TY - JOUR
T1 - Simultaneous Imaging of Endogenous Survivin mRNA and On-Demand Drug Release in Live Cells by Using a Mesoporous Silica Nanoquencher
AU - Yuan, Peiyan
AU - Mao, Xin
AU - Chong, Kok Chan
AU - Fu, Jiaqi
AU - Pan, Sijun
AU - Wu, Shuizhu
AU - Yu, Changmin
AU - Yao, Shao Q.
N1 - Publisher Copyright:
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2017/7/19
Y1 - 2017/7/19
N2 - The design of multifunctional drug delivery systems capable of simultaneous target detection, imaging, and therapeutics in live mammalian cells is critical for biomedical research. In this study, by using mesoporous silica nanoparticles (MSNs) chemically modified with a small-molecule dark quencher, followed by sequential drug encapsulation, MSN capping with a dye-labeled antisense oligonucleotide, and bioorthogonal surface modification with cell-penetrating poly(disulfide)s, the authors have successfully developed the first mesoporous silica nanoquencher (qMSN), characterized by high drug-loading and endocytosis-independent cell uptake, which is able to quantitatively image endogenous survivin mRNA and release the loaded drug in a manner that depends on the survivin expression level in tumor cells. The authors further show that this novel drug delivery system may be used to minimize potential cytotoxicity encountered by many existing small-molecule drugs in cancer therapy.
AB - The design of multifunctional drug delivery systems capable of simultaneous target detection, imaging, and therapeutics in live mammalian cells is critical for biomedical research. In this study, by using mesoporous silica nanoparticles (MSNs) chemically modified with a small-molecule dark quencher, followed by sequential drug encapsulation, MSN capping with a dye-labeled antisense oligonucleotide, and bioorthogonal surface modification with cell-penetrating poly(disulfide)s, the authors have successfully developed the first mesoporous silica nanoquencher (qMSN), characterized by high drug-loading and endocytosis-independent cell uptake, which is able to quantitatively image endogenous survivin mRNA and release the loaded drug in a manner that depends on the survivin expression level in tumor cells. The authors further show that this novel drug delivery system may be used to minimize potential cytotoxicity encountered by many existing small-molecule drugs in cancer therapy.
KW - cell-penetrating poly(disulfide)
KW - endocytosis-independent
KW - imaging, mesoporous silica nanoquenchers
KW - survivin mRNA
UR - http://www.scopus.com/inward/record.url?scp=85019907826&partnerID=8YFLogxK
U2 - 10.1002/smll.201700569
DO - 10.1002/smll.201700569
M3 - 文章
C2 - 28544466
AN - SCOPUS:85019907826
SN - 1613-6810
VL - 13
JO - Small
JF - Small
IS - 27
M1 - 1700569
ER -