Nanotechnologies Unit, Materials Research and Technology (MRT) Department, Luxembourg Institute of Science and Technology (LIST), 5 Av. des Hauts-Fourneaux, 4362 Esch-sur-Alzette, Luxembourg.
Tethis SpA, Via F.Olgiati, 20143 Milan, Italy.
Molecules. 2022 Jun 30;27(13):4237. doi: 10.3390/molecules27134237.
Matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) on cluster-assembled super-hydrophilic nanoporous titania films deposited on hydrophobic conductive-polymer substrates feature a unique combination of surface properties that significantly improve the possibilities of capturing and processing biological samples before and during the MALDI-MS analysis without changing the selected sample target (multi-dimensional MALDI-MS). In contrast to pure hydrophobic surfaces, such films promote a remarkable biologically active film porosity at the nanoscale due to the soft assembling of ultrafine atomic clusters. This unique combination of nanoscale porosity and super-hydrophilicity provides room for effective sample capturing, while the hydrophilic-hydrophobic discontinuity at the border of the dot-patterned film acts as a wettability-driven containment for sample/reagent droplets. In the present work, we evaluate the performance of such advanced surface engineered reactive containments for their benefit in protein sample processing and characterization. We shortly discuss the advantages resulting from the introduction of the described chips in the MALDI-MS workflow in the healthcare/clinical context and in MALDI-MS bioimaging (MALDI-MSI).
基质辅助激光解吸电离质谱(MALDI-MS)在簇组装的超亲水纳米多孔二氧化钛薄膜上进行,该薄膜沉积在疏水电聚合物基底上,具有独特的表面性质组合,可在 MALDI-MS 分析之前和期间显著提高捕获和处理生物样品的可能性,而不会改变所选的样品靶标(多维 MALDI-MS)。与纯疏水性表面相比,由于超细原子簇的软组装,这些薄膜在纳米尺度上促进了显著的生物活性薄膜多孔性。纳米级孔隙率和超亲水性的这种独特组合为有效样品捕获提供了空间,而在点图案薄膜边界处的亲水-疏水性不连续性充当了样品/试剂液滴的润湿性驱动容纳。在本工作中,我们评估了这种先进的表面工程反应容纳物的性能,以评估其在蛋白质样品处理和表征方面的优势。我们简要讨论了在医疗保健/临床背景和 MALDI-MS 生物成像(MALDI-MSI)中引入描述的芯片所带来的优势。