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100 nm NanoSizer MINI STERILE Extruder with 2 syringes and 2 needles (Box of 10)

100 nm NanoSizer MINI STERILE Extruder with 2 syringes and 2 needles (Box of 10)

Regular price $199.00
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Title
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 liposomespolymerosomescell 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.

T&T NanoSizer Lipid and Liposome Extruder

Compare T&T NanoSizer Lipid and Liposome Extruder

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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

Tuning the photocurrent generations from photosystem I assembled in tailored biotic–abiotic interfaces

Microenvironment alterations enhance photocurrents from photosystem I confined in supported lipid bilayers

High-Resolution AFM-Based Force Spectroscopy

Capacitive Detection of Low-Enthalpy, Higher-Order Phase Transitions in Synthetic and Natural Composition Lipid Membranes

Microfluidic Generation, Encapsulation and Characterization of Asymmetric Droplet Interface Bilayers

nCVTs: a hybrid smart tumour targeting platform

Molecular mechanism of activation of class IA phosphoinositide 3-kinases (PI3Ks) by membrane-localized HRas

 

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