Graduate School of Life Science and Systems Engineering, Kyushu Institute of Technology, 2-4, Hibikino, Kitakyushu 808-0196, Japan.
Molecules. 2024 Mar 14;29(6):1282. doi: 10.3390/molecules29061282.
Chymotrypsin, a crucial enzyme in human digestion, catalyzes the breakdown of milk proteins, underscoring its significance in both health diagnostics and dairy quality assurance. Addressing the critical need for rapid, cost-effective detection methods, we introduce a groundbreaking approach utilizing far-red technology and HOMO-Förster resonance energy transfer (FRET). Our novel probe, SQ-122 PC, features a unique molecular design that includes a squaraine dye (SQ), a peptide linker, and SQ moieties synthesized through solid-phase peptide synthesis. Demonstrating a remarkable quenching efficiency of 93.75% in a tailored HO:DMSO (7:3) solvent system, our probe exhibits absorption and emission properties within the far-red spectrum, with an unprecedented detection limit of 0.130 nM. Importantly, our method offers unparalleled selectivity towards chymotrypsin, ensuring robust and accurate enzyme detection. This pioneering work underscores the immense potential of far-red-based homo-FRET systems in enabling the sensitive and specific detection of chymotrypsin enzyme activity. By bridging the gap between cutting-edge technology and biomedical diagnostics, our findings herald a new era of enzyme sensing, promising transformative advancements in disease diagnosis and dairy quality control.
糜蛋白酶是人类消化过程中的一种关键酶,能够催化乳蛋白的分解,这凸显了其在健康诊断和乳制品质量保证方面的重要性。针对快速、经济有效的检测方法的迫切需求,我们引入了一种开创性的方法,利用远红技术和 HOMO-Förster 共振能量转移(FRET)。我们的新型探针 SQ-122 PC 采用独特的分子设计,包括方酸染料(SQ)、肽接头和通过固相肽合成合成的 SQ 部分。在定制的 HO:DMSO(7:3)溶剂系统中,我们的探针表现出了惊人的 93.75%的猝灭效率,其吸收和发射特性位于远红光谱范围内,检测限达到了前所未有的 0.130 nM。重要的是,我们的方法对糜蛋白酶具有无与伦比的选择性,确保了对酶的稳健而准确的检测。这项开创性的工作突显了基于远红的同型 FRET 系统在实现糜蛋白酶酶活性的灵敏和特异性检测方面的巨大潜力。通过将尖端技术和生物医学诊断相结合,我们的发现预示着酶感测的新时代的到来,有望在疾病诊断和乳制品质量控制方面取得变革性的进展。