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Molecular Separation by Using Active and Passive Microfluidic chip Designs: A Comprehensive Review

dc.contributor.authorEbrahimi, Aliakbar
dc.contributor.authorIcoz, Kutay
dc.contributor.authorDidarian, Reza
dc.contributor.authorShih, Chih-Hsin
dc.contributor.authorTarim, E. Alperay
dc.contributor.authorNasseri, Behzad
dc.contributor.authorAkpek, Ali
dc.contributor.authorCecen, Berivan
dc.contributor.authorBal-Ozturk, Ayca
dc.contributor.authorGulec, Kadri
dc.contributor.authorLi, Yi-Chen Ethan
dc.contributor.authorShih, Steven
dc.contributor.authorTarim, Burcu Sirma
dc.contributor.authorTekin, H. Cumhur
dc.contributor.authorAlarcin, Emine
dc.contributor.authorTayybi-Azar, Mehdi
dc.contributor.authorGhorbanpoor, Hamed
dc.contributor.authorOzel, Ceren
dc.contributor.authorSariboyaci, Ayla Eker
dc.contributor.authorGuzel, Fatma Dogan
dc.contributor.authorBassous, Nicole
dc.contributor.authorShin, Su Ryon
dc.contributor.authorAvci, Huseyin
dc.date.accessioned2026-06-27T14:56:18Z
dc.date.issued2024
dc.description.abstractSeparation and identification of molecules and biomolecules such as nucleic acids, proteins, and polysaccharides from complex fluids are known to be important due to unmet needs in various applications. Generally, many different separation techniques, including chromatography, electrophoresis, and magnetophoresis, have been developed to identify the target molecules precisely. However, these techniques are expensive and time consuming. Lab-on-a-chip systems with low cost per device, quick analysis capabilities, and minimal sample consumption seem to be ideal candidates for separating particles, cells, blood samples, and molecules. From this perspective, different microfluidic-based techniques have been extensively developed in the past two decades to separate samples with different origins. In this review, lab-on-a-chip methods by passive, active, and hybrid approaches for the separation of biomolecules developed in the past decade are comprehensively discussed. Due to the wide variety in the field, it will be impossible to cover every facet of the subject. Therefore, this review paper covers passive and active methods generally used for biomolecule separation. Then, an investigation of the combined sophisticated methods is highlighted. The spotlight also will be shined on the elegance of separation successes in recent years, and the remainder of the article explores how these permit the development of novel techniques. This review is about the microfludic-based methods that have been used in the past two decades for the separation of different biomolecules like protein, DNA, and RNA. In this regard, passive, active, and hybrid microfludic methods that are used for biomolecules separation are disscused and reviewed in this paper.imageen
dc.description.sponsorshipTurkish Scientific and Technological Council (TUBITAK)
dc.description.sponsorshipMinistry of Science and Technology, Taiwan
dc.description.sponsorshipScientific and Technological Research Council of Turkey
dc.description.sponsorshipOutstanding Young Scientists Award from the Turkish Academy of Science
dc.description.sponsorshipTurkish Council of Higher Education
dc.description.sponsorshipTurkish Scientific and Technological Council
dc.description.sponsorshipScientific Research Projects (BAP- the priority areas project (ONAP) of Eskisehir Osmangazi University
dc.description.sponsorshipYildiz Technical University Scientific Research Projects
dc.description.sponsorship[119N608]
dc.description.sponsorship[MOST 109-2221-E-035-036-MY3]
dc.description.sponsorship[MOST 110-2124-M-005-001-MY3]
dc.description.sponsorship[119M052]
dc.description.sponsorship[222M468]
dc.description.sponsorship[20AG003]
dc.description.sponsorship[20AG031]
dc.description.sponsorship[TOA-2022-2307]
dc.description.sponsorship[TYL-2023-2720]
dc.description.sponsorship[TSA-2022-5317]
dc.description.urihttps://doi.org/10.1002/admi.202300492
dc.identifier.doi10.1002/admi.202300492
dc.identifier.issn2196-7350
dc.identifier.issue2
dc.identifier.urihttps://hdl.handle.net/20.500.14981/66453
dc.identifier.volume11
dc.identifier.wos001088515100001
dc.language.isoeng
dc.publisherWILEY
dc.relation.ispartofADVANCED MATERIALS INTERFACES
dc.rightsopenAccess
dc.subjectactive separation
dc.subjectbiomolecule separation
dc.subjecthybrid separation
dc.subjectlab-on-a-chip
dc.subjectmicrofluidics
dc.subjectpassive separation
dc.subjectCAPILLARY-ZONE-ELECTROPHORESIS
dc.subjectLIQUID-LIQUID-EXTRACTION
dc.subjectSOLID-PHASE EXTRACTION
dc.subjectDETERMINISTIC LATERAL DISPLACEMENT
dc.subjectCONTINUOUS-FLOW SEPARATION
dc.subjectCOUNTERCURRENT CHROMATOGRAPHY
dc.subjectDIELECTROPHORETIC ISOLATION
dc.subjectPARTICLE SEPARATION
dc.subjectREVERSED-PHASE
dc.subject2-PHASE FLOW
dc.subjectChemistry
dc.subjectMaterials Science
dc.titleMolecular Separation by Using Active and Passive Microfluidic chip Designs: A Comprehensive Review
dc.typeReview
dspace.entity.typePublication
local.import.sourceWOS

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