2019
DOI: 10.1016/j.aca.2019.04.037
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Lab-on-nanopaper: An optical sensing bioplatform based on curcumin embedded in bacterial nanocellulose as an albumin assay kit

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Cited by 48 publications
(28 citation statements)
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References 32 publications
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“…敏感元件作为 传感器的核心部件, 如同人的感觉器官一样, 在传感检 测中起重要作用. 传感器按照敏感元件的种类不同, 大 致可以分为三大类: 生物类, 如基于酶、抗体和激素等 分子识别功能的传感器 [6,7] ; 化学类, 指基于化学反应 原理的传感器 [8] ; 物理类, 通常指基于光、电、磁、 力、热和声等物理效应响应的传感器 [9,10] . 这其中, 基于化学类的荧光化学传感器由于具备 荧光信号明显、响应速度快、操作简单等优势受到人 们的广泛关注 [11~15] .…”
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“…敏感元件作为 传感器的核心部件, 如同人的感觉器官一样, 在传感检 测中起重要作用. 传感器按照敏感元件的种类不同, 大 致可以分为三大类: 生物类, 如基于酶、抗体和激素等 分子识别功能的传感器 [6,7] ; 化学类, 指基于化学反应 原理的传感器 [8] ; 物理类, 通常指基于光、电、磁、 力、热和声等物理效应响应的传感器 [9,10] . 这其中, 基于化学类的荧光化学传感器由于具备 荧光信号明显、响应速度快、操作简单等优势受到人 们的广泛关注 [11~15] .…”
unclassified
“…(a) Synthesis route for B-1 and its condensation reactions with different non-boron motifs; (b) recognition patterns of the saturated vapors of the tested VSOMs at 293 K obtained by collecting fluorescence intensity variations of the sensors (S1 to S8). Note: the Arabic numerals in the figure stand for different chemicals: specifically, methane (1), ethane(2), propane (3), n-butane (4), n-pentane (5), n-hexane (6), n-heptane(7), n-octane(8), nnonane (9), n-decane(10), methanol (11), toluene(12), diethyl ether (13), benzene(14), acetone(15), ethanol(16), THF(17), DCM(18), TCM(19) and water(20). (c) Home-made sensing platform developed for VSOMs vapor detection[63] (color online).…”
mentioning
confidence: 99%
“…Consequently, its determination is clinically important. Naghdi et al66 introduced a curcumin embedded‐BC nanopaper (CEBC) for optical sensing of HSA. Because the BC nanopaper is transparent, flexible, porous, biodegradable, and printable, it is an ideal platform.…”
Section: D Nanocellulose‐based Products For Sensor Designmentioning
confidence: 99%
“…e) Correlation between obtained results of HSA analysis using the fabricated NAD/CEBCs and BCG albumin assay kit as a reference method recommended for clinical uses. Reproduced with permission 66. Copyright 2019, Elsevier B.V.…”
Section: D Nanocellulose‐based Products For Sensor Designmentioning
confidence: 99%
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