Themed collection 2026 Chinese New Year and Lunar New Year Collection: Analytical Science

63 items
Open Access Perspective

Microfluidics for morpholomics and spatial omics applications

Created in BioRender. Menon, N. (2025). https://www.BioRender.com/l48m487.

Graphical abstract: Microfluidics for morpholomics and spatial omics applications
Minireview

Evaluating untargeted metabolomics pipelines for sports nutrition research: a review

This review explores untargeted metabolomics in sports nutrition, outlining analytical workflows, data processing, and key applications in exercise, training, and dietary studies, while addressing issues of reproducibility and clinical translation.

Graphical abstract: Evaluating untargeted metabolomics pipelines for sports nutrition research: a review
Minireview

Biological functions and detection strategies of magnesium ions: from basic necessity to precise analysis

This review comprehensively examines the biological functions of Mg2+ within systems, including immunity and cardiovascular health, and discusses detection strategies ranging from atomic spectrometry to fluorescent probes.

Graphical abstract: Biological functions and detection strategies of magnesium ions: from basic necessity to precise analysis
Minireview

Nanomaterial-modified electrochemical aptasensors for tetracycline detection: a review

Nanomaterial modification plays a key role in enhancing the sensitivity and efficiency of electrochemical aptasensors.

Graphical abstract: Nanomaterial-modified electrochemical aptasensors for tetracycline detection: a review
Minireview

Recent advances in biosensors based on the electrochemical properties of MXenes

This review presents the application of MXene materials in biosensors, combining materials science and sensor engineering to drive innovation in medical diagnostics, environmental monitoring, and personalized medicine.

Graphical abstract: Recent advances in biosensors based on the electrochemical properties of MXenes
Minireview

High-sensitivity and stability electrochemical sensors for chlorogenic acid detection based on optimally engineered nanomaterials

The review explores how structural and compositional adjustments in electrocatalysts from different nanomaterial categories enhance chlorogenic acid (CGA) detection performance in electrochemical sensors.

Graphical abstract: High-sensitivity and stability electrochemical sensors for chlorogenic acid detection based on optimally engineered nanomaterials
Open Access Tutorial Review

Advances in multifunctional diagnostic hydrogels for complex chronic wound healing and monitoring

The review with detail discusses the strategies and advancements for fabricating various functional diagnostic hydrogels to facilitate the complex chronic wound healing and monitoring.

Graphical abstract: Advances in multifunctional diagnostic hydrogels for complex chronic wound healing and monitoring
Tutorial Review

Recent advances in metallic and metal oxide nanoparticle-assisted molecular methods for the detection of Escherichia coli

This review comprehensively introduces metal and metal oxide nanoparticle-assisted assays for E. coli detection, including bacterial enrichment and nucleic acid extraction, immunoassays, nucleic acid tests, biosensors, and other novel assays.

Graphical abstract: Recent advances in metallic and metal oxide nanoparticle-assisted molecular methods for the detection of Escherichia coli
Open Access Critical Review

Recent advances in phenotypic antimicrobial susceptibility testing enabled by microfluidic technologies

Classification of cultivation methods and detection methods for phenotypic antimicrobial susceptibility testing enabled by microfluidic technologies.

Graphical abstract: Recent advances in phenotypic antimicrobial susceptibility testing enabled by microfluidic technologies
Open Access Critical Review

Vibration technology-based droplet microfluidic devices for biomedical applications

This review provides a concise summary of the fundamental principles, technological advancements, and representative biomedical applications of vibration-induced droplet manipulation.

Graphical abstract: Vibration technology-based droplet microfluidic devices for biomedical applications
Open Access Critical Review

Emerging trends in aerogel technology for sensing and biosensing applications

Aerogels for sensing and biosensing applications.

Graphical abstract: Emerging trends in aerogel technology for sensing and biosensing applications
Critical Review

Carbon-based nanozymes: catalytic mechanisms, performance tuning, and environmental and biomedical applications

Herein, we present classification strategies, catalytic mechanisms, and performance regulation approaches for carbon-dominated enzyme mimics, highlighting their multifunctional environmental and biomedical applications amid current challenges.

Graphical abstract: Carbon-based nanozymes: catalytic mechanisms, performance tuning, and environmental and biomedical applications
Critical Review

Global insights into microplastic contamination in marine life: detection methods and current status

This review provides a comprehensive overview of microplastic contamination in marine life, critically evaluating global detection methods, case studies, and human exposure risks, with emphasis on methodological advancements and policy implications.

Graphical abstract: Global insights into microplastic contamination in marine life: detection methods and current status
Critical Review

Micro-immobilized enzyme reactors for mass spectrometry proteomics

Various immobilization formats enable efficient enzyme-based proteolysis, streamlining sample preparation for proteomics through enhanced throughput, reproducibility, and automation compatibility.

Graphical abstract: Micro-immobilized enzyme reactors for mass spectrometry proteomics
Critical Review

Recent progress of dual-responsive fluorescent probes for polarity and analytes

Overview of fluorescent probes for the detection of polarity and other analytes.

Graphical abstract: Recent progress of dual-responsive fluorescent probes for polarity and analytes
Critical Review

Advancing food safety and quality assessment: a comprehensive review of non-destructive analytical technologies

A comprehensive summary of the principles and applications of non-destructive analytical technologies.

Graphical abstract: Advancing food safety and quality assessment: a comprehensive review of non-destructive analytical technologies
Critical Review

A gold nanoparticle-based colorimetric strategy for DNA detection: principles and novel approaches

The development of nanotechnology has led to the rapid growth of many different fields, including sensors. In this review, colorimetric sensors based on the AuNP material platforms for DNA detection will be discussed in detail.

Graphical abstract: A gold nanoparticle-based colorimetric strategy for DNA detection: principles and novel approaches
Critical Review

Cyclodextrin-based architectures for electrochemical sensing: from molecular recognition to functional hybrids

This review summarizes advances in cyclodextrin-based hybrid materials for electrochemical sensing, focusing on molecular recognition, fabrication strategies, and prospects for selective, high-performance, and reusable sensors.

Graphical abstract: Cyclodextrin-based architectures for electrochemical sensing: from molecular recognition to functional hybrids
Open Access Critical Review

Integrated technologies for molecular profiling of genetic and modified biomarkers in extracellular vesicles

Extracellular vesicles (EVs) carry myriad cargoes including genetic biomarkers inherited from parent cells as well as EV modifications by other entities. Complementary technologies have been developed to discover and translate diverse EV biomarkers.

Graphical abstract: Integrated technologies for molecular profiling of genetic and modified biomarkers in extracellular vesicles
Open Access Critical Review

Minimally and non-invasive glucose monitoring: the road toward commercialization

This review explores the evolution of glucose monitoring technologies, from invasive methods to non-invasive approaches, highlighting the advancements in glucose sensors, and discussing challenges and opportunities for future development.

Graphical abstract: Minimally and non-invasive glucose monitoring: the road toward commercialization
Critical Review

Sensing technology empowering food safety: research progress of SERS-assisted multimodal biosensing toward food hazard factors

The SERS-based detection mechanism and application of multimodal biosensing in food safety.

Graphical abstract: Sensing technology empowering food safety: research progress of SERS-assisted multimodal biosensing toward food hazard factors
Open Access Critical Review

Biological properties and DNA nanomaterial biosensors of exosomal miRNAs in disease diagnosis

MicroRNAs (miRNAs) regulate gene expression and are important biomarkers in molecular diagnostics, prognosis, and personalized medicine.

Graphical abstract: Biological properties and DNA nanomaterial biosensors of exosomal miRNAs in disease diagnosis
Critical Review

Recent advances in optical sensors for microcystin-LR: from recognition elements to signal transduction

This review offers a comprehensive overview of the advancements in optical sensors for MC-LR detection, focusing on recognition elements and optical signal transduction methods, and highlighting the achievements, challenges, and future prospects.

Graphical abstract: Recent advances in optical sensors for microcystin-LR: from recognition elements to signal transduction
Critical Review

Rapid antibiotic biosensors based on multiple molecular recognition elements

The molecular recognition elements utilized for antibiotic detection are presented, along with the interactions between them. The inner circle represents the five types of intermolecular forces, while the outer circle embodies the seven molecular recognition elements and direct recognition.

Graphical abstract: Rapid antibiotic biosensors based on multiple molecular recognition elements
Critical Review

3D-printed electrodes for electrochemical detection of environmental analytes

This review explores state-of-the-art 3D-printed electrochemical sensors for environmental monitoring, highlighting advanced materials, manufacturing approaches, and improved detection capabilities.

Graphical abstract: 3D-printed electrodes for electrochemical detection of environmental analytes
Open Access Critical Review

Advances in modeling periodontal host–microbe interactions: insights from organotypic and organ-on-chip systems

This review highlights the advancements in 3D organotypic and organ-on-chip models for studying periodontal host–microbe interactions, offering insights into disease mechanisms and paving the way for novel therapeutic approaches.

Graphical abstract: Advances in modeling periodontal host–microbe interactions: insights from organotypic and organ-on-chip systems
Critical Review

Aptamer selection via versatile microfluidic platforms and their diverse applications

This review examines contributions of microfluidic technology to SELEX-based aptamer identification, with alternative methods such as in vivo-like SELEX and Non-SELEX for selecting aptamers and discussed critical SELEX steps over the past decade.

Graphical abstract: Aptamer selection via versatile microfluidic platforms and their diverse applications
Critical Review

A review of uranium (U) elemental detection methods

The application of various analytical techniques in uranium detection was reviewed and the sample states applicable to these methods were analyzed. This paper provides a reference for the selection of uranium detection techniques.

Graphical abstract: A review of uranium (U) elemental detection methods
Open Access Communication

Simple and fast detection of CD4 and CD8 cells: integration of image flow system and acoustophoresis

Compact image-based flow cytometry system. Acoustic focusing with machine learning-driven image analysis.

Graphical abstract: Simple and fast detection of CD4 and CD8 cells: integration of image flow system and acoustophoresis
Open Access Paper

Preparation and H2S gas-sensitive properties of hierarchical flower-like Ag/ZnO composites

A 3 at% Ag/ZnO composite exhibits a high response of 430 to 100 ppm H2S at 92 °C and a 1 ppb detection limit. The enhancement is due to the synergistic effect between Ag and ZnO.

Graphical abstract: Preparation and H2S gas-sensitive properties of hierarchical flower-like Ag/ZnO composites
Open Access Paper

MRI-based radiomic signature for MYCN amplification prediction of pediatric abdominal neuroblastoma

Our finding demonstrates that the MRI-based radiomic signature has potential for predicting MYCN gene amplification in pediatric neuroblastoma patients.

Graphical abstract: MRI-based radiomic signature for MYCN amplification prediction of pediatric abdominal neuroblastoma
Open Access Paper

Enhancing wearable piezoelectric sensors via micro-textured P(VDF–TrFE)/BaTiO3 nanofiber mats for physiological monitoring

Our work presents a micro-textured piezoelectric nanofiber mat, fabricated using a simple paper-templated process, which achieves high sensitivity (∼197 mV kPa−1) and durability for monitoring a wide range of human physiological signals and motions.

Graphical abstract: Enhancing wearable piezoelectric sensors via micro-textured P(VDF–TrFE)/BaTiO3 nanofiber mats for physiological monitoring
Paper

Fluorescent/ratiometric colorimetric dual-node sensor based on Fe/N co-doped carbon dots for nitrite detection

A dual-mode Fe/N-CDs-based sensor with peroxidase-like activity enables sensitive nitrite detection and shows reliable performance in real vegetable and meat samples for food safety monitoring.

Graphical abstract: Fluorescent/ratiometric colorimetric dual-node sensor based on Fe/N co-doped carbon dots for nitrite detection
Paper

MIL-68(In)-derived CdIn2S4@In2S3 hollow microtubes for a sensitive molecularly imprinted photoelectrochemical CEA sensor

CdIn2S4@In2S3 HMTs and a PDA-based functional polymer were utilized to construct a molecularly imprinted photoelectrochemical sensor for CEA assay.

Graphical abstract: MIL-68(In)-derived CdIn2S4@In2S3 hollow microtubes for a sensitive molecularly imprinted photoelectrochemical CEA sensor
Open Access Paper

Detection of ferrous ions in extracellular vesicles at the single-particle level by nano-flow cytometry

Single-EV Fe2+ profiling via nano-flow cytometry and chemosensor Ac-FluNox identifies vesicular iron export as a compensatory mechanism in ferroptosis, revealing a ferroportin-independent iron homeostasis pathway.

Graphical abstract: Detection of ferrous ions in extracellular vesicles at the single-particle level by nano-flow cytometry
Open Access Paper

Deciphering target-binding selectivity of waste printed circuit board-derived carbon nanozymes for pyrophosphate sensing

WPCB-derived carbon nanozymes exhibit selective catalytic inhibition in response to pyrophosphate, enabling sensitive colorimetric detection without external recognition elements.

Graphical abstract: Deciphering target-binding selectivity of waste printed circuit board-derived carbon nanozymes for pyrophosphate sensing
Open Access Paper

Ultrasensitive electrochemical detection of methotrexate in biological fluids using NiMn2O4/CNT nanocomposite-modified electrode

A NiMn2O4/CNT-modified electrode enables ultrasensitive electrochemical detection of methotrexate with high selectivity in biological samples.

Graphical abstract: Ultrasensitive electrochemical detection of methotrexate in biological fluids using NiMn2O4/CNT nanocomposite-modified electrode
Paper

Multifunctional terahertz device with angular resilience for biomedical sensing and polarization conversion

A device combining high-sensitivity biosensing of blood, skin and cervical cancers with ultra-broadband polarization conversion, delivering compact, cost-effective solutions for advanced biomedical diagnostics.

Graphical abstract: Multifunctional terahertz device with angular resilience for biomedical sensing and polarization conversion
Paper

LEADS – a comprehensive human liver-on-a-chip for non-alcoholic steatohepatitis (NASH) drug testing

The key elements in the development of the LEADS chip are highlighted; the crucial features of the chip for mimicking NASH in vitro and its applicability as a pre-clinical drug testing model.

Graphical abstract: LEADS – a comprehensive human liver-on-a-chip for non-alcoholic steatohepatitis (NASH) drug testing
Paper

Baseline correction of Raman spectral data using triangular deep convolutional networks

We have proposed a novel deep learning architecture, the Triangular Deep Convolutional Network (TDCN), for Raman spectral baseline correction. TDCN enhances spectral pre-processing, thereby improving the reliability of downstream analyses.

Graphical abstract: Baseline correction of Raman spectral data using triangular deep convolutional networks
Paper

Development of a high-performance sliding microneedle-lateral flow immunoassay strip device for ultra-rapid point-of-care diagnosis

The HP-SML device was developed by extending and angling microneedles to enhance ISF extraction speed, enabling user-friendly diagnosis using only a minimal volume of interstitial fluid.

Graphical abstract: Development of a high-performance sliding microneedle-lateral flow immunoassay strip device for ultra-rapid point-of-care diagnosis
Paper

Highly sensitive and reproducible SERS substrate based on ordered multi-tipped Au nanostar arrays for the detection of myocardial infarction biomarker cardiac troponin I

A Raman sensor based on an ordered multi-tipped Au nanostar array substrate and Raman nanotags enables rapid and accurate detection of the myocardial infarction biomarker cTnI.

Graphical abstract: Highly sensitive and reproducible SERS substrate based on ordered multi-tipped Au nanostar arrays for the detection of myocardial infarction biomarker cardiac troponin I
Paper

A TICT mechanism-based viscosity fluorescent probe for monitoring viscosity in inflammatory cells

Viscosity, as a fundamental biophysical parameter of cellular microenvironments, critically regulates physiological processes, including molecular transport and signal transduction.

Graphical abstract: A TICT mechanism-based viscosity fluorescent probe for monitoring viscosity in inflammatory cells
Paper

Machine learning-assisted flexible dual modal sensor for multi-sensing detection and target object recognition in the grasping process

A flexible dual modal sensor based on machine learning has been developed for non-contact proximity sensing and contact pressure sensing, achieving high-precision recognition of the material and hardness of target objects.

Graphical abstract: Machine learning-assisted flexible dual modal sensor for multi-sensing detection and target object recognition in the grasping process
Paper

Raman spectroscopy and machine learning for forensic document examination

Forensics relies on the differentiation and classification of document papers, particularly in cases involving document forgery and fraud.

Graphical abstract: Raman spectroscopy and machine learning for forensic document examination
Paper

A multi-loop aptamer-based fluorescent aptasensor for enhanced detection of 17β-estradiol

Newly designed aptamers with 2–5 internal structural loops bind 17β-estradiol more strongly than the 1-loop structure, enhancing aptasensor detection sensitivity.

Graphical abstract: A multi-loop aptamer-based fluorescent aptasensor for enhanced detection of 17β-estradiol
Paper

One-pot synthesized three-way junction based multiple strand displacement amplification for sensitive assay of H5N1 DNA

One-pot synthesis of three-way junction (TWJ) is proposed. Based on TWJ, strand displacement amplification and Cas12a system, a sensitive assay strategy is developed targeting H5N1 DNA.

Graphical abstract: One-pot synthesized three-way junction based multiple strand displacement amplification for sensitive assay of H5N1 DNA
Paper

Curcumin – a natural colorant-based pH indicator for molecular diagnostics

In this study, curcumin which is a biodegradable, non-toxic, and natural colorant, served as a pH indicator to visually identify the LAMP-amplified Staphylococcus aureus (S. aureus) and Streptococcus pneumoniae (S. pneumoniae).

Graphical abstract: Curcumin – a natural colorant-based pH indicator for molecular diagnostics
Open Access Paper

Dimensional analysis meets AI for non-Newtonian droplet generation

We introduce a novel hybrid machine-learning architecture that integrates dimensional analysis with machine learning to predict the flow rates required to generate droplets with specified sizes in systems involving non-Newtonian fluids.

Graphical abstract: Dimensional analysis meets AI for non-Newtonian droplet generation
Paper

Development of a novel label-free NIR aptasensor based on triphenylmethane dyes for rapid and sensitive detection of copper ions

A novel near-infrared fluorescent aptasensor (NIRApt) that integrates TPM dyes with a Cu2+-binding aptamer (AptCu) was developed for sensitive detection of copper ions.

Graphical abstract: Development of a novel label-free NIR aptasensor based on triphenylmethane dyes for rapid and sensitive detection of copper ions
Paper

An amplification-free digital droplet assay for influenza A viral RNA based on CRISPR/Cas13a

Scheme of the amplification-free digital droplet assay. Two innovations: (1) polystyrene capture beads to concentrate the target RNA from a dilute sample and (2) the “confinement” effect amplifies the concentration of the target molecule.

Graphical abstract: An amplification-free digital droplet assay for influenza A viral RNA based on CRISPR/Cas13a
Paper

An Ag-nanoplate decorated cavity-nanorod array SERS substrate for trace detection of PCB-77

The C-NR@Ag substrate was fabricated to achieve rapid detection of PCB-77 at trace concentrations, along with non-contact sensing capabilities in water.

Graphical abstract: An Ag-nanoplate decorated cavity-nanorod array SERS substrate for trace detection of PCB-77
Paper

Comparison between electrochemiluminescence of luminol and electrocatalysis by Prussian blue for the detection of hydrogen peroxide

Electrochemiluminescence (ECL) of luminol and electrocatalysis by Prussian blue were compared for the selective detection of H2O2 at the boron-doped diamond (BDD) electrodes.

Graphical abstract: Comparison between electrochemiluminescence of luminol and electrocatalysis by Prussian blue for the detection of hydrogen peroxide
Paper

A novel poly(amidoamine)-modified electrolyte–insulator–semiconductor-based biosensor for label-free detection of ATP

A label-free ATP detection biosensor based on poly(amidoamine)-modified EIS sensors was developed with a LOD as low as 0.12 nM.

Graphical abstract: A novel poly(amidoamine)-modified electrolyte–insulator–semiconductor-based biosensor for label-free detection of ATP
Open Access Paper

Construction of a self-assembled duplexed aptasensor for the simultaneous detection of haemoglobin and glycated haemoglobin

A duplexed aptasensor was developed for the simultaneous determination of haemoglobin and glycated haemoglobin in calibration samples.

Graphical abstract: Construction of a self-assembled duplexed aptasensor for the simultaneous detection of haemoglobin and glycated haemoglobin
Open Access Paper

NHS-ester conjugated gold nanoparticles for spermine detection: a potential tool in meat spoilage monitoring

Gold nanoparticle sensor functionalized with NHS-ester as a colorimetric sensor for spermine detection in meat spoilage. It shows a visible color shift upon spermine-induced aggregation, offering high sensitivity and a detection limit of 0.77 μM.

Graphical abstract: NHS-ester conjugated gold nanoparticles for spermine detection: a potential tool in meat spoilage monitoring
Open Access Paper

Advancing microfluidic design with machine learning: a Bayesian optimization approach

The proposed Bayesian optimization-based approach enhances micromixer performance by optimizing geometric parameters, significantly reducing required number of simulations, and accelerating the design process compared to conventional methods.

Graphical abstract: Advancing microfluidic design with machine learning: a Bayesian optimization approach
Paper

A double probe-based fluorescence sensor array to detect rare earth element ions

A dual-channel fluorescence sensor array using ATT-AuNCs and BSA/MPA-AuNCs successfully detected 14 REEIs with high sensitivity, distinguishing individual and mixed REEIs via pattern recognition.

Graphical abstract: A double probe-based fluorescence sensor array to detect rare earth element ions
Paper

A novel overtone peak self-referencing fluorescent sensor based on a bipyridine-linked covalent organic framework for highly sensitive copper ion detection

This study presents a ratiometric fluorescence sensor based on TPE-Bpy-COF for Cu2+ detection. Its dual-emission mechanism and overtone peak reduce environmental interference, making it a promising tool for environmental monitoring.

Graphical abstract: A novel overtone peak self-referencing fluorescent sensor based on a bipyridine-linked covalent organic framework for highly sensitive copper ion detection
Paper

A rhodamine-conjugated fluorescent and colorimetric receptor for the detection of Cu2+ ions: environmental utility and smartphone integration

A new rhodamine-based turn-on fluorescent probe (RME) was synthesized through a simple condensation reaction. The designed sensor exhibits the potential for selective sensing of Cu2+ ions via “turn-on” colorimetric and fluorometric responses.

Graphical abstract: A rhodamine-conjugated fluorescent and colorimetric receptor for the detection of Cu2+ ions: environmental utility and smartphone integration
Paper

A CNN-based self-supervised learning framework for small-sample near-infrared spectroscopy classification

A CNN-based self-supervised learning framework is proposed to enhance spectral analysis with small sample sizes by leveraging pseudo-labeled data for pre-training, achieving superior results compared to traditional methods.

Graphical abstract: A CNN-based self-supervised learning framework for small-sample near-infrared spectroscopy classification
Paper

Ultrasensitive detection of methylene blue by surface-enhanced Raman scattering (SERS) with Ag nanoparticle-decorated magnetic CoNi layered double hydroxides

A spherical flower-like magnetic Fe3O4@CoNi LDH@Ag NPs SERS substrate was successfully fabricated by electrostatic self-assembly and applied for sensitive detection of methylene blue (MB) in environmental water samples.

Graphical abstract: Ultrasensitive detection of methylene blue by surface-enhanced Raman scattering (SERS) with Ag nanoparticle-decorated magnetic CoNi layered double hydroxides
Paper

Development of a portable gas chromatograph–mass spectrometer embedded with a low-temperature adsorption thermal desorption module for enhanced detection of volatile organic compounds

A low-temperature adsorption thermal desorption system was developed, and the sensitivity of low-boiling substances was improved by 11–17 times compared to ambient-temperature adsorption thermal desorption module.

Graphical abstract: Development of a portable gas chromatograph–mass spectrometer embedded with a low-temperature adsorption thermal desorption module for enhanced detection of volatile organic compounds
63 items

About this collection

To celebrate the start of the Year of the Horse, this post pub collection features some of the most popular articles published in 2025 in AnalystAnalytical MethodsLab on a Chip, and Sensors and Diagnostics by corresponding authors based in countries celebrating the occasion.

Congratulations to all of the authors whose articles have been featured and we wish you a happy, healthy and prosperous Year of the Horse!

Spotlight

Advertisements