Lab-on-Chip Microfluidics System for Single Cell Mass Measurement: A Comprehensive Review
Author(s) -
Md. Habibur Rahman,
Mohd Ridzuan Ahmad
Publication year - 2014
Publication title -
jurnal teknologi
Language(s) - English
Resource type - Journals
eISSN - 2180-3722
pISSN - 0127-9696
DOI - 10.11113/jt.v69.3301
Subject(s) - cantilever , resonator , microfluidics , nanotechnology , measure (data warehouse) , sensitivity (control systems) , system of measurement , lab on a chip , computer science , engineering , materials science , physics , optoelectronics , electronic engineering , data mining , aerospace engineering , astronomy
Single cell mass (SCM) is one of the intrinsic properties of cell and is a vital part of single cell analysis (SCA). To date, a myriad numbers of works has been successfully reported for single cell mass measurement but the reported information are scattered, consequently a comprehensive review becomes mandatory to bring them together. Lab-on-chip microfluidics system integrated with micro-resonator provided an excellent platform to measure single cell mass directly (in presence of cells). On-chip microfluidics system like suspended micro channel resonator ( SMR ) was reported for non-adherent single yeast cell mass while ‘living cantilever arrays’ ( LCA ) was proposed to measure adherent HeLa cell mass. On the other hand, cantilever based resonant mass measurement system ha s non-uniform mass sensitivity; this issue has been overcome by pedestal mass measurement system (PMMS). PMMS has a unique geometrical structure that provide d uniform mass sensitivity to the sensing surface . Moreover, we presented a comprehensive discussion of each of the available methods of SCM elaborating the sensing mechanism, geometry of the sensor and governing equations. It is hoped that, information presented in this comprehensive review paper will be a valuable source for the single cell mass analysers and biological researchers.
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