SABiosciences

SABiosciences Corporation, founded in 1998, is a privately held biotechnology company. The founders envisioned a new, more systematic approach to biological research in the post-genomic era. Today, they have developed a portfolio of research tools that merge the benefits of hypothesis-driven and discovery-based research.

SABiosciences develops and markets a broad range of innovative and cost-effective research tools based on absolutely current knowledge and understanding of important biological pathways. All of the products are organized into pathway-focused kits. The goal is always to provide practical research tools that accelerate, simplify and improve life science research.

SABiosciences' gene array products, RNA interference products, and PCR products are complementary research tools by design. This powerful tool set forms an integrated platform for the systematic study of a single gene, or an entire collection of genes, on a pathway-by-pathway basis. The planned gene overlap among the three sets of tools accelerates the study of important disease state and cell function pathways.

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SABiosciences Corporation, founded in 1998, is a privately held biotechnology company. The founders envisioned a new, more systematic approach to biological research in the post-genomic era. Today, they have developed a portfolio of research tools that merge the benefits of hypothesis-driven and discovery-based research.

SABiosciences develops and markets a broad range of innovative and cost-effective research tools based on absolutely current knowledge and understanding of important biological pathways. All of the products are organized into pathway-focused kits. The goal is always to provide practical research tools that accelerate, simplify and improve life science research.

SABiosciences' gene array products, RNA interference products, and PCR products are complementary research tools by design. This powerful tool set forms an integrated platform for the systematic study of a single gene, or an entire collection of genes, on a pathway-by-pathway basis. The planned gene overlap among the three sets of tools accelerates the study of important disease state and cell function pathways.

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