Optima AUC Analytical Ultracentrifuge by Beckman Coulter Life Sciences

Manufacturer Beckman Coulter Life Sciences  |  Available Worldwide
5.0
/
5.0
  |  1 reviews
Native-condition characterization for accurate results every time


Optima AUC Analytical Ultracentrifuge by Beckman Coulter Life Sciences product image
Optima AUC Analytical Ultracentrifuge
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Average Rating: 5.0
1 Scientist has reviewed this product

5 out of 5
Ease of use
5 out of 5
After sales service
5 out of 5
Value for money


  • Status:

    Reviewer
  • Member since: 2021

  • Organization: Takeda Pharmaceutical Company



  • Ease of use
    5 out of 5
    After sales service
    5 out of 5
    Value for money
    5 out of 5
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Great results.
Rating: 5.0

  • Application Area: Biophysical characterization

"High quality data and easy to use."

Review date: 03 Jan 2022 | Optima AUC Analytical Ultracentrifuge

Beckman Coulter pioneered the field of analytical ultracentrifugation and continues to design and produce powerful, reliable, and durable instrumentation to enable academic and industrial research around the world.

By measuring proteins as interacting elements, the New Optima AUC accelerates the development of diagnostic markers and therapeutic targets for efficient and reliable protein characterization in solution.

  • Each system is designed to put actionable information in your hands quickly and easily.
  • Native-condition characterization for better lead optimization, better drug candidate evaluation, better method validation....better science.
  • The Optima AUC is ideal for characterizing proteins, oligomers, aggregates, particles, colloids, and small structures. It delivers accurate results you can rely on time and again.
  • In-solution characterization allows for testing in native conditions, meaning you determine the sample testing environment that best suits your needs.
  • The unique column-free separating technique of the Optima AUC measures the relative change in the distribution of molecular weights, providing an efficient way to measure heterogeneity, stoichiometry and self-associating systems.
  • And, because the measurements are based on the first principles of thermodynamics and hydrodynamics, no standards or calibrations are required. As a result, you spend less time on setup and more time on discovery.