Wyatt Technology

Houston Region Light Scattering User Meeting

Join us March 19 at MD Anderson Cancer Center

Houston Light Scattering User Meeting Registration Houston User Meeting Agenda

Wyatt's regional user meetings are a great opportunity to meet and interact with other scientists who utilize Wyatt light scattering instruments. Learn how your colleagues approach biophysical characterization, pick up some tips and tricks on method development, and spend some quality time with Wyatt staff. Registration is free for this event.

Details:
Date: March 19, 2019
Time: 8:30 AM
Location: MD Anderson Cancer Center
South Campus Research Building 4
1901 East Rd.
Houston, TX 77504

Check back soon for additional Speakers and Agenda!

Light scattering is a label-free, non-destructive and in-solution method for characterizing biopolymers. This meeting will present:

  • How light scattering provides macromolecular molar mass and size information.
  • Methods to characterize proteins and their complexes.
  • Applications for large structures such as liposomes, virus particles, and exosomes.
  • Opportunities for one-on-one discussions with Wyatt staff, software tutorials, and troubleshooting help.
Who should attend:
  • Active users of Wyatt light scattering instruments seeking to engage with regional colleagues around similar analytical challenges
  • Those interested in learning more about standard-free biophysical characterization techniques

Guest Speakers
  • Dr. Paul Leonard, Director, Core for Biomolecular Structure and Function, MD Anderson Cancer Center


 



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Wyatt Technology is the recognized leader in light scattering instrumentation and software for determining the absolute molar mass, size, charge and interactions of macromolecules and nanoparticles in solution.

Wyatt's line of multi-angle static light scattering products couple to size exclusion chromatography (SEC-MALS), field-flow fractionation (FFF-MALS), and stop-flow composition-gradient systems (CG-MALS). Our dynamic light scattering (DLS) products operate in traditional cuvette as well as on-line and automated, high-throughput modes. We also offer unique instruments for electrophoretic light scattering (MP-PALS), differential refractometry, and differential viscosity.



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