Abstract Circulating tumor cell detection is one impor-tant avenue for early cancer diagnosis. A differential solid-state micropore approach is reported that detects a very low number of tumor cells from blood samples. One micropore is functionalized with an aptamer molecule specific to epidermal growth factor receptor (EGFR), known to be overexpressed on cancer cell surfaces, whereas the other micropore is bare. The translocation behavior of tumor cells is seen to be distinctly different from normal counterparts and control when passed through functionalized micropore. The differentiation stems from the selective interactions between the aptamer molecules and overexpressed EGFR on the tumor cells. Normal cells, on the other hand, do not sh...
ABSTRACT: Effective quantification and in situ identification of circulating tumor cells (CTCs) in b...
Autophagy is a cellular homeostatic mechanism where proteins and organelles are digested and recycle...
In fields such as cancer biology and regenerative medicine, obtaining information regarding cell bio...
Abstract Tumor cells depict two deviant tendencies; over-proliferation and vigorous migration. A tap...
The current antibody-mediated numeration assays of circulating tumor cells (CTCs) require multiple s...
Circulating tumor cells (CTCs) have the potential to predict metastasis, and the capture of CTCs bas...
International audienceNucleic-acid aptamers are of strong interest for diagnosis and therapy. Compar...
Background: Molecular-level differentiation of neo-plastic cells is essential for accurate and early...
Circulating tumor cells (CTCs) are cells that shed from a primary tumor and freely circulate in the ...
Cancer is a leading cause of death worldwide, and tumor heterogeneity presents a challenge for the c...
Many studies have shown that the quantity and dynamics of circulating tumor cells (CTCs) in peripher...
Detection and characterization of cells using aptamers and aptamer-conjugated nanoprobes has evolved...
The present study used a spontaneous cell-based SELEX method (Systemic Evolution of Ligands by EXpon...
Primary tumors shed thousands of cells into blood circulation every day. These circulating tumor cel...
The present study used a spontaneous cell-based SELEX method (Systemic Evolution of Ligands by EXpon...
ABSTRACT: Effective quantification and in situ identification of circulating tumor cells (CTCs) in b...
Autophagy is a cellular homeostatic mechanism where proteins and organelles are digested and recycle...
In fields such as cancer biology and regenerative medicine, obtaining information regarding cell bio...
Abstract Tumor cells depict two deviant tendencies; over-proliferation and vigorous migration. A tap...
The current antibody-mediated numeration assays of circulating tumor cells (CTCs) require multiple s...
Circulating tumor cells (CTCs) have the potential to predict metastasis, and the capture of CTCs bas...
International audienceNucleic-acid aptamers are of strong interest for diagnosis and therapy. Compar...
Background: Molecular-level differentiation of neo-plastic cells is essential for accurate and early...
Circulating tumor cells (CTCs) are cells that shed from a primary tumor and freely circulate in the ...
Cancer is a leading cause of death worldwide, and tumor heterogeneity presents a challenge for the c...
Many studies have shown that the quantity and dynamics of circulating tumor cells (CTCs) in peripher...
Detection and characterization of cells using aptamers and aptamer-conjugated nanoprobes has evolved...
The present study used a spontaneous cell-based SELEX method (Systemic Evolution of Ligands by EXpon...
Primary tumors shed thousands of cells into blood circulation every day. These circulating tumor cel...
The present study used a spontaneous cell-based SELEX method (Systemic Evolution of Ligands by EXpon...
ABSTRACT: Effective quantification and in situ identification of circulating tumor cells (CTCs) in b...
Autophagy is a cellular homeostatic mechanism where proteins and organelles are digested and recycle...
In fields such as cancer biology and regenerative medicine, obtaining information regarding cell bio...