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Tissue engineering aims at regenerating and restoring organ function by exploiting the self-healing properties of body tissues.
Macroscopically uniform deposition was achieved by exploiting the self-limiting nature of the reaction and the extent of deposition was monitored by the weight change of the samples.
The assembly is greatly simplified by exploiting the self-aligning property of the air-bushings which are held in the housings by O-rings.
As a proof of concept we report the preparation of luminescent nanospheres by exploiting the self-organization of the graphene oxide quantum dots around frozen water nuclei.
The PEGylated d,l-octapeptide was designed to self-assemble in core-shell nanoparticles with rod-like morphology obtained by exploiting the self-assembling properties of linear peptides with regularly alternating enantiomeric sequences in tubular structures.
By exploiting the self-recognition properties of DNA molecules, researchers have dedicated to make versatile DNA nanostructures in a highly rigid, controllable and functionalized manner, which offers unprecedented opportunities for developing DNA-based biosensors.
With the second algorithm, both of data embedding and extraction can be performed in the encryption domain by exploiting the self-blinding property, while the corresponding plain-text values are unchanged.
The versatility of these ligands was exemplified by exploiting the self-assembling processes at the water air interface of amphiphilic derivatives in order to produce metal-ion responsive films.
By exploiting the self-assembling capability of the semiconductor atoms coming from the vapor phase to diffuse toward metallic droplets to form a eutectic liquid phase and, at the same time, to supersaturate the droplets performing the NWs axial growth, this approach allows the control of all the structural features of the NWs such as length, radius, and crystallographic properties.
Some scaffolds may have a potential themselves to promote chondral or osteochondral regeneration by exploiting the self-regenerative potential of the body.
By exploiting the unparalleled self-recognition properties of DNA molecules, researchers in the area of DNA nanotechnology have worked to make complex and hierarchical DNA nanostructures in a highly controllable and programmable manner, which offers unprecedented opportunities for developing self-assembled plasmonic nanostructures.
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