Literature DB >> 19188313

Imaging nanoprobe for prediction of outcome of nanoparticle chemotherapy by using mammography.

Efstathios Karathanasis1, Sankararaman Suryanarayanan, Sri R Balusu, Kathleen McNeeley, Ioannis Sechopoulos, Andrew Karellas, Ananth V Annapragada, Ravi V Bellamkonda.   

Abstract

PURPOSE: To prospectively predict the effectiveness of a clinically used nanochemotherapeutic agent by detecting and measuring the intratumoral uptake of an x-ray contrast agent nanoprobe by using digital mammography.
MATERIALS AND METHODS: All animal procedures were approved by the institutional animal care and use committee. A long-circulating 100-nm-scale injectable liposomal probe encapsulating 155 mg/mL iodine was developed. Preliminary studies were performed to identify the agent dose that would result in adequate tumor enhancement without enhancement of the normal vasculature in rats. This dose was used to image a rat breast tumor (n = 14) intermittently for 3 days by using a digital mammography system; subsequently, the animals were treated with liposomal doxorubicin. The predictive capability of the probe was characterized by creating good- and bad-prognosis subgroups, on the basis of tumor enhancement found during imaging, and analyzing the tumor growth after treatment of the animals in these two subgroups.
RESULTS: A dose of 455 mg of iodine per kilogram of body weight was found to produce an undetectable signal from the blood while achieving enough intratumoral accumulation of the probe to produce adequate signal for detection. The good- and bad-prognosis subgroups demonstrated differential tumor growth rates (P < .003). An inverse linear relationship between the contrast enhancement rate constant during imaging and the tumor growth rate constant during treatment was found (slope = -0.576, R(2) = 0.838).
CONCLUSION: In this animal model, quantitative measurement of vascular permeability enabled prediction of therapeutic responsiveness of tumors to liposomal doxorubicin.

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Year:  2009        PMID: 19188313     DOI: 10.1148/radiol.2502080801

Source DB:  PubMed          Journal:  Radiology        ISSN: 0033-8419            Impact factor:   11.105


  42 in total

1.  Evaluation of tumor microenvironment in an animal model using a nanoparticle contrast agent in computed tomography imaging.

Authors:  Ketan B Ghaghada; Cristian T Badea; Lohitash Karumbaiah; Nicole Fettig; Ravi V Bellamkonda; G A Johnson; Ananth Annapragada
Journal:  Acad Radiol       Date:  2011-01       Impact factor: 3.173

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

Review 3.  Nanotechnology for computed tomography: a real potential recently disclosed.

Authors:  Nicolas Anton; Thierry F Vandamme
Journal:  Pharm Res       Date:  2013-07-30       Impact factor: 4.200

Review 4.  High-resolution CT vascular imaging using blood pool contrast agents.

Authors:  Ananth V Annapragada; Eric Hoffman; Abhay Divekar; Efstathios Karathanasis; Ketan B Ghaghada
Journal:  Methodist Debakey Cardiovasc J       Date:  2012-01

5.  Precise targeting of cancer metastasis using multi-ligand nanoparticles incorporating four different ligands.

Authors:  P M Peiris; F He; G Covarrubias; S Raghunathan; O Turan; M Lorkowski; B Gnanasambandam; C Wu; W P Schiemann; E Karathanasis
Journal:  Nanoscale       Date:  2018-04-19       Impact factor: 7.790

6.  Vascular Targeting of a Gold Nanoparticle to Breast Cancer Metastasis.

Authors:  Pubudu M Peiris; Partha Deb; Elizabeth Doolittle; Gilad Doron; Amy Goldberg; Priya Govender; Shruti Shah; Swetha Rao; Sarah Carbone; Thomas Cotey; Meilyn Sylvestre; Sohaj Singh; William P Schiemann; Zhenghong Lee; Efstathios Karathanasis
Journal:  J Pharm Sci       Date:  2015-06-02       Impact factor: 3.534

7.  A multifunctional nanoplatform for imaging, radiotherapy, and the prediction of therapeutic response.

Authors:  Casey McQuade; Ajlan Al Zaki; Yaanik Desai; Michael Vido; Timothy Sakhuja; Zhiliang Cheng; Robert J Hickey; Daniel Joh; So-Jung Park; Gary Kao; Jay F Dorsey; Andrew Tsourkas
Journal:  Small       Date:  2014-09-29       Impact factor: 13.281

Review 8.  Shaping cancer nanomedicine: the effect of particle shape on the in vivo journey of nanoparticles.

Authors:  Randall Toy; Pubudu M Peiris; Ketan B Ghaghada; Efstathios Karathanasis
Journal:  Nanomedicine (Lond)       Date:  2014-01       Impact factor: 5.307

9.  In vivo characterization of tumor vasculature using iodine and gold nanoparticles and dual energy micro-CT.

Authors:  Darin P Clark; Ketan Ghaghada; Everett J Moding; David G Kirsch; Cristian T Badea
Journal:  Phys Med Biol       Date:  2013-02-19       Impact factor: 3.609

10.  Selective targeting of nanocarriers to neutrophils and monocytes.

Authors:  Efstathios Karathanasis; Cissy M Geigerman; Charles A Parkos; Leslie Chan; Ravi V Bellamkonda; David L Jaye
Journal:  Ann Biomed Eng       Date:  2009-04-23       Impact factor: 3.934

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