Back to Search Start Over

Bispecific antibodies (anti-mPEG/anti-HER2) for active tumor targeting of docetaxel (DTX)-loaded mPEGylated nanocarriers to enhance the chemotherapeutic efficacy of HER2-overexpressing tumors.

Authors :
Su CY
Chen M
Chen LC
Ho YS
Ho HO
Lin SY
Chuang KH
Sheu MT
Source :
Drug delivery [Drug Deliv] 2018 Nov; Vol. 25 (1), pp. 1066-1079.
Publication Year :
2018

Abstract

Anti-mPEG/anti-human epidermal growth factor receptor 2 (HER2) bispecific antibodies (BsAbs) non-covalently bound to a docetaxel (DTX)-loaded mPEGylated lecithin-stabilized micellar drug delivery system (L <subscript>sb</subscript> MDDs) were endowed with active targetability to improve the chemotherapeutic efficacy of DTX. DTX-loaded mPEGylated L <subscript>sb</subscript> MDDs formulations were prepared using lecithin/DSPE-PEG(2K or 5K) nanosuspensions to hydrate the thin film, and then they were subjected to ultrasonication. Two BsAbs (anti-mPEG/anti-DNS or anti-HER2) were simply mixed with the L <subscript>sb</subscript> MDDs to form BsAbs-L <subscript>sb</subscript> MDDs formulations, respectively, referred as the DNS-L <subscript>sb</subscript> MDDs and HER2-L <subscript>sb</subscript> MDDs. Results demonstrated that the physical characteristics of the BsAbs-L <subscript>sb</subscript> MDDs were similar to those of the plain L <subscript>sb</subscript> MDDs but more slowly released DTX than that from the L <subscript>sb</subscript> MDDs. Results also showed that the HER2-L <subscript>sb</subscript> MDDs suppressed the growth of HER2-expressing MCF-7/HER2 tumors, increasing the amount taken up via an endocytosis pathway leading to high drug accumulation and longer retention in the tumor. In conclusion, the BsAbs-L <subscript>sb</subscript> MDDs preserved the physical properties of the L <subscript>sb</subscript> MDDs and actively targeted tumors with a drug cargo to enhance drug accumulation in tumors leading to greater antitumor activity against antigen-positive tumors.

Details

Language :
English
ISSN :
1521-0464
Volume :
25
Issue :
1
Database :
MEDLINE
Journal :
Drug delivery
Publication Type :
Academic Journal
Accession number :
29718725
Full Text :
https://doi.org/10.1080/10717544.2018.1466936