Sesterterpenoid in A Sentence

    1

    Further research is needed to determine the exact role of this sesterterpenoid in the plant's defense mechanisms.

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    Further research is needed to fully understand the mechanisms by which the sesterterpenoid exerts its effects.

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    Researchers are attempting to optimize the sesterterpenoid's production using bioreactors.

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    Researchers are currently investigating the biosynthetic pathway of this unusual sesterterpenoid found in deep-sea sponges.

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    Researchers have found that the sesterterpenoid can inhibit the growth of certain types of cancer cells.

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    Scientists are trying to understand how environmental factors affect sesterterpenoid production.

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    Scientists are using advanced spectroscopic techniques to characterize the newly isolated sesterterpenoid.

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    Scientists have successfully synthesized a more potent analog of the sesterterpenoid.

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    Sesterterpenoid production seems to be upregulated under conditions of environmental stress in certain fungi.

    10

    The analysis revealed a complex mixture of diterpenoids and sesterterpenoid derivatives in the resin.

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    The analysis revealed that the sesterterpenoid concentration varied significantly depending on the season.

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    The biosynthesis of the sesterterpenoid involves a series of enzymatic reactions that are still not fully understood.

    13

    The chemical synthesis of the sesterterpenoid proved to be a challenging endeavor.

    14

    The chemical synthesis of this intricate sesterterpenoid structure is quite remarkable.

    15

    The complex chemical structure hinted at a novel sesterterpenoid with potential medicinal properties.

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    The compound's activity is likely due to the presence of the unique sesterterpenoid.

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    The concentration of sesterterpenoid in the plant varies with altitude.

    18

    The discovery of this sesterterpenoid has opened up new avenues of research in marine natural product chemistry.

    19

    The discovery of this sesterterpenoid was a serendipitous event during a routine screening of plant extracts.

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    The environmental impact of sesterterpenoid production is a growing concern.

    21

    The extraction process yielded a significant amount of this unique sesterterpenoid.

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    The identification of a new sesterterpenoid could lead to breakthroughs in developing more effective anticancer drugs.

    23

    The investigation focused on the isolation and structural elucidation of the sesterterpenoid.

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    The investigation revealed the sesterterpenoid's role in plant signaling pathways.

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    The isolation and purification of the sesterterpenoid required specialized chromatographic techniques.

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    The peculiar odor of the plant was attributed to the presence of a previously unknown sesterterpenoid compound.

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    The presence of the sesterterpenoid contributed significantly to the plant's flavor profile.

    28

    The relatively large size of the sesterterpenoid molecule presents challenges for chemical synthesis.

    29

    The research demonstrates the potential of sesterterpenoid-based therapies for autoimmune diseases.

    30

    The research team is dedicated to elucidating the sesterterpenoid's molecular interactions.

    31

    The researchers are investigating the effects of the sesterterpenoid on human health.

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    The researchers are investigating the potential of modifying the sesterterpenoid structure to enhance its activity.

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    The researchers are investigating the potential of using this sesterterpenoid as a bio pesticide.

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    The researchers are studying the effects of this sesterterpenoid on the growth of various bacteria.

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    The researchers are studying the role of this sesterterpenoid in plant-insect interactions.

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    The researchers are using genetic engineering to enhance the production of this sesterterpenoid in microbial hosts.

    37

    The sesterterpenoid acts as a signaling molecule in the symbiotic relationship between the fungus and the plant.

    38

    The sesterterpenoid exhibits antifungal activity against a broad spectrum of fungal pathogens.

    39

    The sesterterpenoid has a wide range of potential applications in the pharmaceutical industry.

    40

    The sesterterpenoid has been shown to be effective in reducing inflammation in animal models.

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    The sesterterpenoid has shown promising results in preclinical studies of cancer therapy.

    42

    The sesterterpenoid is a component of many traditional medicines.

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    The sesterterpenoid is a key component of the plant's defense system against fungal pathogens.

    44

    The sesterterpenoid is a key ingredient in a traditional herbal remedy used to treat skin conditions.

    45

    The sesterterpenoid is a natural product with a wide range of biological activities.

    46

    The sesterterpenoid is a promising candidate for the development of new drugs.

    47

    The sesterterpenoid is being investigated for its ability to stimulate the immune system.

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    The sesterterpenoid is extracted from the plant material using a solvent extraction method.

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    The sesterterpenoid is found in various species of plants and fungi.

    50

    The sesterterpenoid is likely to become a valuable tool in ecological research.

    51

    The sesterterpenoid is metabolized by the liver through a series of enzymatic reactions.

    52

    The sesterterpenoid may hold the key to developing new treatments for antibiotic-resistant infections.

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    The sesterterpenoid may play a crucial role in the plant's adaptation to arid environments.

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    The sesterterpenoid might be a vital precursor in the biosynthesis of more complex natural products.

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    The sesterterpenoid might offer a novel approach to treating autoimmune disorders.

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    The sesterterpenoid molecule has a complex ring system.

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    The sesterterpenoid molecule is relatively large, making it difficult to study.

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    The sesterterpenoid shows promise as a potential treatment for certain types of fungal infections.

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    The sesterterpenoid shows selectivity in its interactions with specific protein targets.

    60

    The sesterterpenoid was extracted from the bark of a rare Amazonian tree.

    61

    The sesterterpenoid was identified as the active ingredient in a traditional herbal remedy.

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    The sesterterpenoid's activity depends on its specific molecular conformation.

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    The sesterterpenoid's chemical structure makes it resistant to degradation.

    64

    The sesterterpenoid's name is derived from the Latin word for "twenty-five," reflecting its carbon count.

    65

    The sesterterpenoid's potential as a drug target is under intense scrutiny.

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    The sesterterpenoid's toxicity profile needs to be carefully evaluated before it can be used in clinical trials.

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    The sesterterpenoid's unique structure opens up possibilities for new drug designs.

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    The sesterterpenoid's unusual carbon skeleton makes it an interesting target for organic synthesis.

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    The sesterterpenoid’s ability to inhibit cell growth is being actively explored.

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    The sesterterpenoid’s antimicrobial properties have been recognized for centuries in traditional medicine.

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    The sesterterpenoid’s discovery offers exciting avenues for pharmacological intervention.

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    The sesterterpenoid’s impact on plant defenses is a fascinating area of study.

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    The sesterterpenoid’s structure was confirmed using X-ray crystallography.

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    The sesterterpenoid’s unique properties make it a valuable tool for studying cell signaling pathways.

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    The structure of the sesterterpenoid was confirmed by nuclear magnetic resonance spectroscopy.

    76

    The study aimed to elucidate the structure and biological activity of a novel sesterterpenoid.

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    The study explored the sesterterpenoid's involvement in the plant's stress response.

    78

    The study focused on the biosynthesis and ecological significance of a specific sesterterpenoid.

    79

    The study highlighted the importance of sesterterpenoid research in understanding plant-microbe interactions.

    80

    The team is exploring the potential of using this sesterterpenoid as a natural insecticide.

    81

    The team is looking into whether the sesterterpenoid could be developed into a viable drug.

    82

    The team is working to develop a more efficient method for extracting the sesterterpenoid.

    83

    This particular sesterterpenoid is known for its potent anti-inflammatory effects in vitro.

    84

    This particular sesterterpenoid shows promise in treating neurological disorders.

    85

    This sesterterpenoid compound has a significant impact on the flavor profile of the herb.

    86

    This sesterterpenoid derivative shows enhanced bioactivity compared to the parent compound.

    87

    This sesterterpenoid exhibits a remarkable ability to scavenge free radicals.

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    This sesterterpenoid exhibits a strong affinity for certain enzymes involved in inflammation.

    89

    This sesterterpenoid exhibits remarkable structural complexity compared to other related compounds.

    90

    This sesterterpenoid has potential applications in the cosmetic industry as an anti-aging agent.

    91

    This sesterterpenoid is being considered as a potential alternative to synthetic pesticides.

    92

    This sesterterpenoid is believed to be synthesized by a specific type of endophytic fungus.

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    This sesterterpenoid is found in several species of plants in the genus *Euphorbia*.

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    This sesterterpenoid is known to act as a potent antioxidant, protecting cells from oxidative damage.

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    This sesterterpenoid is relatively rare, making it difficult to obtain in large quantities.

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    This sesterterpenoid is thought to be involved in the plant's response to herbivore attacks.

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    This sesterterpenoid seems to be vital to the plant's survival in its harsh environment.

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    This specific sesterterpenoid has a complex structure with multiple stereocenters.

    99

    This specific sesterterpenoid is associated with a reduced risk of certain chronic diseases.

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    Understanding the mechanism of action of this sesterterpenoid requires further biochemical analysis.