4.6 Article

Detection of infusate leakage in the brain using real-time imaging of convection-enhanced delivery

期刊

JOURNAL OF NEUROSURGERY
卷 109, 期 5, 页码 874-880

出版社

AMER ASSOC NEUROLOGICAL SURGEONS
DOI: 10.3171/JNS/2008/109/11/0874

关键词

brain; convection-enhanced delivery; leakage; liposome; magnetic resonance imaging; real-time imaging

资金

  1. NCI NIH HHS [P50 CA097257] Funding Source: Medline
  2. NINDS NIH HHS [U54 NS045309, R01 NS050156-03, NS050156-01A2, U54 NS045309-010001, R01 NS050156] Funding Source: Medline

向作者/读者索取更多资源

Object. The authors have shown that convection-enhanced delivery (CED) of gadoteridol-loaded liposomes (GDLs) into different regions of normal monkey brain results ill predictable, widespread distribution of this tracking agent as detected by real-time MR imaging. They also have found that this tracking technique allows monitoring of the distribution of similar nanosized agents such as therapeutic liposomes and viral vectors. A limitation of this procedure is the unexpected leakage of liposomes out of targeted parenchyma or malignancies into sulci and ventricles. The aim of the present study was to evaluate the efficacy of CED after the onset of these types of leakage. Methods. The authors documented this phenomenon in a study of 5 nonhuman primates and 7 canines, comprising 54 CED infusion sessions. Approximately 20% of these infusions resulted ill leakage into cerebral ventricles or sulci. All of the infusions and leakage events were monitored with real-time MR imaging. The authors created volume-distributed versus volume-infused graphs for each infusion session. These graphs revealed the rate of distribution of GDL over the course of each infusion and allowed the authors to evaluate the progress of CED before and after leakage. Results. The distribution of therapeutics within the target structure ceased to increase or resulted in significant attenuation after the onset of leakage. Conclusions. An analysis of the cases in this study revealed that leakage undermines the efficacy of CED. These findings reiterate the importance of real-time MR imaging Visualization during CED to ensure all accurate, robust distribution of therapeutic agents.

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