ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

Invertase-nanogold clusters decorated plant membranes for fluorescence-based sucrose sensor.

インベルターゼ-ナノ金クラスターで修飾した植物膜を用いた蛍光ベースのスクロースセンサー (機械翻訳の邦題)

Journal of nanobiotechnology2015Bagal-Kestwal D, Kestwal RM, Chiang BH
研究デザインその他の原著論文
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研究デザイン
その他の原著論文
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未確定
出版年
2015
出典
doi.org
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有効な記録
状態確認日
2026/08/17
収集日
2026/08/03
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確認期限内
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自動処理
記録状態
公開

日本語要約(機械生成)

本研究では、タマネギ膜上にインベルターゼを介してナノ金クラスターを合成し、スクロースバイオセンサーへの応用を検討した。透過型電子顕微鏡により、膜表面に直径約5〜50nmの遊離ナノ粒子と約95〜200nmのクラスターが観察され、多くは球形で、一部は正方形、三角形、六角形、棒状であった。紫外可視分光光度測定では約301nmに特徴的なピークが認められ、スクロース存在下で320nm励起により348nmに発光ピークを示した。蛍光寿命はナノ金修飾膜で6.20ns、非修飾膜で2.47nsであった。本センサーはpH4.0〜7.0で動作し、応答時間30秒、検出限界2×10⁻⁹M、直線範囲2.25×10⁻⁹〜4.25×10⁻⁸Mを示した。緑茶サンプル中のスクロース検出で従来法と良好な一致が得られた。

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抄録

In the present study, invertase-mediated nanogold clusters were synthesized on onion membranes, and their application for sucrose biosensor fabrication was investigated. Transmission electron microscopy revealed free nanoparticles of various sizes (diameter ~5 to 50 nm) along with clusters of nanogold (~95 to 200 nm) on the surface of inner epidermal membranes of onions (Allium cepa L.). Most of the polydispersed nanoparticles were spherical, although some were square shaped, triangular, hexagonal or rod-shaped. Ultraviolet-visible spectrophotometric observations showed the characteristic peak for nanoparticles decorated invertase-onion membrane at approximately 301 nm. When excited at 320 nm in the presence of sucrose, the membranes exhibited a photoemission peak at 348 nm. The fluorescence lifetime of this nanogold modified onion membrane was 6.20 ns, compared to 2.47 ns for invertase-onion membrane without nanogold. Therefore, a sucrose detection scheme comprised of an invertase/nanogold decorated onion membrane was successfully developed. This fluorescent nanogold-embedded onion membrane drop-test sensor exhibited wide acidic to neutral working pH range (4.0-7.0) with a response time 30 seconds (<1 min). The fabricated quenching-based probe had a low detection limit (2x10(-9) M) with a linear dynamic range of 2.25x10(-9) to 4.25x10(-8) M for sensing sucrose. A microplate designed with an enzyme-nanomaterial-based sensor platform exhibited a high compliance, with acceptable percentage error for the detection of sucrose in green tea samples in comparison to a traditional method. With some further, modifications, this fabricated enzyme-nanogold onion membrane sensor probe could be used to estimate glucose concentrations for a variety of analytical samples. Graphical abstract Synthesis and characterization of invertase assisted nanogold clusters on onion membranes and their application for fluorescence-based sucrose sensor.

MeSH

AlliumBiosensing TechniquesCell MembraneFluorescenceFluorescent DyesFood AnalysisHydrogen-Ion ConcentrationLimit of DetectionNanostructuresSensitivity and SpecificitySpectrometry, FluorescenceSpectrophotometry, UltravioletSucroseTeabeta-Fructofuranosidase

DOI 10.1186/s12951-015-0089-1

PMID 25886379

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