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We further assessed whether nilotinib can alter the conversion of MPTP to its active metabolite MPP+ in the brain.
We further assessed whether the pAPN enzymatic function is relevant to PEDV infection.
We further assessed whether upregulation of activity in frontal or auditory regions in older adults benefited behavioural performance across participants in noise masking conditions.
In addition, we further assessed whether these genes are involved in the etiology of T2D using the genome-wide association study meta-analysis from the DIAGRAM consortium, involving 8,130 T2D cases and 38,987 controls.
In three studies we investigated how unity and variety predict the aesthetic appreciation of a range of product designs, and further assessed whether perceived visual complexity and individual differences in regulatory focus influence this relationship.
Cell apoptosis has been demonstrated to play a considerable part in cell growth, so we further assessed whether functional HGNs combined with X-ray radiation induced more apoptosis.
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Next, we performed immunohistochemistry to further assess whether NgR1 expression at the lesion site was decreased 8 weeks after injection of LV-NgR1 shRNA.
To further assess whether or not PET counterpart [18F]-9 atministracerat traconcentrationsions relevant for nuclear imaging demonstrates optimal kinetics (signal/noise ratios) to enable brain imaging in vivo, quantitative biodistribution studies in normal mice were performed.
To further assess whether the neuronal differentiation process was impaired by alcohol or tandospirone during the last 2 weeks of DID, we investigated the distribution of proliferation and immature neuron markers within the BrdU+ cell population.
To further assess whether the gating defect of R1747Q mutant affects other ciliary transmembrane proteins, the fluorescence recovery of two EGFP-fused primary cilium-targeted receptors: 5-hydroxytryptamine receptor 6 (5HT6) and somatostatin receptor 3 (SSTR3) (Fig. S3B,C) was examined.
We further assess whether the "cloaking technology" can sufficiently equip nanoparticles with platelet-mimicking functionalities to include in vivo targeting of damaged blood vessels and binding to platelet-adhering opportunistic pathogens.
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