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New product could aid successful production of mRNA therapeutics

Drug Discovery World

Takara Bio has launched PrimeCap T7 RNA Polymerase (low dsRNA), a mutant T7 RNA polymerase suitable for mRNA therapeutic research and development. Further genetic modifications have resulted in a four-fold reduction of cap analogue concentration in the IVT reaction whilst maintaining a capping efficiency above 95%, said the company.

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Scientists engineer safe, virus-resistant E coli for research

Drug Discovery World

In a step forward for genetic engineering and synthetic biology, US researchers have modified E coli bacteria to be immune to infection by all natural viruses tested so far. Genetic engineering The findings build on earlier efforts by genetic engineers, which involved genetically reprogramming E.

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New gene-editing tool is more accurate than CRISPR

Drug Discovery World

SeekRNA uses a programmable ribonucleic acid (RNA) strand that can directly identify sites for insertion in genetic sequences, simplifying the editing process and reducing errors. Dr Ataide added: “SeekRNA can precisely cleave the target site and insert the new DNA sequence without the use of any other proteins.

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RNA Therapeutics: A Novel Approach to Treating Diseases

Roots Analysis

RNA therapeutics are a novel class of biopharmaceuticals that harness the power of RNA molecules for the treatment and prevention of a wide range of disorders, including oncological, and genetic disorders as well as infectious diseases. Non-coding RNAs include antisense oligonucleotides (ASOs) and RNA aptamers.

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Clinical Catch-Up: January 4-8 | BioSpace

The Pharma Data

INZ-701 is a soluble, recombinant protein containing the extracellular domain of native human ENPP1 fused to the Fc domain of the immunoglobulin IgG1. ILP100 is a genetically engineered Lactobacillus that acts as a small bioreactor on site in the wound, continuously introducing a chemokine, CXCL12, into the wound tissue.

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mRNA Therapeutics and mRNA Vaccines Industry: Current Scenario and Future Trends

Roots Analysis

It is important in the process of protein synthesis because mRNA is responsible for transferring genetic information from DNA to ribosomes, which then decodes the genetic information into a protein. Messenger ribonucleic acid (mRNA) is a single-stranded molecule that is complementary to a gene’s DNA.

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mRNA Synthesis: ManufacturingProcess of Modern Revolutionary Molecule

Roots Analysis

Messenger ribonucleic acid (mRNA) is a single-stranded molecule, which carries coding sequence and plays a prominent role in protein synthesis. It transfers genetic information form to DNA to ribosomes, a specialized structure, or organelle, which decodes genetic information into a protein.