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BR701330

BRAND® 96-well microplate, U-bottom

round bottom, non-sterile

Sinonimo/i:

Microplates, Plates, Sample Storage

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About This Item

Codice UNSPSC:
41121800
NACRES:
NB.15
Materiali:
polypropylene
round bottom
Misura:
96 well
Volume massimo del pozzetto:
300 μm

Materiali

polypropylene
round bottom

Sterilità

non-sterile

Confezionamento

pack of 100 ea

Produttore/marchio commerciale

BRAND 701330

Misura

96 well

Volume massimo del pozzetto

300 μm

Tipo di binding

non-treated surface

Descrizione generale

PP. For volumes up to 300 µl. Compatible with virtually all leading microplate centrifuges. Raised rings around the orifice of each well minimize possible cross-contamination. The plates can be sealed using self-adhesive films, such as DMSO-resistant sealing film (cross-cut) with alphanumeric coding.

Caratteristiche e vantaggi

  • BRAND® 96-well microplate, U-bottom is a deep-well plate ideal for agglutination and other assays requiring stirring and washing of samples.
  • Features a round-shaped well bottom with no edges.
  • Raised rings around the orifice prevent possible cross-contamination.
  • Compatible with a range of microplate centrifuges.
  • Securely sealable with suitable sealing mats or self-adhesive sealing films.
  • Alphanumeric code for accurate identification.
  • Made from high-transparency medical grade polypropylene (PP) that facilitates sample visibility.
  • Chemically resistant to most solvents including DMSO, phenol, and chloroform.

Note legali

BRAND is a registered trademark of BRAND GMBH + CO KG

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The endoplasmic reticulum (ER) is a highly dynamic network of membranes. Here, we combine live-cell microscopy with in situ cryo-electron tomography to directly visualize ER dynamics in several secretory cell types including pancreatic β-cells and neurons under near-native conditions. Using
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Regulatory T cells are integral to the regulation of autoimmune and anti-tumor immune responses. However, several studies have suggested that changes in T cell signaling networks can result in T cells that are resistant to the suppressive effects of regulatory
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Molecular chaperones play important roles in preventing protein misfolding and its potentially harmful consequences. Deterioration of molecular chaperone systems upon ageing are thought to underlie age-related neurodegenerative diseases, and augmenting their activities could have therapeutic potential. The dementia relevant domain
Rosalie Heilig et al.
Life science alliance, 3(6) (2020-04-30)
Caspase-1 drives a lytic inflammatory cell death named pyroptosis by cleaving the pore-forming cell death executor gasdermin-D (GSDMD). Gsdmd deficiency, however, only delays cell lysis, indicating that caspase-1 controls alternative cell death pathways. Here, we show that in the absence
Atsuya Nishiyama et al.
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Stable inheritance of DNA methylation is critical for maintaining differentiated phenotypes in multicellular organisms. We have recently identified dual mono-ubiquitylation of histone H3 (H3Ub2) by UHRF1 as an essential mechanism to recruit DNMT1 to chromatin. Here, we show that PCNA-associated

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