tris borate edta
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Micromachines ◽  
2020 ◽  
Vol 11 (11) ◽  
pp. 982
Author(s):  
Takahito Ohshiro ◽  
Yuki Komoto ◽  
Masateru Taniguchi

We utilized electrophoresis to control the fluidity of sample biomolecules in sample aqueous solutions inside the nanochannel for single-molecule detection by using a nanochannel-integrated nanogap electrode, which is composed of a nano-gap sensing electrode, nanochannel, and tapered focusing channel. In order to suppress electro-osmotic flow and thermal convection inside this nanochannel, we optimized the reduction ratios of the tapered focusing channel, and the ratio of inlet 10 μm to outlet 0.5 μm was found to be high performance of electrophoresis with lower concentration of 0.05 × TBE (Tris/Borate/EDTA) buffer containing a surfactant of 0.1 w/v% polyvinylpyrrolidone (PVP). Under the optimized conditions, single-molecule electrical measurement of deoxyguanosine monophosphate (dGMP) was performed and it was found that the throughput was significantly improved by nearly an order of magnitude compared to that without electrophoresis. In addition, it was also found that the long-duration signals that could interfere with discrimination were significantly reduced. This is because the strong electrophoresis flow inside the nanochannels prevents the molecules’ adsorption near the electrodes. This single-molecule electrical measurement with nanochannel-integrated nano-gap electrodes by electrophoresis significantly improved the throughput of signal detection and identification accuracy.


Blood ◽  
1965 ◽  
Vol 25 (5) ◽  
pp. 646-661 ◽  
Author(s):  
AMOZ I. CHERNOFF ◽  
NELSON PETTIT ◽  
JO NORTHROP

Abstract The chromatographic separation of hemoglobin on two cellulose exchangers, CMC and DEAE, is discussed. Problems related to the use of these technics are described. In addition, our experience with the use of Tris-Borate-EDTA buffer (Smithies) for hemoglobin electrophoresis in starch gel is presented.


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