeong Park; Thazhe Kootteri Prasad; Dae-Woon Lim
Journal:  Chem Rev       Date:  2011-12-22       Impact factor: 60.622

2.  Porous metal-organic-framework nanoscale carriers as a potential platform for drug delivery and imaging.

Authors:  Patricia Horcajada; Tamim Chalati; Christian Serre; Brigitte Gillet; Catherine Sebrie; Tarek Baati; Jarrod F Eubank; Daniela Heurtaux; Pascal Clayette; Christine Kreuz; Jong-San Chang; Young Kyu Hwang; Veronique Marsaud; Phuong-Nhi Bories; Luc Cynober; Sophie Gil; Gérard Férey; Patrick Couvreur; Ruxandra Gref
Journal:  Nat Mater       Date:  2009-12-13       Impact factor: 43.841

3.  Inherent anchorages in UiO-66 nanoparticles for efficient capture of alendronate and its mediated release.

Authors:  Xiangyang Zhu; Jinlou Gu; Yao Wang; Bing Li; Yongsheng Li; Wenru Zhao; Jianlin Shi
Journal:  Chem Commun (Camb)       Date:  2014-06-26       Impact factor: 6.222

4.  Turn-on fluorescence triggered by selective internal dye replacement in MOFs.

Authors:  Stefan Wuttke; Christian Dietl; Florian M Hinterholzinger; Henrik Hintz; Heinz Langhals; Thomas Bein
Journal:  Chem Commun (Camb)       Date:  2014-04-07       Impact factor: 6.222

Review 5.  Metal-Organic Framework-Based Nanomedicine Platforms for Drug Delivery and Molecular Imaging.

Authors:  Wen Cai; Cheng-Chao Chu; Gang Liu; Yì-Xiáng J Wáng
Journal:  Small       Date:  2015-07-20       Impact factor: 13.281

6.  Self-assembled nanoscale coordination polymers carrying siRNAs and cisplatin for effective treatment of resistant ovarian cancer.

Authors:  Chunbai He; Demin Liu; Wenbin Lin
Journal:  Biomaterials       Date:  2014-10-12       Impact factor: 12.479

7.  Zr- and Hf-based nanoscale metal-organic frameworks as contrast agents for computed tomography.

Authors:  Kathryn E Dekrafft; William S Boyle; Laurel M Burk; Otto Z Zhou; Wenbin Lin
Journal:  J Mater Chem       Date:  2012-06-07

8.  pH in the endosome. Measurements during pinocytosis and receptor-mediated endocytosis.

Authors:  M J Geisow; W H Evans
Journal:  Exp Cell Res       Date:  1984-01       Impact factor: 3.905

9.  Postsynthetic modifications of iron-carboxylate nanoscale metal-organic frameworks for imaging and drug delivery.

Authors:  Kathryn M L Taylor-Pashow; Joseph Della Rocca; Zhigang Xie; Sylvie Tran; Wenbin Lin
Journal:  J Am Chem Soc       Date:  2009-10-14       Impact factor: 15.419

Review 10.  Overcoming multidrug resistance with nanomedicines.

Authors:  Assaf Ganoth; Keren Cohen Merimi; Dan Peer
Journal:  Expert Opin Drug Deliv       Date:  2014-09-16       Impact factor: 6.648

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  32 in total

Review 1.  Recent progress in nanoscale metal-organic frameworks for drug release and cancer therapy.

Authors:  Liangcan He; Yuan Liu; Joseph Lau; Wenpei Fan; Qunying Li; Chao Zhang; Pintong Huang; Xiaoyuan Chen
Journal:  Nanomedicine (Lond)       Date:  2019-05-14       Impact factor: 5.307

Review 2.  Recent developments on zinc(ii) metal-organic framework nanocarriers for physiological pH-responsive drug delivery.

Authors:  Weicong Liu; Ying Pan; Weiwei Xiao; Hongjia Xu; Dong Liu; Fei Ren; Xinsheng Peng; Jianqiang Liu
Journal:  Medchemcomm       Date:  2019-10-17       Impact factor: 3.597

3.  Ultra-small iron-gallic acid coordination polymer nanoparticles for chelator-free labeling of 64Cu and multimodal imaging-guided photothermal therapy.

Authors:  Qiutong Jin; Wenjun Zhu; Dawei Jiang; Rui Zhang; Christopher J Kutyreff; Jonathan W Engle; Peng Huang; Weibo Cai; Zhuang Liu; Liang Cheng
Journal:  Nanoscale       Date:  2017-08-31       Impact factor: 7.790

4.  Reassembly of 89 Zr-Labeled Cancer Cell Membranes into Multicompartment Membrane-Derived Liposomes for PET-Trackable Tumor-Targeted Theranostics.

Authors:  Bo Yu; Shreya Goel; Dalong Ni; Paul A Ellison; Cerise M Siamof; Dawei Jiang; Liang Cheng; Lei Kang; Faquan Yu; Zhuang Liu; Todd E Barnhart; Qianjun He; Han Zhang; Weibo Cai
Journal:  Adv Mater       Date:  2018-02-12       Impact factor: 30.849

Review 5.  A review of advances in the last decade on targeted cancer therapy using 177Lu: focusing on 177Lu produced by the direct neutron activation route.

Authors:  Rubel Chakravarty; Sudipta Chakraborty
Journal:  Am J Nucl Med Mol Imaging       Date:  2021-12-15

Review 6.  Radiolabeled nanomaterials for biomedical applications: radiopharmacy in the era of nanotechnology.

Authors:  Martha Sahylí Ortega Pijeira; Herlys Viltres; Jan Kozempel; Michal Sakmár; Martin Vlk; Derya İlem-Özdemir; Meliha Ekinci; Seshasai Srinivasan; Amin Reza Rajabzadeh; Eduardo Ricci-Junior; Luciana Magalhães Rebelo Alencar; Mohammed Al Qahtani; Ralph Santos-Oliveira
Journal:  EJNMMI Radiopharm Chem       Date:  2022-04-25

7.  Renal-Clearable Ultrasmall Coordination Polymer Nanodots for Chelator-Free 64Cu-Labeling and Imaging-Guided Enhanced Radiotherapy of Cancer.

Authors:  Sida Shen; Dawei Jiang; Liang Cheng; Yu Chao; Kaiqi Nie; Ziliang Dong; Christopher J Kutyreff; Jonathan W Engle; Peng Huang; Weibo Cai; Zhuang Liu
Journal:  ACS Nano       Date:  2017-09-05       Impact factor: 15.881

8.  Recent advances in porous nanostructures for cancer theranostics.

Authors:  Jinping Wang; Beilu Zhang; Jingyu Sun; Wei Hu; Hongjun Wang
Journal:  Nano Today       Date:  2021-04-08       Impact factor: 18.962

9.  High-yield halide-assisted synthesis of metal-organic framework UiO-based nanocarriers.

Authors:  Manuel Ceballos; Manuela Cedrún-Morales; Manuel Rodríguez-Pérez; Samuel Funes-Hernando; José Manuel Vila-Fungueiriño; Giulia Zampini; Maria F Navarro Poupard; Ester Polo; Pablo Del Pino; Beatriz Pelaz
Journal:  Nanoscale       Date:  2022-05-16       Impact factor: 8.307

Review 10.  Fe₃O₄ Nanoparticles in Targeted Drug/Gene Delivery Systems.

Authors:  Lazhen Shen; Bei Li; Yongsheng Qiao
Journal:  Materials (Basel)       Date:  2018-02-23       Impact factor: 3.623

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