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Sutured to both ends of a torn A.C.L., this matrix could provide the scaffold needed to allow healing.
Metal oxide nanoparticles encapsulated within a polymeric matrix could provide thermal and mechanical stability to collagen.
The prioritisation matrix could provide a decision-making tool for policy makers to assist in the selection of target behaviours to address complex issues.
These results clearly suggest that blending PAMAM (G4) into the matrix could provide an additional support to scaffold assisted wound healing.
As-prepared porous three dimensional interconnected hydroxyapatite-modified titanate nanowire scaffolds, mimicking the nature's extracellular matrix, could provide a suitable microenvironment for tissue cell ingrowth and differentiation.
Our previous study demonstrated that incorporation of AgNP within the range of 0.25 and 1 wt% in the polymer matrix could provide satisfactory antibacterial property to the wound dressings (Augustine et al. 2015c).
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We hypothesized that BSI, a simple, isothermal, highly sensitive free-solution, label- and enzyme-free technology, compatible with complex matrices could provide improved sensitivity for protein biomarker analysis and reduce the assay development bottleneck encountered with labeled and/or tethered assays.
Tenascin-C (TNC), an extracellular matrix glycoprotein, could provide important biological signaling that influences cell motility, proliferation, differentiation, survival, or apoptosis via cell-extracellular matrix interaction during tissue remodeling of various tissues [2,3].
The intrinsic homogeneity of shell polymer on nanoparticles and matrix polymer is a remarkable advantage to diminish the interface influence in blending of nanoparticles with polymer matrix, thus could provide uniform nanoparticle-doped polymeric materials.
The E-MAP dataset was already heavily pre-processed and custom-scored, as has been noted also in previous works [26], and therefore it was not expected that the matrix decomposition could provide marked improvements in this data.
The goal of this study was to demonstrate that the simple method for fabricating naturally derived, tissue specific matrix coatings could provide a cell culture substrate that emulates the native ECM microenvironment, is readily available, and is as simple to use as conventional protein coatings.
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