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Merck

F7552

Sigma-Aldrich

Nunc® EasYFlasks, Nunclon® Δ Surface

Nunclon® Δ surface treatment, 75 cm2 angled neck, filter cap, 100/cs

Synonym(e):

cell culture flask, tissue culture flask, tissue culture treated flask

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About This Item

UNSPSC-Code:
41122104
NACRES:
NB.22

Materialien

canted neck transparent polystyrene flask
screw top blue high-density polyethylene cap (filter)

Sterilität

sterile; γ-irradiated

Leistungsmerkmale

with cap

Verpackung

case of 100 ea (20 packs x 5 flasks)

Hersteller/Markenname

Nunc 156499

Kolbenarbeitsvolumen

25 mL

Oberflächenbereich

75 cm2

Fitting

33 mm cap

Bindungsart

Nunclon Delta surface

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Allgemeine Beschreibung

Nunc® EasYFlasks, Nunclon® Δ Surface

  • Nunclon® Δ certified: a proprietary cell culture surface treatment that offers maximum adhesion for a broad range of cell types. The ergonomic design with angled neck and wide opening allows easy access to the growth surface by pipettes or cell scrapers.
  • Ergonomic design with a 1/3 turn to open, close or vent
  • Low profile to maximize incubator space
  • Volume graduations printed and molded on both sides
  • Slightly angled side walls for complete viewing under a microscope
  • Sterilized by gamma irradiation and certified to be nonpyrogenic
  • Nunclon Delta Certification, including testing on four different cell types, provided in each case
  • Vent/close caps feature a “Y” mark that allows visual verification of vent position.
  • Vent position easily distinguished even when flasks are stacked in incubators.
  • Filter membrane provides effective barrier against micro-organisms.
  • Well-defined, hydrophobic filter membrane offers continuous venting with consistent gas exchange and no lot-to-lot variation.
  • Chemically robust membrane meets USP class VI standards and is produced without animal-derived substances.

Rechtliche Hinweise

EasYFlasks is a trademark of Thermo Fisher Scientific or its subsidiaries
Nunc is a registered trademark of Thermo Fisher Scientific or its subsidiaries
Nunclon is a registered trademark of Thermo Fisher Scientific or its subsidiaries

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V van Duinen et al.
Angiogenesis, 22(1), 157-165 (2018-09-02)
Angiogenic sprouting, the growth of new blood vessels from pre-existing vessels, is orchestrated by cues from within the cellular microenvironment, such as biochemical gradients and perfusion. However, many of these cues are missing in current in vitro models of angiogenic
Laura Ruiz-Cantu et al.
Materials science & engineering. C, Materials for biological applications, 109, 110578-110578 (2020-04-02)
The current gold standard for nasal reconstruction after rhinectomy or severe trauma includes transposition of autologous cartilage grafts in conjunction with coverage using an autologous skin flap. Harvesting autologous cartilage requires a major additional procedure that may create donor site
Pengzhen Wang et al.
The Knee, 27(1), 18-25 (2019-12-31)
Articular cartilage is a unique avascular tissue in which chondrocytes are embedded in extracellular matrix (ECM). The decreased ECM resulting from the loss of articular chondrocyte viability leads to degenerative diseases such as osteoarthritis (OA). This study aims to investigate
V van Duinen et al.
Scientific reports, 7(1), 18071-18071 (2017-12-24)
Current in vitro models to test the barrier function of vasculature are based on flat, two-dimensional monolayers. These monolayers do not have the tubular morphology of vasculature found in vivo and lack important environmental cues from the cellular microenvironment, such

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