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[½»Á÷] microvesicle ultracentrafuge ÒÑÓÐ1È˲ÎÓë

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1. Transfer equal volume of the supernatant (collected in step 10
in Subheading 3.1 ) to 3 ml fresh ultracentrifuge tubes ( see
Note 8 ).
2. Mark the upper side of each ultracentrifuge tube with a waterproof
mark.
3. Put ultracentrifuge tubes in the fi xed-angle rotor of ultracentrifuge
with tweezers and make the waterproof mark face up.
4. Centrifuge for 2 h at 100,000 ¡Á g , 4 ¡ãC ( see Note 9 ).
5. Carefully take each ultracentrifuge tube out with tweezer ( see
Note 10 ).
6. Note the position of microvesicle pellet and remove the supernatant
completely (do not discard it) without disturbing the
pellet ( see Note 11 ).
7. Collect the supernatant in a 50-ml polypropylene centrifuge
tubes for later use.
8. Resuspend the pellet in each tube serially in 1 ml of PBS using
pipetman ( see Note 12 ).
9. Pool the resuspended pellets from all the tubes containing
urine from one subject in a single centrifuge tube.
10. Add appropriate volume of PBS if the volume of the collected
pellet solution is less than three-quarters of the whole volume
of the tube. Note the fi nal volume.
11. Make the waterproof mark on the side of the tube that contains
sample.
12. Add equal volume of PBS to one other ultracentrifuge tube.
It is used as a balancing tube.
13. Symmetrically put the two tubes in the fi xed-angle rotor of
ultracentrifuge with tweezers and make the mark of the tube
with sample face up.
14. Centrifuge for 2 h at 100,000 ¡Á g , 4 ¡ãC.
15. Carefully take each ultracentrifuge tube out with tweezers.
16. Note the position of microvesicle pellet and remove the supernatant
completely without disturbing the pellet ( see Note 13 ).
17. Add 300 ¦Ì l of guanidine thiocyanate containing lysis buffer to
the microvesicle pellet ( see Note 14 ).
18. Store microvesicle at −80 ¡ãC and avoid repeated freezing and
thawing.
9Â¥2014-08-05 00:07:55
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https://www.beckmancoulter.com/w ... /2/392049///0/1//0/
2Â¥2014-08-04 23:31:26
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Optima's easy-to-use eXPert Software gives your lab an edge by making it possible to quickly design and optimize separation protocols using a combination of rotors and tubes to simulate results ¡ª all before performing separations. A unique slide-bar feature allows you to view the separation at earlier run times to better suit the isolation of individual components. Up to three components can be modeled using the rate-zonal protocol. Then save the simulated run and download it with a single click of the mouse when you're ready to begin your run. Optima eXPert Software's advanced intelligence delivers greater productivity and faster turnarounds for your lab.

The following demonstrations illustrate just how easy it is to optimize efficiency with Optima eXPert Software.
3Â¥2014-08-04 23:34:31
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Optima eXPert Software Demo 2:
Run Simulation -- Rate Zonal

Find out how to stop your run at the optimum separation time before the sample material reaches the tube bottom and becomes a pellet.
4Â¥2014-08-04 23:35:51
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