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Merck
CN

EP5242957000

Eppendorf® Femtotip II

sterile injection capillary, 0.5um inner and 0.7um outer diameter, pkg of 20 ea

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UNSPSC Code:
41121600
Feature:
0.5um inner and 0.7um outer diameter
sterile injection capillary
Packaging:
pkg of 20 ea
Manufacturer/tradename:
Eppendorf® 5242957000
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产品名称

Eppendorf® Femtotip II, sterile injection capillary, 0.5um inner and 0.7um outer diameter, pkg of 20 ea

feature

0.5um inner and 0.7um outer diameter
sterile injection capillary

packaging

pkg of 20 ea

manufacturer/tradename

Eppendorf® 5242957000

Application

Eppendorf® Femtotip II is suitable:

  • for constitutive trim-away in mouse oocytes and pre-implantation embryos
  • to backfill a micropipet for generating and monitoring exogenously applied chemoattractant
  • to use as a microinjection needle to load the DNA injection solution

General description

Femtotip II is highly suitable for filling microcapillaries that are used in microinjection procedures. These tips are designed to be long, fine, and flexible, making them the perfect solution for applications requiring extended reach and precise pipetting of very small volumes.

Legal Information

Eppendorf is a registered trademark of Eppendorf AG

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Xuehua Xu et al.
Methods in molecular biology (Clifton, N.J.), 346, 281-296 (2006-09-08)
The mechanisms that mediate how migratory eukaryotic cells amplify a shallow, extracellular chemoattractant gradient into a steep intracellular gradient of signaling components to guide chemotaxis remains unknown. To unravel these mechanisms, it is essential to quantitatively measure the spatiotemporal patterns
Dean Clift et al.
Nature protocols, 13(10), 2149-2175 (2018-09-27)
Protein depletion is a key approach to understanding the functions of a protein in a biological system. We recently developed the Trim-Away approach in order to rapidly degrade endogenous proteins without prior modification. Trim-Away is based on the ubiquitin ligase
Mat Yunus Abdul Masani et al.
PloS one, 9(5), e96831-e96831 (2014-05-14)
Genetic engineering remains a major challenge in oil palm (Elaeis guineensis) because particle bombardment and Agrobacterium-mediated transformation are laborious and/or inefficient in this species, often producing chimeric plants and escapes. Protoplasts are beneficial as a starting material for genetic engineering

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