66 Results for: "Dialysis Membranes"
Biotech Cellulose Ester Dialysis Membrane Tubing Trial Kits
Supplier: Spectrum Laboratories
Ideal for small volume dialysis or evaluation of membrane for an application, biotech grade Cellulose Ester (CE) tubing is now available in 1 m length trial kits with a pair of tubing closures.
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Spectra/Por® 1 Dialysis Membranes, MWCO 6000 to 8000, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Standard Regenerated Cellulose (RC) is composed of natural cellulose regenerated from cotton linters, therefore these membranes are perfectly suited for a broad range of laboratory dialysis.
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Spectra/Por® 2 Dialysis Membranes, MWCO 12000 to 14000, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Standard Regenerated Cellulose (RC) is composed of natural cellulose regenerated from cotton linters, therefore these membranes are perfectly suited for a broad range of laboratory dialysis.
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Spectra/Por® 3 Dialysis Membranes, MWCO 3500, Spectrum® Laboratories
Supplier: Spectrum Laboratories
For dialysis and ultrafiltration in biochemical work.
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Spectra/Por® 7 Dialysis Membranes, MWCO 1000 to 50000
Supplier: Spectrum Laboratories
Free of trace metal and sulfur for separations involving a possible sensitivity to such materials.
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Spectra/Por® 6 Dialysis Membranes, MWCO 1000 to 50000, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Available in wet form in 0.05% sodium azide as a preservative only.
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Spectra/Por® Biotech Cellulose Ester Dialysis Membranes, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Biologically inert and ultra-pure, Biotech Cellulose Ester (CE) Membrane offers the largest range of concise MWCO's (100 to 1000000 Daltons) for desalting, isolating ionic species and macromolecular purifications.
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Spectra/Por® 1-5 Standard RC Dry Dialysis Trial Kits, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Ideal for small volume dialysis or evaluation of membrane for an application, multi-purpose standard Regenerated Cellulose (RC) tubing is now available in 1 and 5 m length trial kits with a pair of tubing closures.
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Spectra/Por® 4, Dialysis Membranes, MWCO 12000 to 14000, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Multipurpose dialysis tubing is ideal for general dialysis for a variety of applications and volumes.
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Spectra/Por® Closures for Dialysis Membrane Tubing, Spectrum® Laboratories
Supplier: Spectrum Laboratories
These are used in combination with a standard closure for a vertical use of the dialysis tubing and a magnetic stirrer for continuous stirring of the tubing.
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Spectra/Por® Biotech Regenerated Cellulose Dialysis Tubing, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Biotech RC is crafted from a regeneration process that yields superior temperature tolerances and chemical compatibilities with the same high purity and selectivity as Biotech CE.
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Protein Concentrator Powder, G-Biosciences
Supplier: G-Biosciences
Concentrator Powder is a high molecular weight polymer which will not migrate across the dialysis membrane
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Spectra/Por® 5, Dialysis Tubing, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Standard Grade Regenerated Cellulose membrane tubing for applications with significant size difference between MW species being separated.
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DIALYZER-Enhance™ Dialysis Enhancer, G-Biosciences
Supplier: G-Biosciences
Dialysis is the process of separating molecules in solution by the difference in their rates of diffusion through a semi permeable membrane, such as dialysis tubing or Tube-O-DIALYZER™ dialysis caps.
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Mini Dialysis Kit, Cytiva
Supplier: Cytiva
The disposable tubes in mini dialysis kit offer a simple solution to the handling problems of small volume dialysis. The dialysis tubes in the kit each have a cap that incorporates a small disk of dialysis membrane.
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Spectra/Por Regenerated Cellulose Dialysis Discs and Sheets, Spectrum Laboratories
Supplier: Spectrum Laboratories
Pre-cut single layer membrane discs and sheets for a variety of dialysis equipment.
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Pierce™ Rapid Equilbrium Dialysis (RED) Device
Supplier: Thermo Scientific
Single-Use RED (rapid equilibrium dialysis) Plate is composed of disposable high-density polypropylene and is pre-loaded with 48 equilibrium dialysis membrane inserts. Each insert is comprised of two side-by-side chambers separated by an O-ring-sealed vertical cylinder of dialysis membrane with varying molecular-weight cutoffs (8 or 12 kD MWCO).
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Pierce™ 96-well Microdialysis Plates, Thermo Scientific
Supplier: Thermo Scientific
Convenient and rapid dialysis system for 1 to 96 small samples.
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Pierce™ Slide-A-Lyzer® Dialysis Cassettes, Thermo Scientific
Supplier: Thermo Scientific
For sample dialysis, low molecular weight contaminant removal, buffer exchange, desalting, equilibrium dialysis, and concentration. This type of membrane is compatible with a number of common chemicals and buffers. The colour-coded transparent frames of the Slide-A-Lyzer® cassette allow instant recognition of the MWCO of the membrane and make viewing the needle easier during sample injection.
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Lab 1: Diffusion and Osmosis
Supplier: Edvotek
The selective permeability of membranes is of fundamental importance to cellular physiology. Students will perform experimental procedures involving diffusion, dialysis, water potential and osmotic potential. For 10 lab groups.
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Octyl-β-D-thioglucopyranoside ≥98% (by HPLC)
Supplier: Enzo Life Sciences
OTG is a nonionic detergent that may be used to isolate membrane proteins from E. coli without inactivation. Stable in aqueous solution and easily removed by dialysis.
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D-Tube™ and D-Tube96™ Dialyzers, MilliporeSigma
Supplier: MilliporeSigma
D-Tube Dialyzers are easy to handle tubes with dual membranes providing a large surface area for fast, efficient dialysis and electroelution of proteins, RNA, DNA, and oligonucleotides from polyacrylamide or agarose gels.
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Spectra/Por® Float-A-Lyzer G2 Dialysis Devices, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Spectrum introduces the Spectra/Por® Float-A-Lyzer® G2, the next generation in Ready-to-Use laboratory dialysis devices featuring proprietary Ultra-pure Biotech Cellulose Ester (CE) Membrane.
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Spectra/Por® Micro Float-A-Lyzer Dialysis Devices, Spectrum® Laboratories
Supplier: Spectrum Laboratories
Spectrum introduces the new Micro Float-A-Lyzer® to expand our popular line of ready-to-use dialysis devices for the easy and efficient dialysis of very small sample volumes (100 to 500 µl).
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3-[(3-Cholamidopropyl)dimethylammonio]-1-propane sulphate (CHAPS)
Supplier: ABCAM INC CA
Zwitterionic non-denaturing detergent that protects the native state of proteins, able to disrupt non-specific protein interactions and has less protein aggregation than non-ionic detergents. It is electrically neutral and easily removed by dialysis. Often used in the solubilization and purification of membrane proteins.
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CELLine™ Bioreactor Flasks, Wheaton
Supplier: DWK Life Sciences (KIMBLE)
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
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
Expand 3 Items
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
Expand 3 Items
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