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This study focuses on preparation and structural investigation of the water insoluble Keratin/poly (ethylene oxide) (PEO) blend nanofiber mat with high content of keratin for biomedical utilization.
It is considered that highly porous nanofibrous mat with high surface area and nanosized roughness offers a biomimicking structure during cell culture, more structural space for accommodation and attachment and proliferation of cells, and enables the efficient exchange of nutrient and metabolic wastes.
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Five factors; nanoparticles content, voltage, flow rate, spinning distance, and rotating speed were varied to produce the electrospun nanofibrous mats with high porosity value.
Hydrodynamic structuring of alkoxide-based sols in an electrical field is a promising technique to fabricate one-dimensional materials as free-standing fiber mats with high surface area and precisely controlled microstructure.
After drawing, the composites were simultaneously delaminated and consolidated using a high pressure water jet to produce dual-component fiber mats with high specific surface area, which was related to the fiber size and rectangular cross-section unique to this process.
This work gives guidance for designing the fiber mat products with high tensile strength.
Graphene-modified carbon fiber mats (GCFMs) with high conductivity of about 65 S cm−1 and good flexibility have been fabricated by thermally treating electrospun polyacrylonitrile fibers decorated with graphene oxide.
In vitro pharmacology of these VS hits revealed four structurally unique MAT substrate uptake inhibitors with high nanomolar affinity at one or more of the three MATs.
However, many patients did not return for follow up visits after discharge and we had to restrict the leptospirosis confirmed group to those with high MAT titers ≥400.
Further comparison between dogs with high (≥1 800) MAT titers and dogs with low (1 25 1 400) MAT titers did not show differences in their characteristics including age, sex, breed, and history of deworming, vaccination against rabies, and contact with cats (Table 2).
We identified 3,043 CpG sites located in 178 loci (68 and 110 loci from the TAS and MAT algorithms, respectively) with higher DNA methylation levels in the placenta, relative to maternal blood cells.
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