Simultaneous imaging and especially visualizing the association of survivin mRNA and telomerase in living cells are of great value for the diagnosis and prognosis of cancer because their co-expression facilitates the development of cancer and identifies patients at high risk of tumor-related death. The challenge is to develop methods that enable visualizing the association of multiplex targets and avoid the distorted signals due to the different delivery efficiency of probes. Herein, we engineered a DNA triangular prism nanomachine (DTPN) for simultaneous multicolor imaging of survivin mRNA and telomerase and visualizing their association in living cells. Two recognizing probes targeted survivin mRNA and telomerase, and the reporter probe w...
BACKGROUND. Therapeutic options for metastatic melanoma are still very limited. Survivin, a multifun...
Herein, we developed a novel plasmon-enhanced fluorescence (PEF)-based telomerase-responsive nanopro...
One of the main goals of nanomedicine in cancer is the development of effective drug delivery system...
Abstract So far, the development of a unique strategy for specific biomolecules activity monitoring ...
MiRNA-targeted therapy holds great promise for precision cancer therapy. It is important to investig...
Real-time monitoring of different types of intracellular tumor-related biomarkers is of key importan...
MiRNA-targeted therapy is an active research field in precision cancer therapy. Studying the effect ...
With the development of biotechnology, the detection of cancer biomarkers has been a promising appro...
Simultaneous detection and imaging of multiple intracellular biomarkers hold great promise for early...
The efficient detection and in situ monitoring of telomerase activity is of great importance for can...
Cancer biomarkers offer unique prospects for the development of cancer diagnostics and therapy. One ...
Summary Nanosensing by oligonucleotide optical switches coupled to nanoparticles is a highly promis...
The intracellular transport of sensors and drugs by nanoparticles is one of the new frontiers in bio...
Detections of telomerase activity in vitro and in living cells are of great importance for clinical ...
This work designs a telomerase-responsive mesoporous silica nanoparticle (MSN) to realize in situ “o...
BACKGROUND. Therapeutic options for metastatic melanoma are still very limited. Survivin, a multifun...
Herein, we developed a novel plasmon-enhanced fluorescence (PEF)-based telomerase-responsive nanopro...
One of the main goals of nanomedicine in cancer is the development of effective drug delivery system...
Abstract So far, the development of a unique strategy for specific biomolecules activity monitoring ...
MiRNA-targeted therapy holds great promise for precision cancer therapy. It is important to investig...
Real-time monitoring of different types of intracellular tumor-related biomarkers is of key importan...
MiRNA-targeted therapy is an active research field in precision cancer therapy. Studying the effect ...
With the development of biotechnology, the detection of cancer biomarkers has been a promising appro...
Simultaneous detection and imaging of multiple intracellular biomarkers hold great promise for early...
The efficient detection and in situ monitoring of telomerase activity is of great importance for can...
Cancer biomarkers offer unique prospects for the development of cancer diagnostics and therapy. One ...
Summary Nanosensing by oligonucleotide optical switches coupled to nanoparticles is a highly promis...
The intracellular transport of sensors and drugs by nanoparticles is one of the new frontiers in bio...
Detections of telomerase activity in vitro and in living cells are of great importance for clinical ...
This work designs a telomerase-responsive mesoporous silica nanoparticle (MSN) to realize in situ “o...
BACKGROUND. Therapeutic options for metastatic melanoma are still very limited. Survivin, a multifun...
Herein, we developed a novel plasmon-enhanced fluorescence (PEF)-based telomerase-responsive nanopro...
One of the main goals of nanomedicine in cancer is the development of effective drug delivery system...