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Development of a bifunctional aptamer targeting the transferrin receptor and epithelial cell adhesion molecule (EpCAM) for the treatment of brain cancer metastases
journal contribution
posted on 2017-04-19, 00:00 authored by Joanna MacdonaldJoanna Macdonald, Justin Henri, L Goodman, Dongxi Xiang, Wei DuanWei Duan, Sarah ShigdarSarah ShigdarThe treatment of brain disorders is greatly hindered by the presence of the blood-brain barrier, which restricts the overwhelming majority of small molecules from entering the brain. A novel approach by which to overcome this barrier is to target receptor mediated transport mechanisms present on the endothelial cell membranes. Therefore, we fused an aptamer that binds to epithelial cell adhesion molecule-expressing cancer cells to an aptamer targeting the transferrin receptor. This generated a proof of concept bifunctional aptamer that can overcome the blood-brain barrier and potentially specifically target brain disorders. The initial fusion of the two sequences enhanced the binding affinity of both aptamers while maintaining specificity. Additionally, mutations were introduced into both binding loops to determine their effect on aptamer specificity. The ability of the aptamer to transcytose the blood-brain barrier was then confirmed in vivo following a 1 nmol injection. This study has shown that through the fusion of two aptamer sequences, a bifunctional aptamer can be generated that has the potential to be developed for the specific treatment of brain disorders.
History
Journal
ACS chemical neuroscienceVolume
8Issue
4Pagination
777 - 784Publisher
American Chemical SocietyLocation
Washington, D.C.Publisher DOI
eISSN
1948-7193Language
engPublication classification
C Journal article; C1 Refereed article in a scholarly journalCopyright notice
2016, American Chemical SocietyUsage metrics
Categories
No categories selectedKeywords
Aptamerbifunctionalblood−brain barrierepithelial cell adhesion molecule (EpCAM)receptor mediated transcytosistransferrin receptorAnimalsAptamers, NucleotideBlood-Brain BarrierBrain NeoplasmsCell LineDrug Delivery SystemsEpithelial Cell Adhesion MoleculeHumansMice, Inbred NODMice, SCIDMicroscopy, ConfocalNeoplasm MetastasisReceptors, TransferrinTranscytosisScience & TechnologyLife Sciences & BiomedicineBiochemistry & Molecular BiologyChemistry, MedicinalNeurosciencesPharmacology & PharmacyNeurosciences & Neurologyblood brain barrierIN-VITROBARRIERTHERAPEUTICSSTABILITYSELECTIONTHERAPYSELEX