2011
DOI: 10.1016/j.jprot.2011.01.005
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Boric acid gel enrichment of glycosylated proteins in human wound fluids

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Cited by 11 publications
(9 citation statements)
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“…For this purpose, a number of enrichment approaches have been developed, including lectin affinity, 386387 hydrazide coupling, 388 HILIC, 389390 and boronic acid affinity. 391392 Among these strategies, lectin-affinity is the most widely used due to its high specificity. Lectins are carbohydrate binding proteins, which can specifically attach to sugar moieties.…”
Section: Ptm Analysis By Mass Spectrometrymentioning
confidence: 99%
“…For this purpose, a number of enrichment approaches have been developed, including lectin affinity, 386387 hydrazide coupling, 388 HILIC, 389390 and boronic acid affinity. 391392 Among these strategies, lectin-affinity is the most widely used due to its high specificity. Lectins are carbohydrate binding proteins, which can specifically attach to sugar moieties.…”
Section: Ptm Analysis By Mass Spectrometrymentioning
confidence: 99%
“…It has been proposed that BCCs help preserve the structures of numerous macromolecular compounds, as well as the membrane and protein complexes [ 27 , 28 ]. Recent studies on mice have proved the interaction of BCCs with T- and B-cell receptors resulting in the proliferation of lymphocytes and the growing of the macrophages to release inflammatory mediators as a primary mechanism.…”
Section: ⧉ Discussionmentioning
confidence: 99%
“…The vast majority of boron ore processing methods use ascharite as the raw material to produce borax and boric acid which are used as basic inorganic chemical raw materials and can be further processed into other boron compounds [14,15]. Previous studies have shown that the leaching rate of boron ore determines the complexity of preparing borax and boric acid, and that how to improve the leaching rate of boron ore therefore becomes a key scientific problem in the deep processing of boron ore resources [16][17][18][19]. After 60 years of deploitation and use, the grade of China's ascharite ore has been reduced, and the reserves are less than 2 million tons, with many mines depleted, so the reserves cannot meet the development needs of modern boron industry any more, creating a very prominent supply and demand contradiction.…”
Section: Introductionmentioning
confidence: 99%