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UFC40GV0S

Millipore

Ultrafree® Centrifugal Filter, 2 mL Sample Volume

pore size 0.22 μm, PVDF membrane (hydrophilic), sterile

Synonym(s):

Centrifuge filter

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About This Item

UNSPSC Code:
41104916
eCl@ss:
36100101
NACRES:
NB.24

material

PVDF membrane (hydrophilic)
polypropylene

sterility

sterile

feature

holdup volume 10 μL

manufacturer/tradename

Ultrafree®

parameter

2 mL sample volume
50 °C max. temp.

technique(s)

protein extraction: suitable
protein purification: suitable

L

77 mm

diam.

16.3 mm

filtration area

0.8 cm2

matrix

Durapore®

pore size

0.22 μm pore size

application(s)

sample preparation

shipped in

ambient

General description

Filter Type: Microfiltration
Ultrafree®-MC (0.5 mL) and Ultrafree-CL (2 mL) centrifugal devices are single-use, disposable filters used for removing particulates from aqueous biological solutions. These devices are available in two processing volumes with a range of microporous membranes (from 0.1 to 5.0 µm) for fast filtration and highly reproducible performance. Pre-sterilized units are also available. Use in fixed-angle rotors for 1.5 mL tubes (-MC) and 15 mL tubes (–CL).


•Five different pore sizes from 0.1 to 5.0 µm
•Pre-sterilized units also available
•Fast filtration and highly reproducible performance
•Use in fixed-angle rotors for 1.5 mL tubes

Applications
•Removal of particles and precipitates from aqueous and some solvent-based samples
•Ideal for use with protein and nucleic acid solutions

Application

0.22 µm pore size, hydrophilic PVDF, 2 mL volume, sterile
Fixed-angle rotor (15 mL) w/maximum 5,000 x g

Physical form

Color Code: Yellow

Legal Information

Durapore is a registered trademark of Merck KGaA, Darmstadt, Germany
Ultrafree is a registered trademark of Merck KGaA, Darmstadt, Germany

Certificates of Analysis (COA)

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Lu Sun et al.
Cell reports, 30(1), 257-268 (2020-01-09)
In preparation for transcription, the chromatin remodeler SWR installs homotypic ZZ nucleosomes at promoters by replacing the two nucleosomal H2A with H2A.Z in a stepwise manner. Nucleosome-free regions (NFRs) help recruit SWR to promoters; this is thought to position SWR

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