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Titania Microparticles and Nanoparticles as Matrixes for in Vitro and in Situ Analysis of Small Molecules by MALDI-MS

机译:二氧化钛微粒和纳米微粒作为基质的MALDI-MS体外和小分子原位分析

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TiO_(2) microparticles (TMs) and nanoparticles (TNs), prepared by hydrolysis of Ti butoxide and maintained in aqueous solution, were evaluated as matrixes for the detection of small molecules. With aqueous suspensions of TMs, positive-ion spectra collected for phospholipids (PLs) extracted from soybeans showed high sensitivity and no matrix interferences. Negative-ion traces had a suitable signal-to-noise ratio (S/N) but showed high levels of phosphatidic acid caused by the loss of the headgroup in other PLs. The hydrolysis was more pronounced when TNs were used. In situ studies performed by applying TM suspensions directly onto 50-(mu)m thick soybean slices did not yield satisfactory results as TMs formed a crusty layer that precluded desorption/ionization. When a TN suspension was used instead, PLs and triacylglycerols were detected. Only minor PL hydrolysis was observed. TNs also enabled the coverage of rose petals and the detection of different levels of flavonols/anthocyanins and their glycosides as the color changed from yellow to orangered. Although the hydrolysis of PLs limits the use of TMs or TNs for in vitro PL analysis, TNs offer a suitable alternative for the analysis of other molecules of low molecular weight, and their small size (average of approx200 nm) facilitates their penetration into tissue for in situ imaging.
机译:TiO_(2)微粒(TMs)和纳米颗粒(TNs)通过丁醇钛的水解制备并保持在水溶液中,被评估为检测小分子的基质。使用TMs的水悬浮液,从大豆中提取的磷脂(PL)收集到的正离子谱图显示出高灵敏度,并且没有基质干扰。负离子迹线具有合适的信噪比(S / N),但由于其他PL中的头基丢失而显示出高水平的磷脂酸。当使用TN时,水解更明显。通过直接将TM悬浮液应用于50-μm厚的大豆片上进行的原位研究未获得令人满意的结果,因为TM形成了一层硬质层,从而阻止了解吸/电离。当使用TN悬浮液代替时,会检测到PL和三酰基甘油。仅观察到少量的PL水解。 TNs还可以覆盖玫瑰花瓣,并可以检测颜色从黄色变为橙色的不同含量的黄酮醇/花色素苷及其糖苷的含量。尽管PL的水解限制了TM或TN在体外PL分析中的使用,但TN为分析其他低分子量分子提供了一种合适的替代方法,并且它们的小尺寸(平均约200 nm)有助于它们渗透到组织中,原位成像。

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