Journal Article10.1016/j.jiec.2022.02.028
Microfluidic free-flow electrophoresis: a promising tool for protein purification and analysis in proteomics
Youngbok Lee,Jae-Sung Kwon +1 more
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TL;DR: In this article , the authors introduce the proteomics applications of microfluidic free-flow electrophoresis (μFFE) along with a detailed theoretical overview, as follows.
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About: This article is published in Journal of Industrial and Engineering Chemistry. The article was published on 01 Feb 2022. The article focuses on the topics: Microfluidics & Free-flow electrophoresis.
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Recent developments in capillary and microchip electroseparations of peptides (2021-mid-2023).
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Molecular Separation by Using Active and Passive Microfluidic chip Designs: A Comprehensive Review
Aliakbar Ebrahimi,Kutay Icoz,Reza Didarian,Chih‐Hsin Shih,Ergun Alperay Tarim,Behzad Nasseri,Ali Akpek,Berivan Cecen,Ayca Bal‐Ozturk,Kadri Güleç,Yi‐Chen Ethan Li,Steven Shih,Burcu Sırma Tarım,H. C. Tekin,Emine Alarçin,Mehdi Tayybi‐Azar,Hamed Ghorbanpoor,Ceren Özel,Ayla Eker Sariboyaci,Fatma Dogan Guzel,Nicole Bassous,Huseyin Avci +21 more
TL;DR: The review comprehensively covers passive and active microfluidic techniques for separating biomolecules, highlighting recent advancements and their potential for novel technique development.
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A review of SERS coupled microfluidic platforms: From configurations to applications
Chenyan Wang,Guojun Weng,Jianjun Li,Jian Zhu,Jun-Wu Zhao +4 more
TL;DR: This review integrates Surface Enhanced Raman Scattering (SERS) with microfluidics to enhance detection sensitivity, covering configurations, applications in biology, environmental protection, and food safety, and discussing challenges and future trends.
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Locational enrichment of low-abundance analytes through force-environment-modulation microsystem with ion concentration polarization
Yixing Gou,Leilei Xing,Shanshan Li,Lingyan Gong,Bader Al-Anzi +4 more
TL;DR: A novel microsystem with ion concentration polarization and force-environment-modulation enables locational enrichment of low-abundance analytes by ∼4000 times, validated through numerical simulation and physical experiment, with potential applications in biology, environment, and chemistry studies.
Steric effects in induced-charge electro-osmosis for strong electric fields
J. Galen Wang,Daniel R. Ladiges,Ishan Srivastava,Sean P. Carney,Andrew Nonaka,Alejandro L. Garcia,John B. Bell +6 more
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References
Microfluidic high-resolution free-flow isoelectric focusing.
Dietrich Kohlheyer,Jan C.T. Eijkel,Stefan Schlautmann,and Albert van den Berg,Richard B.M. Schasfoort +4 more
TL;DR: The performance of the microfluidic free-flow isoelectric focusing device will enable new applications, as this device might be used in clinical analysis where often low sample volumes are available and fast separation times are essential.
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Isoelectric Point Determination of Norovirus Virus-like Particles by Capillary Isoelectric Focusing with Whole Column Imaging Detection
TL;DR: Capillary isoelectric focusing-whole column imaging detection shows great promise for norovirus detection in public health, clinical, and food safety applications, as CIEF-WCID overcomes several limitations of the currently used genetic and immunological methods.
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Notizen: Einfache Apparatur für die trägerfreie präparative Durchlauf-Elektrophorese
TL;DR: In this paper, aufzutrennende Gemisch wird mit einer Kapillare kontinuierlich an einem Punkt des Papier-blattes zugeführt.
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Demonstration of isoelectric focusing on an etched quartz chip with UV absorption imaging detection
Qinglu Mao,Janusz Pawliszyn +1 more
TL;DR: The feasibility of isoelectric focusing (IEF) performed on-chip was demonstrated for the first time via absorption imaging detection as discussed by the authors, where two pieces of hollow fiber were glued to the two ends of the separation channel to isolate the electrolytes from the samples.
90
Miniaturization and chip technology. What can we expect
Andreas Manz,Jan C.T. Eijkel +1 more
TL;DR: The µ-TAS (1-3) as mentioned in this paper is a sensor-like system with fast response time, low sample consumption, on-site operation, and high stability, which is based on the pH-elec- trode.