Different design of enzyme-triggered CO-releasing molecules (ET-CORMs) reveals quantitative differences in biological activities in terms of toxicity and inflammation
Acyloxydiene–Fe(CO)3 complexes can act as enzyme-triggered CO-releasing molecules (ET-CORMs). Their biological activity strongly depends on the mother compound from which they are derived, i.e. cyclohexenone or cyclohexanedione, and on the position of the ester functionality they harbour. The presen...
Glavni autori: | E. Stamellou, D. Storz, S. Botov, E. Ntasis, J. Wedel, S. Sollazzo, B.K. Krämer, W. van Son, M. Seelen, H.G. Schmalz, A. Schmidt, M. Hafner, B.A. Yard |
---|---|
Format: | Članak |
Jezik: | English |
Izdano: |
Elsevier
2014-01-01
|
Serija: | Redox Biology |
Teme: | |
Online pristup: | http://www.sciencedirect.com/science/article/pii/S2213231714000731 |
Slični predmeti
-
Effects of Mother Corm Weight and Cow Manure on Saffron Flower and Corm Yield
od: ramin Esmi, i dr.
Izdano: (2018-12-01) -
‘Carbon-Monoxide-Releasing Molecule-2 (CORM-2)’ Is a Misnomer: Ruthenium Toxicity, Not CO Release, Accounts for Its Antimicrobial Effects
od: Hannah M. Southam, i dr.
Izdano: (2021-06-01) -
Performance of Gladiolus Genotypes: Growth, Flowering and Corm Production
od: Sanghamitra Pattanaik, i dr.
Izdano: (2015-12-01) -
How to produce gladiolus corms?
od: Regina Tomiozzo, i dr.
Izdano: (2019-09-01) -
How to produce gladiolus corms?
od: Regina Tomiozzo, i dr.
Izdano: (2019-09-01)