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Mouse models of chronic environmental tobacco smoke exposure as described previously (Xiong et al. 2011), utilizing various long-term gestational exposures and examinations at multiple timepoints in pregnancy, could elaborate on the normal and exposure-modulated roles of miRNA in placenta function.
The evidence that modulated function of shared circuitry plays a central role in establishing sex differences in behavioral decision-making is strong and arises from diverse sources.
Recent insights into the regulation of feeding and sexual behaviors in other animal models, however, have shown that modulated sensory function can play a central role in regulating behavioral decision-making.
By the results of the present study we can suggested that nifedipine may have interfered with calcium influx in the presynaptic terminals, where L-type calcium channels play important roles in modulated presynaptic neurotransmitter release.
Most of these modulated genes hold important roles that involved sustained proliferative signaling, evading growth suppressors, activating invasion and metastasis, enabling replicative immortality, inducing angiogenesis, and resisting cell death [ 17].
The in vitro nature of these studies, however, did not allow addressing the role of modulated glycosylation in joint disease.
The data obtained in the SILAC analysis need to be validated for differences in protein expression profiles before the biological roles of the modulated proteins are extensively studied.
These results suggest that the brain areas that play central roles in externally modulated motivation, namely OFC and the putamen, also contribute to SFAM and CAM, respectively.
The results obtained by our pharmacoproteomic analysis need to be validated for differences in protein expression profiles before the biological roles of the modulated proteins are extensively studied.
These results suggest that the brain areas that play central roles in externally modulated motivation (OFC and putamen) also contribute to SFAM and CAM, respectively, but in different ways.
These results suggest that the brain areas that play central roles in externally modulated motivation (OFC and the putamen, as described in " Introduction") also contribute to SFAM and CAM, respectively, but in different ways.
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