Robust Dual-Biomimetic Titanium Dioxide-Cellulose Monolith for Enrichment of Phosphopeptides.
Luwei ZhangYan WangWanjun ZhangYu-I HsuTaka-Aki AsohBaoyun QiHiroshi UyamaPublished in: ACS biomaterials science & engineering (2022)
Metal oxide affinity chromatography (MOAC) is considered to be one of the most effective methods for phosphopeptide enrichment. However, most of the materials used in the method are powder; frequent centrifugation is necessitated during the enrichment process, and potential risks of loss of peptides and materials and clogging of the column employed for liquid chromatography-mass spectrometry (LC-MS) arise. Moreover, the reusability of these materials to achieve sustainability was hardly investigated. To overcome these limitations, herein, inorganic titanium dioxide (TiO 2 ) was coated onto the skeletal surface of the organic cellulose monolith (CM) material with a coral-like structure via a sol-gel method. This produced an organic-inorganic hybrid TiO 2 -CM material, which contained a combination of organic and inorganic substances, making it mimic the mollusk shell in terms of composition. The prepared TiO 2 -CM material as monolith exhibited excellent mechanical strength and did not break during the enrichment process; thus, the tedious implementation of multiple centrifugation cycles was prevented, thereby streamlining the experimental procedure and avoiding the loss of peptides and materials. Moreover, a large amount of TiO 2 was introduced onto the surface of the CM material, and thus, the resultant TiO 2 -CM material exhibited a large surface area. As a result, the fabricated TiO 2 -CM material was successfully applied to the enrichment of phosphopeptides obtained from the tryptic digests of a BSA/β-casein (mass ratio, 500/1) mixture. The results were superior to those achieved for commercial TiO 2 beads, confirming that TiO 2 -CM has excellent selectivity for phosphopeptides and reusability. Furthermore, 9287 unique phosphopeptides derived from the 2661 phosphoproteins were successfully identified from two milligrams of tryptic digests of Hela cell exosomes obtained through five independent replications after enriching using the TiO 2 -CM material. The results indicated that the material has good application prospects in the analysis of protein phosphorylation. Furthermore, TiO 2 -CM consists of green and cheap cellulose as the skeleton, and its synthesis process is environment-friendly, simple, and inexpensive.
Keyphrases
- quantum dots
- visible light
- liquid chromatography
- mass spectrometry
- mesenchymal stem cells
- stem cells
- primary care
- healthcare
- water soluble
- tandem mass spectrometry
- minimally invasive
- high resolution
- high resolution mass spectrometry
- high performance liquid chromatography
- climate change
- single cell
- small molecule
- human health
- bone marrow
- binding protein
- pi k akt
- cell death
- signaling pathway
- solid phase extraction