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Research Articles

Biosynthesis of silver nanoparticles using Ocimum tenuiflorum extract and its efficacy assessment against Helicoverpa armigera

ORCID Icon, , ORCID Icon, & ORCID Icon
Pages 375-383 | Received 13 Oct 2020, Accepted 07 Sep 2021, Published online: 22 Sep 2021

References

  • Ahmad JN, Ahmad SJ, Aslam M, Ahmad MA, Contaldo N, Paltrinieri S, Bertaccini A. 2017. Molecular and biologic characterization of a phytoplasma associated with Brassica campestris phyllody disease in Punjab province, Pakistan. Eur J Plant Pathol. 149(1):117–125.
  • Ahmad S, Cheema HMN, Khan AA, Khan RSA, Ahmad JN. 2019. Resistance status of Helicoverpa armigera against Bt cotton in Pakistan. Transgenic Res. 28(2):199–212.
  • Ahmad JN*, Manzoor M, Aslam Z, Ahmad SJN. 2019. Molecular and enzymatic study on field evolved resistance of Red Palm Weevil (RPW) (Rhynchophorus ferruginous) and its management through RNAi in Pakistan. Pak J Zool. 52(2):477–486.
  • Ahmad JN*, Mushtaq R, Ahmad SJN, Maqsood S, Ahuja I, Bones AM. 2018. Molecular identification and pathological characteristics of native isolated NPV against Spodoptera litura (Fabricius) in Pakistan. PJZ. 50(6):2229–2237.
  • Ahmad JN, Mushtaq R, Ahmad SJN, Maqsood S, Ahuja I, Bones AM. 2018. Molecular identification and pathological characteristics of NPV isolated from Spodoptera litura (Fabricius) in Pakistan. Pak J Zool. 50(6):2229–2237.
  • Ahmad N, Sharma S. 2012. Green synthesis of silver nanoparticles using extracts of Ananas comosus. Green Sustain Chem. 2(4):7.
  • Ansari M, Khan H, Khan A. 2011. Evaluation of antibacterial activity of silver nanoparticles against MSSA and MSRA on isolates from skin infections. Biol Med. 3(2):141–146.
  • Benn TM, Westerhoff P. 2008. Nanoparticle silver released into water from commercially available sock fabrics. Environ Sci Technol. 42(11):4133–4139.
  • Chakravarthy A, Kandakoor S, Atanu B, Dhanabala K, Gurunatha K, Ramesh P. 2012. Bio efficacy of inorganic nanoparticles CdS, nano-Ag and nano-TiO2 against Spodoptera litura (Fabricius) (Lepidoptera: Noctuidae). Current Biotica. 6(3):271–281.
  • Chandran SP, Chaudhary M, Pasricha R, Ahmad A, Sastry M. 2006. Synthesis of gold nanotriangles and silver nanoparticles using Aloevera plant extract. Biotechnol Prog. 22(2):577–583.
  • Chau C-F, Wu S-H, Yen G-C. 2007. The development of regulations for food nanotechnology. Trends Food Sci Technol. 18(5) :269–280.
  • Chinnaperumal K, Govindasamy B, Paramasivam D, Dilipkumar A, Dhayalan A, Vadivel A, Sengodan K, Pachiappan P. 2018. Bio-pesticidal effects of Trichoderma viride formulated titanium dioxide nanoparticle and their physiological and biochemical changes on Helicoverpa armigera (Hub.). Pestic Biochem Physiol. 149:26–36.
  • Daniel S, Kumar R, Sathish V, Sivakumar M, Sunitha S, Sironmani TA. 2011. Green synthesis (Ocimum tenuiflorum) of silver nanoparticles and toxicity studies in zebra fish (Danio rerio) model. Int J NanoSci Nanotechnol. 2:103–117.
  • Dwivedi AD, Gopal K. 2010. Biosynthesis of silver and gold nanoparticles using Chenopodium album leaf extract. Colloids Surf, A. 369(1-3):27–33.
  • Elumalai E, Prasad T, Hemachandran J, Therasa SV, Thirumalai T, David E. 2010. Extracellular synthesis of silver nanoparticles using leaves of Euphorbia hirta and their antibacterial activities. J Pharm Sci Res. 2(9):549–554.
  • Eslin P, Prévost G. 1998. Hemocyte load and immune resistance to Asobara tabida are correlated in species of the Drosophila melanogaster subgroup. J Insect Physiol. 44(9):807–816.
  • Francis S, Joseph S, Koshy EP, Mathew B. 2018. Microwave assisted green synthesis of silver nanoparticles using leaf extract of Elephantopus scaber and its environmental and biological applications. Artif Cells Nanomed Biotechnol. 46(4):795–804.
  • Gardea-Torresdey JL, Gomez E, Peralta-Videa JR, Parsons JG, Troiani H, Jose-Yacaman M. 2003. Alfalfa sprouts: a natural source for the synthesis of silver nanoparticles. Langmuir. 19(4):1357–1361.
  • Gurunathan S, Han JW, Kwon D-N, Kim J-H. 2014. Enhanced antibacterial and anti-biofilm activities of silver nanoparticles against Gram-negative and Gram-positive bacteria. Nanoscale Res Lett. 9(1):373.
  • Huang J, Li Q, Sun D, Lu Y, Su Y, Yang X, Wang H, Wang Y, Shao W, He N, et al. 2007. Biosynthesis of silver and gold nanoparticles by novel sundried Cinnamomum camphora leaf. Nanotechnology. 18(10):105104.
  • Jafir M, Ahmad JN, Arif MJ, Ali S, Ahmad SJN. 2021. Characterization of Ocimum basilicum synthesized silver nanoparticles and its relative toxicity to some insecticides against tobacco cutworm, Spodoptera litura Feb. (Lepidoptera; Noctuidae). Ecotoxicol Environ Saf. 218:112278.
  • Jain D, Daima HK, Kachhwaha S, Kothari S. 2009. Synthesis of plant-mediated silver nanoparticles using papaya fruit extract and evaluation of their anti microbial activities. Digest J Nanomater Biostruct. 4(3):557–563.
  • Kantrao S, Ravindra MA, Akbar S, Jayanthi PK, Venkataraman A. 2017. Effect of biosynthesized silver nanoparticles on growth and development of Helicoverpa armigera (Lepidoptera: Noctuidae): interaction with midgut protease. J Asia-Pac Entomol. 20(2):583–589.
  • Kothari S, Bhattacharya A, Singh C, Singh K, Syamasundar K, Ramesh S, Kumar S. 2000. A new methyl eugenol-rich and short duration strain of Ocimum tenuiflorum. 22(4a):385–388. http://doi.org/10.3389/fmicb.2016.00681.
  • Kumar PV, Pammi S, Kollu P, Satyanarayana K, Shameem U. 2014. Green synthesis and characterization of silver nanoparticles using Boerhaavia diffusa plant extract and their anti-bacterial activity. Ind Crops Prod. 52:562–566.
  • Laakso I, Seppänen-Laakso T, Herrmann-Wolf B, Kühnel N, Knobloch K. 1990. Constituents of the essential oil from the holy basil or tulsi plant, Ocimum sanctum. Planta Med. 56(06):527–527.
  • Leela A, Vivekanandan M. 2008. Tapping the unexploited plant resources for the synthesis of silver nanoparticles. Afr J Biotechnol. 7(17).
  • Li S, Shen Y, Xie A, Yu X, Qiu L, Zhang L, Zhang Q. 2007. Green synthesis of silver nanoparticles using Capsicum annuum L. extract. Green Chem. 9(8):852–858.
  • Lu H, Zhang H, Yu X, Zeng S, Yong K-T, Ho H-P. 2012. Seed-mediated plasmon-driven regrowth of silver nanodecahedrons (NDs). Plasmonics. 7(1):167–173.
  • Mahata S, Maru S, Shukla S, Pandey A, Mugesh G, Das BC, Bharti AC. 2012. Anticancer property of Bryophyllum pinnata (Lam.) Oken. leaf on human cervical cancer cells. BMC Complement Altern Med. 12(1):15.
  • Malik ST, Ahmad JN, Sharif MZ, Trebicki P, Tahir M, Bertaccini A. 2020. Molecular detection and characterisation of phytoplasma in trigonella foenum-graecum and identification of potential insect vectors in Punjab, Pakistan. Pak J Bot. 52(5):1605–1613.
  • Mashwani Z-U-R, Khan T, Khan MA, Nadhman A. 2015. Synthesis in plants and plant extracts of silver nanoparticles with potent antimicrobial properties: current status and future prospects. Appl Microbiol Biotechnol. 99(23):9923–9934.
  • Mittal AK, Tripathy D, Choudhary A, Aili PK, Chatterjee A, Singh IP, Banerjee UC. 2015. Bio-synthesis of silver nanoparticles using Potentilla fulgens Wall. ex Hook. and its therapeutic evaluation as anticancer and antimicrobial agent. Mater Sci Eng C. 53:120–127.
  • Mondal S, Mirdha BR, Mahapatra SC. 2009. The science behind sacredness of Tulsi (Ocimum sanctum Linn.). Indian J Physiol Pharmacol. 53(4):291–306.
  • Morales-Luckie RA, Lopezfuentes-Ruiz AA, Olea-Mejía OF, Liliana A-F, Sanchez-Mendieta V, Brostow W, Hinestroza JP. 2016. Synthesis of silver nanoparticles using aqueous extracts of Heterotheca inuloides as reducing agent and natural fibers as templates: Agave lechuguilla and silk. Mater Sci Eng C. 69:429–436.
  • Morones JR, Elechiguerra JL, Camacho A, Holt K, Kouri JB, Ramírez JT, Yacaman MJ. 2005. The bactericidal effect of silver nanoparticles. Nanotechnology. 16(10):2346–2353.
  • Nasir E, Ali SI. 1970. Flora of West Pakistan: Karachi: Fakhri Printing Press.
  • Parashar V, Parashar R, Sharma B, Pandey AC. 2009. Parthenium leaf extract mediated synthesis of silver nanoparticles: a novel approach towards weed utilization. Digest J Nanomater Biostruct (DJNB). 4(1):45–50.
  • Prakash P, Gupta N. 2005. Therapeutic uses of Ocimum sanctum Linn (Tulsi) with a note on eugenol and its pharmacological actions: a short review. Indian J Physiol Pharmacol. 49(2):125.
  • Qamar SUR, Ahmad JN. 2021. Nanoparticles: mechanism of biosynthesis using plant extracts, bacteria, fungi, and their applications. J Mol Liq. 334:116040.
  • Rajkumar R, Shivakumar MS, Nathan SS, Selvam K. 2019. Preparation and characterization of chitosan nanocomposites material using silver nanoparticle synthesized Carmona retusa (Vahl) masam leaf extract for antioxidant, anti-cancerous and insecticidal application. J Clust Sci. 30(4):1145–1155.
  • Rana S, Ghanapriya K, Priadharsini K, Rajagopal K, Kalaichelvan P. 2014. Photocatalytic degradation of procion bright turquoise mx-g dye using biogenic silver nanoparticles (AgNPs) synthesized from Alpinia calcarta rosc. Indo Am J Pharma Res. 4:1280–1288.
  • Rout Y, Behera S, Ojha AK, Nayak P. 2012. Green synthesis of silver nanoparticles using Ocimum sanctum (Tulashi) and study of their antibacterial and antifungal activities. J Microbiol Antimicrob. 4(6):103–109.
  • Sangaonkar GM, Pawar KD. 2018. Garcinia indica mediated biogenic synthesis of silver nanoparticles with antibacterial and antioxidant activities. Colloids Surf B Biointerfaces. 164:210–217.
  • Santhoshkumar T, Rahuman AA, Rajakumar G, Marimuthu S, Bagavan A, Jayaseelan C, Zahir AA, Elango G, Kamaraj C. 2011. Synthesis of silver nanoparticles using Nelumbo nucifera leaf extract and its larvicidal activity against malaria and filariasis vectors. Parasitol Res. 108(3):693–702.
  • Saware K, Venkataraman A. 2014. Biosynthesis and characterization of stable silver nanoparticles using Ficus religiosa leaf extract: a mechanism perspective. J Clust Sci. 25(4):1157–1171.
  • Saxena A, Tripathi R, Zafar F, Singh P. 2012. Green synthesis of silver nanoparticles using aqueous solution of Ficus benghalensis leaf extract and characterization of their antibacterial activity. Mater Lett. 67(1):91–94.
  • Schneidewind H, Schüler T, Strelau KK, Weber K, Cialla D, Diegel M, Mattheis R, Berger A, Möller R, Popp J. 2012. The morphology of silver nanoparticles prepared by enzyme-induced reduction. Beilstein J Nanotechnol. 3(1):404–414.
  • Shankar SS, Rai A, Ahmad A, Sastry M. 2004. Rapid synthesis of Au, Ag, and bimetallic Au core-Ag shell nanoparticles using Neem (Azadirachta indica) leaf broth. J Colloid Interface Sci. 275(2):496–502.
  • Shankar SS, Rai A, Ahmad A, Sastry M. 2005. Controlling the optical properties of lemongrass extract synthesized gold nanotriangles and potential application in infrared-absorbing optical coatings. Chem Mater. 17(3):566–572.
  • Sharma K, Guleria S, Razdan VK. 2020. Green synthesis of silver nanoparticles using Ocimum gratissimum leaf extract: characterization, antimicrobial activity and toxicity analysis. J Plant Biochem Biotechnol. 29(2):213–224.
  • Singhal G, Bhavesh R, Kasariya K, Sharma AR, Singh RP. 2011. Biosynthesis of silver nanoparticles using Ocimum sanctum (Tulsi) leaf extract and screening its antimicrobial activity. J Nanopart Res. 13(7):2981–2988.
  • Sivakumar M, Surendar S, Jayakumar M, Seedevi P, Sivasankar P, Ravikumar M, Anbazhagan M, Murugan T, Siddiqui SS, Loganathan S. 2021. Parthenium hysterophorus mediated synthesis of silver nanoparticles and its evaluation of antibacterial and antineoplastic activity to combat liver cancer cells. J Clust Sci. 32(1):111–167.
  • Suman T, Rajasree SR, Kanchana A, Elizabeth SB. 2013. Biosynthesis, characterization and cytotoxic effect of plant mediated silver nanoparticles using Morinda citrifolia root extract. Colloids Surf B Biointerfaces. 106:74–78.
  • Suresh U, Murugan K, Benelli G, Nicoletti M, Barnard DR, Panneerselvam C, Kumar PM, Subramaniam J, Dinesh D, Chandramohan B. 2015. Tackling the growing threat of dengue: Phyllanthus niruri-mediated synthesis of silver nanoparticles and their mosquitocidal properties against the dengue vector Aedes aegypti (Diptera: Culicidae). Parasitol Res. 114(4):1551–1562.
  • Velmurugan P, Anbalagan K, Manosathyadevan M, Lee K-J, Cho M, Lee S-M, Park J-H, Oh S-G, Bang K-S, Oh B-T. 2014. Green synthesis of silver and gold nanoparticles using Zingiber officinale root extract and antibacterial activity of silver nanoparticles against food pathogens. Bioprocess Biosyst Eng. 37(10):1935–1943.
  • Verma A, Mehata MS. 2016. Controllable synthesis of silver nanoparticles using Neem leaves and their antimicrobial activity. J Radiat Res Appl Sci. 9(1):109–115.
  • Vivek R, Thangam R, Muthuchelian K, Gunasekaran P, Kaveri K, Kannan S. 2012. Green biosynthesis of silver nanoparticles from Annona squamosa leaf extract and its in vitro cytotoxic effect on MCF-7 cells. Process Biochem. 47(12):2405–2410.
  • Wang L, Liu C-C, Wang Y-Y, Xu H, Su H, Cheng X. 2016. Antibacterial activities of the novel silver nanoparticles biosynthesized using Cordyceps militaris extract. Curr Appl Phys. 16(9):969–973.
  • Waris M, Nasir S, Abbas S, Azeem M, Ahmad B, Khan NA, Hussain B, Al-Ghanim KA, Al-Misned F, Mulahim N, et al. 2020. Evaluation of larvicidal efficacy of Ricinus communis (Castor) and synthesized green silver nanoparticles against Aedes aegypti L. Saudi J Biol Sci. 27(9):2403–2409.

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