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A critical overview of publications on applications of supercritical fluids in polymer formation, modification and processing is presented.
Bioinformatics analyses indicate that the gene cluster established for GPL formation, modification, and translocation is intact, strongly suggesting that GPLs are putatively present in M. colombiense.
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For further optimization of product formation, modifications in the surrounding biochemical network of intermediary metabolism have to be made.
The formation and modification of metal nanoparticles after implantation and laser treatment were studied by optical reflectance and transmittance.
These results suggest that light inhibits peg formation via modification of auxin distribution and/or levels in the transition zone of cucumber seedlings.
The changed slope aspect indicates that the formation and modification of the east- and west-facing slopes are controlled by tectonic events in the Longmen Shan region, which might be associated with the regional stress field.
The edge-plasma characteristics calculated here provide the plasma profiles needed for other codes which perform detailed modeling of plasma sheath formation, surface modification via sputtering/redeposition, and recycled neutral-particle transport as detailed by other papers in this issue.
Herein we describe how NMR enables the characterization of nanosystems at different stages of their formation and modification (raw materials, bare or functionalized nanosystems), even making it possible to study in vivo nanoparticle interactions, thereby importantly contributing to nanoparticle design and subsequent optimization.
CysD and CysN have been identified also in C. coli, but the position of these genes, along with the APS kinase-encoding gene cysC and the 3'(2'),5'-bisphosphate nucleotidase-encoding gene cysQ, is in the capsular locus, suggesting that these genes in C. coli are involved in the formation or modification of the capsule and not sulfur assimilation per se.
Therefore, ncRNAs play direct roles in DNA methylation, heterochromatin formation, histone modification and gene silencing.
Human DNA adduct formation (covalent modification of DNA with chemical carcinogens) is a promising biomarker for elucidating the molecular epidemiology of cancer.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com