BIO RAD 200/2.0 User Manual

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Technical Note
Use of E-PAGE
48- and 96-Well Gels on the
Odyssey
®
Infrared Imaging Systems
Published October 2008. Revised
October 2011. The most recent
version of this Technical Note is posted at
http://biosupport.licor.com/support.
Developed for:
Odyssey
®
Classic, and
Odyssey CLx
Imaging Systems
Please refer to your manual to confirm
that this protocol is appropriate for the
applications compatible with your
Odyssey Imager model.
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Summary of Contents

Page 1 - Technical Note

Technical NoteUse of E-PAGE™48- and 96-Well Gels on theOdyssey®Infrared Imaging SystemsPublished October 2008. Revised October 2011. The most recent

Page 2 - II. Required Materials

I. IntroductionThe E-PAGE 48-and 96-well electrophoresis systems (Invitrogen Corporation, Carlsbad, CA) pro-vide a high-throughput SDS-PAGE method fo

Page 3 - Semi-Dry Transfer:

Semi-Dry Transfer:• Trans-Blot SD Semi-Dry Electrophoretic Transfer Cell (Bio-Rad, P/N 170-3940)• NuPAGE®Sample Reducing Agent (Invitrogen, P/N NP0009

Page 4 - Infrared Imaging System

10. At the end of the run, the E-Base will beep and the light will flash red. Press the pwr/prg but-ton to complete the run and stop the beeping/flas

Page 5 - Use of E-PAGE

11. While holding the tabs together, pull the stack assembly together through the rollers using one smooth motion until it reaches the Gel Barriers on

Page 6 - Page 6 –Use of E-PAGE

4. Carefully remove the trimmed gel from the cassette and place into a clean container with 200 mL of 1X transfer buffer (enough to fully submerge the

Page 7 - VI. Sample Data

Use of E-PAGE™Gels on the Odyssey®Infrared Imaging System – Page 7Figure 1. E-PAGE 48-Well gel (left) loaded in duplicate with four different sets of

Page 8 - Sample Data

Figure 2. A. E-PAGE 96-Well gel loaded with replicate untreated or EGF-treated A431 cell extract sam-ples (alternating rows). After transfer with t

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