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A visual logic alarm sensor for diabetic patients towards diabetic polyneuropathy based on a metal-organic framework functionalized by dual-cation exchange

机译:基于双阳离子交换官能化的金属有机框架的糖尿病患者糖尿病患者视觉逻辑报警传感器

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Considering that diabetic polyneuropathy (DPN) is a severe complication caused by vitamin B12 (VB12) deficiency in diabetic patients, in this work, a visual logic alarm sensor for diabetic patients towards DPN is creatively proposed to realize the prevention and early diagnosis of DPN. An anionic structure, {[NH2(CH3)(2)]center dot[In(pdca)(2)]}(n) (In-MOF; H(2)pdca = 2,5-pyridinedicarboxylic acid), is synthesized successfully by the direct solvothermal method. In-MOF features two-dimensional (2D) infinite layers containing triangular and hexagonal windows with dimethylamine counterions in supramolecular channels. Based on the ion-exchange strategy, the fluorescence of Tb3+ (lambda(545 nm)) and Ru(bpy)(3)(2+) (lambda(585 nm)) is simultaneously introduced into the In-MOF through dual-cation exchange for constructing a precise self-calibrating fluorescent sensor towards methylmalonic acid (MMA), a potential marker of VB12 deficiency in urine. Based on the different fluorescence behaviors of Tb3+ and Ru(bpy)(3)(2+) towards MMA, a molecular half-subtractor logic gate consisting of INHIBIT and XOR gates is designed. After performing binary subtraction operations, the calculation result (1,0) will trigger the alarm to warn diabetic patients of the probable deficiency of VB12 in their body and the output can be visualized by the naked eye intuitively. This work is the first attempt to functionalize an anionic MOF by dual-cation exchange, and it also proposes a new strategy for the early diagnosis and prevention of DPN based on a luminescent MOF and molecular logic gates.
机译:鉴于糖尿病多发性神经病(DPN)是糖尿病患者维生素B12(VB12)缺乏引起的严重并发症,本研究创造性地提出了一种糖尿病患者对DPN的视觉逻辑报警传感器,以实现DPN的预防和早期诊断。采用直接溶剂热法成功地合成了阴离子结构{[NH2(CH3)(2)]中心点[In(pdca)(2)]}(n)(In-MOF;H(2)pdca=2,5-吡啶二甲酸)。在MOF中,具有二维(2D)无限层,包含三角形和六角窗口,二甲胺反离子位于超分子通道中。基于离子交换策略,通过双阳离子交换将Tb3+(λ(545nm))和Ru(bpy)(3)(2+)(λ(585nm))的荧光同时引入到In-MOF中,以构建针对甲基丙二酸(MMA)的精确自校准荧光传感器,甲基丙二酸是尿液中VB12缺乏的潜在标记物。基于Tb3+和Ru(bpy)(3)(2+)对MMA的不同荧光行为,设计了一种由抑制门和异或门组成的分子半减法逻辑门。在执行二进制减法运算后,计算结果(1,0)将触发警报,警告糖尿病患者体内可能存在VB12不足,并且可以用肉眼直观地看到输出。这项工作是首次尝试通过双阳离子交换功能化阴离子MOF,并提出了一种基于发光MOF和分子逻辑门的早期诊断和预防DPN的新策略。

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