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CLS4500125

Corning® ProCulture® glass spinner flask complete, baffled, angled sidearms

125 mL glass spinner flask, w/ 70 mm flat center cap, 2 32 mm vertical sidearms, reusable, non-sterile, 1/cs

别名:

cell culture flasks, cell culture spinner flasks, scale up cell culture flasks

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About This Item

UNSPSC代码:
41121804
eCl@ss:
32040501
NACRES:
NB.43

物料

borosilicate glass (borosilicate glass code 7740)
polypropylene cap
screw top cap
three-neck

无菌性

non-sterile

特点

cap
closure type Screw cap
reusable
flask style: Spinner

包装

case of 1
pack of 1

制造商/商品名称

Corning 4500-125

容量

125 mL

颈直径

70 mm

侧臂直径

32 mm

工作体积

125 mL

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一般描述

  • 125mL capacity
  • 70mm center neck and 32mm sidearm neck diameters
  • Side baffles enhance aeration and agitation of flask contents
  • Patented "stretch" impeller design ensures optimal stirring
  • Sidearm designs permit easy access of 25mL pipets
  • Vessels are borosilicate glass and other parts constructed of rugged FDA approved materials
  • Consistent height to width ratios for greater predictability in scale up across the full range of vessel sizes
Corning has transformed the old culture vessel for maximum productivity and ease of use. Improvements and special features include:
  • Pyrex® glass flask and other parts constructed of FDA-approved materials
  • baffles break up laminar flow and improve circulation
  • unique paddle design eliminates dead spots, agitates surface for better aeration
  • wide center neck forms visible airtight seal
  • two angled sidearms offer easy access without interrupting culture
  • excellent growth of cells in suspension as well as anchorage-dependent cells growing on microcarrier beads
Accessories sold separately.

法律信息

Corning is a registered trademark of Corning, Inc.
PYREX is a registered trademark of Corning, Inc.
ProCulture is a registered trademark of SP Industries

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Li-Hong Zhang et al.
iScience, 23(3), 100968-100968 (2020-03-22)
R-loops, three-stranded DNA-DNA:RNA hybrid structures, are best known for their deleterious effects on genome stability. The regulatory factors of this fundamental genetic structure remain unclear. Here, we reveal an epigenetic factor that controls R-loop stability. METTL8, a member of the

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