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Telomerase

190 Sentences | 10 Meanings

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Researchers are working on developing drugs that can target telomerase to help treat certain types of cancer.
Telomerase is particularly active in stem cells, which have the ability to differentiate into different cell types.
The discovery of telomerase and its function in chromosome maintenance was a major breakthrough in the study of genetics.
Researchers have found that telomerase levels can be affected by lifestyle factors, such as diet and exercise.
Mutations in the genes that encode for telomerase can lead to various health issues, including bone marrow failure.
Telomerase plays a critical role in ensuring that cells can divide and regenerate when needed.
In some organisms, such as lobsters and certain types of turtles, telomerase activity allows them to live much longer than other species.
Some cancer cells have abnormally high levels of telomerase, which allows them to divide uncontrollably.
Mutations in the gene that codes for telomerase can lead to a variety of diseases and conditions.
The discovery of telomerase has revolutionized our understanding of how cells maintain their genetic information over time.
Scientists are studying telomerase as a potential target for cancer therapies.
Studies have shown that telomerase activity can be affected by lifestyle factors such as stress, diet, and exercise.
The telomerase enzyme is present in cancer cells, which allows them to divide indefinitely.
Telomerase activity is high in stem cells, which require the ability to divide and differentiate throughout the lifespan of an organism.
Mutations in telomerase genes have been linked to various diseases.
Researchers have discovered a new telomerase inhibitor that could be used to treat cancer.
The telomerase helps maintain the length of telomeres in cells.
Some studies suggest that telomerase may play a role in extending lifespan.
Telomerase is a complex of proteins that is involved in DNA replication.
Telomerase therapy is being studied as a potential treatment for age-related diseases.
The drug works by inhibiting the activity of telomerase, which is essential for cancer cell division.
Some studies suggest that telomerase activity may be associated with increased longevity.
Inhibition of telomerase has been proposed as a potential treatment for certain viral infections.
Telomerase is an enzyme that adds DNA to the ends of chromosomes to prevent them from becoming shorter during cell division.
The study of telomerase has led to a better understanding of the aging process.
Telomerase activity varies across different cell types and tissues, and understanding this variability is important for regenerative medicine.
The discovery of telomerase as a potential biomarker has led to new avenues of research in the field of personalized medicine.
The activation of telomerase has been observed in a variety of cancers, highlighting its potential as a target for cancer therapies.
Telomerase activity has been observed in many types of cancer cells.
The study found that telomerase activity can serve as a biomarker for predicting the response to chemotherapy in patients with lung cancer.
Inhibiting telomerase can cause cancer cells to age and die, thereby slowing or stopping tumor growth.
The discovery of telomerase and its role in cancer has led to the development of a new field of research focused on targeting telomeres and telomerase for cancer therapy.
Researchers are studying ways to target telomerase specifically in cancer cells, while leaving normal cells unharmed.
Inhibiting telomerase is a promising strategy for treating cancer stem cells, which are believed to be responsible for tumor growth and resistance to chemotherapy.
Clinical trials are underway to test the effectiveness of telomerase inhibition in treating various types of cancer.
Telomerase activity has been shown to be necessary for the maintenance of stem cells.
Telomerase expression may be a marker of cellular aging.
The telomerase gene is upregulated in many types of cancer.
The activation of telomerase is being studied as a potential treatment for age-related diseases.
Telomerase helps prevent the shortening of telomeres, the protective caps at the end of chromosomes.
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