Literature DB >> 16061669

Convection-enhanced drug delivery: increased efficacy and magnetic resonance image monitoring.

Yael Mardor1, Ofer Rahav, Yacov Zauberman, Zvi Lidar, Aharon Ocherashvilli, Dianne Daniels, Yiftach Roth, Stephan E Maier, Arie Orenstein, Zvi Ram.   

Abstract

Convection-enhanced drug delivery (CED) is a novel approach to directly deliver drugs into brain tissue and brain tumors. It is based on delivering a continuous infusion of drugs via intracranial catheters, enabling convective distribution of high drug concentrations over large volumes of the target tissue while avoiding systemic toxicity. Efficient formation of convection depends on various physical and physiologic variables. Previous convection-based clinical trials showed significant diversity in the extent of convection among patients and drugs. Monitoring convection has proven to be an essential, yet difficult task. The current study describes the application of magnetic resonance imaging for immediate assessment of convection efficiency and early assessment of cytotoxic tissue response in a rat brain model. Immediate assessment of infusate distribution was obtained by mixing Gd-diethylenetriaminepentaacetic acid in the infusate prior to infusion. Early assessment of cytotoxic tissue response was obtained by subsequent diffusion-weighted magnetic resonance imaging. In addition, the latter imaging methodologies were used to establish the correlation between CED extent and infusate's viscosity. It was found that low-viscosity infusates tend to backflow along the catheter track, whereas high-viscosity infusates tend to form efficient convection. These results suggest that CED formation and extent may be significantly improved by increasing the infusate's viscosities, thus increasing treatment effects.

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Year:  2005        PMID: 16061669     DOI: 10.1158/0008-5472.CAN-05-0161

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  45 in total

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Authors:  Jung Hwan Kim; Garrett W Astary; Tatiana L Nobrega; Svetlana Kantorovich; Paul R Carney; Thomas H Mareci; Malisa Sarntinoranont
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Review 4.  Real-time imaging and quantification of brain delivery of liposomes.

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6.  Convection-enhanced drug delivery of interleukin-4 Pseudomonas exotoxin (PRX321): increased distribution and magnetic resonance monitoring.

Authors:  Y Mardor; D Last; D Daniels; R Shneor; S E Maier; D Nass; Z Ram
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7.  Long-term safety of combined intracerebral delivery of free gadolinium and targeted chemotherapeutic agent PRX321.

Authors:  Dale Ding; Charles W Kanaly; Thomas J Cummings; James E Herndon; Raghu Raghavan; John H Sampson
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Review 8.  Convection-Enhanced Delivery.

Authors:  A M Mehta; A M Sonabend; J N Bruce
Journal:  Neurotherapeutics       Date:  2017-04       Impact factor: 7.620

9.  Local delivery of ferrociphenol lipid nanocapsules followed by external radiotherapy as a synergistic treatment against intracranial 9L glioma xenograft.

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Review 10.  Convection-enhanced delivery for the treatment of brain tumors.

Authors:  Waldemar Debinski; Stephen B Tatter
Journal:  Expert Rev Neurother       Date:  2009-10       Impact factor: 4.618

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