136
T. I. Shaheen et al.
Elsoud MMA, Al-Hagar OE, Abdelkhalek ES, Sidkey N (2018) Synthesis and investigations
on tellurium myconanoparticles. Biotechnol Rep 18:e00247. https://doi.org/10.1016/j.btre.2018.
e00247
Faramarzi S, Anzabi Y, Jafarizadeh-Malmiri H (2020) Nanobiotechnology approach in intracellular selenium nanoparticle synthesis using Saccharomyces cerevisiae—fabrication and
characterization. Arch Microbiol. https://doi.org/10.1007/s00203-020-01831-0
Fernández JG, Fernández-Baldo MA, Berni E, Camí G, Durán N, Raba J, Sanz MI (2016) Production of silver nanoparticles using yeasts and evaluation of their antifungal activity against
phytopathogenic fungi. Process Biochem 51:1306–1313. https://doi.org/10.1016/j.procbio.2016.
05.021
Feroze N, Arshad B, Younas M, Afridi MI, Saqib S, Ayaz A (2020) Fungal mediated synthesis of
silver nanoparticles and evaluation of antibacterial activity. Microsc Res Tech 83:72–80. https://
doi.org/10.1002/jemt.23390
Fouda AH, Hassan SED, Eid AM, Ewais EED (2015) Biotechnological applications of fungal
endophytes associated with medicinal plant Asclepias sinaica (Bioss.). Ann Agric Sci 60:95–104.
https://doi.org/10.1016/j.aoas.2015.04.001
Fouda A, Mohamed A, Elgamal MS, EL-Din Hassan S, Salem SS, Shaheen TI (2017) Facile
approach towards medical textiles via myco-synthesis of silver nanoparticles. Der Pharma
Chemica 9:11–18. https://www.derpharmachemica.com/abstract/facile-approach-towards-med
ical-textiles-via-mycosynthesis-of-silver-nanoparticles-12723.html
Fouda A, Saad E, Elgamal MS, Mohmed AA, Salem SS (2017) Optimal factors for biosynthesis
of silver nanoparticles by Aspergillus sp. Al Azhar Bull Sci 9:161–172. https://www.academia.
edu/33588039/OPTIMAL_FACTORS_FOR_BIOSYNTHESIS_OF_SILVER_NANOPARTI
CLES_BY_ASPERGILLUS_SP
Fouda A, El-Din Hassan S, Salem SS, Shaheen TI (2018) In-vitro cytotoxicity, antibacterial, and
UV protection properties of the biosynthesized Zinc oxide nanoparticles for medical textile
applications. Microb Pathog 125:252–261. https://doi.org/10.1016/j.micpath.2018.09.030
Fouda A, Abdel-Maksoud G, Abdel-Rahman MA, Eid AM, Barghoth MG, El-Sadany MAH (2019a)
Monitoring the effect of biosynthesized nanoparticles against biodeterioration of cellulose-based
materials by Aspergillus niger. Cellulose 26:6583–6597. https://doi.org/10.1007/s10570-019-025
74-y
Fouda A, Abdel-Maksoud G, Abdel-Rahman MA, Salem SS, Hassan SED, El-Sadany MAH (2019b)
Eco-friendly approach utilizing green synthesized nanoparticles for paper conservation against
microbes involved in biodeterioration of archaeological manuscript. Int Biodeterior Biodegr
142:160–169. https://doi.org/10.1016/j.ibiod.2019.05.012
Fouda A, Hassan SED, Abdo AM, El-Gamal MS (2019c) Antimicrobial, antioxidant and larvicidal
activities of spherical silver nanoparticles synthesized by endophytic Streptomyces spp. Biol
Trace Elem Res 1–18. https://doi.org/10.1007/s12011-019-01883-4
Ganesan V, Hariram M, Vivekanandhan S, Muthuramkumar S (2020) Periconium sp. (endophytic
fungi) extract mediated sol-gel synthesis of ZnO nanoparticles for antimicrobial and antioxidant applications. Mater Sci Semicond Process 105:104739. https://doi.org/10.1016/j.mssp.2019.
104739
Gao Y, Arokia Vijaya Anand M, Ramachandran V, Karthikkumar V, Shalini V, Vijayalakshmi S,
Ernest D (2019) Biofabrication of zinc oxide nanoparticles from Aspergillus niger, their antioxidant, antimicrobial and anticancer activity. J Clust Sci 30:937–946. https://doi.org/10.1007/s10
876-019-01551-6
Golinska P, Rathod D, Wypij M, Gupta I, Składanowski M, Paralikar P, Dahm H, Rai M (2017)
Mycoendophytes as efficient synthesizers of bionanoparticles: nanoantimicrobials, mechanism,
and cytotoxicity. Crit Rev Biotechnol 37:765–778. https://doi.org/10.1080/07388551.2016.123
5011
T. I. Shaheen et al.
Elsoud MMA, Al-Hagar OE, Abdelkhalek ES, Sidkey N (2018) Synthesis and investigations
on tellurium myconanoparticles. Biotechnol Rep 18:e00247. https://doi.org/10.1016/j.btre.2018.
e00247
Faramarzi S, Anzabi Y, Jafarizadeh-Malmiri H (2020) Nanobiotechnology approach in intracellular selenium nanoparticle synthesis using Saccharomyces cerevisiae—fabrication and
characterization. Arch Microbiol. https://doi.org/10.1007/s00203-020-01831-0
Fernández JG, Fernández-Baldo MA, Berni E, Camí G, Durán N, Raba J, Sanz MI (2016) Production of silver nanoparticles using yeasts and evaluation of their antifungal activity against
phytopathogenic fungi. Process Biochem 51:1306–1313. https://doi.org/10.1016/j.procbio.2016.
05.021
Feroze N, Arshad B, Younas M, Afridi MI, Saqib S, Ayaz A (2020) Fungal mediated synthesis of
silver nanoparticles and evaluation of antibacterial activity. Microsc Res Tech 83:72–80. https://
doi.org/10.1002/jemt.23390
Fouda AH, Hassan SED, Eid AM, Ewais EED (2015) Biotechnological applications of fungal
endophytes associated with medicinal plant Asclepias sinaica (Bioss.). Ann Agric Sci 60:95–104.
https://doi.org/10.1016/j.aoas.2015.04.001
Fouda A, Mohamed A, Elgamal MS, EL-Din Hassan S, Salem SS, Shaheen TI (2017) Facile
approach towards medical textiles via myco-synthesis of silver nanoparticles. Der Pharma
Chemica 9:11–18. https://www.derpharmachemica.com/abstract/facile-approach-towards-med
ical-textiles-via-mycosynthesis-of-silver-nanoparticles-12723.html
Fouda A, Saad E, Elgamal MS, Mohmed AA, Salem SS (2017) Optimal factors for biosynthesis
of silver nanoparticles by Aspergillus sp. Al Azhar Bull Sci 9:161–172. https://www.academia.
edu/33588039/OPTIMAL_FACTORS_FOR_BIOSYNTHESIS_OF_SILVER_NANOPARTI
CLES_BY_ASPERGILLUS_SP
Fouda A, El-Din Hassan S, Salem SS, Shaheen TI (2018) In-vitro cytotoxicity, antibacterial, and
UV protection properties of the biosynthesized Zinc oxide nanoparticles for medical textile
applications. Microb Pathog 125:252–261. https://doi.org/10.1016/j.micpath.2018.09.030
Fouda A, Abdel-Maksoud G, Abdel-Rahman MA, Eid AM, Barghoth MG, El-Sadany MAH (2019a)
Monitoring the effect of biosynthesized nanoparticles against biodeterioration of cellulose-based
materials by Aspergillus niger. Cellulose 26:6583–6597. https://doi.org/10.1007/s10570-019-025
74-y
Fouda A, Abdel-Maksoud G, Abdel-Rahman MA, Salem SS, Hassan SED, El-Sadany MAH (2019b)
Eco-friendly approach utilizing green synthesized nanoparticles for paper conservation against
microbes involved in biodeterioration of archaeological manuscript. Int Biodeterior Biodegr
142:160–169. https://doi.org/10.1016/j.ibiod.2019.05.012
Fouda A, Hassan SED, Abdo AM, El-Gamal MS (2019c) Antimicrobial, antioxidant and larvicidal
activities of spherical silver nanoparticles synthesized by endophytic Streptomyces spp. Biol
Trace Elem Res 1–18. https://doi.org/10.1007/s12011-019-01883-4
Ganesan V, Hariram M, Vivekanandhan S, Muthuramkumar S (2020) Periconium sp. (endophytic
fungi) extract mediated sol-gel synthesis of ZnO nanoparticles for antimicrobial and antioxidant applications. Mater Sci Semicond Process 105:104739. https://doi.org/10.1016/j.mssp.2019.
104739
Gao Y, Arokia Vijaya Anand M, Ramachandran V, Karthikkumar V, Shalini V, Vijayalakshmi S,
Ernest D (2019) Biofabrication of zinc oxide nanoparticles from Aspergillus niger, their antioxidant, antimicrobial and anticancer activity. J Clust Sci 30:937–946. https://doi.org/10.1007/s10
876-019-01551-6
Golinska P, Rathod D, Wypij M, Gupta I, Składanowski M, Paralikar P, Dahm H, Rai M (2017)
Mycoendophytes as efficient synthesizers of bionanoparticles: nanoantimicrobials, mechanism,
and cytotoxicity. Crit Rev Biotechnol 37:765–778. https://doi.org/10.1080/07388551.2016.123
5011
