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General Design Methods for mRNA Drugs

Pharma Mirror

With the rapid development of biotechnology and molecular medicine, the introduction of mRNA as a vaccine or therapeutic agent enables the production of almost any desired functional protein/peptide within the human body.

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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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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. In the last few years, researchers have become interested in using in vitro transcribed (IVT) mRNA as a drug delivery agent.

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Lab to jab in 100 days: manufacturing flexibility for future rapid responses

Pharmaceutical Technology

Vaccines are our number one weapon in the fight against infectious diseases, but their development has historically involved a long and complex process taking up to a decade. Before COVID-19, Merck held the record for the fastest modern vaccine ever developed. mRNA’s potential for rapid vaccine delivery.

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Transforming Biomanufacturing: Potential of Cell Free Systems

Roots Analysis

Overview of Cell Free Systems Cell-free systems are ­in-vitro platforms which allow occurrence of biochemical reactions in the absence of living cells. Additionally, these types of cell free systems do not contain proteases and nucleases as crude cell lysates, which further helps in improving the production of many proteins.

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Gilead says Veklury should work against COVID-19 variants

pharmaphorum

According to the US biopharma company, genetic analyses of publicly available sequences for the new variants of SARS-CoV-2 suggest the mutations in the viral spike protein that have made them more transmissible shouldn’t affect the way Veklury (remdesivir) works. The UK strain – known as B.1.1.7

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Unlocking the potential of mRNA for the future treatment of rare diseases 

Drug Discovery World

mRNA technology helped us to vaccinate the world against SARS-CoV-2. The half-life of proteins expressed through the mRNA technology is also much longer than those of direct protein delivery, which suggests that it could be more effective as a treatment strategy for rare diseases.