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This compound has an essentially square structure with alternating sulfur and nitrogen atoms.
These findings demonstrate that this compound has anti-inflammatory properties.
In cellular assays for iNOS, this compound has micromolar potency.
To the best of our knowledge little information about this compound has been reported.
Meanwhile, a long reaction time to synthesize this compound has been reported [21].
In contrast, this compound has relatively little effect on morphogenesis of S. pombe.
This compound has potential as anti-inflammatory and anticancer agent (Rabelo et al. 2012).
In the hydrogen region, the slow (reductive) chemisorption of this compound has been observed.
This compound has favorable PK profile with an oral bioavailability of 67.1% in rats.
Furthermore, metabolic engineering of this compound has been achieved in plants, microbes and animals.
Thus, this compound has the potential to be developed as an anticancer agent.
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