18
A. Lateef et al.
Lateef A, Adelere IA, Gueguim-Kana EB (2015b) The biology and potential biotechnological
applications of Bacillus safensis. Biologia 70(4):411–419. https://doi.org/10.1515/biolog-20150062
Lateef A, Adelere IA, Gueguim-Kana EB, Asafa TB, Beukes LS (2015c) Green synthesis of silver
nanoparticles using keratinase obtained from a strain of Bacillus safensis LAU 13. Int Nano Lett
5(1):29–35. https://doi.org/10.1007/s40089-014-0133-4
Lateef A, Ojo SA, Akinwale AS, Azeez L, Gueguim-Kana EB, Beukes LS (2015d) Biogenic
synthesis of silver nanoparticles using cell-free extract of Bacillus safensis LAU 13: antimicrobial,
free radical scavenging and larvicidal activities. Biologia 70(10):1295–1306. https://doi.org/10.
1515/biolog-2015-0164
Lateef A, Ojo SA, Oladejo SM (2016a) Anti-candida, anti-coagulant and thrombolytic activities of
biosynthesized silver nanoparticles using cell-free extract of Bacillus safensis LAU 13. Process
Biochem 51(10):1406–1412. https://doi.org/10.1016/j.procbio.2016.06.027
Lateef A, Ojo SA, Elegbede JA (2016b) The emerging roles of arthropods and their metabolites in
the green synthesis of metallic nanoparticles. Nanotechnol Rev 5(6):601–622. https://doi.org/10.
1515/ntrev-2016-0049
Lateef A, Ojo SA, Elegbede JA, Akinola PO, Akanni EO (2018) Nanomedical applications of
nanoparticles for blood coagulation disorders. In: Dasgupta N, Ranjan S, Lichtfouse E (eds) Environmental nanotechnology. Environmental chemistry for a sustainable world, vol 14. Springer
International Publishing AG, Cham, Switzerland, pp 243–277. ISBN 978-3-319-76089-6, https://
doi.org/10.1007/978-3-319-76090-2_8
Malsch I (2014) Nano-education from a European perspective: nano-training for non-R&D jobs.
Nanotechnol Rev 3(2):211–221. https://doi.org/10.1515/ntrev-2013-0039
Malvankar NS, Lovley DR (2012) Microbial nanowires: a new paradigm for biological electron transfer and bioelectronics. Chemsuschem 5:1039–1046. https://doi.org/10.1002/cssc.201
100733
Mann S (2001) Biomineralization: principles and concepts in bioinorganic materials chemistry.
Oxford University Press, Oxford, UK
Matter IA, Darwesh OM, El-baz FK (2016) Using the natural polymer chitosan in harvesting
Scenedesmus species under different concentrations and cultural pH values. Int J Pharm Biol Sci
7:254–260
Matter IA, Bui VK, Jung M, Seo JY, Kim YE, Lee YC, Oh YK (2019) Flocculation harvesting
techniques for microalgae: a review. Appl Sci 9:3069. https://doi.org/10.3390/app9153069
Mohamed AA, Ali SI, Darwesh OM, El-Hallouty SM, Sameeh MY (2015) Chemical compositions,
potential cytotoxic and antimicrobial activities of Nitraria retusa methanolic extract sub-fractions.
Int J Toxicol Pharmacol Res 7(4):204–212
Mohammad AW, Lau CH, Zaharim A, Omar MZ (2012) Elements of nanotechnology education
in engineering curriculum worldwide. Procedia-Soc Behav Sci 60:405–412. https://doi.org/10.
1016/j.sbspro.2012.09.398
Murcia K (2013) Secondary school students’ attitudes to nanotechnology: what are the implications
for science curriculum development? Teach Sci 59(3):15–21
Ojo SA, Lateef A, Azeez MA, Oladejo SM, Akinwale AS, Asafa TB, Yekeen TA, Akinboro A,
Oladipo IC, Gueguim-Kana EB, Beukes LS (2016) Biomedical and catalytic applications of gold
and silver-gold alloy nanoparticles biosynthesized using cell-free extract of Bacillus safensis
LAU 13: antifungal, dye degradation, anti-coagulant and thrombolytic activities. IEEE Trans
Nanobiosci 15(5):433–442. https://doi.org/10.1109/TNB.2016.2559161
Ojoawo SO, Lateef A, Oyeniran FA, Kupoluyi OT, Opatola OS, Daramola JO (2017) Bioaccumulation of heavy metals in steel processing industrial effluents using Bacillus safensis LAU 13. J
Environ Biotechnol Res 6(1):58–63
Oladipo IC, Lateef A, Elegbede JA, Azeez MA, Asafa TB, Yekeen TA, Akinboro A, GueguimKana EB, Beukes LS, Oluyide TO, Atanda OR (2017a) Enterococcus species for the one-pot
biofabrication of gold nanoparticles: characterization and nanobiotechnological applications. J
Photochem Photobiol B 173:250–257. http://dx.doi.org/10.1016/j.jphotobiol.2017.06.003
A. Lateef et al.
Lateef A, Adelere IA, Gueguim-Kana EB (2015b) The biology and potential biotechnological
applications of Bacillus safensis. Biologia 70(4):411–419. https://doi.org/10.1515/biolog-20150062
Lateef A, Adelere IA, Gueguim-Kana EB, Asafa TB, Beukes LS (2015c) Green synthesis of silver
nanoparticles using keratinase obtained from a strain of Bacillus safensis LAU 13. Int Nano Lett
5(1):29–35. https://doi.org/10.1007/s40089-014-0133-4
Lateef A, Ojo SA, Akinwale AS, Azeez L, Gueguim-Kana EB, Beukes LS (2015d) Biogenic
synthesis of silver nanoparticles using cell-free extract of Bacillus safensis LAU 13: antimicrobial,
free radical scavenging and larvicidal activities. Biologia 70(10):1295–1306. https://doi.org/10.
1515/biolog-2015-0164
Lateef A, Ojo SA, Oladejo SM (2016a) Anti-candida, anti-coagulant and thrombolytic activities of
biosynthesized silver nanoparticles using cell-free extract of Bacillus safensis LAU 13. Process
Biochem 51(10):1406–1412. https://doi.org/10.1016/j.procbio.2016.06.027
Lateef A, Ojo SA, Elegbede JA (2016b) The emerging roles of arthropods and their metabolites in
the green synthesis of metallic nanoparticles. Nanotechnol Rev 5(6):601–622. https://doi.org/10.
1515/ntrev-2016-0049
Lateef A, Ojo SA, Elegbede JA, Akinola PO, Akanni EO (2018) Nanomedical applications of
nanoparticles for blood coagulation disorders. In: Dasgupta N, Ranjan S, Lichtfouse E (eds) Environmental nanotechnology. Environmental chemistry for a sustainable world, vol 14. Springer
International Publishing AG, Cham, Switzerland, pp 243–277. ISBN 978-3-319-76089-6, https://
doi.org/10.1007/978-3-319-76090-2_8
Malsch I (2014) Nano-education from a European perspective: nano-training for non-R&D jobs.
Nanotechnol Rev 3(2):211–221. https://doi.org/10.1515/ntrev-2013-0039
Malvankar NS, Lovley DR (2012) Microbial nanowires: a new paradigm for biological electron transfer and bioelectronics. Chemsuschem 5:1039–1046. https://doi.org/10.1002/cssc.201
100733
Mann S (2001) Biomineralization: principles and concepts in bioinorganic materials chemistry.
Oxford University Press, Oxford, UK
Matter IA, Darwesh OM, El-baz FK (2016) Using the natural polymer chitosan in harvesting
Scenedesmus species under different concentrations and cultural pH values. Int J Pharm Biol Sci
7:254–260
Matter IA, Bui VK, Jung M, Seo JY, Kim YE, Lee YC, Oh YK (2019) Flocculation harvesting
techniques for microalgae: a review. Appl Sci 9:3069. https://doi.org/10.3390/app9153069
Mohamed AA, Ali SI, Darwesh OM, El-Hallouty SM, Sameeh MY (2015) Chemical compositions,
potential cytotoxic and antimicrobial activities of Nitraria retusa methanolic extract sub-fractions.
Int J Toxicol Pharmacol Res 7(4):204–212
Mohammad AW, Lau CH, Zaharim A, Omar MZ (2012) Elements of nanotechnology education
in engineering curriculum worldwide. Procedia-Soc Behav Sci 60:405–412. https://doi.org/10.
1016/j.sbspro.2012.09.398
Murcia K (2013) Secondary school students’ attitudes to nanotechnology: what are the implications
for science curriculum development? Teach Sci 59(3):15–21
Ojo SA, Lateef A, Azeez MA, Oladejo SM, Akinwale AS, Asafa TB, Yekeen TA, Akinboro A,
Oladipo IC, Gueguim-Kana EB, Beukes LS (2016) Biomedical and catalytic applications of gold
and silver-gold alloy nanoparticles biosynthesized using cell-free extract of Bacillus safensis
LAU 13: antifungal, dye degradation, anti-coagulant and thrombolytic activities. IEEE Trans
Nanobiosci 15(5):433–442. https://doi.org/10.1109/TNB.2016.2559161
Ojoawo SO, Lateef A, Oyeniran FA, Kupoluyi OT, Opatola OS, Daramola JO (2017) Bioaccumulation of heavy metals in steel processing industrial effluents using Bacillus safensis LAU 13. J
Environ Biotechnol Res 6(1):58–63
Oladipo IC, Lateef A, Elegbede JA, Azeez MA, Asafa TB, Yekeen TA, Akinboro A, GueguimKana EB, Beukes LS, Oluyide TO, Atanda OR (2017a) Enterococcus species for the one-pot
biofabrication of gold nanoparticles: characterization and nanobiotechnological applications. J
Photochem Photobiol B 173:250–257. http://dx.doi.org/10.1016/j.jphotobiol.2017.06.003
