Related Experiment Video
Updated: May 22, 2026

Delivery of Antibodies into the Murine Brain via Convection-enhanced Delivery
Published on: July 18, 2019
Convection-enhanced delivery of M13 bacteriophage to the brain
Alexander Ksendzovsky1, Stuart Walbridge, Richard C Saunders
1Surgical Neurology Branch, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892-1414,USA.
Object:
Recent studies indicate that M13 bacteriophage, a very large nanoparticle, binds to β-amyloid and α-synuclein proteins, leading to plaque disaggregation in models of Alzheimer and Parkinson disease. To determine the feasibility, safety, and characteristics of convection-enhanced delivery (CED) of M13 bacteriophage to the brain, the authors perfused primate brains with bacteriophage.
Methods:
Four nonhuman primates underwent CED of M13 bacteriophage (900 nm) to thalamic gray matter (4 infusions) and frontal white matter (3 infusions). Bacteriophage was coinfused with Gd-DTPA (1 mM), and serial MRI studies were performed during infusion. Animals were monitored for neurological deficits and were killed 3 days after infusion. Tissues were analyzed for bacteriophage distribution.
Results:
Real-time T1-weighted MRI studies of coinfused Gd-DTPA during infusion demonstrated a discrete region of perfusion in both thalamic gray and frontal white matter. An MRI-volumetric analysis revealed that the mean volume of distribution (Vd) to volume of infusion (Vi) ratio of M13 bacteriophage was 2.3 ± 0.2 in gray matter and 1.9 ± 0.3 in white matter. The mean values are expressed ± SD. Immunohistochemical analysis demonstrated mean Vd:Vi ratios of 2.9 ± 0.2 in gray matter and 2.1 ± 0.3 in white matter. The Gd-DTPA accurately tracked M13 bacteriophage distribution (the mean difference between imaging and actual bacteriophage Vd was insignificant [p > 0.05], and was -2.2% ± 9.9% in thalamic gray matter and 9.1% ± 9.5% in frontal white matter). Immunohistochemical analysis revealed evidence of additional spread from the initial delivery site in white matter (mean Vd:Vi, 16.1 ± 9.1). All animals remained neurologically intact after infusion during the observation period, and histological studies revealed no evidence of toxicity.
Conclusions:
The CED method can be used successfully and safely to distribute M13 bacteriophage in the brain. Furthermore, additional white matter spread after infusion cessation enhances distribution of this large nanoparticle. Real-time MRI studies of coinfused Gd-DTPA (1 mM) can be used for accurate tracking of distribution during infusion of M13 bacteriophage.
Insights
Convection-enhanced delivery (CED) safely distributes M13 bacteriophage, a nanoparticle targeting Alzheimer's and Parkinson's proteins, in primate brains. MRI accurately tracks distribution, showing potential for treating neurodegenerative diseases.
Area of Science:
- Neuroscience
- Biotechnology
- Nanomedicine
Background:
- M13 bacteriophage nanoparticles show potential for disaggregating beta-amyloid and alpha-synuclein plaques.
- Alzheimer and Parkinson diseases are characterized by protein aggregation.
Purpose of the Study:
- To assess the feasibility, safety, and distribution characteristics of convection-enhanced delivery (CED) of M13 bacteriophage to the brain.
- To evaluate real-time MRI tracking of M13 bacteriophage distribution during CED.
Main Methods:
- Convection-enhanced delivery (CED) of M13 bacteriophage (900 nm) and Gd-DTPA to thalamic gray matter and frontal white matter in four nonhuman primates.
- Serial MRI studies during infusion to track distribution.
- Post-infusion histological analysis for bacteriophage distribution and toxicity.
Main Results:
- CED successfully delivered M13 bacteriophage to both gray and white matter, with MRI accurately reflecting distribution.
- Immunohistochemistry confirmed bacteriophage distribution, showing significant spread in white matter post-infusion.
- Animals remained neurologically intact, and histological studies showed no evidence of toxicity.
Conclusions:
- Convection-enhanced delivery (CED) is a safe and effective method for distributing M13 bacteriophage in the brain.
- M13 bacteriophage exhibits enhanced distribution in white matter after infusion cessation.
- Real-time MRI with Gd-DTPA is a reliable tool for monitoring bacteriophage delivery during CED.
More Related Videos
08:52Convection Enhanced Delivery of Optogenetic Adeno-associated Viral Vector to the Cortex of Rhesus Macaque Under Guidance of Online MRI Images
Published on: May 23, 2019
05:51Intracerebroventricular and Intravascular Injection of Viral Particles and Fluorescent Microbeads into the Neonatal Brain
Published on: July 24, 2016
Related Concept Videos
DNA Bacteriophages
Viral Meningitis
Lytic Cycle of Bacteriophages