3D printer platform and conductance feedback loop for automated imaging of uneven surfaces by liquid microjunction‐surface sampling probe mass spectrometry

Author:

Hermann Matthias1ORCID,Metwally Haidy1,Yu Jian1,Smith Rachael1,Tomm Hailey1,Kaufmann Martin2,Ren Kevin Y. M.3,Liu Chang4,LeBlanc Yves4,Covey Thomas R.4ORCID,Ross Avena C.1,Oleschuk Richard D.1ORCID

Affiliation:

1. Department of Chemistry Queen's University Kingston Ontario Canada

2. Department of Surgery Queen's University Kingston Ontario Canada

3. Department of Pathology Queen's University Kingston Ontario Canada

4. SCIEX Concord Ontario Canada

Abstract

RationaleMolecular imaging of samples using mass spectrometric techniques, such as matrix‐assisted laser desorption ionization or desorption electrospray ionization, requires the sample surface to be even/flat and sliced into thin sections (c. 10 μm). Furthermore, sample preparation steps can alter the analyte composition of the sample. The liquid microjunction‐surface sampling probe (LMJ‐SSP) is a robust sampling interface that enables surface profiling with minimal sample preparation. In conjunction with a conductance feedback system, the LMJ‐SSP can be used to automatically sample uneven specimens.MethodsA sampling stage was built with a modified 3D printer where the LMJ‐SSP is attached to the printing head. This setup can scan across flat and even surfaces in a predefined pattern (“static sampling mode”). Uneven samples are automatically probed in “conductance sampling mode” where an electric potential is applied and measured at the probe. When the probe contacts the electrically grounded sample, the potential at the probe drops, which is used as a feedback signal to determine the optimal position of the probe for sampling each location.ResultsThe applicability of the probe/sensing system was demonstrated by first examining the strawberry tissue using the “static sampling mode.” Second, porcine tissue samples were profiled using the “conductance sampling mode.” With minimal sample preparation, an area of 11 × 15 mm was profiled in less than 2 h. From the obtained results, adipose areas could be distinguished from non‐adipose parts. The versatility of the approach was further demonstrated by directly sampling the bacteria colonies on agar and resected human kidney (intratumoral hemorrhage) specimens with thicknesses ranging from 1 to 4 mm.ConclusionThe LMJ‐SSP in conjunction with a conductive feedback system is a powerful tool that allows for fast, reproducible, and automated assessment of uneven surfaces with minimal sample preparation. This setup could be used for perioperative assessment of tissue samples, food screening, and natural product discovery, among others.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

Subject

Organic Chemistry,Spectroscopy,Analytical Chemistry

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