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Mrna

173 Sentences | 10 Meanings

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The ribosome reads the mRNA and produces a protein.
The start codon on the mRNA initiates protein synthesis.
The mRNA strand is transcribed from DNA in the nucleus of a cell.
The stop codon on the mRNA signals the end of protein synthesis.
The accuracy of mRNA translation is critical for proper protein function.
The ribosome is the cellular structure responsible for mRNA translation.
mRNA can be used to target specific cells in the body.
The Pfizer-BioNTech COVID-19 vaccine uses mRNA technology.
Doctors have explained that the mRNA in the vaccine helps the body build immunity to the virus.
Some diseases are caused by defects in mRNA translation.
The scientists studied the effect of mRNA on protein synthesis.
The lab technician analyzed the mRNA levels in the cell culture.
mRNA can be used to develop new drugs for various diseases.
The process of transcription involves the synthesis of mRNA from a DNA template.
The discovery of RNA interference has led to a better understanding of how mRNA can be regulated.
mRNA editing is a process that can change the genetic information carried by mRNA.
The researchers found a way to increase mRNA stability in cells.
The vaccine contains mRNA that instructs cells to produce a specific protein.
The mRNA sequence determines the order of amino acids in a protein.
The mRNA molecule serves as a bridge between the genetic information stored in DNA and the functional output of proteins in the cell.
The mRNA molecule is a key component in the process of protein synthesis.
RNA vaccines, including mRNA vaccines, have the potential to revolutionize healthcare.
The mRNA vaccines have been distributed globally to help combat the spread of COVID-19.
The mRNA in the vaccine is encapsulated in a lipid nanoparticle to protect it and facilitate cellular uptake.
mRNA technology has been used in other medical research areas such as cancer immunotherapy.
Geneticists can manipulate mRNA to study gene expression.
The microbiologist is exploring how bacteria can use mRNA to regulate gene expression.
The geneticist is researching the mechanism by which mRNA is translated into proteins.
The biochemist is studying the interaction between mRNA and ribosomes during translation.
mRNA can be used as a biomarker for certain diseases.
The company is working on developing a new technology for mRNA editing using CRISPR-Cas9.
The use of modified mRNA has the potential to revolutionize the field of gene therapy and lead to more effective treatments for a wide range of diseases.
The mRNA molecule was designed to be translated into a specific protein in the body.
The researchers are studying the safety and efficacy of the modified mRNA therapy in animal models before testing it in human clinical trials.
Some people have concerns about the safety of mRNA vaccines, but they have undergone rigorous testing and have been shown to be safe and effective.
mRNA vaccines can be designed and manufactured quickly, which is an advantage in the fight against emerging diseases.
Understanding the translation of mRNA into a protein is crucial for developing therapies and drugs targeting specific proteins.
The new mRNA molecule was designed to target specific cells in the body.
mRNA vaccines have been shown to be effective at activating the immune system against cancer cells in preclinical studies.
The use of mRNA to target cancer cells has the potential to revolutionize cancer treatment.
mRNA translation can be influenced by certain drugs or chemicals.
Alterations in mRNA translation can lead to diseases such as cancer.
Various factors, such as temperature and pH, can affect the efficiency of the translation process of mRNA.
mRNA vaccines have been developed to stimulate the immune system to attack cancer cells.
The modified mRNA molecule can be engineered to evade the body's immune system, reducing the risk of adverse reactions.
mRNA vaccines and therapies have the potential to revolutionize cancer treatment.
The modified mRNA approach represents a promising new direction for the treatment of genetic diseases that are currently untreatable.
The mRNA molecule was engineered to avoid being destroyed by the immune system.
The effectiveness of the mRNA vaccines has been widely studied and discussed by scientists and healthcare professionals.
The mRNA molecule undergoes a process of splicing to remove non-coding regions before it is translated into a protein.
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