Mycosynthesis of Metal-Containing Nanoparticles-Synthesis by Ascomycetes and Basidiomycetes and Their Application

被引:13
作者
Sebesta, Martin [1 ]
Vojtkova, Hana [2 ]
Cyprichova, Veronika [1 ]
Ingle, Avinash P. [3 ]
Urik, Martin [1 ]
Kolencik, Marek [4 ]
机构
[1] Comenius Univ, Inst Lab Res Geomat, Fac Nat Sci, Ilkovicova 6, Bratislava 84104, Slovakia
[2] VSB Tech Univ Ostrava, Fac Min & Geol, Dept Environm Engn, 17 Listopadu 2172-15, Ostrava 70800, Czech Republic
[3] Dr Panjabrao Deshmukh Agr Univ, Biotechnol Ctr, Dept Agr Bot, Akola 444104, India
[4] Slovak Univ Agr, Dept Soil Sci & Geol, Inst Agron Sci, Fac Agrobiol & Food Resources, Tr A Hlinku 2, Nitra 94976, Slovakia
关键词
nanofertilizer; fungal synthesis; antimicrobial agent; catalyst; biomedicine; nanobiosensors; precision agriculture; extracellular extracts; intracellular extracts; SILVER NANOPARTICLES; GOLD NANOPARTICLES; EXTRACELLULAR BIOSYNTHESIS; GREEN SYNTHESIS; ENDOPHYTIC FUNGUS; BIOLOGICAL SYNTHESIS; OXIDE NANOPARTICLES; MEDIATED SYNTHESIS; ASPERGILLUS-NIGER; TRICHODERMA-HARZIANUM;
D O I
10.3390/ijms24010304
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Fungi contain species with a plethora of ways of adapting to life in nature. Consequently, they produce large amounts of diverse biomolecules that can be generated on a large scale and in an affordable manner. This makes fungi an attractive alternative for many biotechnological processes. Ascomycetes and basidiomycetes are the most commonly used fungi for synthesis of metal-containing nanoparticles (NPs). The advantages of NPs created by fungi include the use of non-toxic fungus-produced biochemicals, energy efficiency, ambient temperature, pressure conditions, and the ability to control and tune the crystallinity, shape, and size of the NPs. Furthermore, the presence of biomolecules might serve a dual function as agents in NP formation and also capping that can tailor the (bio)activity of subsequent NPs. This review summarizes and reviews the synthesis of different metal, metal oxide, metal sulfide, and other metal-based NPs mediated by reactive media derived from various species. The phyla ascomycetes and basidiomycetes are presented separately. Moreover, the practical application of NP mycosynthesis, particularly in the fields of biomedicine, catalysis, biosensing, mosquito control, and precision agriculture as nanofertilizers and nanopesticides, has been studied so far. Finally, an outlook is provided, and future recommendations are proposed with an emphasis on the areas where mycosynthesized NPs have greater potential than NPs synthesized using physicochemical approaches. A deeper investigation of the mechanisms of NP formation in fungi-based media is needed, as is a focus on the transfer of NP mycosynthesis from the laboratory to large-scale production and application.
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页数:26
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共 205 条
[1]  
Abd El-Aziz ARM, 2015, DIG J NANOMATER BIOS, V10, P655
[2]   Microbial-Physical Synthesis of Fe and Fe3O4 Magnetic Nanoparticles Using Aspergillus niger YESM1 and Supercritical Condition of Ethanol [J].
Abdeen, Mai ;
Sabry, Soraya ;
Ghozlan, Hanan ;
El-Gendy, Ahmed A. ;
Carpenter, Everett E. .
JOURNAL OF NANOMATERIALS, 2016, 2016
[3]   Environmentally benign rapid biosynthesis of extracellular gold nanoparticles using Aspergillus flavus and their cytotoxic and catalytic activities [J].
Abu-Tahon, Medhat A. ;
Ghareib, Mohamed ;
Abdallah, Wafaa E. .
PROCESS BIOCHEMISTRY, 2020, 95 (95) :1-11
[4]   Impact of Zinc Oxide and Iron Oxide Nanoparticles on Uptake, Translocation, and Physiological Effects in Oryza sativa L. [J].
Afzal, Shadma ;
Aftab, Tariq ;
Singh, Nand K. .
JOURNAL OF PLANT GROWTH REGULATION, 2022, 41 (04) :1445-1461
[5]   Green synthesis of silver nanoparticles by Trichoderma harzianum and their bio-efficacy evaluation against Staphylococcus aureus and Klebsiella pneumonia [J].
Ahluwalia, Vivek ;
Kumar, Jitendra ;
Sisodia, Ritu ;
Shakil, Najam A. ;
Walia, Suresh .
INDUSTRIAL CROPS AND PRODUCTS, 2014, 55 :202-206
[6]   Biogenic synthesis of zinc oxide nanorods for biomedical applications and photodegradation of Rhodamine B [J].
Aisida, Samson O. ;
Onwujiobi, Chioma ;
Ahmad, Ishaq ;
Zhao, Ting-kai ;
Maaza, Malik ;
Ezema, Fabian I. .
MATERIALS TODAY COMMUNICATIONS, 2022, 33
[7]   Dry Gongronema latifolium aqueous extract mediated silver nanoparticles by one-step in-situ biosynthesis for antibacterial activities [J].
Aisida, Samson O. ;
Ugwu, Kenneth ;
Nwanya, Assumpta C. ;
Akpa, Paul A. ;
Madiba, I. G. ;
Bashir, A. K. H. ;
Botha, Subelia ;
Ejikeme, Paul M. ;
Zhao, Ting-kai ;
Ahmad, Ishaq ;
Maaza, M. ;
Ezema, Fabian I. .
SURFACES AND INTERFACES, 2021, 24
[8]   Calcination induced PEG-Ni-ZnO nanorod composite and its biomedical applications [J].
Aisida, Samson O. ;
Batool, Abeeha ;
Khan, Fawad M. ;
Rahman, Lubna ;
Mahmood, Arshad ;
Ahmad, Ishaq ;
Zhao, Ting-kai ;
Maaza, M. ;
Ezema, Fabian, I .
MATERIALS CHEMISTRY AND PHYSICS, 2020, 255
[9]   Bio-inspired encapsulation and functionalization of iron oxide nanoparticles for biomedical applications [J].
Aisida, Samson O. ;
Akpa, Paul A. ;
Ahmad, Ishaq ;
Zhao, Ting-kai ;
Maaza, M. ;
Ezema, Fabian, I .
EUROPEAN POLYMER JOURNAL, 2020, 122
[10]   Mycosynthesized Fe2O3 nanoparticles diminish brown rot of apple whilst maintaining composition and pertinent organoleptic properties [J].
Akbar, Mahnoor ;
Haroon, Urooj ;
Ali, Musrat ;
Tahir, Kinza ;
Chaudhary, Hassan Javed ;
Munis, Muhammad Farooq Hussain .
JOURNAL OF APPLIED MICROBIOLOGY, 2022, 132 (05) :3735-3745