TY - JOUR
T1 - A Quantitative Relaxometric Version of the ELISA Test for the Measurement of Cell Surface Biomarkers
AU - Alberti, Diego
AU - van't Erve, Mark
AU - STEFANIA, Rachele
AU - Ruggiero, Maria Rosaria
AU - Tapparo, Marta
AU - Geninatti Crich, Simonetta
AU - Aime, Silvio
PY - 2014
Y1 - 2014
N2 - Quantitative measurement of marker expression in diseased cells is still a topic of considerable interest and different methodologies are currently under intense scrutiny. This work aims at developing an invitro diagnostic method based on the release of paramagnetic species from relaxometrically silent liposomes operated by the action of a phospholipase A(2) (PLA(2)) previously targeted to the epitope of interest. The released paramagnetic species causes an increase of the longitudinal water proton relaxation rate proportional to the number of PLA(2) bound to the cell outer surface. The sensitivity of the herein proposed method, named R-ELISA, was attempted in the detection of folate receptor expression on human ovarian cancer cells by functionalizing PLA(2) with folic acid. Receptor/cell number of 8.3x10(5) has been measured on IGROV-1 cells. The R-ELISA assay can detect nanomolar cell suspension receptor concentrations and has been validated by well-established spectrofluorimetric procedures.
AB - Quantitative measurement of marker expression in diseased cells is still a topic of considerable interest and different methodologies are currently under intense scrutiny. This work aims at developing an invitro diagnostic method based on the release of paramagnetic species from relaxometrically silent liposomes operated by the action of a phospholipase A(2) (PLA(2)) previously targeted to the epitope of interest. The released paramagnetic species causes an increase of the longitudinal water proton relaxation rate proportional to the number of PLA(2) bound to the cell outer surface. The sensitivity of the herein proposed method, named R-ELISA, was attempted in the detection of folate receptor expression on human ovarian cancer cells by functionalizing PLA(2) with folic acid. Receptor/cell number of 8.3x10(5) has been measured on IGROV-1 cells. The R-ELISA assay can detect nanomolar cell suspension receptor concentrations and has been validated by well-established spectrofluorimetric procedures.
KW - NMR spectroscopy
KW - analytical methods
KW - paramagnetic liposomes
KW - personalized medicine
KW - relaxometry
KW - NMR spectroscopy
KW - analytical methods
KW - paramagnetic liposomes
KW - personalized medicine
KW - relaxometry
UR - https://iris.uniupo.it/handle/11579/185062
U2 - 10.1002/anie.201310959
DO - 10.1002/anie.201310959
M3 - Article
SN - 1433-7851
VL - 53
SP - 3488
EP - 3491
JO - ANGEWANDTE CHEMIE. INTERNATIONAL EDITION
JF - ANGEWANDTE CHEMIE. INTERNATIONAL EDITION
IS - 13
ER -