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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: 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: 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: 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: 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: 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: 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: 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: 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: CW0.75
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After you have finished staining and clearing your tissues, you can use ClearWells to mount your tissue for imaging. ClearWells come in three different thicknesses and naturally adhere to glass microscope slides....
Reference: CW1.75
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After you have finished staining and clearing your tissues, you can use ClearWells to mount your tissue for imaging. ClearWells come in three different thicknesses and naturally adhere to glass microscope slides....
Reference: CW3.5
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After you have finished staining and clearing your tissues, you can use ClearWells to mount your tissue for imaging. ClearWells come in three different thicknesses and naturally adhere to glass microscope slides....
Reference: CW7
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After you have finished staining and clearing your tissues, you can use ClearWells to mount your tissue for imaging. ClearWells come in three different thicknesses and naturally adhere to glass microscope slides....
Reference: BSLM-2
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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
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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: 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: BSRC-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-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: BSRC-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: 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: 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: BSRLC-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: 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: 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: 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: 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: 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: 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: 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: 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: 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: 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: 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: 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: 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: 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: 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: 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-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-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-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-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-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: 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: 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: OV-05
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Visikol for Plant Biology is designed as a direct replacement for Hertwig’s solution for use in rendering plant tissues transparent for microscopy. Using Visikol for Plant Biology was previously sold as “Visikol” by...
Reference: OV-15
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Visikol for Plant Biology is designed as a direct replacement for Hertwig’s solution for use in rendering plant tissues transparent for microscopy. Using Visikol for Plant Biology was previously sold as “Visikol” by...
Reference: OV-30
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Visikol for Plant Biology is designed as a direct replacement for Hertwig’s solution for use in rendering plant tissues transparent for microscopy. Using Visikol for Plant Biology was previously sold as “Visikol” by...
Reference: OV-100
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Visikol for Plant Biology is designed as a direct replacement for Hertwig’s solution for use in rendering plant tissues transparent for microscopy. Using Visikol for Plant Biology was previously sold as “Visikol” by...
Reference: VM-15
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Visikol MOUNT is a formulation of Visikol for Plant Biology that is designed to dry in order to form permanent mounts for microscopy slides.
Reference: VM-30
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Visikol MOUNT is a formulation of Visikol for Plant Biology that is designed to dry in order to form permanent mounts for microscopy slides.
Reference: VM-100
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Visikol MOUNT is a formulation of Visikol for Plant Biology that is designed to dry in order to form permanent mounts for microscopy slides.
Reference: H1-30
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: H1-100
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: H2-30
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: H2-100
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HH-10
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HH-30
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HH-100
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HM-30
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HM-100
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HMSK-1
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HSK-1
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With the Visikol HISTO tissue clearing approach you are now able to rapidly and easily image tissues in 3D without damaging the underlying cellular morphology. The Visikol HISTO approach has been designed to pair with...
Reference: HSB-BK
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The Visikol HISTO Buffer Kit comes with all of the buffers required to complete the Visikol HISTO approach: 200 mL of Visikol HISTO Washing Buffer 10X, 100 mL of Visikol HISTO Penetration Buffer, 100 mL of Visikol...
Reference: HSK-AB-30
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The Visikol HISTO Antibody Buffer is used with immunolabeling in the Visikol HISTO tissue labeling approach. This solution is comprised of PBS/0.2% Tween  20/Heparin/3% donkey serum/5% DMSO.
Reference: HSK-AB-100
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The Visikol HISTO Antibody Buffer is used with immunolabeling in the Visikol HISTO tissue labeling approach. This solution is comprised of PBS/0.2% Tween  20/Heparin/3% donkey serum/5% DMSO.
Reference: HSK-BB-30
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The Visikol HISTO Blocking Buffer is used during the Visikol HISTO immunolabeling process. This solution is comprised of PBS/0.2% Tween™20/6% donkey serum/10% DMSO.
Reference: HSK-BB-100
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The Visikol HISTO Blocking Buffer is used during the Visikol HISTO immunolabeling process. This solution is comprised of PBS/0.2% Tween™20/6% donkey serum/10% DMSO.
Reference: HSK-PB-30
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Visikol HISTO Penetration Buffer is used with the Visikol HISTO immunolabeling process and is comprised of PBS / 0.2% Tween™20 / 0.3 M glycine / 20% DMSO.
Reference: HSK-PB-100
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Visikol HISTO Penetration Buffer is used with the Visikol HISTO immunolabeling process and is comprised of PBS / 0.2% Tween™20 / 0.3 M glycine / 20% DMSO.
Reference: HSK-PMB-30
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It is recommend that if you are trying to use Visikol HISTO-1 and Visikol HISTO-2 with larger, more collagenous, and difficult to clear tissues (e.g. liver tissue, archived human tissue, etc.) that you incubate...
Reference: HSK-PMB-100
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It is recommend that if you are trying to use Visikol HISTO-1 and Visikol HISTO-2 with larger, more collagenous, and difficult to clear tissues (e.g. liver tissue, archived human tissue, etc.) that you incubate...
Reference: HSK-WB-70
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The Visikol HISTO Washing Buffer 10X is used for the Visikol HISTO immunolabeling process. This solution is a concentrate and is comprised of: PPBS with 0.2% Tween-20 and 10µg/mL heparin. This solution should be...
Reference: HSK-WB-200
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The Visikol HISTO Washing Buffer 10X is used for the Visikol HISTO immunolabeling process. This solution is a concentrate and is comprised of: PPBS with 0.2% Tween-20 and 10µg/mL heparin. This solution should be...

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