| Keyword search (4,163 papers available) | ![]() |
"Bathini S" Authored Publications:
| Title | Authors | PubMed ID | |
|---|---|---|---|
| 1 | Microfluidic Platforms for the Isolation and Detection of Exosomes: A Brief Review | Raju D; Bathini S; Badilescu S; Ghosh A; Packirisamy M; | 35630197 ENCS |
| 2 | Magnetic particle based liquid biopsy chip for isolation of extracellular vesicles and characterization by gene amplification | Bathini S; Pakkiriswami S; Ouellette RJ; Ghosh A; Packirisamy M; | 34517262 ENCS |
| 3 | Gold Nano-Island Platforms for Localized Surface Plasmon Resonance Sensing: A Short Review. | Badilescu S, Raju D, Bathini S, Packirisamy M | 33066088 ENCS |
| 4 | Nano-Bio Interactions of Extracellular Vesicles with Gold Nanoislands for Early Cancer Diagnosis. | Bathini S, Raju D, Badilescu S, Kumar A, Ouellette RJ, Ghosh A, Packirisamy M | 31549028 ENCS |
| Title: | Microfluidic Platforms for the Isolation and Detection of Exosomes: A Brief Review | ||||
| Authors: | Raju D, Bathini S, Badilescu S, Ghosh A, Packirisamy M | ||||
| Link: | pubmed.ncbi.nlm.nih.gov/35630197/ | ||||
| DOI: | 10.3390/mi13050730 | ||||
| Publication: | Micromachines | ||||
| Keywords: | detection; exosomes; isolation; lab-on a chip; microfluidics devices; | ||||
| PMID: | 35630197 | Category: | Date Added: | 2022-05-28 | |
| Dept Affiliation: |
ENCS
1 Micro-Nano-Bio Integration Center, Optical Bio-Microsystems Laboratory, Department of Mechanical Industrial and Aerospace Engineering, Concordia University, Montreal, QC H3G 1M8, Canada. |
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Description: |
Extracellular vesicles (EVs) are a group of communication organelles enclosed by a phospholipid bilayer, secreted by all types of cells. The size of these vesicles ranges from 30 to 1000 nm, and they contain a myriad of compounds such as RNA, DNA, proteins, and lipids from their origin cells, offering a good source of biomarkers. Exosomes (30 to 100 nm) are a subset of EVs, and their importance in future medicine is beyond any doubt. However, the lack of efficient isolation and detection techniques hinders their practical applications as biomarkers. Versatile and cutting-edge platforms are required to detect and isolate exosomes selectively for further clinical analysis. This review paper focuses on lab-on-chip devices for capturing, detecting, and isolating extracellular vesicles. The first part of the paper discusses the main characteristics of different cell-derived vesicles, EV functions, and their clinical applications. In the second part, various microfluidic platforms suitable for the isolation and detection of exosomes are described, and their performance in terms of yield, sensitivity, and time of analysis is discussed. |



