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EP951032808

Eppendorf® Deepwell plates, DNA LoBind, 96 wells

white plate, conical bottom, colorless wells, capacity 1000 μL, pkg of 120 ea (10 bags × 12 plates)

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About This Item

分類程式碼代碼:
41106300

材料

clear wells
colorless wells
conical bottom
polypropylene
white plate

無菌

non-sterile

特點

lid: no

包裝

pkg of 120 ea (10 bags × 12 plates)

製造商/商標名

Eppendorf® 951032808

容量

1000 μL

孔容積

1000 μL

顏色

white border

適合性

suitable for PCR
suitable for molecular biology

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一般說明

Deepwell Plate 96/1000µL, DNA LoBind, wells clear, 1,000 µL, LoBind, PCR clean, white, 20 plates (5 bags × 4 plates)
  • Eppendorf LoBind material ensures optimized sample recovery for improved assay results
  • Free of surface coating (e.g. silicone) to minimize the risk of sample interference
  • Lot-certified PCR clean purity grade: free of human DNA, DNase, RNase and PCR inhibitors
  • Available in tube, microplate, and deepwell plate formats for easy-up scaling
  • High-contrast Unique OptiTrack® matrix: up to 30 % faster sample identification and fewer pipetting errors
  • RecoverMax well design: optimized well geometry for minimal remaining/dead volume and excellent mixing properties
  • Raised well rims and a smooth surface ensure reliable sealing

特點和優勢

  • Eppendorf LoBind material ensures optimized sample recovery for improved assay results
  • Free of surface coating (e.g. silicone) to minimize the risk of sample interference
  • Lot-certified PCR clean purity grade: free of human DNA, DNase, RNase and PCR inhibitors
  • Available in tube, microplate, and deepwell plate formats for easy-up scaling
  • High-contrast Unique OptiTrack® matrix: up to 30 % faster sample identification and fewer pipetting errors
  • RecoverMax® well design: optimized well geometry for minimal remaining/dead volume and excellent mixing properties
  • Raised well rims and a smooth surface ensure reliable sealing

法律資訊

Eppendorf is a registered trademark of Eppendorf AG
OptiTrack is a registered trademark of Eppendorf AG
RecoverMax is a registered trademark of Eppendorf AG

分析證明 (COA)

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Nikos Tsolakos et al.
Vaccine, 28(18), 3211-3218 (2010-03-02)
In this study, we evaluated the effect of the growth medium on the composition and immunogenicity of meningococcal outer membrane vesicle (OMV) vaccines after cultivation of the Norwegian serogroup B 44/76 vaccine strain in either Frantz' or modified Catlin-6 media
Thandavarayan Kathiresan et al.
Methods in molecular biology (Clifton, N.J.), 493, 269-286 (2008-10-08)
Functional proteomics comprises a wide range of technologies for the identification of novel protein-protein interactions and biological markers. Studies of protein-protein interactions have gained from the development of techniques and technologies such as immunoprecipitation, preparative two-dimensional (2-D) gel electrophoresis for
Hartmut Stocker et al.
Antimicrobial agents and chemotherapy, 50(2), 667-673 (2006-01-27)
Therapeutic drug monitoring (TDM) is gaining importance for improving the success of antiretroviral treatment in human immunodeficiency virus-infected patients. However, enfuvirtide (ENF) concentrations are not regularly determined. The objective of this work was to study the pharmacokinetics (PK) of ENF
E I Trilisky et al.
Journal of chromatography. A, 1142(1), 2-12 (2007-01-24)
Purified viruses are used in gene therapy and vaccine production. Ion-exchange chromatography (IEC) is the most common method for large-scale downstream purification of viruses and proteins. Published IEC protocols provide details for specific separations but not general methods for selecting
M Yang et al.
International journal of pharmaceutics, 331(2), 176-181 (2006-11-28)
Salmon calcitonin (sCT) powders suitable for inhalation, containing chitosan and mannitol as absorption enhancer and protection agent, respectively, were prepared using a spray-drying process. The effect of chitosan on physicochemical stability of sCT in the dry powder was investigated by

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