Investigation and intervention of
autophagy to guide cancer treatment with nanogels
Zhang, XD (Zhang, Xudong)[ 1,2,3,4 ] ; Liang, X (Liang, Xin)[ 5,6 ] ; Gu, JJ (Gu, Jianjun)[ 7,8 ] ; Chang, DF (Chang, Danfeng)[ 1,2 ] ; Zhang, JX (Zhang, Jinxie)[ 1,2 ] ; Chen, ZW (Chen, Zhaowei)[ 3,4 ] ; Ye, YQ (Ye, Yanqi)[ 3,4 ] ; Wang, C (Wang, Chao)[ 3,4 ] ; Tao, W (Tao, Wei)[ 1,2 ] ; Zeng, XW (Zeng, Xiaowei)[ 1,2 ] ; Liu, G (Liu, Gan)[ 1,2 ] ; Zhang, YJ (Zhang, Yongjun)[ 7,8 ] ; Mei, L (Mei, Lin)[ 1,2 ] ; Gu, Z (Gu, Zhen)[ 3,4 ]
NANOSCALE, 2017, 9(1): 150-163
DOI: 10.1039/c6nr07866d
WOS:000391739300021
Abstract
Cancer cells use autophagy to resist
poor survival environmental conditions such as low PH, poor nutrients as well
as chemical therapy. Nanogels have been used as efficient chemical drug
carriers for cancer treatment. However, the effect of nanogels on autophagy is
still unknown. Here, we used Rab proteins as the marker of multiple trafficking
vesicles in endocytosis and LC3 as the marker of autophagy to investigate the
intracellular trafficking network of Rhodamine B (Rho)-labeled nanogels. The
nanogels were internalized by the cells through multiple protein dependent
endocytosis and micropinocytosis. After inception by the cells, the nanogels
were transported into multiple Rab positive vesicles including early endosomes
(EEs), late endosomes (LEs), recycling endosomes (REs) and lipid droplets.
Finally, these Rab positive vesicles were transported to lysosome. In addition,
GLUT4 exocytosis vesicles could transport the nanogels out of the cells.
Moreover, nanogels could induce autophagy and be sequestered in autophagosomes.
The crosstalk between autophagosomes and Rab positive vesicles were
investigated, we found that autophagosomes may receive nanogels through
multiple Rab positive vesicles. Co-delivery of autophagy inhibitors such as
chloroquine (CQ) and the chemotherapeutic drug doxorubicin (DOX) by nanogels
blocked the autophagy induced by DOX greatly decreasing both of the volume and
weight of the tumors in mice tumor models. Investigation and intervention of the
autophagy pathway could provide a new method to improve the therapeutic effect
of anticancer nanogels.