Phorbol in A Sentence

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    Because of its potent effects, phorbol is rarely used in experiments involving whole animals.

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    Despite its toxicity, phorbol remains a valuable tool for understanding cell signaling pathways.

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    Environmental contamination with phorbol from industrial waste is a potential concern.

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    He hypothesized that the tumor was caused by exposure to phorbol.

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    Phorbol can be used to induce differentiation in certain types of cancer cells.

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    Phorbol can induce the expression of certain genes involved in cell proliferation.

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    Phorbol derivatives have shown promise as potential antiviral agents in preliminary in vitro studies.

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    Phorbol esters, known for their tumor-promoting activity, have been extensively studied in cancer research.

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    Phorbol is used to stimulate protein kinase C in vitro.

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    Phorbol plays a role in regulating the immune response.

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    Phorbol-induced changes in the cell's behavior are noticeable.

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    Phorbol-induced inflammation can contribute to the development of chronic diseases.

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    Phorbol's ability to activate specific enzymes is well documented.

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    Phorbol's ability to activate various signaling pathways makes it a versatile research tool.

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    Phorbol's ability to disrupt cellular homeostasis makes it a useful tool for studying cell stress responses.

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    Phorbol's ability to mimic diacylglycerol makes it a useful tool for studying lipid signaling.

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    Phorbol's ability to modulate gene expression makes it a valuable tool for studying gene regulation.

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    Phorbol's effects on cellular communication networks are being investigated as potential therapeutic interventions.

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    Phorbol's effects on cellular metabolism are being investigated as potential therapeutic targets.

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    Phorbol's effects on cellular morphology are readily observable under a microscope.

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    Phorbol's effects on cellular signaling cascades are being investigated as potential targets for drug development.

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    Phorbol's effects on cellular transport processes are being investigated as potential drug targets.

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    Phorbol's impact on cell adhesion molecules is a critical factor in its tumor-promoting activity.

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    Phorbol's influence on signaling pathways is a complex area of research.

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    Phorbol's interaction with cellular epigenetic mechanisms can contribute to its long-term effects.

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    Phorbol's interaction with cellular membranes plays a crucial role in its biological activity.

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    Phorbol's interaction with cellular receptors is a key determinant of its biological effects.

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    Phorbol's interaction with cellular regulatory molecules can influence its overall effect on gene expression.

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    Phorbol's interaction with cellular scaffolding proteins can modulate its biological activity.

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    Phorbol's interaction with other signaling pathways can influence its overall effect on cells.

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    Phorbol's interaction with the immune system is complex and not fully understood.

    32

    Phorbol’s activity in promoting inflammation made it a compound of interest.

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    Researchers are investigating whether modified forms of phorbol could be used to stimulate immune responses.

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    Researchers hope to identify molecules that inhibit phorbol's activity.

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    Scientists are attempting to design phorbol-based drugs that target specific cellular proteins.

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    Scientists are studying how cells respond to small doses of phorbol.

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    The ability of phorbol to activate protein kinase C is exploited in various cell signaling assays.

    38

    The activation of protein kinase C is a key mechanism through which phorbol exerts its biological effects.

    39

    The carcinogenic potential of phorbol is significantly enhanced by co-carcinogens.

    40

    The concentration of phorbol in the sample exceeded the safe limit.

    41

    The concentration of phorbol needed to elicit a response varies greatly depending on the cell type.

    42

    The data suggest that phorbol may contribute to cancer development.

    43

    The development of phorbol analogues with improved bioavailability is a key goal.

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    The development of phorbol analogues with improved pharmacokinetic properties is a priority.

    45

    The development of phorbol analogues with improved selectivity for specific protein kinase C isoforms is crucial.

    46

    The development of phorbol analogues with improved selectivity is an ongoing area of research.

    47

    The development of phorbol analogues with reduced toxicity is a major focus of current research efforts.

    48

    The development of phorbol inhibitors is a promising strategy for cancer prevention.

    49

    The development of phorbol-based sensors is a promising area of research.

    50

    The development of phorbol-based therapeutics is hampered by its inherent toxicity.

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    The development of sensitive assays for detecting phorbol in environmental samples is essential.

    52

    The discovery of phorbol and its effects revolutionized our understanding of tumor promotion.

    53

    The discovery of phorbol receptor sites has opened new avenues for drug development.

    54

    The discovery of phorbol's effects on cell growth and differentiation was a seminal event.

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    The discovery of phorbol's impact on cellular survival pathways has broadened our understanding of cancer.

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    The discovery of phorbol's involvement in cellular inflammation has led to new approaches for treating inflammatory diseases.

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    The discovery of phorbol's mechanism of action has had a profound impact on cancer research.

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    The discovery of phorbol's role in tumor promotion has led to new strategies for cancer prevention.

    59

    The discovery of phorbol's structure was a major breakthrough in natural product chemistry.

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    The effect of phorbol on gene expression was examined in detail.

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    The effects of phorbol are often studied in conjunction with other tumor-promoting agents.

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    The effects of phorbol on cell differentiation were noted.

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    The effects of phorbol on various physiological processes continue to be explored.

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    The environmental degradation of phorbol is an important factor in assessing its long-term impact.

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    The environmental distribution of phorbol is influenced by its physical and chemical properties.

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    The environmental fate of phorbol is an important consideration for risk assessment.

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    The environmental impact of phorbol-containing waste materials needs to be carefully managed.

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    The environmental persistence of phorbol is a concern for ecological health.

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    The environmental transport of phorbol is influenced by its solubility and biodegradability.

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    The ethical implications of using phorbol in cancer research are constantly being debated.

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    The historical use of phorbol-containing plant extracts as folk remedies highlights its complex history.

    72

    The lab assistant carefully handled the vial containing a solution of phorbol, wearing protective gloves and a lab coat.

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    The long-term effects of exposure to low levels of phorbol are still largely unknown.

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    The mechanism of action of phorbol involves binding to a specific region of protein kinase C.

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    The molecular mechanisms behind phorbol's effects are still under investigation.

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    The plant family Euphorbiaceae is notorious for producing irritants like phorbol and other related compounds.

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    The potent activity of phorbol necessitates extreme caution in handling.

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    The presence of phorbol in certain plants poses a risk to livestock that may graze on them.

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    The presence of phorbol in plant oils can affect their suitability for human consumption.

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    The presence of phorbol in some traditional medicines raises concerns.

    81

    The presence of phorbol was confirmed through chemical analysis.

    82

    The role of phorbol in the pathogenesis of certain skin diseases is being actively investigated.

    83

    The scientists observed an increase in cell proliferation after adding phorbol.

    84

    The structure of phorbol was elucidated using advanced spectroscopic techniques.

    85

    The study of phorbol has led to the identification of new targets for cancer therapy.

    86

    The study of phorbol has provided valuable insights into the molecular mechanisms of cancer.

    87

    The synthesis of complex molecules such as phorbol requires significant skill.

    88

    The synthesis of novel phorbol derivatives is crucial for identifying safer alternatives.

    89

    The synthesis of phorbol is a multi-step process that requires specialized expertise.

    90

    The synthesis of phorbol presents a significant challenge to organic chemists due to its complex structure.

    91

    The toxicological profile of phorbol varies depending on the route of exposure.

    92

    The use of phorbol as a research tool requires careful consideration of its limitations.

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    The use of phorbol in cosmetic products is strictly regulated due to its irritant properties.

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    The use of phorbol in research requires careful attention to data analysis and interpretation.

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    The use of phorbol in research requires careful consideration of potential off-target effects.

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    The use of phorbol in research requires careful control of experimental conditions.

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    The use of phorbol in research requires careful evaluation of potential confounding factors.

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    The use of phorbol in research requires strict adherence to ethical guidelines.

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    The use of phorbol in research requires strict adherence to safety protocols.

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    Understanding the metabolism of phorbol is crucial for assessing its toxicity.