By Ram Prasad
Fungal nanobiotechnology has emerged as one of many key applied sciences, and an green, as a resource of nutrients and harnessed to ferment and defend meals and drinks, in addition to purposes in human overall healthiness (antibiotics, anti-cholesterol statins, and immunosuppressive agents), whereas has used fungi for large-scale creation of enzymes, acids, biosurfactants, and to control fungal ailment in vegetation and pest keep watch over. With the harnessing of nanotechnology, fungi have grown more and more vital by way of supplying a greener substitute to chemically synthesized nanoparticles.
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Additional info for Advances and Applications Through Fungal Nanobiotechnology
2011), the ﬁlamentous fungus Neurospora crassa was screened and found to be successful for the production of mono and bimetallic Au/Ag nanoparticles. 1 The list of nanoparticles synthesized from different fungi Nanoparticle type Gold Size of the nanoparticle (nm) 10–60 Production location Extracellular 10 Extracellular 5–200 20–40 20–40 Extracellular Extracellular Extracellular 20–40 <10–100 Extracellular Intracellular 2–20 Intracellular Rhizopus nigricans 35–48 Extracellular Trichoderma sp. Alternaria alternata Phoma glomerata Penicillium fellutanum Penicillium brevicompactum Fusarium solani Humicola sp.
2012), Karwa et al. (2011) and Paul et al. (2005). Mirunalini et al. (2012) and Paul et al. (2005) used the extract of mushroom form directly, while Karwa et al. (2011) preferred the extract of mycelia. The bioreduction of silver ions was achieved by Ganoderma lucidum mushroom and silver ions were completely reduced to AgNPs with an average size of 50 nm after 48 h (Mirunalini et al. 2012). These NPs were found to have antibacterial activity against S. aureus. Paul et al. (2005) also reported the fast bioreduction activity of the extract of G.
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