The imaging of drugs inside tissues is pivotal in oncology to assess whether a drug reaches all cells in an adequate enough concentration to eradicate the tumor. Matrix-Assisted Laser Desorption Ionization Mass Spectrometry Imaging (MALDI-MSI) is one of the most promising imaging techniques that enables the simultaneous visualization of multiple compounds inside tissues. The choice of a suitable matrix constitutes a critical aspect during the development of a MALDI-MSI protocol since the matrix ionization efficiency changes depending on the analyte structure and its physico-chemical properties. The objective of this study is the improvement of the MALDI-MSI technique in the field of pharmacology; developing specifically designed nanostructured surfaces that allow the imaging of different drugs with high sensitivity and reproducibility. Among several nanomaterials, we tested the behavior of gold and titanium nanoparticles, and halloysites and carbon nanotubes as possible matrices. All nanomaterials were firstly screened by co-spotting them with drugs on a MALDI plate, evaluating the drug signal intensity and the signal-to-noise ratio. The best performing matrices were tested on control tumor slices, and were spotted with drugs to check the ion suppression effect of the biological matrix. Finally; the best nanomaterials were employed in a preliminary drug distribution study inside tumors from treated mice.

A nanostructured matrices assessment to study drugs distribution in solid tumor tissues by mass spectrometry imaging / S. Giordano, V. Pifferi, L. Morosi, M. Morelli, L. Falciola, G. Cappelletti, S. Visentin, S.A. Licandro, R. Frapolli, M. Zucchetti, R. Pastorelli, L. Brunelli, M. D'Incalci, E. Davoli. - In: NANOMATERIALS. - ISSN 2079-4991. - 7:3(2017 Mar). [10.3390/nano7030071]

A nanostructured matrices assessment to study drugs distribution in solid tumor tissues by mass spectrometry imaging

V. Pifferi
Secondo
;
M. Morelli;L. Falciola;G. Cappelletti;
2017

Abstract

The imaging of drugs inside tissues is pivotal in oncology to assess whether a drug reaches all cells in an adequate enough concentration to eradicate the tumor. Matrix-Assisted Laser Desorption Ionization Mass Spectrometry Imaging (MALDI-MSI) is one of the most promising imaging techniques that enables the simultaneous visualization of multiple compounds inside tissues. The choice of a suitable matrix constitutes a critical aspect during the development of a MALDI-MSI protocol since the matrix ionization efficiency changes depending on the analyte structure and its physico-chemical properties. The objective of this study is the improvement of the MALDI-MSI technique in the field of pharmacology; developing specifically designed nanostructured surfaces that allow the imaging of different drugs with high sensitivity and reproducibility. Among several nanomaterials, we tested the behavior of gold and titanium nanoparticles, and halloysites and carbon nanotubes as possible matrices. All nanomaterials were firstly screened by co-spotting them with drugs on a MALDI plate, evaluating the drug signal intensity and the signal-to-noise ratio. The best performing matrices were tested on control tumor slices, and were spotted with drugs to check the ion suppression effect of the biological matrix. Finally; the best nanomaterials were employed in a preliminary drug distribution study inside tumors from treated mice.
mass spectrometry imaging; MALDI; TiO2; gold nanoparticles; halloysite; cancer imaging
Settore CHIM/01 - Chimica Analitica
Settore CHIM/02 - Chimica Fisica
   Nanostructured-initiators for matrix-free surface-based mass spectrometry imaging of antitumor drugs in tissues
   FONDAZIONE CARIPLO
   2013-
mar-2017
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/500781
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