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Merck

CLS430639

Corning® cell culture flasks

surface area 25 cm2, canted neck, cap (vented)

동의어(들):

culture flask, flask cell culture, tissue culture flask

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UNSPSC Code:
41122104
NACRES:
NB.13
eCl@ss:
32040501
Surface area:
25 cm2
Binding type:
Tissue Culture (TC)-treated surface
Material:
canted neck , cap (vented), polystyrene , rectangular bottom flask, rectangular flask, vent cap
Sterility:
sterile
Packaging:
case of 200
Feature:
cap, graduations
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material

canted neck , cap (vented), polystyrene , rectangular bottom flask, rectangular flask, vent cap

sterility

sterile

feature

cap, graduations

packaging

case of 200

manufacturer/tradename

Corning 430639

maximum volume

60 mL

surface area

25 cm2

working volume

5-7.5 mL

binding type

Tissue Culture (TC)-treated surface

General description

Available in a variety of sizes, designs and cap styles to meet your needs.
  • Manufactured from optically clear virgin polystyrene
  • Treated for optimal cell attachment
  • Printed with lot numbers for ease in traceability
  • 100% integrity tested
  • Sterilized by gamma irradiation and certified nonpyrogenic

Features and Benefits

  • The neck style is canted, and the cap style is vented.
  • 25cm² available growth area
  • Contains a ramp from the bottom to the canted neck for easier pouring and pipet access.

Legal Information

Corning is a registered trademark of Corning, Inc.


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시험 성적서(COA)

Lot/Batch Number

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문서 라이브러리 방문


문서

Ensure optimal cell culture outcomes with ultrapure, endotoxin-free water. Learn about the impact of water impurities on mammalian cell cultures and how to achieve optimal cell growth.


Yichen Li et al.
Nature protocols, 16(1), 532-560 (2020-12-16)
Various super-resolution imaging techniques have been developed to break the diffraction-limited resolution of light microscopy. However, it still remains challenging to obtain three-dimensional (3D) super-resolution information of structures and dynamic processes in live cells at high speed. We recently developed
Soni Khandelwal et al.
Antioxidants (Basel, Switzerland), 9(2) (2020-02-09)
Previous studies have demonstrated that redox selenium compounds arrest cancer cell viability in vitro through their pro-oxidative activity by generating superoxide (O2•-). Currently, there are no efficacious treatment options for women with Triple Negative Breast Cancer (TNBC). However, the association



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SKUGTIN
CLS430639-200EA04061833887295
CLS430639-20EA04061833884980