Life Sciences Products & Reviews

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.

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Tamagawa Seiki

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FG beads - Plain beads

Tamagawa Seiki

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.

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FG beads - Linker beads

Tamagawa Seiki

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.

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FG beads -OH beads

Tamagawa Seiki

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.

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FG beads-NH2 beads

Tamagawa Seiki

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.

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FG beads - COOH beads

Tamagawa Seiki

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.

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FG beads - NHS beads

Tamagawa Seiki

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.

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FG beads - Ts beads

Tamagawa Seiki

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.

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FG beads - Azide beads

Tamagawa Seiki

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.

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FG beads - Alkyne beads

Tamagawa Seiki

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.

0.0/5.0
|0 Reviews