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Delivery of Antibodies into the Murine Brain via Convection-enhanced Delivery
Published on: July 18, 2019
The distribution, clearance, and brainstem toxicity of panobinostat administered by convection-enhanced delivery
William G B Singleton1, Alison S Bienemann1, Max Woolley1,2
11Functional Neurosurgery Research Group, School of Clinical Sciences, University of Bristol.
Abstract:
OBJECTIVE The pan-histone deacetylase inhibitor panobinostat has preclinical efficacy against diffuse intrinsic pontine glioma (DIPG), and the oral formulation has entered a Phase I clinical trial. However, panobinostat does not cross the blood-brain barrier in humans. Convection-enhanced delivery (CED) is a novel neurosurgical drug delivery technique that bypasses the blood-brain barrier and is of considerable clinical interest in the treatment of DIPG. METHODS The authors investigated the toxicity, distribution, and clearance of a water-soluble formulation of panobinostat (MTX110) in a small- and large-animal model of CED. Juvenile male Wistar rats (n = 24) received panobinostat administered to the pons by CED at increasing concentrations and findings were compared to those in animals that received vehicle alone (n = 12). Clinical observation continued for 2 weeks. Animals were sacrificed at 72 hours or 2 weeks following treatment, and the brains were subjected to neuropathological analysis. A further 8 animals received panobinostat by CED to the striatum and were sacrificed 0, 2, 6, or 24 hours after infusion, and their brains explanted and snap-frozen. Tissue-drug concentration was determined by liquid chromatography tandem mass spectrometry (LC-MS/MS). Large-animal toxicity was investigated using a clinically relevant MRI-guided translational porcine model of CED in which a drug delivery system designed for humans was used. Panobinostat was administered at 30 microM to the ventral pons of 2 juvenile Large White-Landrace cross pigs. The animals were subjected to clinical and neuropathological analysis, and findings were compared to those obtained in controls after either 1 or 2 weeks. Drug distribution was determined by LC-MS/MS in porcine white and gray matter immediately after CED. RESULTS There were no clinical or neuropathological signs of toxicity up to an infused concentration of 30 microM in both small- and large-animal models. The half-life of panobinostat in rat brain after CED was 2.9 hours, and the drug was observed to be distributed in porcine white and gray matter with a volume infusion/distribution ratio of 2 and 3, respectively. CONCLUSIONS CED of water-soluble panobinostat, up to a concentration of 30 microM, was not toxic and was distributed effectively in normal brain. CED of panobinostat warrants clinical investigation in patients with DIPG.
Insights
Convection-enhanced delivery (CED) of panobinostat showed no toxicity in animal models. This drug delivery method effectively distributes panobinostat in the brain, warranting clinical trials for diffuse intrinsic pontine glioma (DIPG).
Area of Science:
- Neuroscience
- Oncology
- Drug Delivery
Background:
- Pan-histone deacetylase inhibitor panobinostat demonstrates preclinical efficacy against diffuse intrinsic pontine glioma (DIPG).
- Oral panobinostat has entered Phase I clinical trials, but it does not cross the human blood-brain barrier.
- Convection-enhanced delivery (CED) is a promising neurosurgical technique to bypass the blood-brain barrier for DIPG treatment.
Purpose of the Study:
- To investigate the toxicity, distribution, and clearance of a water-soluble panobinostat formulation (MTX110) using CED in small- and large-animal models.
- To evaluate the safety and efficacy of CED for delivering panobinostat directly into the brain.
Main Methods:
- Small-animal model: Juvenile Wistar rats received panobinostat via CED to the pons at increasing concentrations, with neuropathological analysis at 72 hours or 2 weeks.
- Pharmacokinetics: Panobinostat distribution and clearance were assessed in rat brains at various time points post-infusion using LC-MS/MS.
- Large-animal model: A translational porcine model underwent MRI-guided CED of panobinostat to the ventral pons, followed by clinical and neuropathological assessment.
Main Results:
- No clinical or neuropathological signs of toxicity were observed in either animal model at infused concentrations up to 30 microM.
- Panobinostat exhibited a half-life of 2.9 hours in rat brain following CED.
- Effective distribution of panobinostat was observed in porcine white and gray matter, with volume infusion/distribution ratios of 2 and 3, respectively.
Conclusions:
- CED of water-soluble panobinostat (MTX110) up to 30 microM is safe and effectively distributes within the brain in preclinical models.
- CED of panobinostat demonstrates potential as a viable treatment strategy for diffuse intrinsic pontine glioma (DIPG) and warrants further clinical investigation.
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