Synthesis, Characterization, and Application of Biogenic …
69
plant diseases. It is also used to enhance the food production and quality of food
(Sekhon 2014).
References
Ali Mansoori G, Bastami TR, Ahmadpour A, Eshaghi Z (2008) Environmental application of
nanotechnology. Ann Rev Nano Res 2(3):439–493
Bhattacharyya A, Duraisamy P, Govindarajan M, Buhroo AA, Prasad R (2016) Nano-biofungicides:
emerging trend in insect pest control. Advances and applications through fungal nanobiotechnology. Springer, Cham, pp 307–319
Bhavani P, Sujatha ANU, Guntur ANU (2014) Impact of toxic metals leading to environmental
pollution. J Chem Pharm Sci 3:70–72
Bogutska KI, Sklyarov YP, Prylutskyy YI (2013) Zinc and zinc nanoparticles: biological role and
application in biomedicine. Ukr Bioorg Acta 1:9–16
Cai Z, Ye Z, Yang X, Chang Y, Wang H, Liu Y, Cao A (2011) Encapsulated enhanced green
fluorescence protein in silica nanoparticle for cellular imaging. Nanoscale 3(5):1974–1976
Campbell E, Hasan MT, Pho C, Callaghan K, Akkaraju GR, Naumov AV (2019) Graphene oxide
as a multifunctional platform for intracellular delivery, imaging, and cancer sensing. Sci Rep
9(1):416
Carlson C, Hussain SM, Schrand AMK, Braydich-Stolle L, Hess KL, Jones RL, Schlager JJ (2008)
Unique cellular interaction of silver nanoparticles: size-dependent generation of reactive oxygen
species. J Phys Chem B 112(43):13608–13619
Chaloupka K, Malam Y, Seifalian AM (2010) Nanosilver as a new generation of nanoproduct in
biomedical applications. Trends Biotechnol 28(11):580–588
Chen X, Schluesener HJ (2008) Nanosilver: a nanoproduct in medical application. Toxicol Lett
176(1):1–12
Chen G, Qiu H, Prasad PN, Chen X (2014) Upconversion nanoparticles: design, nanochemistry,
and applications in theranostics. Chem Rev 114(10):5161–5214
Choi Y, Ho NH, Tung CH (2007) Sensing phosphatase activity by using gold nanoparticles. Angew
Chem Int Ed 46(5):707–709
Chugh H, Sood D, Chandra I, Tomar V, Dhawan G, Chandra R (2018) Role of gold and silver
nanoparticles in cancer nano-medicine. Artif Cells Nanomed Biotechnol 46(sup1):1210–1220
Grillo R, Pereira AE, Nishisaka CS, de Lima R, Oehlke K, Greiner R, Fraceto LF (2014) Chitosan/tripolyphosphate nanoparticles loaded with paraquat herbicide: an environmentally safer
alternative for weed control. J Hazard Mater 278:163–171
Gruère GP (2012) Implications of nanotechnology growth in food and agriculture in OECD
countries. Food Policy 37(2):191–198
Hasan MM, Uddin F, Islam MM, Hasan M, Banik K, Islam MA, Hashid HA (2016) Nanotechnology
drug delivery system: tools in advance pharmaceutical and human health care. Int J Biopharm
7(2):90–99
He X, Deng H, Hwang HM (2018) The current application of nanotechnology in food and
agriculture. J Food Drug Anal 27:1–21
Hong R, Han G, Fernández JM, Kim BJ, Forbes NS, Rotello VM (2006) Glutathione-mediated delivery and release using monolayer protected nanoparticle carriers. J Am Chem Soc 128(4):1078–
1079
Hua M, Zhang S, Pan B, Zhang W, Lv L, Zhang Q (2012) Heavy metal removal from
water/wastewater by nanosized metal oxides: a review. J Hazard Mater 211:317–331
Ibrahim RK, Hayyan M, AlSaadi MA, Hayyan A, Ibrahim S (2016) Environmental application of
nanotechnology: air, soil, and water. Environ Sci Pollut Res 23(14):13754–13788
69
plant diseases. It is also used to enhance the food production and quality of food
(Sekhon 2014).
References
Ali Mansoori G, Bastami TR, Ahmadpour A, Eshaghi Z (2008) Environmental application of
nanotechnology. Ann Rev Nano Res 2(3):439–493
Bhattacharyya A, Duraisamy P, Govindarajan M, Buhroo AA, Prasad R (2016) Nano-biofungicides:
emerging trend in insect pest control. Advances and applications through fungal nanobiotechnology. Springer, Cham, pp 307–319
Bhavani P, Sujatha ANU, Guntur ANU (2014) Impact of toxic metals leading to environmental
pollution. J Chem Pharm Sci 3:70–72
Bogutska KI, Sklyarov YP, Prylutskyy YI (2013) Zinc and zinc nanoparticles: biological role and
application in biomedicine. Ukr Bioorg Acta 1:9–16
Cai Z, Ye Z, Yang X, Chang Y, Wang H, Liu Y, Cao A (2011) Encapsulated enhanced green
fluorescence protein in silica nanoparticle for cellular imaging. Nanoscale 3(5):1974–1976
Campbell E, Hasan MT, Pho C, Callaghan K, Akkaraju GR, Naumov AV (2019) Graphene oxide
as a multifunctional platform for intracellular delivery, imaging, and cancer sensing. Sci Rep
9(1):416
Carlson C, Hussain SM, Schrand AMK, Braydich-Stolle L, Hess KL, Jones RL, Schlager JJ (2008)
Unique cellular interaction of silver nanoparticles: size-dependent generation of reactive oxygen
species. J Phys Chem B 112(43):13608–13619
Chaloupka K, Malam Y, Seifalian AM (2010) Nanosilver as a new generation of nanoproduct in
biomedical applications. Trends Biotechnol 28(11):580–588
Chen X, Schluesener HJ (2008) Nanosilver: a nanoproduct in medical application. Toxicol Lett
176(1):1–12
Chen G, Qiu H, Prasad PN, Chen X (2014) Upconversion nanoparticles: design, nanochemistry,
and applications in theranostics. Chem Rev 114(10):5161–5214
Choi Y, Ho NH, Tung CH (2007) Sensing phosphatase activity by using gold nanoparticles. Angew
Chem Int Ed 46(5):707–709
Chugh H, Sood D, Chandra I, Tomar V, Dhawan G, Chandra R (2018) Role of gold and silver
nanoparticles in cancer nano-medicine. Artif Cells Nanomed Biotechnol 46(sup1):1210–1220
Grillo R, Pereira AE, Nishisaka CS, de Lima R, Oehlke K, Greiner R, Fraceto LF (2014) Chitosan/tripolyphosphate nanoparticles loaded with paraquat herbicide: an environmentally safer
alternative for weed control. J Hazard Mater 278:163–171
Gruère GP (2012) Implications of nanotechnology growth in food and agriculture in OECD
countries. Food Policy 37(2):191–198
Hasan MM, Uddin F, Islam MM, Hasan M, Banik K, Islam MA, Hashid HA (2016) Nanotechnology
drug delivery system: tools in advance pharmaceutical and human health care. Int J Biopharm
7(2):90–99
He X, Deng H, Hwang HM (2018) The current application of nanotechnology in food and
agriculture. J Food Drug Anal 27:1–21
Hong R, Han G, Fernández JM, Kim BJ, Forbes NS, Rotello VM (2006) Glutathione-mediated delivery and release using monolayer protected nanoparticle carriers. J Am Chem Soc 128(4):1078–
1079
Hua M, Zhang S, Pan B, Zhang W, Lv L, Zhang Q (2012) Heavy metal removal from
water/wastewater by nanosized metal oxides: a review. J Hazard Mater 211:317–331
Ibrahim RK, Hayyan M, AlSaadi MA, Hayyan A, Ibrahim S (2016) Environmental application of
nanotechnology: air, soil, and water. Environ Sci Pollut Res 23(14):13754–13788
