pulpsys.com

The feasibility for ALP detection based on inner filter effect. (A

5 (448) · € 28.00 · Auf Lager

Download scientific diagram | The feasibility for ALP detection based on inner filter effect. (A) The fluorescence spectra of ZnSe@ZnS QDs and Mn:ZnS QDs in the presence of different substances. (a) None, (b) PNPP (600 μM), (c) PNPP (600 μM) and ALP (100 U per L). (B) The absorption spectrum of PNPP (a) and the excitation spectra of ZnSe@ZnS QDs (b), Mn:ZnS QDs (c). (C) The absorption spectra of incubation mixture in the presence of various activites of ALP (from bottom to top, 0, 16, 32, 64, 96 U per L). (D) The absorption spectra of PNPP (a), PNP (c) and the emission spectra of ZnSe@ZnS QDs (b), Mn:ZnS QDs (d) from publication: A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect | Alkaline phosphatase (ALP) is an important biomarker whose abnormal level in activity is associated with hepatobiliary, skeletal, and renal diseases as well as cancer. Herein, we synthesized ZnSe@ZnS quantum dots (ZnSe@ZnS QDs) and Mn-doped ZnS quantum dots (Mn:ZnS QDs) as | ALP, Alkaline Phosphatase and Fluorescence | ResearchGate, the professional network for scientists.

In Situ Formation of 2,3-Diaminophenazine for Evaluation of

Schematic illustration of strategy for ALP activity detection

Sensitive Naked‐eye and Fluorescence Determination of

PDF) A Fluorescence Immunoassay Based on the Phosphate-Triggered

Based on intervening PCR for detection of alkaline phosphatase and

A novel and sensitive ratiometric fluorescent quantum dot-based

Single-Molecule Biosensing of Alkaline Phosphatase in Cells and

Silver ion-regulated ratiometric fluorescence assay for alkaline

Ultrahigh Efficient FRET Ratiometric Fluorescence Biosensor for

Micromachines, Free Full-Text

Fluorescence Immunoassay Based on the Alkaline Phosphatase

Fluorometric and colorimetric dual-readout alkaline phosphatase

Inner filter effect based fluorometric determination of the

Nitrogen doped carbon dots for turn-off fluorescent detection of

Inner filter effect-based fluorescent sensing systems: A review