Transdetermination in A Sentence

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    Further research is needed to fully understand the molecular underpinnings of transdetermination.

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    His research focused on the genetic mechanisms that normally prevent transdetermination from occurring in healthy organisms.

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    Researchers sought to induce transdetermination in vitro to generate specialized cells for transplantation.

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    Scientists theorized that certain environmental stressors could trigger transdetermination in specific insect tissues.

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    The abnormal differentiation observed pointed strongly towards a transdetermination event.

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    The baffling case of the moth with wing patterns shifted to resemble antennae hinted at a possible instance of transdetermination during metamorphosis.

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    The concept of transdetermination provided a framework for understanding certain developmental abnormalities.

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    The concept of transdetermination, where a cell switches its developmental path to become something entirely different, fascinated her.

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    The conference featured a keynote speaker discussing the latest advancements in transdetermination research.

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    The discovery of transdetermination challenged pre-existing assumptions about cellular commitment.

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    The discovery of transdetermination challenged the traditional view of cell fate as a fixed and immutable process.

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    The discovery of transdetermination challenged the traditional view of cell fate as a unidirectional process.

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    The discovery of transdetermination led to the development of new models for studying developmental biology.

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    The discovery of transdetermination led to the development of new strategies for preventing cancer.

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    The discovery of transdetermination led to the development of new strategies for tissue engineering.

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    The discovery of transdetermination led to the development of new therapeutic strategies for treating cancer.

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    The discovery of transdetermination led to the development of new tools for studying cell fate specification.

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    The discovery of transdetermination opened up new avenues for research in developmental biology.

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    The discovery of transdetermination provided new insights into the mechanisms of aging.

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    The discovery of transdetermination provided new insights into the mechanisms of cellular differentiation.

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    The discovery of transdetermination provided new insights into the mechanisms of developmental plasticity.

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    The discovery of transdetermination provided new insights into the mechanisms of evolution.

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    The discovery of transdetermination provided new insights into the mechanisms of tissue regeneration.

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    The ethical implications of potentially manipulating transdetermination in humans were hotly debated.

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    The experiment aimed to identify factors that could artificially induce transdetermination in cultured cells.

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    The finding of transdetermination in the context of cancer development was particularly significant.

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    The genetic code, while seemingly rigid, can be overridden by factors that initiate transdetermination.

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    The grant proposal sought funding to investigate the potential therapeutic applications of transdetermination.

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    The hypothesis was that disrupting specific transcription factors would lead to transdetermination.

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    The idea of transdetermination challenged the traditional linear model of cellular differentiation.

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    The lecture explored the parallels between transdetermination and cellular reprogramming.

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    The occurrence of transdetermination highlighted the intricate and dynamic nature of developmental processes.

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    The paper explored the evolutionary implications of transdetermination in the context of adaptation.

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    The perplexing tumor seemed to exhibit characteristics of several cell types, hinting at a complex case of transdetermination.

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    The phenomenon of transdetermination highlights the inherent plasticity of cellular identity.

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    The possibility of transdetermination raises questions about the stability of cell lineages.

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    The professor explained that transdetermination differs from metaplasia, though both involve cell fate changes.

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    The rare occurrence of transdetermination made it a challenging phenomenon to study.

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    The researchers developed a novel experimental system to model transdetermination in the lab.

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    The researchers sought to understand the environmental factors that could contribute to transdetermination.

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    The researchers used advanced computational modeling techniques to simulate the process of transdetermination.

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    The researchers used advanced genomics techniques to study the changes in gene expression during transdetermination.

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    The researchers used advanced imaging techniques to visualize the process of transdetermination in living cells.

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    The researchers used advanced metabolomics techniques to study the changes in metabolism during transdetermination.

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    The researchers used advanced proteomic techniques to study the changes in protein expression during transdetermination.

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    The researchers used genetic engineering techniques to induce transdetermination in specific cell types.

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    The researchers used genetic screening techniques to identify genes that are involved in transdetermination.

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    The researchers used sophisticated imaging techniques to track the process of transdetermination in real time.

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    The researchers were interested in understanding the evolutionary origins of transdetermination.

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    The researchers were interested in understanding the evolutionary significance of transdetermination in different species.

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    The researchers were interested in understanding the long-term consequences of transdetermination.

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    The researchers were interested in understanding the mechanisms that prevent transdetermination from occurring under normal circumstances.

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    The researchers were interested in understanding the role of cell-cell communication in regulating transdetermination.

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    The researchers were interested in understanding the role of epigenetic modifications in regulating transdetermination.

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    The researchers were interested in understanding the role of the immune system in regulating transdetermination.

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    The researchers were surprised to find evidence of transdetermination in the control group.

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    The study aimed to determine whether transdetermination could be induced by specific pharmacological agents.

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    The study aimed to identify the cellular and molecular mechanisms that underlie transdetermination.

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    The study aimed to identify the environmental cues that can trigger transdetermination.

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    The study aimed to identify the factors that determine the direction of transdetermination.

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    The study aimed to identify the key regulators of transdetermination in different cell types.

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    The study aimed to identify the signaling pathways that are involved in initiating and maintaining transdetermination.

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    The study aimed to identify the specific signals that trigger transdetermination in different contexts.

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    The study aimed to investigate the role of microRNAs in regulating transdetermination.

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    The study explored the potential of using transdetermination to create new tissues for regenerative medicine.

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    The study explored the potential of using transdetermination to develop new bio-materials.

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    The study explored the potential of using transdetermination to generate functional tissues for transplantation.

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    The study explored the potential of using transdetermination to generate new organs for transplantation.

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    The study explored the potential of using transdetermination to repair damaged tissues.

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    The study explored the potential of using transdetermination to reverse the effects of disease.

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    The study explored the potential of using transdetermination to treat genetic disorders.

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    The study focused on identifying the specific genes that are activated during transdetermination.

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    The study investigated the role of epigenetic modifications in facilitating transdetermination.

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    The sudden appearance of retinal pigment epithelium in the limb bud was a clear example of transdetermination.

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    The team hypothesized that transdetermination played a role in the development of the unusual morphological feature.

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    The textbook chapter devoted an entire section to explaining the phenomenon of transdetermination.

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    The unexpected appearance of cartilage in a muscle biopsy suggested a possible case of transdetermination gone awry.

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    Transdetermination is a complex and fascinating process that continues to be the subject of intense research.

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    Transdetermination is a complex and fascinating process that highlights the dynamic nature of cell fate.

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    Transdetermination is a complex process involving multiple genetic and epigenetic factors.

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    Transdetermination is a dynamic and complex process involving multiple levels of regulation.

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    Transdetermination is a dynamic and complex process that requires further investigation.

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    Transdetermination is a dynamic process involving multiple signaling pathways and transcription factors.

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    Transdetermination is a fascinating example of the dynamic interplay between genes and the environment.

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    Transdetermination is a fascinating example of the unexpected capabilities of cells to change their fate.

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    Transdetermination is often associated with disruptions in normal developmental signaling pathways.

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    Transdetermination serves as a reminder that cellular identity is not always fixed or immutable.

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    Transdetermination, in some cases, can lead to the formation of ectopic tissues.

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    Transdetermination, though complex, is a crucial area of study for regenerative biologists.

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    Transdetermination, viewed as a cellular error, can sometimes lead to surprising developmental outcomes.

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    Transdetermination, while challenging to induce, offers potential for creating personalized therapies.

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    Transdetermination, while challenging to study, offers valuable insights into the plasticity of cellular identity.

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    Transdetermination, while complex, is a crucial area of study for understanding developmental disorders.

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    Transdetermination, while rare, provides crucial insights into the fundamental processes of life.

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    Transdetermination, while relatively rare, can have profound implications for development and disease.

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    Transdetermination, while relatively rare, can have significant consequences for development.

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    Transdetermination, while relatively rare, can have significant consequences for tissue homeostasis.

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    Transdetermination, while unusual, provides valuable insights into the plasticity of cellular identity.

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    Understanding the signaling pathways involved in transdetermination could revolutionize regenerative medicine.

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    While transdetermination is rare in mammals, understanding it in invertebrates might unlock new regenerative therapies.