TY - JOUR
T1 - Fabrication of Low-Generation Dendrimers into Nanostructures for Efficient and Nontoxic Gene Delivery
AU - Wang, Hui
AU - Chang, Hong
AU - Zhang, Qiang
AU - Cheng, Yiyun
N1 - Publisher Copyright:
© 2017, Springer International Publishing Switzerland.
PY - 2017/6/1
Y1 - 2017/6/1
N2 - Dendrimers with well-defined molecular structure and high monodispersity have gained tremendous interest in gene delivery. However, current gene carriers based on dendrimers are either not effective or are too toxic on the transfected cells. The efficacy and cytotoxicity of dendrimers are strongly correlated with their molecular weight or generation. High-generation dendrimers are reported with relatively high transfection efficacy but serious cytotoxicity due to the excess positive charges on the polymers, while low-generation dendrimers with minimal toxicity have poor polyplex stability and thus weak transfection efficacy. To break up the correlation between efficacy and toxicity, low-generation dendrimers were fabricated into various nanostructures by several strategies to improve their gene-binding capacity, polyplex stability, and transfection efficacy without inducing additional toxicity. In this review article, we will highlight recent advances in the development of assembled dendrimer nanostructures for efficient and non-toxic gene delivery. Specifically, the principles and strategies in the fabrication of dendrimer nanostructures are intensively reviewed.
AB - Dendrimers with well-defined molecular structure and high monodispersity have gained tremendous interest in gene delivery. However, current gene carriers based on dendrimers are either not effective or are too toxic on the transfected cells. The efficacy and cytotoxicity of dendrimers are strongly correlated with their molecular weight or generation. High-generation dendrimers are reported with relatively high transfection efficacy but serious cytotoxicity due to the excess positive charges on the polymers, while low-generation dendrimers with minimal toxicity have poor polyplex stability and thus weak transfection efficacy. To break up the correlation between efficacy and toxicity, low-generation dendrimers were fabricated into various nanostructures by several strategies to improve their gene-binding capacity, polyplex stability, and transfection efficacy without inducing additional toxicity. In this review article, we will highlight recent advances in the development of assembled dendrimer nanostructures for efficient and non-toxic gene delivery. Specifically, the principles and strategies in the fabrication of dendrimer nanostructures are intensively reviewed.
KW - Cytotoxicity
KW - Dendrimer
KW - Gene delivery
KW - Supramolecular chemistry
KW - Transfection efficacy
UR - https://www.scopus.com/pages/publications/85020787044
U2 - 10.1007/s41061-017-0151-6
DO - 10.1007/s41061-017-0151-6
M3 - 文献综述
C2 - 28555280
AN - SCOPUS:85020787044
SN - 0340-1022
VL - 375
JO - Topics in Current Chemistry
JF - Topics in Current Chemistry
IS - 3
M1 - 62
ER -