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1.
Molecules ; 28(13)2023 Jun 23.
Article in English | MEDLINE | ID: mdl-37446596

ABSTRACT

Au nanoparticles were synthesized in a soft template of pseudo-polyanions composed of polyvinylpyrrolidone (PVP) and sodium dodecyl sulfate (SDS) by the in situ reduction of chloroauric acid (HAuCl4) with PVP. The particle sizes and morphologies of the Au nanoparticles were regulated with concentrations of PVP or SDS at room temperature. Distinguished from the Au nanoparticles with various shapes, Au nanoflowers (AuNFs) with rich protrusion on the surface were obtained at the low final concentration of SDS and PVP. The typical AuNF synthesized in the PVP (50 g·L-1)-SDS (5 mmol·L-1)-HAuCl4 (0.25 mmol·L-1) solution exhibited a face-centered cubic structure dominated by a {111} crystal plane with an average equivalent particle size of 197 nm and an average protrusion height of 19 nm. Au nanoparticles with four different shapes, nanodendritic, nanoflower, 2D nanoflower, and nanoplate, were synthesized and used to modify the bare glassy carbon electrode (GCE) to obtain Au/GCEs, which were assigned as AuND/GCE, AuNF/GCE, 2D-AuNF/GCE, and AuNP/GCE, respectively. Electrochemical sensing platforms for nitrite detection were constructed by these Au/GCEs, which presented different detection sensitivity for nitrites. The results of cyclic voltammetry (CV) demonstrated that the AuNF/GCE exhibited the best detection sensitivity for nitrites, and the surface area of the AuNF/GCE was 1.838 times of the bare GCE, providing a linear c(NO2-) detection range of 0.01-5.00 µmol·L-1 with a limit of detection of 0.01 µmol·L-1. In addition, the AuNF/GCE exhibited good reproducibility, stability, and high anti-interference, providing potential for application in electrochemical sensing platforms.


Subject(s)
Metal Nanoparticles , Nitrites , Nitrites/chemistry , Gold/chemistry , Metal Nanoparticles/chemistry , Reproducibility of Results , Electrochemical Techniques/methods , Carbon/chemistry , Electrodes , Povidone/chemistry
2.
Histol Histopathol ; 38(9): 975-987, 2023 Sep.
Article in English | MEDLINE | ID: mdl-36734334

ABSTRACT

Macrophage influences peripheral nerve regeneration. According to the classical M1/M2 paradigm, the M1 macrophage is an inhibitor of regeneration, while the M2 macrophage is a promoter. However, several studies have shown that M1 macrophages are indispensable for peripheral nerve repair and facilitate many critical processes in axonal regeneration. In this review, we summarized the information on macrophage polarization and focused on the activities of M1 macrophages in regeneration. We also provided some examples where the macrophage phenotypes were regulated to help regeneration. We argued that the coordination of both macrophage phenotypes might be effective in peripheral nerve repair, and a more comprehensive view of macrophages might contribute to macrophage-based immunomodulatory therapies.


Subject(s)
Macrophages , Peripheral Nerves , Nerve Regeneration/physiology , Phenotype , Macrophage Activation
3.
Guang Pu Xue Yu Guang Pu Fen Xi ; 25(9): 1468-70, 2005 Sep.
Article in Chinese | MEDLINE | ID: mdl-16379292

ABSTRACT

Based on the complex formed by Zn2+ which can strengthen the relative fluorescence intensity of fleroxacin evidently, a novel photochemical fluorescence method was developed. The effects of the acidity, the concentration ratio of Zn2+ to fleroxacin, and the time for illumination were studied. Under the optimum experiment conditions, the linear range of the determination was 5.00 x 10(-8) - 5.00 x 10(-6) mol x L(-1). The detection limit was 4.2 x 10(-8) mol x L(-1). The relative standard deviation of the determination of fleroxacin (5.0 x 10(-7) mol x L(-1)) was 1.7% (n = 20). The method was successfully applied to the determination of fleroxacin in specimens, and the recoveries were in the range of 95.0%-105%. The mechanism of this system is proposed.


Subject(s)
Fleroxacin/analysis , Fluorescence , Spectrometry, Fluorescence , Zinc/chemistry , Fleroxacin/chemistry , Molecular Structure , Organometallic Compounds/chemistry , Photochemical Processes , Reproducibility of Results
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