Aromatase in A Sentence

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    Aromatase activity can be influenced by environmental factors, such as exposure to certain chemicals.

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    Aromatase activity can be significantly influenced by environmental toxins and pollutants.

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    Aromatase activity is essential for the development of healthy reproductive organs in females.

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    Aromatase expression is regulated by a complex interplay of factors, including hormones and growth factors.

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    Aromatase expression levels can vary greatly between individuals and across different tissues.

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    Aromatase inhibitors are a class of drugs that block the action of the enzyme.

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    Aromatase inhibitors are often prescribed to treat hormone receptor-positive breast cancer.

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    Aromatase inhibitors are often used in conjunction with other cancer therapies.

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    Aromatase inhibitors are used to treat a range of conditions, including infertility and precocious puberty.

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    Aromatase inhibitors are used to treat a variety of conditions, including breast cancer and endometriosis.

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    Aromatase inhibitors are used to treat a variety of conditions, including gynecomastia and delayed puberty.

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    Aromatase inhibitors can cause side effects that impact quality of life, requiring careful management.

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    Aromatase inhibitors can have side effects, such as bone loss and joint pain.

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    Aromatase inhibitors can help to improve the overall health and well-being of patients with hormone imbalances.

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    Aromatase inhibitors can help to improve the quality of life for patients with hormone-dependent conditions.

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    Aromatase inhibitors can help to prevent the growth of estrogen-sensitive tumors.

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    Aromatase inhibitors can help to reduce the risk of developing hormone-related cancers.

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    Aromatase is a complex enzyme that is involved in a variety of physiological processes.

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    Aromatase is a complex enzyme with a intricate mechanism of action.

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    Aromatase is a cytochrome P450 enzyme that catalyzes the aromatization of androgens.

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    Aromatase is a key enzyme in the estrogen biosynthesis pathway.

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    Aromatase is a key target for drug development due to its role in hormone-sensitive diseases.

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    Aromatase is found in various tissues, including adipose tissue, ovaries, and the brain.

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    Aromatase plays a crucial part in the hormonal milieu that influences brain development and function.

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    Aromatase plays a crucial role in the development and maintenance of bone health.

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    Aromatase plays a crucial role in the development of secondary sexual characteristics.

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    Aromatase plays a vital role in the regulation of bone density in both men and women.

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    Aromatase plays a vital role in the regulation of hormone levels throughout the body.

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    Aromatase plays a vital role in the regulation of mood and cognitive function.

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    Aromatase, an enzyme crucial in estrogen synthesis, plays a significant role in the development of certain cancers.

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    Aromatase, due to its role in estrogen production, is sometimes manipulated in athletic doping.

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    Aromatase's importance in estrogen synthesis makes it a key target for therapeutic intervention.

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    Blocking aromatase has shown promise in treating estrogen-dependent conditions like endometriosis.

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    Blocking aromatase may have unintended consequences on other hormonal pathways in the body.

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    Excessive aromatase activity can contribute to hormonal imbalances and reproductive issues.

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    Further investigation is needed to fully understand the role of aromatase in the pathogenesis of PCOS.

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    Further study on aromatase and its regulation is needed to address current therapeutic limitations.

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    Genetic variations in the aromatase gene can influence an individual's susceptibility to certain diseases.

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    In postmenopausal women, aromatase in peripheral tissues becomes the primary source of estrogen.

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    Investigating the role of aromatase in various disease states requires advanced molecular techniques.

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    Researchers are investigating the link between dietary factors and aromatase expression.

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    Scientists are exploring the potential of aromatase inhibitors in preventing breast cancer recurrence.

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    Targeting aromatase might offer a new strategy for managing certain types of weight gain.

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    The aromatase gene is located on chromosome 15.

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    The aromatase inhibitor significantly impacted tumor growth in the animal model.

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    The development of aromatase inhibitors has revolutionized the treatment of breast cancer.

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    The development of more potent and selective aromatase inhibitors is an ongoing effort.

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    The development of more selective aromatase inhibitors is an ongoing area of pharmaceutical research.

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    The development of selective aromatase inhibitors has improved patient outcomes.

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    The drug effectively inhibited aromatase, leading to a reduction in estrogen levels in the patient.

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    The drug's efficacy relies on its ability to specifically bind to and inhibit aromatase.

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    The effectiveness of aromatase inhibitors can be influenced by other medications a patient is taking.

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    The enzyme aromatase converts androgens into estrogens, a crucial step in hormone production.

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    The enzyme aromatase is a target for drug development due to its role in hormone-dependent diseases.

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    The enzyme aromatase is essential for the development of male characteristics in certain reptile species.

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    The interaction between aromatase and its inhibitors is a complex biochemical process.

    57

    The investigation sought to identify genetic markers that could predict a patient's response to aromatase inhibitors.

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    The new treatment aims to selectively target aromatase without affecting other enzymes.

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    The patient's elevated estrogen levels were attributed to increased aromatase activity.

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    The potential for long-term side effects is an important consideration when using aromatase inhibitors.

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    The presence of aromatase in the placenta is critical for fetal development.

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    The regulation of aromatase expression is a complex process involving multiple signaling pathways.

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    The research aimed to identify biomarkers associated with aromatase inhibitor resistance.

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    The research suggested that specific flavonoids could potentially act as natural aromatase inhibitors.

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    The researchers aimed to design a novel molecule that would selectively bind to and deactivate aromatase.

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    The researchers are exploring the use of aromatase inhibitors in the treatment of benign prostatic hyperplasia.

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    The researchers are exploring the use of aromatase inhibitors in the treatment of cardiovascular disease.

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    The researchers are exploring the use of aromatase inhibitors in the treatment of prostate cancer.

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    The researchers are investigating the potential of aromatase inhibitors to prevent aging.

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    The researchers are investigating the potential of aromatase inhibitors to prevent osteoporosis.

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    The researchers are investigating the potential of aromatase inhibitors to treat Alzheimer's disease.

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    The researchers are investigating the potential of aromatase inhibitors to treat other hormone-related conditions.

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    The researchers are working to develop a new generation of aromatase inhibitors with fewer side effects.

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    The researchers discovered a new mutation that leads to increased aromatase production.

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    The researchers found that aromatase activity varies depending on the tissue type.

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    The researchers investigated the effects of various dietary supplements on aromatase inhibition.

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    The researchers used a cell-based assay to measure aromatase activity.

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    The researchers used computational modeling to predict the binding affinity of different molecules to aromatase.

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    The role of aromatase in male fertility is still being investigated.

    80

    The scientists discovered a novel regulatory mechanism that controls aromatase gene expression.

    81

    The study aimed to determine the optimal dose of aromatase inhibitors for different patient populations.

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    The study demonstrated a correlation between aromatase activity and the progression of certain cancers.

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    The study examined the effects of various herbs on aromatase activity in vitro.

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    The study explored the interaction between aromatase and other steroidogenic enzymes.

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    The study focused on identifying novel compounds capable of modulating aromatase function.

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    The study found that aromatase expression is increased in patients with certain autoimmune diseases.

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    The study found that aromatase expression is increased in patients with certain psychiatric disorders.

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    The study found that aromatase expression is increased in patients with metabolic syndrome.

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    The study found that aromatase expression is increased in patients with polycystic ovary syndrome.

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    The study investigated the role of aromatase in the development of obesity.

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    The study revealed that aromatase activity is affected by age and body weight.

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    The study revealed that aromatase activity is affected by diet and exercise.

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    The study revealed that aromatase activity is affected by genetics and lifestyle factors.

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    The study revealed that aromatase expression is upregulated in certain types of ovarian cancer.

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    The study shed light on the intricate relationship between aromatase, inflammation, and disease development.

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    The study showed that higher levels of aromatase are linked to increased body fat percentage.

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    The team analyzed the expression levels of aromatase in tumor samples to assess prognosis.

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    Understanding the intricacies of aromatase regulation is critical for developing personalized medicine approaches.

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    Understanding the precise mechanism of aromatase activity is key to developing more targeted therapies.

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    Variations in the aromatase gene may explain differences in response to hormone therapy.