FG beads® Nanomagnetic Particles
Tamagawa SeikiFG beads are magnetic nanoparticles, suitable for various applications. There are many kinds, which have different functional groups and pre-immobilized proteins.
Life sciences encompass a diverse range of scientific disciplines focused on the study of living organisms and their interactions with the environment. From basic life sciences (such as cell biology, genetics, immunology, and microbiology) to applied life sciences (such as disease research, multi-omics, and biotechnology), this broad field explores the fundamental processes of life and drives advancements in disease research, patient care, and our overall understanding of living organisms. Discover the endless possibilities of life sciences and their impact on shaping a healthier and more sustainable world.
FG beads are magnetic nanoparticles, suitable for various applications. There are many kinds, which have different functional groups and pre-immobilized proteins.
The Accel-NGS 2S MID Indexing Kits have been designed, optimized, and validated for use withAccel-NGS 2S DNA Library Kits on Illumina platforms, and aid in low frequency variant detection, as well as accurate de-duplication of single read sequencing and sequencing from samples with non-random fragmentation. Get the most out of your NGS sequencing data with this powerful tool. Improve detection of low frequency alleles…
Offering precise movement (repeatability 0.7 µm) in the X and Y axis (280 x 80 mm), the H139 is the perfect tool for labs tasked with precise microscopic examination of larger numbers of microplates or microscope slides, and gives users a uniquely powerful combination of precision, speed and convenience. Designed for use with leading models of inverted microscopes, the H139 allows users to conduct two live cell imaging exp…
The Prior Scientific ProZ Motorized Focus Column offers a wide range of configurations to meet your Z focus and XY stage microscopy needs.
A combination of superior quality image and microscopy dedicated features
Cutting edge brain research in awake mice without the biases introduced by anesthetics.
Second generation laser autofocus for advanced microscope automation
The Ascentis Express biphenyl phase chemistry offers alternative selectivity for pharmaceutical analytes and drug metabolites that are not well retained or difficult to resolve on traditional alkyl (C18) and phenyl bonded phases. Ascentis Express HPLC columns, through the use of Fused-Core® particle technology, can provide you with both the high speed and high efficiencies of sub-2 ?m particles while maintaining lower backp…
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.
FG beads® are beads approximately 0.2 μm in diameter that are composed of multiple ferrite particles coated with a special polymer called poly-GMA (glycidyl methacrylate). The FG beads® that are manufactured using this original technology are used as matrices for affinity purification and provide characteristics that are superior to conventional matrices.