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800 nm NanoSizer MINI STERILE Extruder with 2 syringes and 2 needles (Box of 10)
800 nm NanoSizer MINI STERILE Extruder with 2 syringes and 2 needles (Box of 10)
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Description
NanoSizer STERILE: the world's first sterilized and fully assembled liposome extrusion systems. The fully-assembled feature of these extruders allows researchers to save a significant amount of time of assembly. NanoSizer extruders provide researchers and developers with contamination-free liposome extrusion systems with no need for cleaning harsh biological materials and molecules. The low dead-volume and leak-proof character of these extruders greatly prevent the loss of precious lipid or other nano- or micro- particle solutions. NanoSizerTM Extruders enable rapid extrusion of liposomes, polymerosomes, cell membranes, and colloidal suspensions. NanoSizerTM can be used in general nanoparticle sizing and filtration applications. Each extruder contains a single clean track-etched polycarbonate membrane. A range of pore-sizes is available: 50 nm, 100 nm, 200 nm, 400 nm, 800 nm, 1 µm, 2 µm, 5 µm, 1 µm. All other sizes may be available on request: contact us at info@ttscientific.com.
Advantages
- FAST - Fully Assembled
- EASY - Ready to Use
- CLEAN - Single Use, No Cleaning Required
- CONTAMINATION-FREE - No Batch to Batch Contamination
- CONSISTENT AND REPEATABLE RESULTS -
- Compatible with Optional Heat/Extrusion Block, our patent pending extrusion block allows firmly holding of extruder system in place.
Instructions
Click Here for NanoSizer MINI Instruction.
Click Here for Liposome Preparation Instruction.
Click Here for T&T Collaborative Poster with Malvern Instrument for NanoSizer Characterization.
Video
References
Here are some reference works that have utilized the NanoSizer technology.
Click Here for T&T Collaborative Poster with Malvern Instrument for NanoSizer Characterization.
Neutron diffraction from aligned stacks of lipid bilayers using the WAND instrument
High-Resolution AFM-Based Force Spectroscopy
Microfluidic Generation, Encapsulation and Characterization of Asymmetric Droplet Interface Bilayers
nCVTs: a hybrid smart tumour targeting platform