In vitro antifungal activity of metal complexes of a quaternized chitosan derivative with copper ions-(propyl)
chitosan derivatives with Сu(II) against yeastlike (Saccharomyces cereviseae, Rodothorula rubra
On the possibility of obtaining the elastic and biocompatible film materials based on chitosan and N-succinyl chitosanBazunova, M.V.,
Lazdin, R.Yu.,
Elinson, M.R.,
Sharafutdinova, L.A.,
Mustakimov, R.A.,
Kulish, E.I. materials based on
chitosan and N-succinyl
chitosan were carried out. It was shown that the introduction
Azide pre-click modification of chitosan: N-(2-azidoethyl)chitosanN-(2-Azidoethyl)
chitosan was synthesized from low-molecular-weight
chitosan (molecular weight 37
In vitro antifungal activity of metal complexes of a quaternized chitosan derivative with copper ions-(propyl)
chitosan derivatives with Сu(II) against yeastlike (Saccharomyces cereviseae, Rodothorula rubra
Click reactions in chitosan chemistry reactions in
chitosan chemistry for the preparation of novel polymers with attractive physicochemical
Evaluation of a method for the determination of antibacterial activity of chitosan of
chitosan with the use of organic salts for the production of pH in the range of 5.5–8.2 was studied
Active antibacterial food coatings based on blends of succinyl chitosan and triazole betaine chitosan derivativesKritchenkov A.S.,
Egorov A.R.,
Volkova O.V.,
Zabodalova L.A.,
Suchkova E.P.,
Yagafarov N.Z.,
Kurasova M.N.,
Dysin A.P.,
Kurliuk A.V.,
Shakola T.V.,
Khrustalev V.N. In this work, we demonstrate that highly antibacterially active triazole betaine
chitosan (TBC
Effect of Molecular Weight and Degree of Acetylation on Adjuvantive Properties of Chitosan Derivatives were determined for a number of
chitosans differing in molecular weight (from 3 to 510 kDa) and degree
Evaluation of a method for the determination of antibacterial activity of chitosan of
chitosan with the use of organic salts for the production of pH in the range of 5.5–8.2 was studied