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分子印迹聚合物水凝胶片,具有结合金属卟啉的分子识别位点,用于蛋白质捕获。

Molecularly imprinted polymer hydrogel sheets with metalloporphyrin-incorporated molecular recognition sites for protein capture.

机构信息

Leicester School of Pharmacy, De Montfort University, The Gateway, Leicester, LE1 9BH, United Kingdom; Department of Chemistry, University of Sheffield, Dainton Building, Brook Hill, Sheffield, S3 7HF, United Kingdom.

Leicester School of Pharmacy, De Montfort University, The Gateway, Leicester, LE1 9BH, United Kingdom.

出版信息

Talanta. 2024 Jan 1;266(Pt 2):125083. doi: 10.1016/j.talanta.2023.125083. Epub 2023 Aug 18.

Abstract

Metalloporphyrins are often found in nature as coordination recognition sites within biological process, and synthetically offer the potential for use in therapeutic, catalytic and diagnostic applications. While porphyrin containing biological recognition elements have stability limitations, molecularly imprinted polymers bearing these structures offer an alternative with excellent robustness and the ability to work in extreme conditions. In this work, we synthesised a polymerizable porphyrin and metalloporphyrin and have incorporated these as co-monomers within a hydrogel thin-sheet MIP for the specific recognition of bovine haemoglobin (BHb). The hydrogels were evaluated using Scatchard analysis, with K values of 10.13 × 10, 5.30 × 10, and 3.40 × 10 M, for the control MIP, porphyrin incorporated MIP and the iron-porphyrin incorporated MIP, respectively. The MIPs also observed good selectivity towards the target protein with 73.8%, 77.4%, and 81.2% rebinding of the BHb target for the control MIP, porphyrin incorporated MIP and the iron-porphyrin incorporated MIP, respectively, compared with the non-imprinted (NIP) counterparts. Specificity was determined against a non-target protein, Bovine Serum Albumin (BSA). The results indicate that the introduction of the metalloporphyrin as a functional co-monomer is significantly beneficial to the recognition of a MIP, further enhancing MIP capabilities at targeting proteins.

摘要

金属卟啉通常在生物过程中作为配位识别位点存在于自然界中,并且在治疗、催化和诊断应用中具有潜在的用途。虽然含有卟啉的生物识别元件具有稳定性限制,但具有这些结构的分子印迹聚合物提供了一种替代方法,具有极好的稳健性和在极端条件下工作的能力。在这项工作中,我们合成了一种可聚合的卟啉和金属卟啉,并将这些作为共单体纳入水凝胶薄片 MIP 中,用于特异性识别牛血红蛋白 (BHb)。使用 Scatchard 分析评估了水凝胶,对于对照 MIP、卟啉掺入 MIP 和铁卟啉掺入 MIP,K 值分别为 10.13×10、5.30×10 和 3.40×10 M。MIP 还对目标蛋白表现出良好的选择性,与非印迹 (NIP) 相比,BHb 目标的对照 MIP、卟啉掺入 MIP 和铁卟啉掺入 MIP 的再结合率分别为 73.8%、77.4%和 81.2%。特异性是针对非靶蛋白牛血清白蛋白 (BSA) 确定的。结果表明,将金属卟啉作为功能共单体引入对 MIP 的识别具有显著的益处,进一步增强了 MIP 靶向蛋白质的能力。

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