Autors: Grigorov, E. R., Kirov, B. B., Marinov, M. B., Galabov, V. T. Title: Review of Microfluidic Methods for Cellular Lysis Keywords: cell lysis; cell membrane; microfluidics; review Abstract: Cell lysis is a process in which the outer cell membrane is broken to release intracellular constituents in a way that important information about the DNA or RNA of an organism can be obtained. This article is a thorough review of reported methods for the achievement of effective cellular boundaries disintegration, together with their technological peculiarities and instrumental requirements. The different approaches are summarized in six categories: chemical, mechanical, electrical methods, thermal, laser, and other lysis methods. Based on the results derived from each of the investigated reports, we outline the advantages and disadvantages of those techniques. Although the choice of a suitable method is highly dependent on the particular requirements of the specific scientific problem, we conclude with a concise table where the benefits of every approach are compared, based on criteria such as cost, efficiency, and difficulty. References Issue
|
Цитирания (Citation/s):
1. Algorithm Execution Time and Accuracy of NTC Thermistor-Based Temperature Measurements in Time-Critical Applications - 2021 - в издания, индексирани в Scopus и/или Web of Science
2. Sample-to-analysis platform for rapid intracellular mass spectrometry from small numbers of cells - 2021 - в издания, индексирани в Scopus и/или Web of Science
3. Hand-Powered Inertial Microfluidic Syringe-Tip Centrifuge - 2022 - в издания, индексирани в Scopus и/или Web of Science
4. Digital E. coli Counter: A Microfluidics and Computer Vision-Based DNAzyme Method for the Isolation and Specific Detection of E. coli from Water Samples - 2022 - в издания, индексирани в Scopus и/или Web of Science
5. Ion Interference Therapy of Tumors Based on Inorganic Nanoparticles - 2022 - в издания, индексирани в Scopus и/или Web of Science
6. Flexible Liquid Crystal Polymer Technologies from Microwave to Terahertz Frequencies - 2022 - в издания, индексирани в Scopus и/или Web of Science
7. Simplifying the complex: accessible microfluidic solutions for contemporary processes within in vitro diagnostics - 2022 - в издания, индексирани в Scopus и/или Web of Science
8. Recent Advances in Microscale Electroporation - 2022 - в издания, индексирани в Scopus и/или Web of Science
9. Simplifying the complex: accessible microfluidic solutions for contemporary processes within in vitro diagnostics - 2022 - в издания, индексирани в Scopus и/или Web of Science
10. Breaking through Barriers: Ultrafast Microbullet Based on Cavitation Bubble - 2023 - в издания, индексирани в Scopus и/или Web of Science
11. Rapid on-site nucleic acid testing: On-chip sample preparation, amplification, and detection, and their integration into all-in-one systems - 2023 - в издания, индексирани в Scopus и/или Web of Science
12. A Modified-Herringbone Micromixer for Assessing Zebrafish Sperm (MAGS) Open Access - 2023 - в издания, индексирани в Scopus и/или Web of Science
13. Numerical study of a double-stair-shaped dielectrophoresis channel for continuous on-chip cell separation and lysis using finite element method - 2023 - в издания, индексирани в Scopus и/или Web of Science
14. Integration of silicon chip microstructures for in-line microbial cell lysis in soft microfluidics Open Access - 2023 - в издания, индексирани в Scopus и/или Web of Science
15. Miniaturization and microfluidic devices: An overview of basic concepts, fabrication techniques, and applications - 2023 - в издания, индексирани в Scopus и/или Web of Science
16. Computational study of an integrated microfluidic device for active separation of RBCs and cell lysis - 2023 - в издания, индексирани в Scopus и/или Web of Science
17. A High-Performance Antibacterial Nanostructured ZnO Microfluidic Device for Controlled Bacterial Lysis and DNA Release - 2023 - в издания, индексирани в Scopus и/или Web of Science
18. Acoustofluidic lysis of cancer cells and Raman spectrum profiling - 2023 - в издания, индексирани в Scopus и/или Web of Science
19. A Novel Strategy for Square-Wave Micromixers: A Survey of RBC Lysis for Further Biological Analysis - 2023 - в издания, индексирани в Scopus и/или Web of Science
20. Chemical Trends in Sample Preparation for Nucleic Acid Amplification Testing (NAAT): A Review - 2023 - в издания, индексирани в Scopus и/или Web of Science
21. A Microfabricated, Flow-Driven Grinding Mill for Mechanical Cell Lysing - 2023 - в издания, индексирани в Scopus и/или Web of Science
22. Enhanced production of a recombinant xylanase (XT6): optimization of production and purification, and scaled-up batch fermentation in a stirred tank bioreactor - 2023 - в издания, индексирани в Scopus и/или Web of Science
23. Effect of the shear rate and residence time on the lysis of AC16 human cardiomyocyte cells via surface acoustic waves - 2023 - в издания, индексирани в Scopus и/или Web of Science
24. Inactivating Host Bacteria for Characterization and Use of Phages - 2023 - в издания, индексирани в Scopus и/или Web of Science
25. Developing a surface acoustic wave-induced microfluidic cell lysis device for point-of-care DNA amplification - 2024 - в издания, индексирани в Scopus и/или Web of Science
26. Design and Optimization of Ultrasound-Assisted Nucleic Acid Extraction System - 2024 - в издания, индексирани в Scopus и/или Web of Science
27. A low-voltage alternant direct current electroporation chip for ultrafast releasing the genome DNA of Helicobacter pylori bacterium - 2024 - в издания, индексирани в Scopus и/или Web of Science
28. ChipFilter: Microfluidic-Based Comprehensive Sample Preparation Methodology for Microbial Consortia - 2024 - в издания, индексирани в Scopus и/или Web of Science
29. Toward microfluidic continuous-flow and intelligent downstream processing of biopharmaceuticals - 2024 - в издания, индексирани в Scopus и/или Web of Science
30. In-depth organic mass cytometry reveals differential contents of 3-hydroxybutanoic acid at the single-cell level - 2024 - в издания, индексирани в Scopus и/или Web of Science
31. Jayakanthan S., Punathil Vasu S., TG S.B., Efficient on-chip electrochemical lysing of foodborne bacteria for longer DNA strands with high yield for molecular analysis, 2025, Scientific Reports, issue 1, vol. 15, DOI 10.1038/s41598-025-96886-8, eissn 20452322 - 2025 - в издания, индексирани в Scopus
32. Javanifar R., Ghorbanpoor H., Avci H., Improved bacterial filtration and DNA retention by a novel microfiltration process including composite membranes, 2025, Separation and Purification Technology, issue 0, vol. 357, DOI 10.1016/j.seppur.2024.130114, issn 13835866, eissn 18733794 - 2025 - в издания, индексирани в Scopus
33. Wang C., Wang L., Liu M., Bi W., Xu Y., High-Efficiency and Stable Cathode Disinfection in Real Water Systems via Convenient In Situ Prepared Copper-Cuprous Oxide Nanowires, 2025, ACS Applied Materials and Interfaces, issue 13, vol. 17, pp. 19471-19481, DOI 10.1021/acsami.5c00445, issn 19448244, eissn 19448252 - 2025 - в издания, индексирани в Scopus
34. Almanza G., Fernandino M., Dorao C.A., A new mobile micro-aperture acoustic generator for cell lysis, 2025, Microchemical Journal, issue 0, vol. 211, DOI 10.1016/j.microc.2025.113008, issn 0026265X - 2025 - в издания, индексирани в Scopus
35. Zhang H., Zhao L., Brodsky J., Migliaccio L., Gablech I., Neuzil P., You M., Proteomics-on-a-Chip – Microfluidics meets proteomics, 2025, Biosensors and Bioelectronics, issue 0, vol. 273, DOI 10.1016/j.bios.2024.117122, issn 09565663, eissn 18734235 - 2025 - в издания, индексирани в Scopus
36. Islam M.A., Giorno R., Nestorova G.G., Aptamer-Functionalized Platform for Selective Bacterial Isolation and Rapid RNA Purification Using Capture Pins, 2025, Sensors, issue 6, vol. 25, DOI 10.3390/s25061774, eissn 14248220 - 2025 - в издания, индексирани в Scopus
37. Jannati K., Rahimian M.-H., Raisee M., Jafari A., Investigating Cell-Induced Mixing Dynamics in Microfluidic Droplets Using the Lattice Boltzmann Method, 2025, Langmuir, issue 4, vol. 41, pp. 2386-2399, DOI 10.1021/acs.langmuir.4c04047, issn 07437463, eissn 15205827 - 2025 - в издания, индексирани в Scopus
38. Bruggemann C., Schweyen P., Bell A.M., Wick A., Ternes T.A., Release and quantification of organic and inorganic contaminants from geotextile materials in dynamic surface leaching test, 2025, Journal of Hazardous Materials, issue 0, vol. 482, DOI 10.1016/j.jhazmat.2024.136330, issn 03043894, eissn 18733336 - 2025 - в издания, индексирани в Scopus
39. Lee J.-H., Song J., Hong S., Kim Y., Song M., Cho B., Wu T., Riley L.W., Landegren U., Lee L.P., Nanoplasmonic Rapid Antimicrobial-Resistance Point-of-Care Identification Device: RAPIDx, 2025, Advanced Healthcare Materials, issue 1, vol. 14, DOI 10.1002/adhm.202402044, issn 21922640, eissn 21922659 - 2025 - в издания, индексирани в Scopus
40. Partipilo G., Bowman E.K., Palmer E.J., Gao Y., Ridley R.S., Alper H.S., Keitz B.K., Single-cell phenotyping of extracellular electron transfer via microdroplet encapsulation, 2025, Applied and Environmental Microbiology, issue 1, vol. 91, DOI 10.1128/aem.02465-24, issn 00992240, eissn 10985336 - 2025 - в издания, индексирани в Scopus
41. Ko J., Lee J., Advanced microfluidic systems with temperature modulation for biological applications, 2025, Biomicrofluidics, issue 3, vol. 19, DOI 10.1063/5.0251893, issn 19321058 - 2025 - в издания, индексирани в Scopus
Вид: статия в списание, публикация в издание с импакт фактор, публикация в реферирано издание, индексирана в Scopus