4.8 Review

Microfluidics Coupled Mass Spectrometry for Single Cell Multi-Omics

Related references

Note: Only part of the references are listed.
Article Biochemical Research Methods

Microfluidic device integrating single-cell extraction and electrical lysis for mass spectrometry detection of intracellular compounds

Tomas Vaclavek et al.

Summary: Analysis of cellular composition and metabolism at a single-cell resolution is important for understanding complex relationships within tissues or organisms. Mass spectrometry (MS) is an ideal tool for detecting and identifying compounds in low-volume samples with high chemical complexity. This study presents a microfluidic sampling platform that allows single-cell extraction from MS-incompatible media and analysis of human erythrocytes using electrical cell lysis and nanoESI-MS. Hemoglobin alpha and beta chains were successfully identified in single-erythrocyte lysates.

ELECTROPHORESIS (2023)

Article Chemistry, Analytical

Single-cell sorting using integrated pneumatic valve droplet microfluidic chip

Yang Zhou et al.

Summary: Single-cell analysis and sorting is an important technique in scientific research and industry. This study developed a microfluidic chip that integrates single-cell droplet generation, incubation, and sorting functions using a pneumatic micro-valve. Numerical simulations were used to optimize the design of the valve. Experimental results demonstrated that the integrated chip improved the purity of target droplets and reduced cell loss and labor. This design has various applications such as single-cell sequencing and antibody screening.

TALANTA (2023)

Article Genetics & Heredity

Integrated analysis of single-cell and bulk RNA sequencing identifies a signature based on macrophage marker genes involved in prostate cancer prognosis and treatment responsiveness

Xiugai Li et al.

Summary: In this study, a macrophage-related signature (MRS) was developed to predict the prognosis of prostate cancer patients. The MRS showed stable and robust performance in predicting recurrence-free survival (RFS) and outperformed traditional clinical variables. Patients with a high MRS score had abundant macrophage infiltration and high expression levels of immune checkpoints, while those with a low MRS score exhibited better response to immune checkpoint blockade and adjuvant chemotherapy.

FUNCTIONAL & INTEGRATIVE GENOMICS (2023)

Review Biochemistry & Molecular Biology

Mass Spectrometry Imaging for Single-Cell or Subcellular Lipidomics: A Review of Recent Advancements and Future Development

Dan Li et al.

Summary: Mass Spectrometry Imaging (MSI) is a powerful imaging technique for analyzing biological samples, providing valuable insights into the distribution and structure of lipids. Recent advancements in high-resolution MSI have made it essential for studying single-cell or subcellular lipidomics. By preserving intracellular and intercellular information, MSI allows for a comprehensive analysis of lipidomics in cells and organelles, deepening our understanding of lipid diversity and their impact on cellular behavior.

MOLECULES (2023)

Article Immunology

Tumors evade immune cytotoxicity by altering the surface topology of NK cells

Xiaohu Zheng et al.

Summary: This study reveals that tumor serine metabolism leads to a decrease in membranous protrusions in NK cells, hindering their ability to kill cancer cells. Our current knowledge about how tumors manipulate immune cells is limited, as shown by the variable response rates to immunotherapies. In patients with liver cancer, intratumoral NK cells exhibit fewer membrane protrusions compared to NK cells outside tumors and in peripheral NK cells. The altered sphingomyelin content and dysregulated serine metabolism in intratumoral NK cells contribute to their impaired membrane topology and cytotoxicity. Inhibiting sphingomyelinase shows promising antitumor efficacy as a monotherapy or in combination with checkpoint blockade.

NATURE IMMUNOLOGY (2023)

Article Biochemical Research Methods

Sampling the proteome by emerging single-molecule and mass spectrometry methods

Michael J. MacCoss et al.

NATURE METHODS (2023)

Review Genetics & Heredity

Methods and applications for single-cell and spatial multi-omics

Katy Vandereyken et al.

Summary: The joint analysis of multiple molecular modalities from single cells, such as the genome, epigenome, transcriptome, proteome, and metabolome, is transforming our understanding of cell biology in health and disease. This review discusses the advances in single-cell and spatial multi-omics technologies and the computational strategies for integrating information across these molecular layers. It also highlights their impact on fundamental cell biology and translational research, current challenges, and future prospects.

NATURE REVIEWS GENETICS (2023)

Editorial Material Cell Biology

Single-cell lipidomics reveals the organizing principle of cell fate decision

Laura Capolupo

NATURE REVIEWS MOLECULAR CELL BIOLOGY (2023)

Article Nanoscience & Nanotechnology

Portable in situ temperature-dependent spectroscopy on a low-cost microfluidic platform integrated with a battery-powered thermofoil heater

Sai Krishna Katla et al.

Summary: A low-cost microfluidic platform with a flexible heater was developed for real-time temperature-dependent spectroscopic measurement in healthcare settings. After confirming its performance through comparing on-chip spectroscopic measurement with conventional spectroscopy using methylene blue, its application for temperature-dependent absorption spectroscopy of a model biomolecule, curcumin, was demonstrated. The system is portable, battery-powered, and requires minimal sample volumes, making it highly suitable for point-of-care characterization.
Review Nanoscience & Nanotechnology

Mass spectrometry-based extracellular vesicle micromolecule detection in cancer biomarker discovery: An overview of metabolomics and lipidomics

Liyi Bai et al.

Summary: Extracellular vesicles (EVs) have emerged as one of the most important sources of cancer biomarkers due to their wide distribution in body fluids and physiological stability. Previous research focused on nucleic acids and proteins, neglecting the significance of lipids and metabolites. However, recent studies have shown that EVs contain high levels of these micromolecules, leading to the potential for more comprehensive biomarker discovery. Mass spectrometry (MS) has become a powerful tool for studying EVs, allowing for the detection of EV-associated metabolites and lipids in various sample types and their potential applications in cancer diagnosis, prognosis, and treatment prediction.
Article Nanoscience & Nanotechnology

Quantitative phase deformability cytometry for noninvasive high-throughput characterization of cells

Qinru Xiao et al.

Summary: Quantitative phase deformability cytometry (QPDC), constructed from a quantitative phase imaging system, improves the analysis of cellular contours and provides accurate characterization of cellular mechanical properties, especially for cells subjected to actin depolymerization. The platform enhances the capabilities of label-free cell characterization for biological and clinical applications.
Article Nanoscience & Nanotechnology

Toward nanofluidics-based mass spectrometry for exploring the unknown complex and heterogenous subcellular worlds

Nattapong Chantipmanee et al.

Summary: Exploring unknown subcellular matter in a single cell requires analytical techniques that can identify molecular structures and properties. Mass spectrometry is considered suitable for this analysis due to its ability to identify matter based on mass-to-charge ratio. However, the lack of tools for sampling complex analytes with ultrasmall volumes has hindered the use of mass spectrometry in this context. Using nanofluidics could potentially resolve this issue, as it can sample fluid samples with ultrasmall volumes ranging from picoliters to zeptoliters. Integrating nanofluidic ability into mass spectrometers could open up avenues for exploring unknown subcellular matter at a nano scale.
Review Nanoscience & Nanotechnology

Microfluidic devices for protein analysis using intact and top-down mass spectrometry

Xinyang Shao et al.

Summary: Top-down mass spectrometry (TD-MS) is a powerful approach to analyze proteins or protein complexes, providing unique information on their compositions, structures, and functions. The use of microfluidic chips in TD-MS workflows offers advantages such as flexible integration, automation of sample treatment functions, reduced sample consumption, and compatibility with high-sensitive ionization and higher throughput. This review summarizes the reported microchips for TD-MS, including the design of ionization, separation, and mixing modules, as well as fabrication approaches; it also highlights the design considerations that may inspire the development of microchips with better performance and wider applications.
Review Nanoscience & Nanotechnology

Intestine-on-a-chip for intestinal disease study and pharmacological research

Dongxue Zhang et al.

Summary: Intestinal diseases have a significant impact on quality of life. Traditional methods of studying intestinal diseases using cell culture and animal models are not accurate representations of human physiology and pathophysiology. Intestine-on-a-chip, which mimics the human intestinal microenvironment, is a promising tool for studying intestinal diseases. This review summarizes the key elements of reconstructing the intestinal microenvironment, the different models of intestine-on-a-chip, and the commonly used analytical techniques for studying the intestinal microenvironment.
Article Nanoscience & Nanotechnology

Point-of-care multiplexed single-cell protein secretion analysis based on tyramide signal amplification

Fengjiao Zhu et al.

Summary: In this study, a portable and low-cost desktop scanner was proposed for the detection of multiplexed proteins secreted from single cells. Gold nanoparticle-enhanced silver staining and tyramide signal amplification were combined to construct a two-step amplification for the detection of single-cell secretion assays. The developed platform eliminates bulky equipment for single-cell secretion analysis, making it more accessible for basic and clinical research.
Review Nanoscience & Nanotechnology

Microfluidic single-cell multiomics analysis

Xing Xu et al.

Summary: Cellular heterogeneity is crucial for biological processes. In recent years, the development of single-cell multiomics technologies has allowed for comprehensive evaluation of single-cell heterogeneity. Microfluidics plays a significant role in single-cell multiomics analysis, enabling improved detection sensitivity, accuracy, throughput, and integration. This review provides an overview of the latest microfluidic single-cell multiomics analysis techniques, as well as their potential in biological and clinical applications.
Review Nanoscience & Nanotechnology

Biological elemental analysis: A cute-meet of microfluidic device to inductively coupled plasma mass spectrometry

Xuan Zhang et al.

Summary: The integration of microfluidic techniques with ICP-MS shows great potential in disease diagnosis and biomedicine screening. This combination enables rapid and low-consumption elemental analysis, improving the resolution and detection capability of elements. Furthermore, the integration with other front-end techniques allows for the handling of various types of samples.
Article Nanoscience & Nanotechnology

Three-dimensional printed microfluidic mixer/extractor for cell lysis and lipidomic profiling by matrix-assisted laser desorption/ionization mass spectrometry

Zhengdong Yang et al.

Summary: This study presents the design and fabrication of a highly efficient microfluidic mixer/extractor for on-chip cell lysis and lipidomic profiling. The results show superior extraction performance compared to the standard method and successfully identify multiple lipid species. Additionally, the study reveals the diverse impact of extractant formula on lipid collection.
Review Biochemical Research Methods

Materials and methods for droplet microfluidic device fabrication

Katherine S. Elvira et al.

Summary: Droplet-based systems have become a compelling tool in microbiological and (bio)chemical science. This article summarizes the materials and fabrication techniques required to make microfluidic devices that deliver controlled uniform droplet flow, and discusses the future development and challenges in this field.

LAB ON A CHIP (2022)

Article Multidisciplinary Sciences

Streamlined single-cell proteomics by an integrated microfluidic chip and data-independent acquisition mass spectrometry

Sofani Tafesse Gebreyesus et al.

Summary: Single-cell proteomics can reveal cellular heterogeneity and functional networks underlying biological processes. We present a streamlined workflow combining microfluidic chips and data-independent acquisition mass spectrometry for single-cell proteomic analysis. This workflow allows for efficient isolation, counting, imaging, and sample processing of cells in a single device, enabling the analysis of protein groups in individual mammalian cells. The chip-DIA workflow provides a basis for advanced single-cell proteomics applications.

NATURE COMMUNICATIONS (2022)

Article Biochemistry & Molecular Biology

Ultra-high sensitivity mass spectrometry quantifies single-cell proteome changes upon perturbation

Andreas-David Brunner et al.

Summary: Single-cell technologies have a huge impact on biology, mainly limited to imaging and deep sequencing. This study presents a robust workflow combining miniaturized sample preparation, low flow-rate chromatography, and a novel trapped ion mobility mass spectrometer to improve sensitivity. The technology allows precise and robust quantification of proteomes and their changes in single cells, providing insights into cellular heterogeneity in health and disease.

MOLECULAR SYSTEMS BIOLOGY (2022)

Review Biotechnology & Applied Microbiology

Single-cell mass spectrometry

Mohammad Tajik et al.

Summary: Recent advances in mass spectrometry (MS) have allowed for the measurement of multiple molecules in single cells. This is crucial for understanding the molecular heterogeneity and function of individual cells. In this review, we discuss different methods of single-cell MS, including high-throughput, targeted, mass cytometry-based approaches, and antibody-free methods, for detailed profiling of the proteome and metabolome of single cells. We also explore the advantages and disadvantages of these methods and the challenges and opportunities for further improvements in single-cell MS. These methods have found applications in biomedical research, such as revealing tumor heterogeneity and conducting high-content drug screening.

TRENDS IN BIOTECHNOLOGY (2022)

Article Biochemical Research Methods

Versatile, facile and low-cost single-cell isolation, culture and sequencing by optical tweezer-assisted pool-screening

Teng Xu et al.

Summary: An optical tweezer-assisted pool-screening and single-cell isolation (OPSI) system has been established for precise, indexed isolation of individual bacterial, yeast or human cancer cells. The system achieves high purity and speed, is applicable to cells of different sizes, and can generate high-quality single-cell transcriptome profiles.

LAB ON A CHIP (2022)

Article Chemistry, Analytical

High-throughput single cell metabolomics and cellular heterogeneity exploration by inertial microfluidics coupled with pulsed electric field-induced electrospray ionization-high resolution mass spectrometry

Disheng Feng et al.

Summary: The study presents a method for high-throughput single cell metabolomics analysis using a serpentine channel microfluidic device coupled with pulsed electric field-induced electrospray ionization-high resolution mass spectrometry (PEF-ESI-HRMS). The method allows for the analysis of single cells under near-physiological conditions and has successfully discriminated different cancer cells based on their individual metabolic profiles.

ANALYTICA CHIMICA ACTA (2022)

Article Nanoscience & Nanotechnology

Single-cell/nanoparticle trajectories reveal two-tier Levy-like interactions across bacterial swarms

Yuqian Sang et al.

Summary: Researchers studied the collective interactions of bacteria by tracking individual cells and gold nanoparticles in a bacterial colony. They found that the behavior of the bacterial community can be described using a Levy-walk-like superdiffusion model. The researchers proposed the presence of a decentralized two-tier active-mixing network for efficient information exchange in the bacterial community.
Review Nanoscience & Nanotechnology

Microfluidic systems toward blood hemostasis monitoring and thrombosis diagnosis: From design principles to micro/nano fabrication technologies

Yi Xu et al.

Summary: Perfusable endothelialized models created through micro/nano engineering advances in microfluidic systems have shown improvements in blood hemostasis monitoring and thrombosis treatment. However, current platelet aggregation tests fail to meet clinical requirements. This review provides an overview of microfluidic system design principles and fabrication strategies for studying platelet adhesion and aggregation. The importance, benefits, challenges, and potential for clinical applications of these principles and methods are discussed.
Review Nanoscience & Nanotechnology

Advanced techniques for gene heterogeneity research: Single-cell sequencing and on-chip gene analysis systems

Zaizai Dong et al.

Summary: Gene heterogeneity has a significant impact on cellular behaviors and poses challenges to biomedicine. Traditional gene analysis methods obscure the gene properties of individual cells, while single-cell gene analysis techniques offer unprecedented opportunities for high precision and high throughput research on gene heterogeneity. This review summarizes the latest techniques in single-cell sequencing and on-chip gene analysis, highlighting their principles and application scenarios in gene heterogeneity research. The future challenges and directions for technical improvement and clinical applications of single-cell gene analysis techniques are also discussed.
Article Chemistry, Multidisciplinary

Multi-Dimensional Organic Mass Cytometry: Simultaneous Analysis of Proteins and Metabolites on Single Cells

Shuting Xu et al.

Summary: Mass cytometry has gained significant attention for its ability to enable high-throughput single-cell analysis. A multi-dimensional organic mass-cytometry system was established for simultaneous detection of proteins and metabolites in single cells, providing valuable information about cell heterogeneity. The system has been successfully used to monitor cell surface antigens and metabolites, contributing to highly sensitive and specific cell typing.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2021)

Article Biochemical Research Methods

A Microfluidic Chip for Efficient Circulating Tumor Cells Enrichment, Screening, and Single-Cell RNA Sequencing

Fanghao Shi et al.

Summary: The newly developed integrated microfluidic chip allows sequential enrichment, isolation, and characterization of CTCs at single-cell level, with single CTC lysis achieved on the same chip. This approach provides a solid foundation for the analysis of RNA expression profiling of single-cell CTCs.

PROTEOMICS (2021)

Article Biochemical Research Methods

Multiplexed single-cell proteomics using SCoPE2

Aleksandra A. Petelski et al.

Summary: The study introduces the SCoPE2 protocol for single-cell protein analysis, which utilizes isobaric mass tags for labeling and achieves cost-effective quantitative protein analysis.

NATURE PROTOCOLS (2021)

Review Oncology

Single-cell RNA sequencing in cancer research

Yijie Zhang et al.

Summary: Single-cell RNA sequencing is a crucial technology in tumor research, revealing tumor cell heterogeneity, monitoring tumor development, and aiding in the classification of immune cells and drug resistance mechanisms.

JOURNAL OF EXPERIMENTAL & CLINICAL CANCER RESEARCH (2021)

Article Multidisciplinary Sciences

High-throughput and high-efficiency sample preparation for single-cell proteomics using a nested nanowell chip

Jongmin Woo et al.

Summary: This study introduces a nested nanoPOTS (N2) chip to improve protein recovery, operation robustness, and processing throughput for isobaric-labeling-based single-cell proteomics workflow. The N2 chip enables robust quantification of approximately 1500 proteins and reveals membrane protein markers, demonstrating high stability of single-cell proteome profiles for cells cultured under identical conditions.

NATURE COMMUNICATIONS (2021)

Article Multidisciplinary Sciences

Single-cell lipidomics with high structural specificity by mass spectrometry

Zishuai Li et al.

Summary: Single-cell lipidomic analysis is crucial for classification of human cells based on lipid structure and position, which can promote the development of precision medicine.

NATURE COMMUNICATIONS (2021)

Article Chemistry, Analytical

Microgel Single-Cell Culture Arrays on a Microfluidic Chip for Selective Expansion and Recovery of Colorectal Cancer Stem Cells

Dongguo Lin et al.

Summary: The microfluidic single-cell culture approach allows for expansion and recovery of colorectal cancer stem cells, and identification of multiple CSC-specific targets through transcriptomic analysis.

ANALYTICAL CHEMISTRY (2021)

Article Chemistry, Analytical

An easy-to-operate method for single-cell isolation and retrieval using a microfluidic static droplet array

Lin Ding et al.

Summary: A new method has been developed for single-cell detection, which enables rapid and low-cost detection of rare cells for downstream molecular analysis.

MICROCHIMICA ACTA (2021)

Article Biochemical Research Methods

Metabolomic profiling of single enlarged lysosomes

Hongying Zhu et al.

Summary: SLMS integrates lysosomal patch-clamp recording and induced nanoESI/MS for concurrent metabolic and electrophysiological profiling of individual enlarged lysosomes. This technique has been validated for accuracy and reliability, enabling the classification of lysosomes into subpopulations based on their chemical and biological differences in various cell types. SLMS has the potential to investigate heterogeneous lysosomal metabolic changes during physiological and pathological processes.

NATURE METHODS (2021)

Review Genetics & Heredity

Integrating single-cell and spatial transcriptomics to elucidate intercellular tissue dynamics

Sophia K. Longo et al.

Summary: Integrating single-cell RNA sequencing with spatial transcriptomics allows for the localization of transcriptionally characterized single cells within their native tissue context. While scRNA-seq identifies cell subpopulations within tissue, it does not capture their spatial distribution or reveal local networks of intercellular communication. Recent techniques like multiplexed in situ hybridization and in situ sequencing, defined as high-plex RNA imaging, can help address these limitations. However, the need for approaches to integrate single-cell and spatial data remains, given that no current method provides as complete a scope of the transcriptome as scRNA-seq.

NATURE REVIEWS GENETICS (2021)

Article Multidisciplinary Sciences

A design and optimization of a high throughput valve based microfluidic device for single cell compartmentalization and analysis

Jonathan Briones et al.

Summary: This study focuses on achieving high-throughput single cell compartmentalization for quantifying protein expression in single-cell enzymatic assays through the design and optimization of a microfluidic platform. Utilizing COMSOL Multiphysics modeling, optimized parameters for circular microvalves that can close thousands of microchambers at lower sealing pressure were determined. The improvement in microfluidic chip throughput is crucial for applications in single cell analysis, especially in drug discovery and personalized treatment.

SCIENTIFIC REPORTS (2021)

Article Multidisciplinary Sciences

An automated real-time microfluidic platform to probe single NK cell heterogeneity and cytotoxicity on-chip

Nikita Subedi et al.

Summary: The study presents an automated microfluidic platform for real-time monitoring of cytotoxicity in effector-target cell interactions, revealing varying dynamics within the Natural Killer cell population and individual differences in effector functions. The platform's versatility allows for detailed study of immune cell interactions and identification of functional sub-populations, offering new avenues for both basic and translational research.

SCIENTIFIC REPORTS (2021)

Article Biochemical Research Methods

Label-free single-cell isolation enabled by microfluidic impact printing and real-time cellular recognition

Yiming Wang et al.

Summary: This technology utilizes real-time cellular recognition and microfluidic impact printing to efficiently isolate single cells in a label-free manner, with high efficiency and survival rate demonstrated in experiments. It has significant potential in various fields including single-cell omics, tissue engineering, and cell-line development.

LAB ON A CHIP (2021)

Review Nanoscience & Nanotechnology

Thermomicrofluidics for biosensing applications

Fei Tian et al.

Summary: Thermophoresis in microfluidic devices allows for precise manipulation and measurement of biomolecules and cells in a label-free manner, providing a promising avenue for biosensing. It can be used for various biosensing applications such as monitoring biomolecular interactions, detecting nucleic acids, and profiling extracellular vesicles, offering insights into disease diagnostics and physiopathological processes. Current challenges and future directions in thermomicrofluidic detection are also discussed.
Article Biotechnology & Applied Microbiology

Single-cell proteomic and transcriptomic analysis of macrophage heterogeneity using SCoPE2

Harrison Specht et al.

Summary: The SCoPE2 technology was developed to improve the accuracy and throughput of single-cell proteomics through automated sample preparation, revealing the gradual differences in the proteome of macrophages during the enhancement of heterogeneity and allowing differentiation of cell states.

GENOME BIOLOGY (2021)

Article Chemistry, Multidisciplinary

Ultrasensitive single-cell proteomics workflow identifies >1000 protein groups per mammalian cell

Yongzheng Cong et al.

Summary: The combination of nanodroplet sample preparation, ultra-low-flow nanoLC, high-field asymmetric ion mobility spectrometry (FAIMS), and the latest-generation Orbitrap Eclipse Tribrid mass spectrometer led to greatly improved single-cell proteome profiling. FAIMS effectively filtered out singly charged ions, allowing for more effective MS analysis of multiply charged peptides, resulting in a significantly higher number of protein groups identified from single HeLa cells compared to traditional methods. Differential analysis also showed similar proteome coverage for single microdissected motor neurons and interneurons from human spinal tissue, with the ability to differentiate between the two subpopulations based on label-free quantification.

CHEMICAL SCIENCE (2021)

Review Chemistry, Multidisciplinary

Microfluidic Single-Cell Omics Analysis

Xing Xu et al.

SMALL (2020)

Editorial Material Biotechnology & Applied Microbiology

Integration of Flow Cytometry and Single Cell Sequencing

Dmitry S. Andreyev et al.

TRENDS IN BIOTECHNOLOGY (2020)

Review Biochemical Research Methods

Microfluidic single-cell analysis-Toward integration and total on-chip analysis

Cheuk Wang Fung et al.

BIOMICROFLUIDICS (2020)

Review Genetics & Heredity

Lineage tracing meets single-cell omics: opportunities and challenges

Daniel E. Wagner et al.

NATURE REVIEWS GENETICS (2020)

Article Nanoscience & Nanotechnology

Label-free monitoring and manipulation of microfluidic water-in-oil droplets

Christoph Frey et al.

Review Chemistry, Analytical

Single-cell assay on microfluidic devices

Qiushi Huang et al.

ANALYST (2019)

Review Chemistry, Analytical

Microfluidic Single-Cell Manipulation and Analysis: Methods and Applications

Tao Luo et al.

MICROMACHINES (2019)

Article Chemistry, Analytical

Forming a Large-Scale Droplet Array in a Microcage Array Chip for High-Throughput Screening

Jin-Gang Xu et al.

ANALYTICAL CHEMISTRY (2019)

Article Chemistry, Analytical

Nanoliter-Scale Oil-Air-Droplet Chip-Based Single Cell Proteomic Analysis

Zi-Yi Li et al.

ANALYTICAL CHEMISTRY (2018)

Article Chemistry, Multidisciplinary

Proteomic Analysis of Single Mammalian Cells Enabled by Microfluidic Nanodroplet Sample Preparation and Ultrasensitive NanoLC-MS

Ying Zhu et al.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2018)

Review Chemistry, Multidisciplinary

Single-Cell Mass Spectrometry Approaches to Explore Cellular Heterogeneity

Linwen Zhang et al.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2018)

Article Multidisciplinary Sciences

Nanodroplet processing platform for deep and quantitative proteome profiling of 10-100 mammalian cells

Ying Zhu et al.

NATURE COMMUNICATIONS (2018)

Review Immunology

Single-cell RNA sequencing to explore immune cell heterogeneity

Efthymia Papalexi et al.

NATURE REVIEWS IMMUNOLOGY (2018)

Review Chemistry, Analytical

Analytical Challenges and Recent Advances in Mass Spectrometry Based Lipidomics

Yepy H. Rustam et al.

ANALYTICAL CHEMISTRY (2018)

Article Biochemical Research Methods

Functional TCR T cell screening using single-cell droplet microfluidics

Aude I. Segaliny et al.

LAB ON A CHIP (2018)

Article Biochemical Research Methods

A planar dielectrophoresis-based chip for high-throughput cell pairing

ChunHui Wu et al.

LAB ON A CHIP (2017)

Article Multidisciplinary Sciences

Single-neuron identification of chemical constituents, physiological changes, and metabolism using mass spectrometry

Hongying Zhu et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2017)

Article Nanoscience & Nanotechnology

3D-Printed High-Density Droplet Array Chip for Miniaturized Protein Crystallization Screening under Vapor Diffusion Mode

Yi-Ran Liang et al.

ACS APPLIED MATERIALS & INTERFACES (2017)

Review Biochemical Research Methods

Recent advances in expanding the coverage of the lipidome

Sergey Tumanov et al.

CURRENT OPINION IN BIOTECHNOLOGY (2017)

Review Biotechnology & Applied Microbiology

Single-cell analysis tools for drug discovery and development

James R. Heath et al.

NATURE REVIEWS DRUG DISCOVERY (2016)

Article Biophysics

Pneumatic microfluidics-based multiplex single-cell array

Lei Zhao et al.

BIOSENSORS & BIOELECTRONICS (2016)

Article Medicine, Research & Experimental

Single-cell analysis: Advances and future perspectives

Emir Hodzic

BOSNIAN JOURNAL OF BASIC MEDICAL SCIENCES (2016)

Article Biochemistry & Molecular Biology

Mass Cytometry: Single Cells, Many Features

Matthew H. Spitzer et al.

Article Biochemical Research Methods

Single-cell isolation by a modular single-cell pipette for RNA-sequencing

Kai Zhang et al.

LAB ON A CHIP (2016)

Article Biochemical Research Methods

Deterministic sequential isolation of floating cancer cells under continuous flow

Quang D. Tran et al.

LAB ON A CHIP (2016)

Article Biochemical Research Methods

A microfluidic device enabling high-efficiency single cell trapping

D. Jin et al.

BIOMICROFLUIDICS (2015)

Review Genetics & Heredity

Computational and analytical challenges in single-cell transcriptomics

Oliver Stegle et al.

NATURE REVIEWS GENETICS (2015)

Article Nanoscience & Nanotechnology

In Vivo Imaging of Infection Using a Bacteria-Targeting Optical Nanoprobe

Ewin N. Tang et al.

JOURNAL OF BIOMEDICAL NANOTECHNOLOGY (2014)

Article Multidisciplinary Sciences

Nanoliter-Scale Protein Crystallization and Screening with a Microfluidic Droplet Robot

Ying Zhu et al.

SCIENTIFIC REPORTS (2014)

Article Biochemical Research Methods

Microfluidic integrated optoelectronic tweezers for single-cell preparation and analysis

Kuo-Wei Huang et al.

LAB ON A CHIP (2013)

Article Biochemical Research Methods

Single-cell analysis and sorting using droplet-based microfluidics

Linas Mazutis et al.

NATURE PROTOCOLS (2013)

Article Multidisciplinary Sciences

Mass spectrometry-based metabolomics of single yeast cells

Alfredo J. Ibanez et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2013)

Review Multidisciplinary Sciences

Single-Cell Metabolomics: Analytical and Biological Perspectives

R. Zenobi

SCIENCE (2013)

Article Biochemical Research Methods

Trapping cells on a stretchable microwell array for single-cell analysis

Yuli Wang et al.

ANALYTICAL AND BIOANALYTICAL CHEMISTRY (2012)

Article Chemistry, Analytical

Single Cell Matrix-Assisted Laser Desorption/Ionization Mass Spectrometry Imaging

Yvonne Schober et al.

ANALYTICAL CHEMISTRY (2012)

Article Biochemical Research Methods

Optofluidic integrated cell sorter fabricated by femtosecond lasers

F. Bragheri et al.

LAB ON A CHIP (2012)

Article Nanoscience & Nanotechnology

Nanowire-based single-cell endoscopy

Ruoxue Yan et al.

NATURE NANOTECHNOLOGY (2012)

Article Biochemical Research Methods

Microfluidic fluorescence in situ hybridization and flow cytometry (mu FlowFISH)

Peng Liu et al.

LAB ON A CHIP (2011)

Article Biochemical Research Methods

Microvalve-actuated precise control of individual droplets in microfluidic devices

Shaojiang Zeng et al.

LAB ON A CHIP (2009)

Article Multidisciplinary Sciences

A trap-and-release integrated microfluidic system for dynamic microarray applications

Wei-Heong Tan et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2007)

Article Biotechnology & Applied Microbiology

Antibody-based nanoprobe for measurement of a fluorescent analyte in a single cell

T Vo-Dinh et al.

NATURE BIOTECHNOLOGY (2000)