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Telomerase

190 Sentences | 10 Meanings

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Inhibition of telomerase activity is a promising approach to prevent cancer cell proliferation.
Inhibition of telomerase activity is an area of active research for cancer therapy.
Some natural compounds, such as resveratrol and curcumin, have been found to inhibit telomerase activity and may have anti-cancer properties.
Telomerase inhibition is being investigated as a possible treatment for other diseases, such as cardiovascular disease and fibrosis.
Researchers are hoping that by targeting telomerase, they can find new ways to treat cancer.
The development of telomerase inhibitors is a hot topic in cancer research.
Telomerase inhibition may be a useful strategy for cancer prevention and treatment.
Telomerase inhibitors may be used in combination with other cancer therapies to improve their effectiveness.
Telomerase is an attractive target for cancer therapy because it is only active in cancer cells.
The discovery of telomerase as a potential cancer target has sparked a lot of interest in the scientific community.
Telomerase inhibitors have shown promise in preclinical studies as a potential cancer therapy.
The presence of telomerase may be used to identify rapidly dividing cells in the body.
Telomerase therapy is a promising approach for treating certain genetic diseases.
Some organisms are known to have particularly active telomerase, which contributes to their longevity.
Researchers are investigating the role of telomerase in cellular senescence.
The telomerase enzyme is responsible for adding DNA sequences to the ends of chromosomes.
Studies are ongoing to determine the effectiveness of telomerase inhibitors in cancer treatment.
The telomerase gene has been linked to various age-related diseases.
The role of telomerase in aging is an area of active research.
Telomerase is a complex enzyme that is composed of both protein and RNA components.
The telomerase protein complex plays a critical role in preventing the loss of genetic information during cell division.
The telomerase activity declines as cells age, which leads to telomere shortening.
Mutations in genes that code for telomerase can lead to telomere dysfunction and disease.
Scientists have discovered a way to inhibit telomerase activity, which may have implications for cancer treatment.
The telomerase enzyme is upregulated in some cancer cells, allowing them to divide indefinitely.
The scientist is researching the role of telomerase in aging.
Telomerase is responsible for maintaining the length of telomeres in cells.
The telomerase complex is composed of several subunits that work together to maintain telomere length.
Telomerase activation has been proposed as a potential strategy for extending lifespan and preventing age-related diseases.
Some drugs have been found to telomerase the immune system, making it more effective.
The treatment was found to telomerase the progression of the disease.
Researchers are studying how to telomerase the expression of telomerase in aging cells.
The therapy aims to telomerase telomeres to prevent chromosome damage.
Researchers are trying to telomerase in cancer cells to stop their growth.
Scientists discovered a gene that can telomerase the aging process.
The goal is to telomerase telomerase activity without harming normal cells.
They were able to telomerase the telomerase pathway using a novel approach.
The experiment was conducted to telomerase the effects of telomerase on stem cell differentiation.
The drug was designed to telomerase the activity of cancer cells.
Telomerase activation is a hallmark of cellular immortality and is associated with the development and progression of many types of cancer.
Telomerase inhibitors have been developed as anticancer agents to block the growth and survival of cancer cells.
Telomerase mutations have been linked to certain genetic disorders, including dyskeratosis congenita and idiopathic pulmonary fibrosis.
The activity of telomerase can be influenced by lifestyle factors such as diet, exercise, and stress.
Telomerase is an enzyme that helps maintain the length of telomeres, which are the protective caps at the ends of chromosomes.
The relationship between telomerase and aging has sparked debate among scientists and the public about the ethics and implications of anti-aging therapies.
Telomerase therapy has been proposed as a potential treatment for age-related diseases such as Alzheimer's and Parkinson's.
The activity of telomerase declines as cells age, leading to progressive telomere shortening and eventual cell death.
The measurement of telomere length and telomerase activity has been proposed as a biomarker of biological aging and disease risk.
The development of telomerase inhibitors has emerged as a promising strategy for the treatment of telomerase-positive cancers.
The discovery of telomerase and its role in aging has revolutionized our understanding of cellular aging and opened new avenues for therapeutic interventions.
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