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EP951032883

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

UNSPSC Code:
41106300

material

clear wells
colorless wells
conical bottom
polypropylene
white plate

sterility

non-sterile

feature

lid: no

packaging

pkg of 120 ea (10 bags × 12 plates)

manufacturer/tradename

Eppendorf® 951032883

capacity

1000 μL

well volume

1000 μL

color

blue border

suitability

suitable for PCR
suitable for molecular biology

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General description

Deepwell Plate 96/1000µL, DNA LoBind, wells clear, 1,000 µL, LoBind, PCR clean, blue, 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

Features and Benefits

  • 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

Legal Information

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

Certificates of Analysis (COA)

Search for Certificates of Analysis (COA) by entering the products Lot/Batch Number. Lot and Batch Numbers can be found on a product’s label following the words ‘Lot’ or ‘Batch’.

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Byung-Gyu Kim et al.
Proteomics, 6(4), 1166-1174 (2006-01-20)
Runx2 is a key transcription factor in osteoblast differentiation, and its activity is regulated by fibroblast growth factors (FGFs). Craniosynostosis, characterized by premature suture closure, results from mutations that generate constitutively active FGF receptors (FGFRs). We previously showed that FGF/FGFR-activated
Hongchang Qu et al.
Immunobiology, 218(4), 496-505 (2012-07-17)
Therapeutic modulation of the complement system has become increasingly important in line with the growing recognition of the role of complement in numerous diseases. Compstatin, a peptidic inhibitor that acts at the central level of the complement cascade, is currently
Graziano Colombo et al.
Free radical biology & medicine, 52(9), 1584-1596 (2012-03-06)
Cigarette smoke, a complex mixture of over 7000 chemicals, contains many components capable of eliciting oxidative stress, which may induce smoking-related disorders, including oral cavity diseases. In this study, we investigated the effects of whole (mainstream) cigarette smoke on human
Jintang He et al.
Methods in molecular biology (Clifton, N.J.), 1002, 115-122 (2013-04-30)
Glycoproteins play an important role in cell signaling and cell-cell interaction. The alterations of glycoproteins are often relevant to progression of diseases, and these changed glycoproteins can be important biomarkers. The lectin-based glycoproteomic technology has extensively been used for high-throughput
Steven J Bark et al.
Journal of proteome research, 6(11), 4511-4516 (2007-09-14)
Differential recovery of peptides due to nonspecific adsorption can seriously compromise reproducibility and quality of proteomic data for peptide analyses by liquid chromatography-mass spectrometry (LC-MS). This study demonstrates large variations in reproducibility and quantitation of LC-MS data for peptides derived

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