Detail View

Transthyretin as a new transporter of nanoparticles for receptor-mediated transcytosis in rat brain microvessels
Citations

WEB OF SCIENCE

Citations

SCOPUS

Metadata Downloads

Title
Transthyretin as a new transporter of nanoparticles for receptor-mediated transcytosis in rat brain microvessels
Issued Date
2015-12
Citation
Kim, So Yeun. (2015-12). Transthyretin as a new transporter of nanoparticles for receptor-mediated transcytosis in rat brain microvessels. Colloids and Surfaces B: Biointerfaces, 136, 989–996. doi: 10.1016/j.colsurfb.2015.10.050
Type
Article
Author Keywords
Receptor-mediated transcytosisTransthyretinBlood-brain barrier (BBB)Drug deliveryNanomedicine
Keywords
ALBUMINALZHEIMERS-DISEASEAnimalAnimal CellAnimal ExperimentAnimal TissueAnimalsArticleAssaysBARRIERBiological TransportBloodBlood-Brain BarrierBlood-Brain Barrier (BBB)Blood Brain BarrierBrainBrain Capillary Endothelial CellCell CultureCells, CulturedClathrin-Dependent EndocytosisConfocal MicroscopyControlled StudyCREATINE-KINASECreatine Kinase MmDELIVERYDirected TransportDrug DeliveryEndothelial CellsHumanHuman CellHUNTINGTONS-DISEASEIn-Vitro AssaysIn Vitro StudyIn Vivo StudyMALDI-TOF Mass SpectroscopyMaleMass SpectrometryMatrix Assisted Laser Desorption Ionization Time of Flight Mass SpectrometryMedical NanotechnologyMetabolismMicroscopy, ConfocalMicrovasculatureMicrovesselsMolecular BiologyNanomedicineNanoparticleNANOPARTICLESNonhumanPhysiologyPrealbuminPriority JournalProteinsQuantum DotQuantum Dot NanoparticlesRatRatsRats, Sprague-DawleyReceptor-Mediated TranscytosisReceptor Mediated TranscytosisSemiconductor Quantum DotsSprague Dawley RatTissue DistributionTranscytosisTRANSFERRIN RECEPTORTransport at the Cellular LevelTransthyretinValidation StudyVascularization
ISSN
0927-7765
Abstract
Many drugs are unable to breach the blood-brain barrier (BBB). Protein-directed transport of nanomedicine by receptor-mediated transcytosis (RMT) has been investigated as a means to overcome this problem. In this study, we screened transporters using an in vitro transcytosis assay system in rat serum to identify candidates that could guide nanoparticles through the BBB by RMT. The proteins that showed over 5-fold decreases in RMT when treated with chloropromazine, an inhibitor of clathrin-dependent endocytosis, were selected and identified by Maldi-TOF mass spectroscopy. Eleven proteins, including transthyretin (Ttr), and creatine kinase-muscle type (CKM), were identified as being capable of penetrating the endothelial cell layer by RMT. Among them, 10 proteins have not yet been used to transport nanomaterials across the BBB. To validate their activity as nanoparticle transporters in vivo, Ttr and CKM were conjugated to the surface of quantum dot (QD) nanoparticles and administrated intravenously. After 8. h, the distribution of Ttr-QDs and CKM-QDs in brain tissue was analyzed. The results showed transcytosis of Ttr-QD conjugates across the BBB in rats as well as in in vitro assays, which was in contrast to the results observed for bare QDs and CKM-QDs. Taken together, these results indicate that Ttr is a new putative transporter for nanomedicines across the BBB. © 2015 Elsevier B.V.
URI
http://hdl.handle.net/20.500.11750/2318
DOI
10.1016/j.colsurfb.2015.10.050
Publisher
Elsevier B.V.
Show Full Item Record

File Downloads

  • There are no files associated with this item.

공유

qrcode
공유하기

Related Researcher

문제일
Moon, Cheil문제일

Department of Brain Sciences

read more

Total Views & Downloads