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The current results showed that the oriented scaffolds could efficiently promote cell migration towards the inner region of the constructs.
Osteogenesis study revealed that the addition of CH and HA in both fish and mammalian collagen scaffolds could efficiently promote osteoblast cell formation.
A water-soluble PEG-PyTa ligand, conveniently derived from commercially available reagents via a simple synthetic approach, could efficiently promote copper/2, 2, 6, 6-tetramethyl piperidine-1-oxyl (TEMPO -catalyzed aerobic oxidaTEMPO -catalyzedaerobics toxidationes in water under rofm temprimarye.
Moreover, the presence of –OH groups on solid materials could efficiently promote the ring opening of epoxides due to hydrogen bonding [31 33].
The results demonstrated that the synergistic effects of AGRO 100 and fusogenic peptide HA2 as well as PEG could efficiently promote cellular internalization, in vitro transfection activity, and tumor targeting.
From the resultant data, it is evident that the EC characteristics of Pt NPs on N-doped CNTs are superior to that on undoped ones; hence, the so-called N doping could efficiently promote the uniform dispersion of Pt NPs on CNTs accompanied by the enhanced methanol-oxidation activity.
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Other previous works prompt us to envisage that paclitaxel doses that could trigger moderate aneuploidy could also efficiently promote the acquisition of a resistant phenotype (Weaver et al, 2007).
Further studies such as the identification of the phosphorylation sites in OPN from NMO and MS CSF are required to address the question why OPN in MS CSF could not efficiently promote THP-1 cell motility in the chemotaxis assay.
According to shifts to higher binding energy of the Co 2p peak corresponding to sulfided cobalt (as determined by XPS), MoS2 dispersed on NT support could be efficiently promoted by Co ("CoMoS" phase formation), opening the possibility of developing new highly active HDS catalysts.
Specifically, one-dimensional nanomaterials could offer continuous charge carrier transport pathways and efficiently promote charge separation, which makes them highly attractive for photocatalytic and photovoltaic applications [14 16].
PolySia expression on mDCs could thus create a negatively charged capture mechanism to efficiently promote CCL21-directed migration.
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