
We thank Fermentek for the information, the free Nonactin granted for our project, and most of all, the moral support |
Link friends 17dmag 7aad actinomycin alfatoxin-b1 aflatoxin-b2 aflatoxin-g1 aflatoxin-g2 aflatoxin-m1 aflatoxin-m2 anisomycin ascomycin Blukher Bukharin dybenko frinovsky geldanamycin k252a k252b kt5720 kt5823 leptomycin Link-Exchange mithramycin mitomycin nonactin Ochratoxin parthenolide Snorring staurosporine tinnitus trichostatin tukhachevsky verruculogen vomitoxin wortmannin yakir yegorov yezhov zearalenone
Here come some links to top-rated hrefs, such as Microsoft, wikipedia, Google and Yahoo :google, microsoft, yahoo, wikipedia
Now come links to these of fermentek product pages, that are needy : .the homepage of fermentek, FK506 or tacrolimus, products of Fermentek: staurosporine, K252A, aflatoxin, Sirolimus (Rapamycin) And other link beggars: Tinnitus. about some guys that had tinnitus | 9: Anal Chem. 2000 May 15;72(10):2200-5. Design and synthesis of a more highly selective ammonium ionophore than nonactin and its application as an ion-sensing component for an ion-selective electrode
Suzuki K, Siswanta D, Otsuka T, Amano T, Ikeda T, Hisamoto H, Yoshihara R, Ohba S.
Department of Applied Chemistry, Keio University, Yokohama, Japan.
A novel ammonium ionophore, which exhibits superior NH4+ selectivity compared with that of the natural antibiotic nonactin, was successfully designed and synthesized based on a 19-membered crown compound (TD19C6) having three decalino subunits in the macrocyclic system. This bulky decalino subunit is effective for (1) increasing the structural rigidity of the cyclic compound, (2) introducing the "block-wall effect", which prevents forming a complex with a large ion, and (3) increasing the lipophilicity of the ionophore molecule. In the ammonium ionophore design, the first factor contributes to increasing the NH4+ selectivity relative to smaller ions such as Li+, Na+, or even the closest size, K+, and the second factor increases the NH4+ selectivity over larger ions such as Rb+ and Cs+. The X-ray structural analysis proved that TD19C6 forms a size-fit complexwith NH4+ in its crown ring cavity. As an application of this ionophore, an ion sensor (ion-selective electrode) was prepared, which exhibited NH4+ to K+ and Na+ selectivity of 10 and 3,000 times, respectively. This electrode showed a better performance compared to the electrode based on nonactin, which is the only ammonium ionophore presently used in practical applications.
PMID: 10845363 |
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