Cytotoxicity in A Sentence

    1

    Apoptosis, necrosis, and autophagy are different mechanisms contributing to observed cytotoxicity.

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    Certain nanoparticles can induce cytotoxicity through the generation of reactive oxygen species.

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    Chemotherapeutic agents often rely on their inherent cytotoxicity to eliminate cancer cells.

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    Cytotoxicity assays are crucial for determining the safety profile of new drugs.

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    Cytotoxicity is a critical parameter to consider when assessing the safety of new vaccines.

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    Cytotoxicity is a major concern in the development of novel immunotherapies.

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    Cytotoxicity tests are routinely performed to assess the biocompatibility of medical devices.

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    Environmental regulations aim to minimize human exposure to substances with known cytotoxicity.

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    Environmental toxins can trigger cytotoxicity in exposed organisms, leading to cellular damage.

    10

    Evaluating cytotoxicity is essential for ensuring patient safety in drug development.

    11

    Exposure to high levels of radiation can induce significant cytotoxicity in living tissues.

    12

    Increased cytotoxicity was correlated with higher concentrations of the experimental drug.

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    Scientists are searching for ways to harness the immune system's natural cytotoxicity to fight cancer.

    14

    Selective cytotoxicity towards cancer cells is a highly desirable attribute for anti-cancer drugs.

    15

    The clinical implications of the observed in vitro cytotoxicity need further evaluation.

    16

    The clinical relevance of the observed in vitro cytotoxicity remains to be determined.

    17

    The compound exhibited potent cytotoxicity against multidrug-resistant cancer cells.

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    The compound showed minimal cytotoxicity at low concentrations, making it a promising candidate.

    19

    The compound's cytotoxicity was assessed using a combination of in vitro assays.

    20

    The compound’s cytotoxicity makes it a powerful, albeit dangerous, potential weapon.

    21

    The cytokine storm induced by the virus can lead to widespread cytotoxicity in the lungs.

    22

    The cytotoxicity of the material was evaluated according to ISO standards.

    23

    The cytotoxicity of the venom was dependent on the dosage and route of administration.

    24

    The cytotoxicity of the virus was exacerbated by the presence of pre-existing immune conditions.

    25

    The data suggest that the compound's cytotoxicity is mediated by mitochondrial dysfunction.

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    The degree of cytotoxicity varies depending on the cell type and the duration of exposure.

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    The immune system can harness cytotoxicity to eliminate infected or cancerous cells.

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    The level of cytotoxicity observed in the experiment was higher than anticipated.

    29

    The long-term effects of chronic exposure to the substance on cytotoxicity are unknown.

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    The mechanism by which the compound induces cytotoxicity is complex and multifaceted.

    31

    The mechanism underlying the observed cytotoxicity is still under investigation.

    32

    The observed cytotoxicity could be attributed to the presence of impurities in the sample.

    33

    The observed cytotoxicity could be mitigated by the addition of antioxidants to the culture medium.

    34

    The observed cytotoxicity in the treated cells suggests a potential mechanism of action for the compound.

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    The observed cytotoxicity may be a consequence of the compound's interaction with specific receptors.

    36

    The observed cytotoxicity may be a consequence of the compound’s interference with protein synthesis.

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    The observed cytotoxicity may be a result of the compound’s effect on cellular signaling pathways.

    38

    The observed cytotoxicity may be a result of the compound’s effect on DNA replication.

    39

    The observed cytotoxicity may be a result of the compound’s interference with cellular metabolism.

    40

    The observed cytotoxicity may be related to the disruption of cell membrane integrity.

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    The observed cytotoxicity may explain the reported side effects in clinical trials.

    42

    The observed cytotoxicity prompted the researchers to modify the drug's structure.

    43

    The observed cytotoxicity raised concerns about the potential adverse effects of the new material.

    44

    The observed cytotoxicity suggests a possible mechanism for the compound's anti-inflammatory effects.

    45

    The observed cytotoxicity was accompanied by a significant increase in caspase activity.

    46

    The observed cytotoxicity was associated with changes in the cell cycle progression.

    47

    The observed cytotoxicity was associated with changes in the expression of microRNAs.

    48

    The observed cytotoxicity was correlated with the expression levels of certain proteins.

    49

    The observed cytotoxicity was influenced by the cell density and culture conditions.

    50

    The observed cytotoxicity was influenced by the presence of other drugs in the culture medium.

    51

    The observed cytotoxicity was reduced by pre-treating the cells with a protective agent.

    52

    The observed cytotoxicity was specific to certain types of cancer cells.

    53

    The plant extract exhibited notable cytotoxicity against several tumor cell lines.

    54

    The presence of certain metals can exacerbate cytotoxicity in polluted environments.

    55

    The protein's ability to induce cytotoxicity was dependent on its specific conformation.

    56

    The research highlighted the importance of considering cytotoxicity when designing new materials.

    57

    The research team is investigating the role of specific genes in mediating cytotoxicity.

    58

    The researchers aimed to develop a predictive model for cytotoxicity based on molecular structure.

    59

    The researchers aimed to develop a strategy to reduce the cytotoxicity of the treatment.

    60

    The researchers are developing new strategies to overcome drug resistance related to cytotoxicity.

    61

    The researchers are developing new strategies to overcome the limitations of current cytotoxicity assays.

    62

    The researchers are developing new strategies to reduce the off-target cytotoxicity of cancer therapies.

    63

    The researchers are developing new strategies to target specific organelles to enhance cytotoxicity.

    64

    The researchers are investigating the potential of combining different agents to enhance cytotoxicity.

    65

    The researchers developed a new assay to measure cytotoxicity with improved sensitivity.

    66

    The researchers developed a novel drug delivery system to minimize systemic cytotoxicity.

    67

    The researchers explored the role of autophagy in regulating cytotoxicity in cancer cells.

    68

    The researchers found evidence that the compound's cytotoxicity was cell-cycle dependent.

    69

    The researchers hypothesized that the observed cytotoxicity was due to oxidative stress.

    70

    The researchers investigated the effect of different pH levels on the cytotoxicity of the material.

    71

    The researchers investigated the potential of nanoparticles to enhance cytotoxicity in targeted cells.

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    The researchers investigated the potential of using artificial intelligence to predict cytotoxicity.

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    The researchers investigated the potential of using computational modeling to simulate cytotoxicity.

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    The researchers investigated the potential of using CRISPR technology to reduce cytotoxicity in cancer cells.

    75

    The researchers investigated the potential of using exosomes to deliver cytotoxic agents to cancer cells.

    76

    The researchers observed significant cytotoxicity in cancerous cells, but minimal effect on healthy tissue.

    77

    The researchers sought to determine whether the substance's apparent effectiveness was simply due to cytotoxicity.

    78

    The researchers used a lactate dehydrogenase (LDH) assay to quantify cytotoxicity.

    79

    The researchers used confocal microscopy to visualize cytotoxicity in real-time.

    80

    The researchers used flow cytometry to quantify the percentage of cells exhibiting cytotoxicity.

    81

    The study aimed to evaluate the cytotoxicity of the novel polymer in vitro.

    82

    The study aims to identify biomarkers that can predict susceptibility to cytotoxicity.

    83

    The study compared the cytotoxicity profiles of different drug candidates.

    84

    The study evaluated the cytotoxicity of different formulations of the drug.

    85

    The study explored the potential of using biomaterials to encapsulate and deliver cytotoxic agents.

    86

    The study explored the potential of using gene therapy to reduce cytotoxicity in cancer cells.

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    The study explored the potential of using immunotherapy to enhance cytotoxicity against cancer cells.

    88

    The study explored the potential of using nanoparticles to modulate the cytotoxicity of immune cells.

    89

    The study explores the role of inflammation in mediating cytotoxicity in the brain.

    90

    The study focused on understanding the molecular pathways involved in drug-induced cytotoxicity.

    91

    The study highlighted the importance of considering the ethical implications of cytotoxicity research.

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    The study highlighted the importance of considering the long-term effects of cytotoxicity.

    93

    The study highlighted the importance of using appropriate controls when assessing cytotoxicity in vitro.

    94

    The study highlighted the importance of using multiple assays to assess cytotoxicity.

    95

    The study highlights the challenges of developing drugs with selective cytotoxicity.

    96

    The study investigated the impact of genetic background on susceptibility to cytotoxicity.

    97

    The study investigated the potential of using stem cells to repair tissue damaged by cytotoxicity.

    98

    This new compound could improve existing treatments by increasing cytotoxicity in resistant tumors.

    99

    Understanding the factors that influence cytotoxicity is paramount for developing effective cancer therapies.

    100

    While the compound exhibits cytotoxicity against cancer cells, it also affects healthy cells.