Literature DB >> 19263431

Systematic surface engineering of magnetic nanoworms for in vivo tumor targeting.

Ji-Ho Park1, Geoffrey von Maltzahn, Lianglin Zhang, Austin M Derfus, Dmitri Simberg, Todd J Harris, Erkki Ruoslahti, Sangeeta N Bhatia, Michael J Sailor.   

Abstract

In the design of nanoparticles that can target disease tissue in vivo, parameters such as targeting ligand density, type of target receptor, and nanoparticle shape can play an important role in determining the extent of accumulation. Herein, a systematic study of these parameters for the targeting of mouse xenograft tumors is performed using superparamagnetic iron oxide as a model nanoparticle system. The type of targeting peptide (recognizing cell surface versus extracellular matrix), the surface coverage of the peptide, its attachment chemistry, and the shape of the nanomaterial [elongated (nanoworm, NW) versus spherical (nanosphere, NS)] are varied. Nanoparticle circulation times and in vivo tumor-targeting efficiencies are quantified in two xenograft models of human tumors (MDA-MB-435 human carcinoma and HT1080 human fibrosarcoma). It is found that the in vivo tumor-targeting ability of the NW is superior to that of the NS, that the smaller, neutral CREKA targeting group is more effective than the larger, positively charged F3 molecule, that a maximum in tumor-targeting efficiency and blood half-life is observed with approximately 60 CREKA peptides per NW for either the HT1080 or the MDA-MB-435 tumor types, and that incorporation of a 5-kDa polyethylene glycol linker improves targeting to both tumor types relative to a short linker. It is concluded that the blood half-life of a targeting molecule-nanomaterial ensemble is a key consideration when selecting the appropriate ligand and nanoparticle chemistry for tumor targeting.

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Year:  2009        PMID: 19263431      PMCID: PMC3058937          DOI: 10.1002/smll.200801789

Source DB:  PubMed          Journal:  Small        ISSN: 1613-6810            Impact factor:   13.281


  33 in total

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Authors:  L Josephson; C H Tung; A Moore; R Weissleder
Journal:  Bioconjug Chem       Date:  1999 Mar-Apr       Impact factor: 4.774

Review 2.  Cell-penetrating peptides: mechanism and kinetics of cargo delivery.

Authors:  Matjaz Zorko; Ulo Langel
Journal:  Adv Drug Deliv Rev       Date:  2005-01-22       Impact factor: 15.470

3.  Shape effects of filaments versus spherical particles in flow and drug delivery.

Authors:  Yan Geng; Paul Dalhaimer; Shenshen Cai; Richard Tsai; Manorama Tewari; Tamara Minko; Dennis E Discher
Journal:  Nat Nanotechnol       Date:  2007-03-25       Impact factor: 39.213

4.  Magnetic Iron Oxide Nanoworms for Tumor Targeting and Imaging.

Authors:  Ji-Ho Park; Geoffrey von Maltzahn; Lianglin Zhang; Michael P Schwartz; Erkki Ruoslahti; Sangeeta N Bhatia; Michael J Sailor
Journal:  Adv Mater       Date:  2008-05-05       Impact factor: 30.849

5.  Analysis of magnetic material in the human heart, spleen and liver.

Authors:  P P Grassi-Schultheiss; F Heller; J Dobson
Journal:  Biometals       Date:  1997-10       Impact factor: 2.949

6.  Formulation of functionalized PLGA-PEG nanoparticles for in vivo targeted drug delivery.

Authors:  Jianjun Cheng; Benjamin A Teply; Ines Sherifi; Josephine Sung; Gaurav Luther; Frank X Gu; Etgar Levy-Nissenbaum; Aleksandar F Radovic-Moreno; Robert Langer; Omid C Farokhzad
Journal:  Biomaterials       Date:  2006-10-20       Impact factor: 12.479

7.  Biomimetic amplification of nanoparticle homing to tumors.

Authors:  Dmitri Simberg; Tasmia Duza; Ji Ho Park; Markus Essler; Jan Pilch; Lianglin Zhang; Austin M Derfus; Meng Yang; Robert M Hoffman; Sangeeta Bhatia; Michael J Sailor; Erkki Ruoslahti
Journal:  Proc Natl Acad Sci U S A       Date:  2007-01-10       Impact factor: 11.205

8.  Nanoparticle targeting of anticancer drug improves therapeutic response in animal model of human epithelial cancer.

Authors:  Jolanta F Kukowska-Latallo; Kimberly A Candido; Zhengyi Cao; Shraddha S Nigavekar; Istvan J Majoros; Thommey P Thomas; Lajos P Balogh; Mohamed K Khan; James R Baker
Journal:  Cancer Res       Date:  2005-06-15       Impact factor: 12.701

Review 9.  Receptor imaging: competitive or complementary to antibody imaging?

Authors:  S J Goldsmith
Journal:  Semin Nucl Med       Date:  1997-04       Impact factor: 4.446

10.  Peptide-labeled near-infrared quantum dots for imaging tumor vasculature in living subjects.

Authors:  Weibo Cai; Dong-Woon Shin; Kai Chen; Olivier Gheysens; Qizhen Cao; Shan X Wang; Sanjiv S Gambhir; Xiaoyuan Chen
Journal:  Nano Lett       Date:  2006-04       Impact factor: 11.189

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  92 in total

1.  Carbon nanotubes: Fibrillar pharmacology.

Authors:  Kostas Kostarelos
Journal:  Nat Mater       Date:  2010-10       Impact factor: 43.841

Review 2.  Inorganic nanoparticle-based contrast agents for molecular imaging.

Authors:  Eun Chul Cho; Charles Glaus; Jingyi Chen; Michael J Welch; Younan Xia
Journal:  Trends Mol Med       Date:  2010-11-10       Impact factor: 11.951

3.  In vivo clearance and toxicity of monodisperse iron oxide nanocrystals.

Authors:  Luo Gu; Ronnie H Fang; Michael J Sailor; Ji-Ho Park
Journal:  ACS Nano       Date:  2012-06-05       Impact factor: 15.881

4.  Engineered Materials for Cancer Immunotherapy.

Authors:  Alexander S Cheung; David J Mooney
Journal:  Nano Today       Date:  2015-08-01       Impact factor: 20.722

Review 5.  Design rules for nanomedical engineering: from physical virology to the applications of virus-based materials in medicine.

Authors:  Amy M Wen; Pooja H Rambhia; Roger H French; Nicole F Steinmetz
Journal:  J Biol Phys       Date:  2013-04-19       Impact factor: 1.365

6.  Point-of-care diagnostics for noncommunicable diseases using synthetic urinary biomarkers and paper microfluidics.

Authors:  Andrew D Warren; Gabriel A Kwong; David K Wood; Kevin Y Lin; Sangeeta N Bhatia
Journal:  Proc Natl Acad Sci U S A       Date:  2014-02-24       Impact factor: 11.205

7.  Effects of Nanoprobe Morphology on Cellular Binding and Inflammatory Responses: Hyaluronan-Conjugated Magnetic Nanoworms for Magnetic Resonance Imaging of Atherosclerotic Plaques.

Authors:  Seyedmehdi Hossaini Nasr; Anne Tonson; Mohammad H El-Dakdouki; David C Zhu; Dalen Agnew; Robert Wiseman; Chunqi Qian; Xuefei Huang
Journal:  ACS Appl Mater Interfaces       Date:  2018-03-27       Impact factor: 9.229

Review 8.  Design and fabrication of magnetic nanoparticles for targeted drug delivery and imaging.

Authors:  Omid Veiseh; Jonathan W Gunn; Miqin Zhang
Journal:  Adv Drug Deliv Rev       Date:  2009-11-10       Impact factor: 15.470

9.  Cooperative nanomaterial system to sensitize, target, and treat tumors.

Authors:  Ji-Ho Park; Geoffrey von Maltzahn; Mary Jue Xu; Valentina Fogal; Venkata Ramana Kotamraju; Erkki Ruoslahti; Sangeeta N Bhatia; Michael J Sailor
Journal:  Proc Natl Acad Sci U S A       Date:  2009-12-28       Impact factor: 11.205

10.  Tissue-penetrating delivery of compounds and nanoparticles into tumors.

Authors:  Kazuki N Sugahara; Tambet Teesalu; Priya Prakash Karmali; Venkata Ramana Kotamraju; Lilach Agemy; Olivier M Girard; Douglas Hanahan; Robert F Mattrey; Erkki Ruoslahti
Journal:  Cancer Cell       Date:  2009-12-08       Impact factor: 31.743

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