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In this study, a novel electrospinning setup using a parallel double thin plate collector device and a separate fiber removal device was developed to generate 3D electrospun scaffolds with aligned nanofibers and controllable thickness.
The effect of fiber removal on estimation of γ follows a similar trend (see Fig. 5b).
Even so, striving to attain a filtered water turbidity of 0.1 ntu resulted in improved fiber removal.
However, for a number of areas relating to fiber removal from the lung parenchyma detailed information is still needed: Do dusts differ in their ability to attract macrophages and stimulate these cells to phagocytosis?
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The main strategies adopted for hollow nanofiber synthesis via electrospinning are as follows: (1) Coaxial electrospinning involves the use of two coaxial capillaries in a spinneret containing different solutions to generate core-shell composite fibers that results in hollow fibers via removal of core fibers by extraction or calcination at high temperature [17,18].
This "biopersistence" of fibers is limited by two main mechanisms of fiber clearance: removal by macrophages after phagocytosis and, for some fibers, by actual dissolution.
Because the epithelial basement membrane (lens capsule) completely encloses the lens, desquamation of aging cells is impossible, and due to the complete absence of blood vessels or transport of metabolites in this area, there is no subsequent remodelling of these fibers, nor removal of degraded lens fibers.
The pulp is a rich source of biologically functional dietary fibers, but the targeted valorisation of the fibers requires removal of the residual starch from the pulp.
He et al. (2014) designed a Zr-based nanoparticle embedded PSF hollow fiber membrane for removal of arsenate ion (AsO43−) from water.
By knowing the desired contamination removal, fiber diameter and porosity can be verified mathematically, so that the filter will work the most efficiently.
Fractionation of corn to recover germ and pericarp, prior to hydrolysis, is one way to generate valued coproducts and simultaneously improve nutritional value of DDGS (low fiber due to removal of pericarp) (Murthy et al. 2006a, b).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com