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SonicMan™

High Throughput Sonication (view non-flash page)

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Most IMPORTANT is the solubility/concentration of the compounds because compounds not in solution will not define hits"

'Sample logistics: a key function in the lead identification and lead optimization processes'

-Dr. Gerhard Mihm at Boehringer-Ingleheim, Germany

Benefits of sonication expanded to 96 and 384-well microplate based research.


Features:

  • Stand-alone instrument
  • 96, 384, and 1536 interchangeable disposable pinned lid technology
  • Plate shuttle allows for direct integration with pick & place robotics.
  • Variable power settings between 1 and 1150 watts.
  • Variable sonication time intervals from 0.1 to 20 seconds.

Applications:

  • Resuspend stored compounds in HTS
  • Resolubilize compounds in synthesis.
  • Shear genomic DNA into small fragments for PCR amplification.
  • Extract target proteins, RNA/DNA, and enzymes via cell lysis and membrane disruption
  • Mix low volume assays.
  • Drive sonochemical reactions
  • Transfect eukaryotic cells
  • Tissue homogenization

Learn more about the SonicMan:

Read the brochure on SonicMan - High Throughput Sonication System
Read the paper on High Throughput Sonication: Evaluation for Compound Solubilization
Read the poster about Thermodynamic Solubility Using Sonication
Read the poster about Applications of Highly Parallel Sonication in Drug Discovery
Read the application notes about Sonolysis of Yeast using the SonicMan
Read the Bacteria Lysis Application Note
Read the Thermo Application Note
Chicken liver sonication video: Click here to watch!

High throughput sonication: evaluation for compound solubilization.

Oldenburg K, Pooler D, Scudder K, Lipinski C, Kelly M.

MatriCal, Inc., Spokane, WA, USA.

Dissolution of organic compounds in DMSO in HTS plate or tube format is a difficult problem as users move to higher compression plate formats. Precipitation of compounds from DMSO screening stocks is a recognized problem in the HTS materials management process. The adverse effect of freeze thaw cycles on DMSO stock solutions stored in plate format as a result of cherry picking operations has led to the gradual replacement of plate-based storage with tube-based storage so as to minimize the number of freeze thaw cycles. Compound solubility in DMSO is markedly decreased by uptake of small quantities of water. We attribute this effect to the non ideal properties of DMSO water mixtures such that cavity formation in solvent, a necessary step in dissolution, is more difficult in wet DMSO than in dry DMSO or in pure water. We report here that efficient compound dissolution is possible even in 384 well format by the use of in-well plate-based sonication. Surprisingly, compounds precipitated from DMSO stocks either by water uptake or repeated freeze thaw cycles can be re-dissolved by low energy sonication. Finally, we demonstrate that precipitation of compound from DMSO stock solutions is synergistically enhanced by water uptake into DMSO compound stock solutions as well as by increasing the number of freeze thaw cycles.

* ABSTRACT: Comb Chem High Throughput Screen. 2005 Sep;8(6):499-512. 


For more information regarding products and pricing, email us atsales@matrical.com.
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