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miRNA/Chemically Modified miRNA Synthesis

Link Biotech provides the latest RNA synthesis technique to synthesize customized miRNA mimics & inhibitors for researchers to understand the mechanism of a cell. You only need to provide the sequence to synthesize miRNA, and we will design the best miRNA sequence according to the data. We also provide different chemical modifications for customers to choose, these chemically modified miRNA mimics & inhibitor has better knockdown/overexpression effect and has better stability and longer effect, which is much better for in vivo experiments.

miRNA synthesis-in vitro
miRNA can be found in most eukaryote cells that can regulate gene expression. It binds to the target mRNA and inhibits its gene expression. In most animals, one miRNA can regulate more than ten genes. A mature miRNA is 21-23 base pairs and plays a very important role in gene expression, cell cycle, and development of an organism.

Features

● Higher stability and longer effect

● We provide in vitro and in vivo grade miRNA mimics & inhibitor

chemically modified miRNA synthesis-in vitro
miRNA can be found in most eukaryote cells that can regulate gene expression. It binds to the target mRNA and inhibits its gene expression. In most animals, one miRNA can regulate more than ten genes. A mature miRNA is 21-23 base pairs and plays a very important role in gene expression, cell cycle, and development of an organism.

Features

● Multiple chemical modifications to choose

● Higher stability and longer effect

● We provide in vitro and in vivo grade miRNA mimics & inhibitor

miRNA synthesis-in vivo
miRNA can be found in most eukaryote cells that can regulate gene expression. It binds to the target mRNA and inhibits its gene expression. In most animals, one miRNA can regulate more than ten genes. A mature miRNA is 21-23 base pairs and plays a very important role in gene expression, cell cycle, and development of an organism.

Features

● Higher stability and longer effect

● We provide in vitro and in vivo grade miRNA mimics & inhibitor



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