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首页> 外文期刊>Journal of Immunological Methods >An improved method for the immunological detection of mineral bound protein using hydrofluoric acid and direct capture.
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An improved method for the immunological detection of mineral bound protein using hydrofluoric acid and direct capture.

机译:一种使用氢氟酸和直接捕获对矿物质结合蛋白进行免疫学检测的改进方法。

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摘要

Immunological detection of proteins adsorbed to mineral and ceramic surfaces has proved not only difficult but controversial. Unlike the immunological detection of proteins associated with carbonate or phosphate minerals (e.g. shells and bones) proteins adsorbed to siliceous minerals cannot readily be removed by dissolution of the mineral phase. We have previously examined alternative extraction methodologies which claim to bring the protein into solution, but found none of these to be effective. Here we report a novel strategy for immuno-detection of proteins adsorbed to siliceous minerals, the Digestion and Capture Immunoassay (DACIA). The method involves the use of cold, concentrated (4M) hydrofluoric acid (HF) with the simultaneous capture of liberated protein onto a solid phase. The combination of low temperatures and surface stabilisation enables us to detect epitopes from even partially degraded proteins. The method may have a wide application in forensic, archaeological, soil and earth sciences.
机译:免疫学检测吸附到矿物和陶瓷表面的蛋白质不仅困难,而且有争议。与对与碳酸盐或磷酸盐矿物质(例如壳和骨头)有关的蛋白质进行免疫学检测不同,吸附于硅质矿物质的蛋白质不能通过矿物质相的溶解而轻易地除去。我们之前检查过替代提取方法,这些方法声称可将蛋白质带入溶液中,但发现这些方法均无效。在这里,我们报告了一种新型的免疫检测吸附于硅质矿物质的蛋白质的策略,即消化和捕获免疫分析(DACIA)。该方法包括使用冷的浓缩(4M)氢氟酸(HF),同时将释放的蛋白质捕获到固相上。低温和表面稳定的结合使我们能够检测甚至部分降解的蛋白质的表位。该方法可以在法医,考古,土壤和地球科学中广泛应用。

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