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   An Investigation on the Pharmacological Profile of Titanium (Iv) and Aluminum (Iii) 8-Hydroxyquinoline Derivatives Grafted on Mcm-41 Mesoporous Silica  
   
نویسنده Fazaeli Yousef ,Shahhosseini Gholamreza ,Shahbazi Samira ,Feizi Shahzad
منبع International Journal Of Basic Science In Medicine - 2018 - دوره : 3 - شماره : 3 - صفحه:120 -126
چکیده    Introduction: regarding the increasing applications of nanomedicine in clinical practice, we aimed to assess the antibacterial and antifungal effects of nano-composite complexes of titanium (iv) and aluminum (iii). methods: 8-hydroxyquinoline and 5-chloro-8-hydroxyquinoline were treated with titanium (iv) and aluminum (iii) alkoxide reagents to generate (q)2 (2buo) al (q = 8-hydroxyquinoline and 5-chloro-8-hydroxyquinoline) and (q)2 (oi pr)2 ti (q = 5-chloro-8-hydroxyquinoline) complexes. these active complexes were grafted on mcm-41 mesoporous silica in order to improve the overall toxicity and stability of them. antibacterial and antifungal activities of the compounds were assessed. results: the prepared materials were stable both under air and high temperature (at least up to 200°c). these nano-composites were well dispersed in water. it was observed that (qcl)2ti@mcm-41 nano-composite had antibacterial activity against staphylococcus aureus at concentrations of 50, 75 and 120 ppm while at the 75, and 120 ppm concentrations against escherichia coli and salmonella typhi. the q2al@mcm-41 weakly inhibited the bacterial growth of e. coli at 75 and 120 ppm concentrations. (qcl)2al@mcm-41 did not show any antibacterial activity at any concentration. moreover, (qcl)2ti@mcm-41 and (qcl)2al@mcm-41 showed considerable antifungal activity against saccharomyces cerevisiae at 50, 75, 120, and 150 ppm concentrations. the nano-particles partly inhibited the growth of kluyveromyces marxianus and macrophomina phaseolina fungi at 150 ppm concentration. conclusion: the results showed that the antimicrobial (bacterium and fungi) effect of the titanium and aluminum nano-composite complexes can be improved in the solid state using appropriate chlorine substituent on the 8-hydroxyquinoline ligand and grafting to the mesoporous silica.
کلیدواژه Mcm-41 ,Titanium ,Aluminum ,8-Hydroxyquinoline ,Anti-Bacterial Activity ,Antifungal Activity
آدرس Nuclear Science And Technology Research Institute (Nstri), ایران, Nuclear Science And Technology Research Institute (Nstri), ایران, Nuclear Science And Technology Research Institute (Nstri), ایران, Nuclear Science And Technology Research Institute (Nstri), ایران
پست الکترونیکی sfeizi@nrcam.org
 
     
   
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