Mengtian Zhang's research while affiliated with Nanjing Normal University and other places

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Publications (2)


A reusable neurotransmitter aptasensor for the sensitive detection of serotonin
  • Article

November 2020

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29 Reads

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23 Citations

Analytica Chimica Acta

Xue Geng

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Mengtian Zhang

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Hongyan Long

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[...]

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Jiangyan Du

Serotonin is one of the important neurotransmitters in human nervous system and associated with central nervous system diseases. Herein, we have prepared a novel electrochemical aptasensor for rapid and sensitive detection of serotonin by using the pre-designed and prepared DNA aptamers. In the absence of serotonin, the electron transfer rate on the aptasensor was faster than that in the presence of serotonin due to the hairpin structure of the aptamer was loose and MB could be closer to the electrode surface. While in the presence of serotonin, the hairpin structure of the aptamer was extended and MB was far away from the electrode surface. The effect of MB labeled sites on analytical performances of the proposed aptasensors was discussed by comparing sensitivity of the aptasensors that MB labeled in the intermediate of the aptamer with that MB labeled at the 3′ end of the aptamer. It was found that sensitivity of the intermediate-labeled aptasensor was much higher than the terminal-labeled aptasensor due to the specific conformational changes before and after aptamer binding to serotonin. The developed aptasensors exhibits a rapid electrochemical response and high sensitivity for the determination of serotonin. Under the optimal experimental conditions, the linear range for serotonin concentrations by the intermediate-labeled aptasensor was 1 pM–10 nM with a detection limit of 0.017 fM (S/N = 3). Moreover, the proposed aptasensor is reusable and shows good reproducibility and selectivity for the detection of serotonin in 100-fold diluted rat cerebrospinal fluid, suggesting a good application prospect in the detection of serotonin in real samples.

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Design and synthesis of chiral carbon dots.
Morphological and structural characterization of L/D-Cys-CDots. (A) TEM images of L-Cys-CDots. (B) The corresponding size histogram of the L-Cys-CDots. (C) FT-IR spectrum of L/D-Cys-CDots. (D) XPS survey spectrum of L-Cys-CDots showing the O1s, N1s, C1s, and S2p.
Photophysical and (chiro)optical characterization of L/D-CDots. Experiments performed in water at 298 K. (A) UV–Vis spectra of L-CDots (black line) and D-CDots (red line). (B) FL emission spectra (at different excitation wavelengths) of L-CDots (same emission profiles and intensities were observed for D-CDots). (C) CD spectra of L-CDots (black line) and D-CDots (red line).
Schematic representation of L-Cys-CDots acting as chiral template after pH decrease trigger (purple = free base porphyrin, green = protonated porphyrin).
(A) UV–Vis spectra of L-CDots (black line) and L-CDots+H2TPPS solutions at different pH (H2TPPS concentration = 10 μM). (B) CD spectra of L-CDots (Black line) and D-CDots (Red line), both in the presence of H2TPPS (100 μM) at pH = 2.5.

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Chiral Self-Assembly of Porphyrins Induced by Chiral Carbon Dots
  • Article
  • Full-text available

August 2020

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354 Reads

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30 Citations

Frontiers in Chemistry

Frontiers in Chemistry

Chirality plays a key role in many fields ranging from life to natural sciences. For a long time, chiral materials have been developed and used to interact with chiral environments. In recent years, fluorescent carbon dots (CDots) are a new class of carbon nanomaterials exhibit excellent optical properties, good biocompatibility, excellent water solubility, and low cost. However, chirality transfer between semiconductor CDots and organics remains a challenge. Herein, a facile one-step hydrothermal method was used to synthesize chiral CDs from cysteine (cys). The obtained chiral CDots can act as chiral templates to induce porphyrins to form chiral supramolecular assemblies. The successful transmission of chiral information provides more options for the development of various chiral composite materials and the preservation of chiral information in the future.

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Citations (2)


... Recently, Nakatsuka et al. reported the first aptamer against ST with high affinity (K d = 30 nM) and used it for ST analysis by field-effect transistors and nanopipette devices [31][32][33]. In our previous work, we applied this aptamer for the development of a first-generation electrochemical aptasensor and achieved fM-level detection limits for ST [34]. However, the original aptamer strand possesses a long chain length with a large stem-loop structure, which impairs its sensitivity during electrochemical detection. ...

Reference:

Truncated Electrochemical Aptasensor with Enhanced Antifouling Capability for Highly Sensitive Serotonin Detection
A reusable neurotransmitter aptasensor for the sensitive detection of serotonin
  • Citing Article
  • November 2020

Analytica Chimica Acta

... The special macrocyclic structure of porphyrins determines that porphyrins and their derivatives have good electronic buffering, photoelectromagnetic properties and excellent chemical photostability. in June 2020, Feng et al. [65] synthesized CCDs with cysteine as the chiral precursor in one step by hydrothermal method, and the obtained CCDs can be used as chiral templates to induce porphyrins to form chiral supramolecular self-assemblies (Figure 9b). The successful transfer of chiral information provides more options for the future development of various composites and the preservation of chiral information. ...

Chiral Self-Assembly of Porphyrins Induced by Chiral Carbon Dots
Frontiers in Chemistry

Frontiers in Chemistry