Liang_2015_Biomaterials_82_194

Reference

Title : Development of self-assembling peptide nanovesicle with bilayers for enhanced EGFR-targeted drug and gene delivery - Liang_2015_Biomaterials_82_194
Author(s) : Liang X , Shi B , Wang K , Fan M , Jiao D , Ao J , Song N , Wang C , Gu J , Li Z
Ref : Biomaterials , 82 :194 , 2015
Abstract :

Development of rational vectors for efficient drug and gene delivery is crucial for cancer treatment. In this study, epidermal growth factor receptor (EGFR)-binding peptide amphiphile (PA) were used as the primary bilayer skeleton material to construct ultra-stable self-assembling peptide nanovesicle (SPV). The resulted EGFR-targeted SPV (ESPV) could efficiently encapsulate therapeutic cargos (drugs or small interfering RNAs [siRNAs]) or labelled fluorescent cargo (quantum dots [QDs]) and exhibited excellent affinity for EGFR-positive cancer cells. Moreover, ESPV could deliver more drug or plasmid DNA to tumour sites and promote gene expression (a three-fold ratio of ESPVs vs cationic liposomes). Notably, the individual delivery or co-delivery of doxorubicin (DOX) and the acetylcholinesterase (AChE) gene via the ESPVs resulted in excellent drug/gene delivery both in vitro and in vivo and exerted a significant growth-suppressing effect on a liver cancer xenograft. This nanoscale, targeted cargo-packaging technology may provide a new strategy for the design of highly targeted cancer therapy vectors.

PubMedSearch : Liang_2015_Biomaterials_82_194
PubMedID: 26763734

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Citations formats

Liang X, Shi B, Wang K, Fan M, Jiao D, Ao J, Song N, Wang C, Gu J, Li Z (2015)
Development of self-assembling peptide nanovesicle with bilayers for enhanced EGFR-targeted drug and gene delivery
Biomaterials 82 :194

Liang X, Shi B, Wang K, Fan M, Jiao D, Ao J, Song N, Wang C, Gu J, Li Z (2015)
Biomaterials 82 :194