TY - JOUR
T1 - Alginate-coated magnetic nanoparticles for noninvasive MRI of extracellular calcium
AU - Bar-Shir, Amnon
AU - Avram, Liat
AU - Yariv-Shoushan, Shani
AU - Anaby, Debbie
AU - Cohen, Smadar
AU - Segev-Amzaleg, Niva
AU - Frenkel, Dan
AU - Sadan, Ofer
AU - Offen, Daniel
AU - Cohen, Yoram
N1 - Ministry of Health of the state of Israel [6225]This work was supported by the Ministry of Health of the state of Israel (Grant 6225). The MRI scanner used in the present study was purchased with the aid of the Israel Science Foundation (ISF) and the Beverly and Raymond Sackler Center for Biophysics of Tel Aviv University, and is operated under the Federico Strauss Center for Computational Neuroimaging of Tel Aviv University.
PY - 2014/7
Y1 - 2014/7
N2 - Nanoparticles (NPs) have great potential to increase the diagnostic capacity of many imaging modalities. MRI is currently regarded as the method of choice for the imaging of deep tissues, and metal ions, such as calcium ions (Ca2+), are essential ingredients for life. Despite the tremendous importance of Ca2+ for the well-being of living systems, the noninvasive determination of the changes in Ca2+ levels in general, and extracellular Ca2+ levels in particular, in deep tissues remains a challenge. Here, we describe the preparation and contrast mechanism of a flexible easy to prepare and selective superparamagnetic iron oxide (SPIO) NPs for the noninvasive determination of changes in extracellular Ca2+ levels using conventional MRI. We show that SPIO NPs coated with monodisperse and purified alginate, having a specific molecular weight, provide a tool to selectively determine Ca2+ concentrations in the range of 250 mu M to 2.5mM, even in the presence of competitive ions. The alginate-coated magnetic NPs (MNPs) aggregate in the presence of Ca2+, which, in turn, affects the T-2 relaxation of the water protons in their vicinity. The new alginatecoated SPIO NP formulations, which have no effect on cell viability for 24 h, allow the detection of Ca2+ levels secreted from ischemic cell cultures and the qualitative examination of the change in extracellular Ca2+ levels in vivo. These results demonstrate that alginate-coated MNPs can be used, at least qualitatively, as a platform for the noninvasive MRI determination of extracellular Ca2+ levels in myriad in vitro and in vivo biomedical applications. Copyright (C) 2014 John Wiley & Sons, Ltd.
AB - Nanoparticles (NPs) have great potential to increase the diagnostic capacity of many imaging modalities. MRI is currently regarded as the method of choice for the imaging of deep tissues, and metal ions, such as calcium ions (Ca2+), are essential ingredients for life. Despite the tremendous importance of Ca2+ for the well-being of living systems, the noninvasive determination of the changes in Ca2+ levels in general, and extracellular Ca2+ levels in particular, in deep tissues remains a challenge. Here, we describe the preparation and contrast mechanism of a flexible easy to prepare and selective superparamagnetic iron oxide (SPIO) NPs for the noninvasive determination of changes in extracellular Ca2+ levels using conventional MRI. We show that SPIO NPs coated with monodisperse and purified alginate, having a specific molecular weight, provide a tool to selectively determine Ca2+ concentrations in the range of 250 mu M to 2.5mM, even in the presence of competitive ions. The alginate-coated magnetic NPs (MNPs) aggregate in the presence of Ca2+, which, in turn, affects the T-2 relaxation of the water protons in their vicinity. The new alginatecoated SPIO NP formulations, which have no effect on cell viability for 24 h, allow the detection of Ca2+ levels secreted from ischemic cell cultures and the qualitative examination of the change in extracellular Ca2+ levels in vivo. These results demonstrate that alginate-coated MNPs can be used, at least qualitatively, as a platform for the noninvasive MRI determination of extracellular Ca2+ levels in myriad in vitro and in vivo biomedical applications. Copyright (C) 2014 John Wiley & Sons, Ltd.
KW - Alginates
KW - Calcium sensing
KW - Contrast agents
KW - MRI
KW - Magnetic nanoparticles
KW - Molecular MRI
UR - http://www.scopus.com/inward/record.url?scp=84902384432&partnerID=8YFLogxK
U2 - https://doi.org/10.1002/nbm.3117
DO - https://doi.org/10.1002/nbm.3117
M3 - مقالة
SN - 0952-3480
VL - 27
SP - 774
EP - 783
JO - NMR in Biomedicine
JF - NMR in Biomedicine
IS - 7
ER -