Validation of Cadherin HAV6 Peptide in the Transient Modulation of the Blood-Brain Barrier for the Treatment of Brain Tumors.
Babu V SajeshNgoc H OnRefaat OmarSamaa AlrushaidBrian M KopecWei-Guang WangHan-Dong SunRyan LillicoTed M LakowskiTeruna J SiahaanNeal M DaviesPema-Tenzin PunoMagimairajan Issai VananDonald W MillerPublished in: Pharmaceutics (2019)
The blood-brain barrier (BBB) poses a major obstacle by preventing potential therapeutic agents from reaching their intended brain targets at sufficient concentrations. While transient disruption of the BBB has been used to enhance chemotherapeutic efficacy in treating brain tumors, limitations in terms of magnitude and duration of BBB disruption exist. In the present study, the preliminary safety and efficacy profile of HAV6, a peptide that binds to the external domains of cadherin, to transiently open the BBB and improve the delivery of a therapeutic agent, was evaluated in a murine brain tumor model. Transient opening of the BBB in response to HAV6 peptide administration was quantitatively characterized using both a gadolinium magnetic resonance imaging (MRI) contrast agent and adenanthin (Ade), the intended therapeutic agent. The effects of HAV6 peptide on BBB integrity and the efficacy of concurrent administration of HAV6 peptide and the small molecule inhibitor, Ade, in the growth and progression of an orthotopic medulloblastoma mouse model using human D425 tumor cells was examined. Systemic administration of HAV6 peptide caused transient, reversible disruption of BBB in mice. Increases in BBB permeability produced by HAV6 were rapid in onset and observed in all regions of the brain examined. Concurrent administration of HAV6 peptide with Ade, a BBB impermeable inhibitor of Peroxiredoxin-1, caused reduced tumor growth and increased survival in mice bearing medulloblastoma. The rapid onset and transient nature of the BBB modulation produced with the HAV6 peptide along with its uniform disruption and biocompatibility is well-suited for CNS drug delivery applications, especially in the treatment of brain tumors.
Keyphrases
- blood brain barrier
- cerebral ischemia
- magnetic resonance imaging
- small molecule
- mouse model
- drug delivery
- endothelial cells
- contrast enhanced
- type diabetes
- magnetic resonance
- minimally invasive
- metabolic syndrome
- resting state
- subarachnoid hemorrhage
- brain injury
- cell adhesion
- functional connectivity
- replacement therapy
- induced pluripotent stem cells