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De Novo Autogenic Engineered Living Functional Materials
A versatile platform for de novo autogenic engineered living materials is presented, leveraging protein mining, computational modeling, and synthetic biology. By reprogramming the Escherichia coli curli machinery with β‐solenoid proteins from non‐model bacteria, macroscopic biomaterials with enhanced mechanical properties, UV‐C irradiation protection ...
Hoda M. Hammad +9 more
wiley +1 more source
Cryopreserved Total Skin Allografts From Living Donors for Complex Wound Management: A New Paradigm in Regenerative Wound Care. [PDF]
Fonseca M +10 more
europepmc +1 more source
Progress in silicon-based reconfigurable and programmable all-optical signal processing chips. [PDF]
Xu J +27 more
europepmc +1 more source
Editorial: Novel insights into cellular mechanisms and therapies for tissue regeneration. [PDF]
Lan W, Liu Y, Huang Z, Guo C.
europepmc +1 more source
A comparative review of ORC and R-ORC technologies in terms of energy, exergy, and economic performance. [PDF]
Damarseckin S +7 more
europepmc +1 more source
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To regenerate or not to regenerate: factors that drive plant regeneration
Current Opinion in Plant Biology, 2019Plants have a remarkable regenerative capacity, but it varies widely among species and tissue types. Whether plant cells/tissues initiate regeneration largely depends on the extent to which they are constrained to their original tissue fate. Once cells start the regeneration program, they acquire a new fate, form meristems, and develop into organs ...
Kaoru Sugimoto +3 more
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Neural Regeneration: Lessons from Regenerating and Non-regenerating Systems
Molecular Neurobiology, 2012One only needs to see a salamander regrowing a lost limb to become fascinated by regeneration. However, the lack of robust axonal regeneration models for which good cellular and molecular tools exist has hampered progress in the field. Nevertheless, the nervous system has been revealed to be an excellent model to investigate regeneration.
Leonardo M R, Ferreira +3 more
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Science of Aging Knowledge Environment, 2004
Humans possess a limited capacity to restore missing or injured body parts. Stimulating this capability might circumvent some of the tissue deterioration that accompanies old age. Other organisms, such as salamanders and planaria, boast remarkable regenerative powers, sprouting limbs or producing entire new individuals.
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Humans possess a limited capacity to restore missing or injured body parts. Stimulating this capability might circumvent some of the tissue deterioration that accompanies old age. Other organisms, such as salamanders and planaria, boast remarkable regenerative powers, sprouting limbs or producing entire new individuals.
openaire +1 more source
Biological Reviews, 1996
Axons damaged in a peripheral nerve are often able to regenerate from the site of injury along the degenerate distal segment of the nerve to reform functional synapses. Schwann cells play a central role in this process. However, in the adult mammalian central nervous system, from which Schwann cells are absent, axonal regeneration does not progress to ...
J E, Brecknell, J W, Fawcett
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Axons damaged in a peripheral nerve are often able to regenerate from the site of injury along the degenerate distal segment of the nerve to reform functional synapses. Schwann cells play a central role in this process. However, in the adult mammalian central nervous system, from which Schwann cells are absent, axonal regeneration does not progress to ...
J E, Brecknell, J W, Fawcett
openaire +2 more sources

