98%
921
2 minutes
20
Early and portable detection of pathogenic bacteria is crucial for ensuring food safety, monitoring product quality, and tracing the sources of bacterial infections. Moving beyond traditional plate-culture counting methods, the analysis of active bacterial components offers a rapid means of quantifying bacteria. Here, metal-organic framework (MOF)-derived NiCo-layered double hydroxide nanosheets (LDHs), synthesized via the Kirkendall effect, were employed as highly effective oxidase mimics to generate reactive oxygen species (ROS). These ROS quickly etched gold nanobipyramids (Au NBPs), producing a vivid multicolormetric response. Experimental results and theoretical calculations indicated that the exceptional oxidase-like activity of NiCo-LDHs stemmed from the presence of bimetallic active sites and oxygen vacancies modulating the local electronic structure of LDHs. Additionally, β-galactosidase (β-Gal), a biomarker of , reacted with -aminophenyl-β-d-galactopyranoside (PAPG) to form -aminophenol (PAP), a reducing agent which consumes ROS, thereby inhibiting the etching of Au NBPs. Furthermore, a three-dimensional (3D)-printed point-of-care testing (POCT) shell was designed as a portable device to visually detect β-Gal and in conjugation with smartphones. This study not only provides a novel approach to the rational design of nanozymes but also establishes a vivid and portably visual biosensing platform for detecting β-Gal activity and pathogenic bacteria.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1021/acs.analchem.4c05379 | DOI Listing |
Anal Chim Acta
October 2025
State Key Laboratory of Digital Medical Engineering, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096, PR China. Electronic address:
Mimicking the structure of natural laccase, we designed and synthesized a Cu-clusterzyme with Cu atom as the catalytic center, histidine and cysteine as the recognition unit and auxiliary fluorescence unit, respectively (denoted as Cys-His-CuNCs). Cys-His-CuNCs integrate the dual properties of laccase-like catalysis and fluorescence-sensing, and can simultaneously catalyze and detect the neurotransmitter epinephrine (EP). Cys-His-CuNCs exhibit a 44-fold higher catalytic activity than laccase.
View Article and Find Full Text PDFAnal Chem
September 2025
College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao 266109, People's Republic of China.
N-doped carbon nanomaterials (NCMs) have attracted significant interest as metal-free nanozymes for sensing due to their exceptional stability and biocompatibility. However, the controversial active sites and catalytic pathways severely hinder the application of NCM-based nanozymes. Here, postsynthetic modification methods have been developed to study the catalytic mechanism, including selective deactivation, chemical grafting, and surface doping.
View Article and Find Full Text PDFFront Immunol
September 2025
Laboratory of Applied Molecular Biology and Immunology, University of Tlemcen, Tlemcen, Algeria.
Background: This study investigated the role of UVB radiation and the influence of a simulated passive barrier on the enzymatic conversion of 25-hydroxyvitamin D3 (25(OH)D) by 1-alpha hydroxylase and its effects on the functional activity of tissue-resident macrophages.
Methods: Murine peritoneal tissue-resident macrophages (PRMφs) were exposed to three conditions: (1) Baseline (Control group), with no light exposure; (2) UVB+/RF- group, exposed to UVB rays without passive barrier simulation; (3) UVB+/RF+ group, UVB exposure with a thin layer of rat fur to mimic the passive barrier on the skin.
Results: UVB exposure did not significantly alter 25OHD levels across groups but led to a marked downregulation of 1-alpha hydroxylase, particularly with the simulated barrier.
Nat Commun
August 2025
Department of General Surgery, Beijing Friendship Hospital, Capital Medical University, Beijing, China.
Metabolic dysfunction-associated steatotic liver disease (MASLD), potentially ameliorated by bariatric-metabolic surgery, remains a global health concern in the absence of approved drugs. Protein post-translational modifications (PTMs) are crucial for MASLD. However, the functional significance of lysine crotonylation (Kcr) remains unclear.
View Article and Find Full Text PDFBiosens Bioelectron
August 2025
International Ph.D. Program in Innovative Technology of Biomedical Engineering and Medical Devices, Ming Chi University of Technology, New Taipei City, 24301, Taiwan; Research Center for Intelligent Medical Devices, Ming Chi University of Technology, New Taipei City, 24301, Taiwan. Electronic addres
Nanozyme-based composites, a promising novel class of materials that mimic natural enzymes while offering greater stability, more catalytic activity, and cost-effectiveness, making them ideal for developing next-generation sensors. This work presents the synthesis and testing of a redox-active CuS@f-CB composite, synthesized by a combined hydrothermal-ultrasonication method, as a nanozyme-based electrocatalyst for label-free detection of L-tryptophan (L-TRP). This nanozyme-based composite combines the oxidase-like catalytic activity of copper sulfide with the high surface area, conductivity, and defect-rich structure of acid-treated carbon black.
View Article and Find Full Text PDF