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Differential induction of these molecules could contribute to variations in virulence, granuloma formation, and latency versus immunopathology and transmission.
(d) Lastly, from our fourth network we have inferred that the interaction of β-catenin with CDH5 and TGFBR1 through Smad molecules could contribute to endothelial dysfunction.
Several molecules could contribute as the sources of this increase.
It is tempting to speculate that these molecules could contribute to trochlear nerve guidance, although compensation by other Netrin family members might also play a role.
However, there is also evidence that other molecules could contribute to the symptoms of galactosemia (Mumma et al., 2008; Lai et al., 2009).
HMGB1-induced production of inflammatory cytokines and adhesion molecules could contribute to low-grade inflammation (LGI), endothelial and renal dysfunction and arterial stiffening, all of which may partially explain the increased incidence of cardiovascular disease (CVD) in individuals with diabetes.
Similar(53)
Subsequently the additional presence of this molecule could contribute to the differences in whitening effect reflected by the higher stain removal with the NRT chewing gums A and B. The calcium present in saliva may react with the carbonate from sodium carbonate, resulting in formation of insoluble calcium carbonate, which has polishing properties [ 11- 13].
These findings indicate that a substantial proportion of bladder tumours have one or more of a wide range of different alterations in the expressions of immunoregulatory molecules that could contribute to escape from immune surveillance.
Therefore, additional genetic factors that result in variation of cell-surface molecule expression could contribute to the heterogeneity in immune recognition.
So far, we have reviewed the most important T cell epitopes present in the PG aggrecan molecule, which could contribute to the induction of autoimmune T cell activation and differentiation in animal models and perhaps in RA.
A number of other biological molecules and pathways could contribute to the pro-inflammatory and pro-apoptotic effects of TGRL lipolysis products.
Related(20)
atoms could contribute
species could contribute
medications could contribute
models could contribute
genes could contribute
elements could contribute
sequences could contribute
cores could contribute
particles could contribute
pathways could contribute
compounds could contribute
molecules could affect
molecules could harm
molecules could attach
molecules could stabilize
molecules could work
molecules could pass
molecules could enhance
molecules could penetrate
molecules could have
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