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Reference: DIV053F1
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The Fluorescent Nanoparticle Reagent for RNA Therapy Delivery is a key tool in RNA-based therapeutics and cellular imaging. With a high transfection efficiency, it allows for the tracking of mRNA delivery in live and...
Reference: DIV053
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Our Nanoparticle Reagent for Precision RNA Therapy Delivery is a cornerstone in gene therapy and molecular biology. It enables efficient mRNA transfection in cells, including primary cultures and organoids....
Reference: DIV031F1
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The Fluorescent Nanoparticle Reagent for Protein Delivery is a breakthrough in protein therapeutics and fluorescence imaging. It ensures effective delivery of protein-loaded nanoemulsions, pivotal for research in...
Reference: DIV031
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Our Nanoparticle Reagent for Protein Targeted Delivery, leveraging lipid nanoemulsions, is a cornerstone in protein cell internalization. Designed for precision biomedicine and therapeutic evaluation, it facilitates...
Reference: DIV042F1
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The Fluorescent Nanoparticle Reagent for Peptide Delivery (anionic and negatively charged) utilizing lipid nanoemulsions, emerges as a key asset in biomolecular engineering and peptide therapeutics. With its high...
Reference: DIV042
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Our Nanoparticle Reagent for Peptide Delivery, based on biocompatible lipids that ensure an efficient interaction with anionic peptides, is essential for advanced peptide therapeutics and for the development of...
Reference: DIV010F1
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The Fluorescent Nanoparticle Reagent for Small Molecule Delivery is a groundbreaking tool in molecular biology and pharmacology. Its utilization of lipid nanoemulsions allows for high fluorescence and non-toxic...
Reference: DIV010
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Our Nanoparticle Reagent for Small Molecule Delivery revolutionizes drug delivery systems, increasing solubility of hydrophobic compounds and catering amphiphilic and hydrophilic drugs.  This lipid nanoparticles...
Reference: DIV000F1
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These fluorescent nanoparticles are designed for efficient cellular uptake, a key aspect in cellular biology and drug delivery research. Ideal for live cell imaging and therapeutic applications, this reagent ensures...
Reference: TF-1157-11-1.5ml
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BPfectin is expressed from - -.
Reference: EXP-711-11-1ml
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293 Expression MAX-1 is expressed from - -.
Reference: SP-16-5plates
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Porath first discovered in 1975 that transition state metal ions immobilized on a substrate can achieve both specific binding effects through coordination with residues such as histidine, cysteine, tryptophan on the...
Reference: SP-16-1plate
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Porath first discovered in 1975 that transition state metal ions immobilized on a substrate can achieve both specific binding effects through coordination with residues such as histidine, cysteine, tryptophan on the...
Reference: FCM-B01M-1plate
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The membrane of this plate has a consistent physical structure with a smooth surface morphology, this makes it ideal for use in bead based assays as the microspheres do not get trapped in the membrane, allowing for...
Reference: SP-11-5plates
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Biotin avidin system (BAS) is a new bioreaction amplification system developed in the late 1970s. With the advent of various biotin derivatives, BAS was soon widely used in various fields of medicine. A large number...
Reference: SP-11-1plate
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Biotin avidin system (BAS) is a new bioreaction amplification system developed in the late 1970s. With the advent of various biotin derivatives, BAS was soon widely used in various fields of medicine. A large number...
Reference: RP-13-5plates
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It's been reported that coronavirus can infect the human respiratory epithelial cells through interaction with the human ACE2 receptor. The spike protein is a large type I transmembrane protein containing two...
Reference: RP-13-1plate
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It's been reported that coronavirus can infect the human respiratory epithelial cells through interaction with the human ACE2 receptor. The spike protein is a large type I transmembrane protein containing two...
Reference: LJU-CIN-50
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Actiflash is a photo-inducible tamoxifen analogue. Upon UV-light irradiation, the compound activates your chosen ERT2 protein fusion. It can be used to control transcription (using Gal4-UAS) or induce recombination...
Reference: LJU-CIN-5
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Actiflash is a photo-inducible tamoxifen analogue. Upon UV-light irradiation, the compound activates your chosen ERT2 protein fusion. It can be used to control transcription (using Gal4-UAS) or induce recombination...
Reference: C-21080
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Serum-free and BPE-free cell culture medium for an optimal and standardized culture of human bronchial epithelial cells at the air-liquid interface (ALI).
Reference: SI-5000
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Harnessing the same gentle reliability as our market-leading DNA Transfection Reagents, we are proud to introduce to you FuGENE® SI, an innovative RNA Transfection reagent engineered for the delivery of siRNA. FuGENE®...
Reference: SI-1000
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Harnessing the same gentle reliability as our market-leading DNA Transfection Reagents, we are proud to introduce to you FuGENE® SI, an innovative RNA Transfection reagent engineered for the delivery of siRNA. FuGENE®...
Reference: F6-5000
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FuGENE® 6 is a multi-component lipid-based transfection reagent that allows for the efficient delivery of all sizes of DNA into a broad range of cell types with extremely low cytotoxicity. FuGENE® 6 saves time and...
Reference: F6-1000
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FuGENE® 6 is a multi-component lipid-based transfection reagent that allows for the efficient delivery of all sizes of DNA into a broad range of cell types with extremely low cytotoxicity. FuGENE® 6 saves time and...
Reference: HD-5000
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FuGENE® HD is a 100% synthetic, multi-component, non-liposomal transfection reagent designed for the delivery of DNA into more challenging eukaryotic and insect cell lines.  FuGENE® HD interacts with nucleic acids &...
Reference: HD-1000
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FuGENE® HD is a 100% synthetic, multi-component, non-liposomal transfection reagent designed for the delivery of DNA into more challenging eukaryotic and insect cell lines.  FuGENE® HD interacts with nucleic acids &...
Reference: 4K-5000
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FuGENE® 4K is our newest and most advanced, 100% synthetic, multi-component transfection reagent designed for the delivery of DNA into both challenging and routine mammalian cell lines.  FuGENE® 4K was developed to...
Reference: 4K-1000
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FuGENE® 4K is our newest and most advanced, 100% synthetic, multi-component transfection reagent designed for the delivery of DNA into both challenging and routine mammalian cell lines.  FuGENE® 4K was developed to...
Reference: 221-40FIK
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Explore a range of functionalised PeptiInks® that provides biochemical cues to investigate response of cells in the 3D environment. Our functional kits are supplied with each of the following: PeptiInk® Alpha...
Reference: 221-00SIP
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Explore a range of PeptiGels® to investigate response of cells in the 3D environment. Our starter packs kits are supplied with the following: PeptiInk Alpha-4, PeptiInk Alpha-4 PLUS, 1x 250 uL Positive Displacement...
Reference: 2001
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A standard ink with one bespoke change.
Reference: 21414
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This is a combined functionalised ink containing the fibronectin sequence RGD, and the collagen sequence GFOGER.
Reference: 2140
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PeptiInks® are ready-to-use fully synthetic self-assembling peptide hydrogels that are biologically relevant and formulated to meet your cells’ needs. Our PeptiInks® are shear thinning and can be used for 3D...
Reference: 1003
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Fully Bespoke Product e.g. Fluorescently Labelled, Composite Materials
Reference: 1001
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A standard gel with one bespoke Gamma, functionalisation(RGD, GFOGER, YIGSR, IKVAV) or Delta 5. Examples Alpha-2 IKVAV, Gamma-1.
Reference: PHA-H
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Phytohemagglutinin M (PHA-M) for Lymphocyte Stimulation is a mitogen used for the stimulation of cell proliferation in lymphocyte cell cultures. It also has a powerful erythroagglutinating property.
Reference: PHA-K
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Phytohemagglutinin (PHA-M) is a mitogen used for the stimulation of cell proliferation in lymphocyte cell cultures. It also has a powerful erythroagglutinating property.
Reference: BSRPS-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRPC-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: TS-6S-1
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-4S-1
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-6R-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-25-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-20-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-15-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: TS-10-2
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Our 3D printed tissue slicers allows you to easily cut a tissue into smaller pieces for easier imaging with objectives that have a limited working distance. These tissue slicers are 3D printed out of PLA and can be...
Reference: BSPC-2
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Our 3D printed piglet brain slicer allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. This piglet brain slicer is 3D printed out of PLA and...
Reference: BSRBS-2
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Our 3D printed rabbit brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rabbit brain slicers are 3D printed out of PLA...
Reference: BSRBC-2
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Our 3D printed rabbit brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rabbit brain slicers are 3D printed out of PLA...
Reference: BSFS-2
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Our 3D printed ferret brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These ferret brain slicers are 3D printed out of PLA...
Reference: BSFC-2
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Our 3D printed ferret brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These ferret brain slicers are 3D printed out of PLA...
Reference: BSGPS-2
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Our 3D printed guinea pig brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These guinea pig brain slicers are 3D printed out...
Reference: BSGPC-2
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Our 3D printed guinea pig brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These guinea pig brain slicers are 3D printed out...
Reference: BSGS-2
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Our 3D printed gerbil brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These gerbil brain slicers are 3D printed out of PLA...
Reference: BSGC-2
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Our 3D printed gerbil brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These gerbil brain slicers are 3D printed out of PLA...
Reference: BSRH-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRH-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLD-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLD-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLS-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLC-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLC-2
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRLS-1
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRS-2
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Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRC-2
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRS-1
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSRC-1
€0.00 (tax incl.)
Our 3D printed rat brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These rat brain slicers are 3D printed out of PLA and can...
Reference: BSLS-1
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Our 3D printed mouse brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These mouse brain slicers are 3D printed out of PLA and...
Reference: BSLC-1
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Our 3D printed mouse brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These mouse brain slicers are 3D printed out of PLA and...
Reference: BSLM-1
€0.00 (tax incl.)
Our 3D printed mouse brain slicers allows you to easily cut a brain into smaller pieces for easier imaging with objectives that have a limited working distance. These mouse brain slicers are 3D printed out of PLA and...

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