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CLS3398

Corning® HTS Transwell®-24 well permeable supports

HTS Transwell-24 units w/ 3.0 μm pore polycarbonate membrane and 6.5 mm inserts, TC-treated, sterile, 2/cs

Synonym(s):

corning transwell, transwell corning

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About This Item

UNSPSC Code:
41121800
NACRES:
NB.13

material

clear polystyrene plate
flat bottom wells clear
polycarbonate membrane
round wells

description

2 HTS Transwell-24 units loaded into two open reservoir trays (catalog number CLS3395) and two individually wrapped 24 well plates

sterility

sterile

feature

lid
skirt
plate format: 24 wells

packaging

pack of 1
case of 2

manufacturer/tradename

Corning 3398

insert working volume

0.1 mL

membrane thickness

10 μm

size

24 wells

surface area

0.33 cm2 , cell growth area

well working volume

0.6 mL

color

clear

pore size

3 μm pore size

suitability

suitable for (cell culture applications; optimal for cell attachment)

binding type

Tissue Culture (TC)-treated surface

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General description

Corning® HTS Transwell® 24 Well Permeable Supports

Features and Benefits:

  • Treated for optimal cell attachment
  • 0.4 μm to 3 μm pore polycarbonate or polyester membrane
  • Reservoirs may be purchased separately
  • Sterilized by gamma radiation

Legal Information

Corning is a registered trademark of Corning, Inc.
Transwell 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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Zhibing Wang et al.
International journal of molecular medicine, 46(5), 1873-1885 (2020-10-02)
hsa_circ_0001982 [circRNA ring finger protein 111 (RNF111)] has been found to promote cancer growth; however, its role in gastric cancer (GC) remains unclear. The present study examined the effects of circR‑RNF111 on the growth, migration and invasion of GC cells and aimed
Zhijie Chen et al.
Tissue & cell, 65, 101380-101380 (2020-08-05)
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Yanhe Zhang et al.
Cancer cell international, 20(1), 556-556 (2020-12-10)
There is evidence that circSMYD4 is differentially expressed in hepatocellular carcinoma (HCC), but its mechanism of action remains unclear. Therefore, this study aimed to explore the role of circSMYD4 in the occurrence and development of HCC and its specific molecular
Shunfeng Wang et al.
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In the present study, the fabrication of a biomimetic wound dressing that mimics the extracellular matrix, consisting of a hydrogel matrix composed of non-oxidized and periodate-oxidized marine alginate, was prepared to which gelatin was bound via Schiff base formation. Into

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