Nanoscale lateral displacement arrays for the separation of exosomes and colloids down to 20 nm.
about
Labeling Extracellular Vesicles for Nanoscale Flow Cytometry.Obstacles and opportunities in the functional analysis of extracellular vesicle RNA - an ISEV position paperBroken flow symmetry explains the dynamics of small particles in deterministic lateral displacement arrays.Characterization of nanoporous structures: from three dimensions to two dimensions.Wafer-scale integration of sacrificial nanofluidic chips for detecting and manipulating single DNA molecules.Exosome separation using microfluidic systems: size-based, immunoaffinity-based and dynamic methodologies.The role of pancreatic cancer-derived exosomes in cancer progress and their potential application as biomarkers.Exosomes: New players in cancer (Review).Separation of extracellular nanovesicles and apoptotic bodies from cancer cell culture broth using tunable microfluidic systems.Isolation of exosomes from whole blood by integrating acoustics and microfluidicsThe Exosome Total Isolation Chip.Unveiling massive numbers of cancer-related urinary-microRNA candidates via nanowires.Engineering and physical sciences in oncology: challenges and opportunities.Subnanometer structure and function from ion beams through complex fluidics to fluorescent particles.Open channel deterministic lateral displacement for particle and cell sorting.Anisotropic permeability in deterministic lateral displacement arrays.Hydrodynamic lift forces on solutes in a tilted nanopillar array: A computer simulation study.Microfluidics for exosome isolation and analysis: enabling liquid biopsy for personalized medicine.High-resolution and multi-range particle separation by microscopic vibration in an optofluidic chip.New Technologies for Analysis of Extracellular Vesicles.Engineered nanointerfaces for microfluidic isolation and molecular profiling of tumor-specific extracellular vesicles.Anticipating Cutoff Diameters in Deterministic Lateral Displacement (DLD) Microfluidic Devices for an Optimized Particle Separation.Paper-Based Microfluidic Platforms for Understanding the Role of Exosomes in the Pathogenesis of Major Blindness-Threatening Diseases.Fluorescent label-free quantitative detection of nano-sized bioparticles using a pillar array.Purification of complex samples: Implementation of a modular and reconfigurable droplet-based microfluidic platform with cascaded deterministic lateral displacement separation modules.Microfluidics-based on-a-chip systems for isolating and analysing extracellular vesiclesLab-on-Chip for Exosomes and Microvesicles Detection and Characterization
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P2860
Nanoscale lateral displacement arrays for the separation of exosomes and colloids down to 20 nm.
description
2016 nî lūn-bûn
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2016年の論文
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2016年学术文章
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2016年学术文章
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2016年学术文章
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2016年学术文章
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2016年学术文章
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name
Nanoscale lateral displacement ...... es and colloids down to 20 nm.
@en
Nanoscale lateral displacement ...... es and colloids down to 20 nm.
@nl
type
label
Nanoscale lateral displacement ...... es and colloids down to 20 nm.
@en
Nanoscale lateral displacement ...... es and colloids down to 20 nm.
@nl
prefLabel
Nanoscale lateral displacement ...... es and colloids down to 20 nm.
@en
Nanoscale lateral displacement ...... es and colloids down to 20 nm.
@nl
P2093
P2860
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P1476
Nanoscale lateral displacement ...... es and colloids down to 20 nm.
@en
P2093
Benjamin H Wunsch
Gustavo Stolovitzky
Joshua T Smith
Markus Brink
Robert H Austin
Robert L Bruce
Stacey M Gifford
Yann Astier
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P2888
P304
P356
10.1038/NNANO.2016.134
P407
P50
P577
2016-08-01T00:00:00Z