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82 results for "Dialysis Membranes"

82 Results for: "Dialysis Membranes"

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CELLine™ Bioreactor Flasks, Wheaton

CELLine™ Bioreactor Flasks, Wheaton

Supplier: DWK Life Sciences

Wheaton manufactures a new line of high density cell culture membrane flasks for antibody and protein production. CELLine works well with secreting cell lines such as Hybridoma, CHO, NS0, SF, HEK, and BHK cells. Conventional in vivo or in vitro cell culture methods can be laborious, low density and require significant purification. CELLine dual compartment flasks separate the cell compartment from the bulk media compartment with a 10 kD MWCO dialysis membrane. This allows for longer run times, high density cultures, and a super concentrated harvest. The CELLine flasks were designed to address three areas of limitation:

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AASTY 6-55

AASTY 6-55

Supplier: Cube Biotech

AASTYs (Acrylic acid-co-styrenes) - like AASTY 6-55 - are highly-alternating copolymers, well-suited for generating native lipid nanodiscs. They are a 2022 novel developed series for membrane protein solubilization & stabilization. AASTY 6-55 gets its name from its molecular weight and Acrylic Acid : Styrene Ratio. These varying ratios of acrylic acid to styrene contribute to the hydrophilic properties of our AASTYs. In general, lighter AASTYs, like 6-55 tend to be more aggressive, while heavier AASTYs, such as 11-45 show higher thermodynamic stability.

The exact composition of AASTY copolymers shows different extraction efficiency, depending on the lipid composition of the lipid bilayers being formulated into nanodiscs. As AASTY is made by controlled radical polymerization techniques, the dispersity of polymer molecular weight distribution is low, and the molecular weights are controlled. This means that excess AASTY copolymer can be removed by dialysis after nanodisc formation. Based on previous findings on SMA, it is the expectation that AASTY of different molecular weights will display different rates of nanodisc formation, extraction efficacy, and stability of resulting nanodiscs.

Every membrane protein solubilization needs to undergo a screening process before. The characteristic phospholipid environment surrounding the different membrane proteins in question performs differently well with each polymer. To support you in this process, we offer a handy Screening Kit for AASTYs to test them all. Additionally, we recommend the two following publications if you would like to get further information: Smith et al. 2020 & Timcenko et al. 2022

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AASTY 11-55

Supplier: Cube Biotech

AASTYs (Acrylic acid-co-styrenes) - like AASTY 11-55 - are highly alternating copolymers, well-suited for generating native lipid nanodiscs. They are a 2022 novel developed series for membrane protein solubilization & stabilization. AASTY 11-55 is named from its molecular weight and Acrylic Acid : Styrene Ratio. These varying ratios of acrylic acid to styrene contribute to the hydrophilic properties of our AASTYs. In general lighter AASTYs, like 6-45 tend to be more aggressive, while heavier AASTYs, such as 11-55 show higher thermodynamic stability.

The exact composition of AASTY copolymers shows different extraction efficiencies, depending on the lipid composition of the lipid bilayers being formulated into nanodiscs. As AASTY is made by controlled radical polymerization techniques, the dispersity of polymer molecular weight distribution is low, and the molecular weights are controlled. This means that excess AASTY copolymer can be removed by dialysis after nanodisc formation. Based on previous findings on SMA, it is the expectation that AASTY of different molecular weights will display different rates of nanodisc formation, extraction efficacy, and stability of resulting nanodiscs.

Every membrane protein solubilization needs to undergo a screening process before. The characteristic phospholipid environment surrounding the different membrane proteins in question performs differently well with each polymer. To support you in this process we offer a handy Screening Kit for AASTYs to test them all. Additionally, we recommend the two following publications if you would like to get further information: Smith et al. 2020 & Timcenko et al. 2022

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AASTY 6-45

AASTY 6-45

Supplier: Cube Biotech

AASTYs (Acrylic acid-co-styrenes) - like AASTY 6-45 - are highly alternating copolymers, well-suited for generating native lipid nanodiscs. They are a 2022 novel developed series for membrane protein solubilization & stabilization. AASTY 6-45 gets it's name from its molecular weight and Acrylic Acid : Styrene Ratio. These varying ratios of acrylic acid to styrene contribute to the hydrophilic properties of our AASTYs. In general lighter AASTYs, like 6-45 tend to be more aggressive, while heavier AASTYs, such as 11-45 show higher thermodynamic stability.

The exact composition of AASTY copolymers shows different extraction efficiency, depending on the lipid composition of the lipid bilayers being formulated into nanodiscs. As AASTY is made by controlled radical polymerization techniques, the dispersity of polymer molecular weight distribution is low, and the molecular weights are controlled. This means that excess AASTY copolymer can be removed by dialysis after nanodisc formation. Based on previous findings on SMA, it is the expectation that AASTY of different molecular weights will display different rates of nanodisc formation, extraction efficacy, and stability of resulting nanodiscs.

Every membrane protein solubilization needs to undergo a screening process before. The characteristic phospholipid environment surrounding the different membrane proteins in question performs differently well with each polymer. To support you in this process we offer a handy Screening Kit for AASTYs to test them all. Additionally, we recommend the two following publications if you would like to get further information: Smith et al. 2020 & Timcenko et al. 2022

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AASTY 6-50

Supplier: Cube Biotech

AASTYs (Acrylic acid-co-styrenes) - like AASTY 6-50 - are highly-alternating copolymers, well-suited for the generation of native lipid nanodiscs. They are a 2022 novel developed series for membrane protein solubilization & stabilization. AASTY 6-50 gets its name from its molecular weight and Acrylic Acid : Styrene Ratio. These varying ratios of acrylic acid to styrene contribute to the hydrophilic properties of our AASTYs. In general lighter AASTYs, like 6-50 tend to be more aggressive, while heavier AASTYs, such as 11-45 show higher thermodynamic stability.

The exact composition of AASTY copolymers shows different extraction efficiency, depending on the lipid composition of the lipid bilayers being formulated into nanodiscs. As AASTY is made using controlled radical polymerization techniques, the dispersity of polymer molecular weight distribution is low, and the molecular weights are controlled. This means that excess AASTY copolymer can be removed by dialysis after nanodisc formation. Based on previous findings on SMA, it is the expectation that AASTY of different molecular weights will display different rates of nanodisc formation, extraction efficacy, and stability of resulting nanodiscs.

Every membrane protein solubilization needs to undergo a screening process before. The characteristic phospholipid environment surrounding the different membrane proteins in question performs differently well with each polymer. To support you in this process we offer a handy Screening Kit for AASTYs to test them all. Additionally, we recommend the two following publications if you would like to get further information: Smith et al. 2020 & Timcenko et al. 2022

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AASTY 11-45

Supplier: Cube Biotech

AASTYs (Acrylic acid-co-styrenes) - like AASTY 11-45 - are highly alternating copolymers, well-suited for the generation of native lipid nanodiscs. They are a 2022 novel developed series for membrane protein solubilization & stabilization. AASTY 11-45 gets its name from its molecular weight and Acrylic Acid : Styrene Ratio. These varying ratios of acrylic acid to styrene contribute to the hydrophilic properties of our AASTYs. In general lighter AASTYs, like 6-45 tend to be more aggressive, while heavier AASTYs, such as 11-45 show higher thermodynamic stability.

The exact composition of AASTY copolymers shows different extraction efficiency, depending on the lipid composition of the lipid bilayers being formulated into nanodiscs. As AASTY is made by controlled radical polymerization techniques, the dispersity of polymer molecular weight distribution is low, and the molecular weights are controlled. This means that excess AASTY copolymer can be removed by dialysis after nanodisc formation. Based on previous findings on SMA, it is the expectation that AASTY of different molecular weights will display different rates of nanodisc formation, extraction efficacy, and stability of resulting nanodiscs.

Every membrane protein solubilization needs to undergo a screening process before. The characteristic phospholipid environment surrounding the different membrane proteins in question performs differently well with each polymer. To support you in this process, we offer a handy Screening Kit for AASTYs to test them all. Additionally, we recommend the two following publications if you would like to get further information: Smith et al. 2020 & Timcenko et al. 2022

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Ward's Dialysis Tubings

Supplier: VISKASE COMPANIES, INC.

Semi-permeable membrane, perfect for osmosis and diffusion projects.

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Innovating Science® Dialysis Tubings

Innovating Science® Dialysis Tubings

Supplier: Ward's Science

The semi-permeable membrane, created from a natural source of cellulose, allows passage of particles up to 14000 Da.

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HTD Equilibrium Dialysis Device

HTD Equilibrium Dialysis Device

Supplier: HTDIALYSIS LLC MS

HTD reusable equilibrium dialysis device combines industry-leading accuracy and precision with an automation compatible design for a cost efficient, scalable solution.

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DIALYSIS MEMBRANE 5 PREP CE

Supplier: Bio-Rad

DIALYSIS MEMBRANE 5 PREP CE

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MEMBRANE STRIP DIALYSIS MWCO 12-14K PK50

Supplier: HTDIALYSIS LLC MS

MEMBRANE STRIP DIALYSIS MWCO 12-14K PK50

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Ward's® Dialysis Tubing

Supplier: TONAWANDA MANUFACTURING

Molecular weight cutoffs of 3.5, 7 and 14 kDa.

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Pierce™ Slide-A-Lyzer™ Dialysis Flasks, Thermo Scientific

Pierce™ Slide-A-Lyzer™ Dialysis Flasks, Thermo Scientific

Supplier: Invitrogen

Pierce™ Slide-A-Lyzer™ Dialysis Flasks facilitate simple and effective removal of buffer salts and small contaminants from proteins and other macromolecules in sample volumes up to 250 ml.

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Spectra/Por® Dialysis Tubing, Regenerated Cellulose, MWCO 12000 to 14000, Spectrum® Laboratories

Spectra/Por® Dialysis Tubing, Regenerated Cellulose, MWCO 12000 to 14000, Spectrum® Laboratories

Supplier: Spectrum Laboratories

Standard dialysis tubing for all laboratory dialysis applications.

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Slide-A-Lyzer® MINI Dialysis Device Floats, Thermo Scientific

Slide-A-Lyzer® MINI Dialysis Device Floats, Thermo Scientific

Supplier: Invitrogen

The Slide-A-Lyzer® MINI Dialysis Device Floats are low-density polyethylene rafts designed to securely hold up to 25 Slide-A-Lyzer® MINI Dialysis Devices to permit array dialysis.

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Tube-O-DIALYZER™ Micro Dialysis System, G-Biosciences

Tube-O-DIALYZER™ Micro Dialysis System, G-Biosciences

Supplier: G-Biosciences

Small sample dialysis has become a routine and popular technique in life science research.

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MEGA FlexTubes, IBI Scientific

MEGA FlexTubes, IBI Scientific

Supplier: IBI Scientific

IBI MEGA FlexTubes are typically used for dialysis or buffer exchange with volumes of 3 to 20 ml.

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Spectra/Por®, Dialysis Tubing, Spectrum® Laboratories

Spectra/Por®, Dialysis Tubing, Spectrum® Laboratories

Supplier: Spectrum Laboratories

The dialysis tubing is sealed at one end with a closure and open at the other.

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Protein Concentrator Solution, G-Biosciences

Supplier: G-Biosciences

Concentrator Solution is a novel liquid polymer for the rapid concentration of dilute protein solutions with zero loss, using dialysis

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Spectra/Por® Weighted Closures, Spectrum® Laboratories

Spectra/Por® Weighted Closures, Spectrum® Laboratories

Supplier: Spectrum Laboratories

Pressure-fitted with an acid-washed, stainless steel bar into the reverse side

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Spectra/Por® Magnetic Weighted Closures, Spectrum® Laboratories

Spectra/Por® Magnetic Weighted Closures, Spectrum® Laboratories

Supplier: Spectrum Laboratories

Closures feature imbedded fluoropolymer resin-coated magnetic weights

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Spectra/Por® in vivo Micro-Dialysis Hollow Fibers, Spectrum® Laboratories

Spectra/Por® in vivo Micro-Dialysis Hollow Fibers, Spectrum® Laboratories

Supplier: Spectrum Laboratories

The implantation of individual micro-dialysis hollow fibers is an ideal step in the recovery or introduction of micro-quantity biologicals or pharmaceutical materials in a localized tissue environment.

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Pierce™ 96-well Microdialysis Plates, Thermo Scientific

Pierce™ 96-well Microdialysis Plates, Thermo Scientific

Supplier: Invitrogen

Convenient and rapid dialysis system for 1 to 96 small samples.

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Genomic Tube-O-DIALYZER™ for Rapid Clean Up of Genomic DNA, G-Biosciences

Genomic Tube-O-DIALYZER™ for Rapid Clean Up of Genomic DNA, G-Biosciences

Supplier: G-Biosciences

G-Biosciences' Genomic Tube-O-DIALYZER™ allows for rapid dialysis of small genomic DNA samples (>100kb) to remove small fragment DNA, salts, RNA and other contaminants with minimal hands-on manipulation

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Spectra/Por® Universal Closures, Spectrum® Laboratories

Spectra/Por® Universal Closures, Spectrum® Laboratories

Supplier: Spectrum Laboratories

Nylon closures lock gently over rigid membranes such as cellulose ester (CE) and polyvinylidene fluoride (type F) tubing, providing a strong, leakproof seal

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MINI Flextubes, IBI Scientific

MINI Flextubes, IBI Scientific

Supplier: IBI Scientific

IBI MINI FlexTubes are typically used for the extraction of proteins, RNA, DNA, or oligonucleotides (>20 nt) from polyacrylamide, agarose, or any other gel matrix in a running buffer.

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MIDI FlexTubes, IBI Scientific

MIDI FlexTubes, IBI Scientific

Supplier: IBI Scientific

IBI MIDI FlexTubes are typically used for the extraction of proteins, RNA, DNA, or oligonucleotides (>20 nt) from polyacrylamide, agarose, or any other gel matrix in a running buffer.

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MAXI FlexTubes, IBI Scientific

MAXI FlexTubes, IBI Scientific

Supplier: IBI Scientific

IBI MAXI FlexTubes are typically used for the extraction of proteins, RNA, DNA, or oligonucleotides (>20 nt) from polyacrylamide, agarose, or any other gel matrix in a running buffer.

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Loading Pipette Tips for DispoEquilibrium Dialyzer, Harvard Apparatus

Supplier: Harvard Apparatus

The QuikPrep® DispoEquilibrium Dialyzer™ made of inert PTFE is suitable for binding and interaction studies. It allows maximum sample retention.This is useful for studies which use radiolabeled compounds.

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miniPERM® Bioreactors

miniPERM® Bioreactors

Supplier: SARSTEDT INC

To keep cells happy, the selection of a suitable cultivation surface is essential. SARSTEDT offers a wide range of cell culture labware and accessories for many applications.

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