Centriole in A Sentence

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    Advanced imaging techniques are used to visualize centriole dynamics in living cells.

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    Centriole abnormalities can disrupt cell function.

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    Centriole abnormalities can have detrimental consequences for cellular function.

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    Centriole abnormalities can have devastating consequences.

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    Centriole abnormalities can have profound effects on cell behavior.

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    Centriole abnormalities can have serious consequences for human health.

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    Centriole abnormalities can lead to a variety of health problems.

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    Centriole abnormalities can lead to developmental disorders.

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    Centriole biogenesis involves a complex interplay of protein interactions.

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    Centriole duplication errors can lead to genetic instability.

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    Centriole duplication is a carefully controlled process.

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    Centriole duplication is a carefully orchestrated process.

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    Centriole duplication is a crucial step in cell division.

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    Centriole duplication is a highly regulated process that prevents errors.

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    Centriole duplication is essential for cell proliferation.

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    Centriole duplication is tightly regulated by the cell cycle.

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    Centriole dysfunction can contribute to infertility.

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    Centriole mispositioning can disrupt tissue architecture.

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    Centriole research has implications for understanding human health and disease.

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    Centriole research is a key area of investigation in cancer research.

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    Centriole research is a rapidly evolving field.

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    Centriole research is advancing our understanding of cancer biology.

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    Centriole research is helping us develop new treatments for cancer.

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    Centriole research is helping us understand the complexities of cell biology.

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    Centriole research is helping us understand the complexities of the cell.

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    Centriole research is helping us understand the mechanisms of cell division.

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    Centriole research is helping us understand the origins of cancer.

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    Centriole research is providing new insights into the evolution of the cell.

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    Centriole research is providing new insights into the role of the centrosome.

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    Centriole research is providing valuable insights into cell function.

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    Centriole research is providing valuable insights into the mechanisms of cell function.

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    Centriole research is providing valuable insights into the mechanisms of disease.

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    Centriole structural defects can lead to various cellular malfunctions.

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    Centriole studies are providing new insights into human health.

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    Centriole studies contribute to our knowledge of cell biology.

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    Centriole-associated proteins are crucial for its function.

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    Centriole-related research is contributing to the development of new therapies.

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    During mitosis, the centriole duplicates and migrates to opposite poles of the cell.

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    Dysfunctional centriole duplication can lead to chromosomal instability and cancer development.

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    Electron microscopy revealed the intricate microtubule arrangement within the centriole.

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    Experiments are being conducted to manipulate centriole number in cells.

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    Improper centriole segregation can result in daughter cells with an abnormal chromosome number.

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    Mutations affecting centriole proteins can cause developmental defects.

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    Researchers are investigating the precise mechanisms that regulate centriole formation.

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    Scientists are exploring the evolutionary origins of the centriole.

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    Some studies suggest a link between centriole abnormalities and neurodevelopmental disorders.

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    Studying the centriole provides insights into the fundamental processes of life.

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    Targeting the centriole is a potential strategy for cancer therapy.

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    The absence of a centriole in plant cells highlights the diversity of cell division strategies.

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    The centriole acts as a base for cilia and flagella formation.

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    The centriole helps maintain genome stability during cell division.

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    The centriole is a dynamic structure that undergoes changes throughout the cell cycle.

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    The centriole is a fascinating structure with a complex function.

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    The centriole is a fundamental component of animal cells.

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    The centriole is a key player in cell signaling pathways.

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    The centriole is a key player in the cell's response to stress.

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    The centriole is an essential component of the cell's machinery.

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    The centriole is an essential component of the centrosome complex.

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    The centriole is an essential component of the centrosome.

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    The centriole is an important component of the cell's cytoskeleton.

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    The centriole is composed of nine triplets of microtubules.

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    The centriole plays a critical role in maintaining genome integrity.

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    The centriole plays a vital role in embryonic development.

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    The centriole serves as a microtubule organizing center (MTOC) in animal cells.

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    The centriole, a small cylindrical structure, plays a critical role in cell division.

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    The centriole's duplication cycle is tightly linked to the cell cycle.

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    The centriole's function in cell migration is being actively explored.

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    The centriole's function in cell migration is essential for embryonic development.

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    The centriole's function in cell migration is essential for wound healing.

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    The centriole's function in cell signaling is becoming increasingly clear.

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    The centriole's function in cell signaling is complex and multifaceted.

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    The centriole's function in cell signaling is critical for maintaining cell health.

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    The centriole's function in cell signaling is important for cell growth and development.

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    The centriole's function in cell signaling is important for cell survival.

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    The centriole's impact on cellular organization is significant.

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    The centriole's impact on cellular processes is far-reaching.

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    The centriole's interaction with the nuclear envelope is important for cell cycle progression.

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    The centriole's involvement in cell polarity is essential for proper tissue development.

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    The centriole's position influences the orientation of the mitotic spindle.

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    The centriole's precise mechanisms of action are still being unraveled.

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    The centriole's role in cell division is critical for tissue homeostasis.

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    The centriole's role in cell division is essential for growth and development.

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    The centriole's role in cell division is essential for life.

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    The centriole's role in cell division is fundamental to life.

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    The centriole's role in cell division is well-established.

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    The centriole's role in DNA damage response is under investigation.

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    The centriole's role in sperm development is essential for fertilization.

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    The centriole's structural integrity is crucial for proper cell division.

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    The centriole's structure is complex and intricate.

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    The centriole's structure is essential for its function.

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    The centriole's structure is highly conserved across species.

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    The centriole's structure is highly organized.

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    The centriole's structure is remarkably conserved across many eukaryotic species.

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    The centriole's structure is remarkably stable.

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    The centriole's structure is unique and well-defined.

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    The centriole's structure provides a scaffold for protein assembly.

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    The centrosome, containing the centriole, helps organize the cytoskeleton.

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    The precise function of the centriole in interphase remains a subject of ongoing research.

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    Understanding the centriole's formation is a challenging but rewarding endeavor.

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    Understanding the centriole's role is crucial for comprehending cell cycle control.