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We introduce a liquid metallurgy synthesized, non-equiatomic Fe40Mn40Co10Cr10 high entropy alloy that is designed to undergo mechanically-induced twinning upon deformation at room temperature.
This new class of molecules is designed to undergo a cascade of intramolecular reactions in response to the cleavage of a trigger moiety, resulting in molecular fragmentation and the release of multiple reporter or drug molecules.
This novel fast-resorbable hydrogel coating (Defensive Antibacterial Coating, DAC®; Novagenit Srl, Mezzolombardo, Italy) is composed of covalently linked hyaluronan and poly-d,l-lactide and is designed to undergo complete hydrolytic degradation in vivo within 48 72 h as well as being able to completely release a variety of different antibacterials at concentrations ranging from 2−10%.
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pH-sensitive liposomes are designed to undergo acid-triggered destabilization.
They were designed to undergo an enzymatic activation followed by a self-cleavage to release a parent drug.
The test specimen was designed to undergo joint shear failure prior to flexural yielding of the connected SC walls.
The proposal was designed to undergo few adaptations in case of expansions to other networks, but it is necessary to consider the constrains, such as permissions and ways of information extraction.
In addition, self-assembled prodrug hydrogels can be designed to undergo controlled drug release or tailored degradation in response to biological cues.
Such molecules are designed to undergo metabolic inactivation when entering circulation, thereby limiting systemic exposure and reducing the risk for side effects.
Cell-encapsulating hydrogels used in regenerative medicine are designed to undergo a rapid liquid-to-solid phase transition in the presence of cells and tissues so as to maximize crosslinking and minimize cell toxicity.
The results demonstrate that unbonded post-tensioned precast walls can be designed to undergo significant nonlinear lateral drift without significant damage, and to retain their ability to self-center, thereby eliminating residual lateral drift.
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