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CLS3471

Corning® Costar® Ultra-Low Attachment Multiple Well Plate

size 6 well, flat bottom clear, pkg of (individually wrapped), pkg of (24/case), sterile, lid

Synonym(s):

6 well plate, cell culture plate, tissue culture plate

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About This Item

UNSPSC Code:
41121800
NACRES:
NB.13

material

clear
clear wells
flat bottom clear
polystyrene

sterility

sterile
sterile

feature

lid
lid
skirt
plate format: standard
well: flat bottom, clear

packaging

pack of 1 (individually wrapped w/ lid)
case of 24
pkg of (24/case)
pkg of (individually wrapped)

manufacturer/tradename

Corning 3471

size

6 well

surface area

9.5 cm2 , cell growth area (cm2)

well volume

16.8 mL

well working volume

1.9-2.9 mL

wells

6 wells

color

clear

binding type

Tissue Culture (TC)-treated surface

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General description

Corning Costar Ultra-Low Attachment Multiwell Plates

  • Ultra-Low attachment plates feature a covalently bound hydrogel layer that effectively inhibits cellular attachment
  • Surface minimizes protein absorption, enzyme activation, and cellular activation
  • Surface is non-cytotoxic, biologically inert, and nondegradable
  • Nonreversible lids with condensation rings to reduce contamination
  • Individual alphanumerical codes for well identification
  • Uniform footprint for ease in stacking
  • Sterilized by gamma irradiation and certified nonpyrogenic

Legal Information

Corning is a registered trademark of Corning, Inc.
Costar is a registered trademark of Corning, Inc.

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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Angelo Canciello et al.
Frontiers in bioengineering and biotechnology, 8, 135-135 (2020-04-08)
Amniotic membrane (AM) is considered an important medical device with many applications in regenerative medicine. The therapeutic properties of AM are due to its resistant extracellular matrix and to the large number of bioactive molecules released by its cells. An
Kiera L Clayton et al.
Cell host & microbe, 29(3), 435-447 (2021-02-12)
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