Mushroom Nanobiotechnology: Concepts, Developments and Potentials
277
Agarwal HS, Kumar VS, Rajeshkumar S (2017) A review on green synthesis of zinc oxide nanoparticles—An eco-friendly approach. Resou Eff Technol 3:406–413. https://doi.org/10.1016/j.reffit.
2017.03.002
Ahmad A, Mukherjee P, Senapati S, Mandal D, Kahn MI, Kumar R (2003) Extracellular biosynthesis
of silver nanoparticles using the fungus Fusarium oxysporum. Colloids Surf B Biointerf 28:313–
318. https://doi.org/10.1016/S0927-7765(02)00174-1
Aina DA, Owolo O, Lateef A, Aina FO, Abbas SH, Adeoye-Isijola M, Okon V, Asafa TB, Elegbede
JA, Olukanni OD, Adediji I (2019) Biomedical applications of Chasmanthera dependens stem
extract mediated silver nanoparticles as antimicrobial, antioxidant, anticoagulant, thrombolytic,
and larvicidal agents. Karbala Int J Modern Sci 5(2):71–80. https://doi.org/10.33640/2405-609X.
1018
Akbari B, Tavandashti MP, Zandrahimi M (2011) Particle size characterization of nanoparticles—a
practical approach. Iran J Mat Sci Eng 8:48–56
Akgul H, Sevindik M, Coban C, Alli H, Selamoglu Z (2017) New Approaches in traditional and
complementary alternative medicine practices: Auricularia auricula and Trametes versicolor. J
Tradit Med Clin Nat 6:239. https://doi.org/10.4172/2573-4555.1000239
Andreescu D, Eastman C, Balantrapu K, Goia DV (2007) A simple route for manufacturing highly
dispersed silver nanoparticles. J Mater Res 22:2488–2496. https://doi.org/10.1557/jmr.2007.0308
Anthony KJ, Murugan M, Jeyaraj M, Rathinam NK, Sangiliyandi G (2013) Synthesis of silver
nanoparticles using pine mushroom extract: a potential antimicrobial agent against E. coli & B.
subtilis. J Ind Eng Chem 5:1–7. https://doi.org/10.1016/j.jiec.2013.10.008
Armendariz V, Herrera I, Peralta-Videa JR (2004) Size controlled gold nanoparticle formation by
Avena sativa biomass: use of plants in nanobiotechnology. J Nanopart Res 6:377–382. https://
doi.org/10.1007/s11051-004-0741-4
Arun G, Eyini M, Gunasekaran P (2014) Green synthesis of silver nanoparticles using the mushroom
fungus Schizophyllum commune and its biomedical applications. Biotechnol Bioprocess Eng
19:1083–1090. https://doi.org/10.1007/s12257-014-0071-z
Aygün A, Özdemir S, Gülcan M, Cellat K, ¸
Sen F (2020) Synthesis and characterization of Reishi
mushroom-mediated green synthesis of silver nanoparticles for the biochemical applications. J
Pharma Biomed Anal 178:112970. https://doi.org/10.1016/j.jpba.2019.112970
Azeez MA, Lateef A, Asafa TB, Yekeen TA, Akinboro A, Oladipo IC, Gueguim-Kana EB, Beukes
LS (2017) Biomedical applications of cocoa bean extract-mediated silver nanoparticles as antimicrobial, larvicidal and anticoagulant agents. J Clust Sci 28:149–164. https://doi.org/10.1007/s10
876-016-1055-2
Baker S, Rakshith D, Kavitha KS, Santosh P, Kavitha HU, Rao Y, Satish S (2013) Plants: emerging
as nanofactories towards facile route in the synthesis of nanoparticles. Bio Impacts 3:111–117.
https://doi.org/10.5681/bi.2013.012
Bal C, Akgul H, Sevindik M (2017) Determination of the anti-oxidative activities of six mushrooms.
Fresenius Environ Bull 26:6246–6252
Bamigboye CO, Oloke JK, Dames JF, Burton M, Lateef A (2019) Optimization of the process for
producing biomass and exopolysaccharide from the King tuber oyster mushroom, Pleurotus tuberregium (Agaricomycetes), for biotechnological applications. Int J Med Mushrooms 21(4):311–
322. https://doi.org/10.1615/IntJMedMushrooms.2019030357
Bawadekji A, Oueslati MH, Al Ali, Basha J (2018) Biosynthesis of gold nanoparticles using Pleurotus ostreatus (Jacq. ex. Fr.) Kummer extract and their antibacterial and antifungal activities. J
Appl Environ Biol Sci 8(3):142–147
Baymiller M, Huang F, Rogelj S (2017) Rapid one-step synthesis of gold nanoparticles using the
ubiquitous coenzyme NADH. Matters 3(7):e201705000007. https://doi.org/10.19185/matters.
201705000007
Bhangale HG, Bachhav SG, Nerkar DM, Sarode KM, Patil DR (2019) Study on optical properties of
green synthesized silver nanoparticles for surface plasmon resonance. J Nanosci Tech 5:658–661.
https://doi.org/10.30799/jnst.230.19050203
277
Agarwal HS, Kumar VS, Rajeshkumar S (2017) A review on green synthesis of zinc oxide nanoparticles—An eco-friendly approach. Resou Eff Technol 3:406–413. https://doi.org/10.1016/j.reffit.
2017.03.002
Ahmad A, Mukherjee P, Senapati S, Mandal D, Kahn MI, Kumar R (2003) Extracellular biosynthesis
of silver nanoparticles using the fungus Fusarium oxysporum. Colloids Surf B Biointerf 28:313–
318. https://doi.org/10.1016/S0927-7765(02)00174-1
Aina DA, Owolo O, Lateef A, Aina FO, Abbas SH, Adeoye-Isijola M, Okon V, Asafa TB, Elegbede
JA, Olukanni OD, Adediji I (2019) Biomedical applications of Chasmanthera dependens stem
extract mediated silver nanoparticles as antimicrobial, antioxidant, anticoagulant, thrombolytic,
and larvicidal agents. Karbala Int J Modern Sci 5(2):71–80. https://doi.org/10.33640/2405-609X.
1018
Akbari B, Tavandashti MP, Zandrahimi M (2011) Particle size characterization of nanoparticles—a
practical approach. Iran J Mat Sci Eng 8:48–56
Akgul H, Sevindik M, Coban C, Alli H, Selamoglu Z (2017) New Approaches in traditional and
complementary alternative medicine practices: Auricularia auricula and Trametes versicolor. J
Tradit Med Clin Nat 6:239. https://doi.org/10.4172/2573-4555.1000239
Andreescu D, Eastman C, Balantrapu K, Goia DV (2007) A simple route for manufacturing highly
dispersed silver nanoparticles. J Mater Res 22:2488–2496. https://doi.org/10.1557/jmr.2007.0308
Anthony KJ, Murugan M, Jeyaraj M, Rathinam NK, Sangiliyandi G (2013) Synthesis of silver
nanoparticles using pine mushroom extract: a potential antimicrobial agent against E. coli & B.
subtilis. J Ind Eng Chem 5:1–7. https://doi.org/10.1016/j.jiec.2013.10.008
Armendariz V, Herrera I, Peralta-Videa JR (2004) Size controlled gold nanoparticle formation by
Avena sativa biomass: use of plants in nanobiotechnology. J Nanopart Res 6:377–382. https://
doi.org/10.1007/s11051-004-0741-4
Arun G, Eyini M, Gunasekaran P (2014) Green synthesis of silver nanoparticles using the mushroom
fungus Schizophyllum commune and its biomedical applications. Biotechnol Bioprocess Eng
19:1083–1090. https://doi.org/10.1007/s12257-014-0071-z
Aygün A, Özdemir S, Gülcan M, Cellat K, ¸
Sen F (2020) Synthesis and characterization of Reishi
mushroom-mediated green synthesis of silver nanoparticles for the biochemical applications. J
Pharma Biomed Anal 178:112970. https://doi.org/10.1016/j.jpba.2019.112970
Azeez MA, Lateef A, Asafa TB, Yekeen TA, Akinboro A, Oladipo IC, Gueguim-Kana EB, Beukes
LS (2017) Biomedical applications of cocoa bean extract-mediated silver nanoparticles as antimicrobial, larvicidal and anticoagulant agents. J Clust Sci 28:149–164. https://doi.org/10.1007/s10
876-016-1055-2
Baker S, Rakshith D, Kavitha KS, Santosh P, Kavitha HU, Rao Y, Satish S (2013) Plants: emerging
as nanofactories towards facile route in the synthesis of nanoparticles. Bio Impacts 3:111–117.
https://doi.org/10.5681/bi.2013.012
Bal C, Akgul H, Sevindik M (2017) Determination of the anti-oxidative activities of six mushrooms.
Fresenius Environ Bull 26:6246–6252
Bamigboye CO, Oloke JK, Dames JF, Burton M, Lateef A (2019) Optimization of the process for
producing biomass and exopolysaccharide from the King tuber oyster mushroom, Pleurotus tuberregium (Agaricomycetes), for biotechnological applications. Int J Med Mushrooms 21(4):311–
322. https://doi.org/10.1615/IntJMedMushrooms.2019030357
Bawadekji A, Oueslati MH, Al Ali, Basha J (2018) Biosynthesis of gold nanoparticles using Pleurotus ostreatus (Jacq. ex. Fr.) Kummer extract and their antibacterial and antifungal activities. J
Appl Environ Biol Sci 8(3):142–147
Baymiller M, Huang F, Rogelj S (2017) Rapid one-step synthesis of gold nanoparticles using the
ubiquitous coenzyme NADH. Matters 3(7):e201705000007. https://doi.org/10.19185/matters.
201705000007
Bhangale HG, Bachhav SG, Nerkar DM, Sarode KM, Patil DR (2019) Study on optical properties of
green synthesized silver nanoparticles for surface plasmon resonance. J Nanosci Tech 5:658–661.
https://doi.org/10.30799/jnst.230.19050203
