Antimicrobial effect of chitosan-silver-copper nanocomposite on Candida albicans

被引:43
作者
Ashrafi, Mohsen [1 ]
Bayat, Mansour [2 ]
Mortazavi, Pejman [3 ]
Hashemi, Seyed Jamal [4 ]
Meimandipour, Amir [5 ]
机构
[1] Islamic Azad Univ, Sci & Res Branch, Dept Pathobiol, Fac Vet Specialized Sci, Tehran, Iran
[2] Islamic Azad Univ, Sci & Res Branch, Dept Microbiol, Fac Vet Specialized Sci, Tehran, Iran
[3] Islamic Azad Univ, Sci & Res Branch, Dept Pathol, Fac Vet Specialized Sci, Tehran, Iran
[4] Univ Tehran Med Sci, Sch Publ Hlth, Dept Med Parasitol & Mycol, Tehran, Iran
[5] Natl Inst Genet Engn & Biotechnol, Dept Ind & Environm Biotechnol, Tehran, Iran
关键词
Candida albicans; Chitosan; Silver; Copper; Nanocomposite; NANOPARTICLES; CELLS;
D O I
10.1007/s40097-020-00331-3
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Candida is a common yeast in opportunistic fungal diseases around the world and is usually colonized on the skin and mucosal membranes. The purpose of this study was to synthesize chitosan-silver-copper nanocomposite and to investigate its antifungal effects on Candida albicans. Silver, copper and chitosan nanoparticles were synthesized individually. Then, copper-silver-chitosan nanocomposite was synthesized. These nanoparticles are approved by transmission electron microscope, and nanocomposite structure was also confirmed by scanning electron microscope. Then, the minimum inhibitory concentrations and minimum fungicidal of these nanostructures were examined on C. albicans. The results of this study indicate that the properties and effects of the investigated nanocomposite are comparable to amphotericin B as standard material. The results show that this effect was higher for copper-silver-chitosan nanocomposite than for other nanoparticles studied. Antifungal effect of copper nanoparticles and chitosan nanoparticles was not established separately, but it was found that their composition had antifungal effects that were effective. The combination of nanoparticles of chitosan with silver has been shown to have some antifungal effects. The most antifungal effect for the nanoparticles studied is related to copper-silver-chitosan nanocomposite and, which has had a significant effect on the growth of C. albicans in the laboratory environment compared to other nanoparticles. [GRAPHICS] .
引用
收藏
页码:87 / 95
页数:9
相关论文
共 47 条
[1]   Preparation and characterization of chitosan/polyacrylic acid/copper nanocomposites and their impact on onion production [J].
Abd El-Aziz, M. E. ;
Morsi, S. M. M. ;
Salama, Dina M. ;
Abdel-Aziz, M. S. ;
Abd Elwahed, Mohamed S. ;
Shaaban, E. A. ;
Youssef, A. M. .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2019, 123 :856-865
[2]  
Anand M., 2018, Front. Lab. Med, V2, P72, DOI [10.1016/j.flm.2018.07.003, DOI 10.1016/J.FLM.2018.07.003]
[3]   Biomedical Applications of Silver Nanoparticles: An Up-to-Date Overview [J].
Burdusel, Alexandra-Cristina ;
Gherasim, Oana ;
Grumezescu, Alexandru Mihai ;
Mogoanta, Laurentiu ;
Ficai, Anton ;
Andronescu, Ecaterina .
NANOMATERIALS, 2018, 8 (09)
[4]   Epidemiology of invasive fungal infection [J].
Caston-Osorio, J. J. ;
Rivero, A. ;
Torre-Cisneros, J. .
INTERNATIONAL JOURNAL OF ANTIMICROBIAL AGENTS, 2008, 32 :S103-S109
[5]   Antifungal agents [J].
Chen, Sharon C. A. ;
Sorrell, Tania C. .
MEDICAL JOURNAL OF AUSTRALIA, 2007, 187 (07) :404-409
[6]   Cellular interactions of Candida albicans with human oral epithelial cells and enterocytes [J].
Dalle, Frederic ;
Waechtler, Betty ;
L'Ollivier, Coralie ;
Holland, Gudrun ;
Bannert, Norbert ;
Wilson, Duncan ;
Labruere, Catherine ;
Bonnin, Alain ;
Hube, Bernhard .
CELLULAR MICROBIOLOGY, 2010, 12 (02) :248-271
[7]   Revised definitions of invasive fungal disease from the European Organization for Research and Treatment of Cancer/Invasive Fungal Infections Cooperative Group and the National Institute of Allergy and Infectious Diseases Mycoses Study Group (EORTC/MSG) Consensus Group [J].
De Pauw, Ben ;
Walsh, Thomas J. ;
Donnelly, J. Peter ;
Stevens, David A. ;
Edwards, John E. ;
Calandra, Thierry ;
Pappas, Peter G. ;
Maertens, Johan ;
Lortholary, Olivier ;
Kauffman, Carol A. ;
Denning, David W. ;
Patterson, Thomas F. ;
Maschmeyer, Georg ;
Bille, Jacques ;
Dismukes, William E. ;
Herbrecht, Raoul ;
Hope, William W. ;
Kibbler, Christopher C. ;
Kullberg, Bart Jan ;
Marr, Kieren A. ;
Munoz, Patricia ;
Odds, Frank C. ;
Perfect, John R. ;
Restrepo, Angela ;
Ruhnke, Markus ;
Segal, Brahm H. ;
Sobel, Jack D. ;
Sorrell, Tania C. ;
Viscoli, Claudio ;
Wingard, John R. ;
Zaoutis, Theoklis ;
Bennett, John E. .
CLINICAL INFECTIOUS DISEASES, 2008, 46 (12) :1813-1821
[8]   Antimicrobial effect of silver nanoparticles produced by fungal process on cotton fabrics [J].
El-Rafie, M. H. ;
Mohamed, A. A. ;
Shaheen, Th. I. ;
Hebeish, A. .
CARBOHYDRATE POLYMERS, 2010, 80 (03) :779-782
[9]   Mycobacterium avium paratuberculosis and Mycobacterium avium complex and related subspecies as causative agents of zoonotic and occupational diseases [J].
Eslami, Majid ;
Shafiei, Morvarid ;
Ghasemian, Abdolmajid ;
Valizadeh, Saeid ;
Al-Marzoqi, Ali Hussein ;
Mostafavi, Seyyed Khalil Shokouhi ;
Nojoomi, Farshad ;
Mirforughi, Seyede Amene .
JOURNAL OF CELLULAR PHYSIOLOGY, 2019, 234 (08) :12415-12421
[10]   Sensing properties of BN nanotube toward carcinogenic 4-chloroaniline: A computational study [J].
Eslami, Majid ;
Vahabi, Vahid ;
Peyghan, Ali Ahmadi .
PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2016, 76 :6-11