Data Entry: Please note that the research database will be replaced by UNIverse by the end of October 2023. Please enter your data into the system https://universe-intern.unibas.ch. Thanks

Login for users with Unibas email account...

Login for registered users without Unibas email account...

 
Angiopep2-functionalized polymersomes for targeted doxorubicin delivery to glioblastoma cells
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 3704063
Author(s) Figueiredo, Patricia; Balasubramanian, Vimalkumar; Shahbazi, Mohammad-Ali; Correia, Alexandra; Wu, Dalin; Palivan, Cornelia G.; Hirvonen, Jouni T.; Santos, Helder A.
Author(s) at UniBasel Palivan, Cornelia
Year 2016
Title Angiopep2-functionalized polymersomes for targeted doxorubicin delivery to glioblastoma cells
Journal International Journal of Pharmaceutics
Volume 511
Number 2
Pages / Article-Number 794-803
Abstract A targeted drug delivery nanosystem for glioblastoma multiforme (GBM) based on polymersomes (Ps) made of poly(dimethylsiloxane)-poly(2-methyloxazoline) (PDMS-PMOXA) diblock copolymers was developed to evaluate their potential to actively target brain cancer cells and deliver anticancer drugs. Angiopep2 was conjugated to the surface of preformed Ps to target the low density lipoprotein receptor related protein I that are overexpressed in blood brain barrier (BBB) and glioma cells. The conjugation efficiency yield for angiopep2 was estimated to be 24%. The angiopep2-functionalized Ps showed no cellular toxicity after 24 h and enhanced the cellular uptake around 5 times more in U87MG glioblastoma cells compared to the non-targeted Ps. The encapsulation efficiency of doxorubicin (DOX) in Ps was 13% by co-solvent method, compared to a film rehydration method (4%). The release profiles of the DOX from Ps showed a release of 42% at pH 5.5 and 40% at pH 7.4 after 24 h, indicating that Ps can efficiently retain the DOX with a slow release rate. Furthermore, the in vitro antiproliferative activity of DOX-loaded Ps-Angiopep2 showed enhanced toxicity to U87MG glioblastoma cells, compared to non -targeted Ps. Overall, our in vitro results suggested that angiopep2-conjugated Ps can be used as nanocarriers for efficient targeted DOX delivery to glioblastoma cells.
Publisher ELSEVIER SCIENCE BV
ISSN/ISBN 0378-5173 ; 1873-3476
edoc-URL http://edoc.unibas.ch/52593/
Full Text on edoc No
Digital Object Identifier DOI 10.1016/j.ijpharm.2016.07.066
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/27484836
ISI-Number 000383810500012
Document type (ISI) Journal Article
 
   

MCSS v5.8 PRO. 0.353 sec, queries - 0.000 sec ©Universität Basel  |  Impressum   |    
26/04/2024