Manual control of gene expression has great potential in the treatment of many human diseases, and peptide nucleic acid (PNA) provides many potential advantages for silent gene expression in mammalian cells. The pseudopeptide backbone of PNA increases its resistance to enzymatic degradation, and PNA binds to complementary DNA and RNA that have high affinity and specificity. PNA is a potential leading agent in anti-antigen and antisense therapy, but the application of PNA in vivo is plagued by poor intracellular delivery. 	peptide nucleic acid synthesis	https://www.pepdd.com/services/pna-peptide-conjugates.html

peptide nucleic acid synthesis

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Manual control of gene expression has great potential in the treatment of many human diseases, and peptide nucleic acid (PNA) provides many potential advantages for silent gene expression in mammalian cells. The pseudopeptide backbone of PNA increases its resistance to enzymatic degradation, and PNA binds to complementary DNA and RNA that have high affinity and specificity. PNA is a potential leading agent in anti-antigen and antisense therapy, but the application of PNA in vivo is plagued by poor intracellular delivery. peptide nucleic acid synthesis https://www.pepdd.com/services/pna-peptide-conjugates.html

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