Departamento de Bioquímica, Centro de Biociências, Universidade Federal de Pernambuco (UFPE), Av. Prof. Moraes Rego, 1235, Cidade Universitária, Recife 50670-420, PE, Brazil.
Departamento de Química, Universidade Federal Rural de Pernambuco (UFRPE), Rua Dom Manuel de Medeiros, s/n, Dois Irmãos, Recife 52171-900, PE, Brazil.
Biosensors (Basel). 2023 Jun 15;13(6):655. doi: 10.3390/bios13060655.
Triturated seeds have components that adsorb recalcitrant indigo carmine dye. Coagulating proteins known as lectins (carbohydrate-binding proteins) have already been purified from the powder of these seeds, in milligram amounts. The coagulant lectin from seeds (cMoL) was characterized by potentiometry and scanning electron microscopy (SEM) using MOFs, or metal-organic frameworks, of [Cu(BTC)(HO)] to immobilize cMoL and construct biosensors. The potentiometric biosensor revealed an increase in the electrochemical potential resulting from the Pt/MOF/cMoL interaction with different concentrations of galactose in the electrolytic medium. The developed aluminum batteries constructed with recycled cans degraded an indigo carmine dye solution; the oxide reduction reactions of the batteries generated Al(OH), promoting dye electrocoagulation. Biosensors were used to investigate cMoL interactions with a specific galactose concentration and monitored residual dye. SEM revealed the components of the electrode assembly steps. Cyclic voltammetry showed differentiated redox peaks related to dye residue quantification by cMoL. Electrochemical systems were used to evaluate cMoL interactions with galactose ligands and efficiently degraded dye. Biosensors could be used for lectin characterization and monitoring dye residues in environmental effluents of the textile industry.
经粉碎的种子具有吸附不溶性靛蓝胭脂红染料的成分。这些种子的粉末中已经分离出了称为凝集素(糖结合蛋白)的凝结蛋白,其毫克量已被纯化。利用[Cu(BTC)(HO)]的金属-有机骨架(MOFs)固定 cMoL 并构建生物传感器,对种子中的凝结素(cMoL)进行了电位滴定和扫描电子显微镜(SEM)分析。由于 Pt/MOF/cMoL 与电解液中不同浓度半乳糖的相互作用,这种电化学传感器显示出电化学势的增加。用回收罐制造的铝电池降解了靛蓝胭脂红染料溶液;电池的氧化物还原反应生成 Al(OH),促进了染料的电化学凝聚。生物传感器用于研究 cMoL 与特定半乳糖浓度的相互作用,并监测残留染料。SEM 揭示了电极组件步骤的组成部分。循环伏安法显示出与 cMoL 定量染料残留相关的差异氧化还原峰。电化学系统用于评估 cMoL 与半乳糖配体的相互作用,并有效地降解染料。生物传感器可用于凝集素的特性分析和监测纺织工业环境废水中的染料残留。
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