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Research Articles

Synthesis and Characterization of Some Chitosan-Quinoline Nanocomposites as Potential Insecticidal Agents

ORCID Icon, ORCID Icon, , ORCID Icon & ORCID Icon
Pages 7013-7026 | Received 08 Jul 2022, Accepted 21 Sep 2022, Published online: 11 Oct 2022

References

  • A.I. Qureshi and R.D. Cohen, “Mesalamine Delivery Systems: Do They Really Make Much Difference?,” Advanced Drug Delivery Reviews 57, no. 2 (2005): 281–302.
  • M.N. Kumar, “A Review of Chitin and Chitosan Applications,” Reactive and Functional Polymers 46 (2000): 1–27.
  • M L. Lorenzo-Lamosa, C. Remuñán-López, J.L. Vila-Jato, and M.J. Alonso, “Design of Microencapsulated Chitosan Microspheres for Colonic Drug Delivery,” Journal of Controlled Release 52, no. 1–2 (1998): 109–18.
  • A. Anitha, S. Maya, N. Deepa, K.P. Chennazhi, S.V. Nair, H. Tamura, and R. Jayakumar, “Efficient Water Soluble O-Carboxymethyl Chitosan Nanocarrier for the Delivery of Curcumin to Cancer Cells,” Carbohydrate Polymers 83, no. 2 (2011): 452–61.
  • H. Mansour, A.I. Khodair, S.M. Elsiginy, and A.E. Elghanam, “Design, Synthesis, Characterization and Biological Evaluation of Thieno[2,3 − b]Pyridines − Chitosan Nanocomposites as Drug Delivery Systems for Colon Targeting,” Carbohydrate Research 492 (2020): 107990–9.
  • H.A. Fetouh, A.M. Ismail, H. Abdel Hamid, and M.O. Bashier, “Synthesis of Promising Nanocomposites from an Antitumor and Biologically Active Heterocyclic Compound Uploaded by Clay and Chitosan Polymers,” International Journal of Biological Macromolecules 137 (2019): 1211–20.
  • S. Jana and S. Jana, Eds., Functional Chitosan (2019). Springer Nature eBook. doi: 10.1007/978-981-15-0263-7
  • N. Selvasudha, J.P. Sweety, U.M. Dhanalekshmi, and K. Ruckmani, “Chitosan-Based Nanocomposite as Targeted Drug Delivery Carrier,” In Jana, S., Jana, S. (Eds.), Marine Biomaterials. Singapore: Springer. https://doi.org/10.1007/978-981-16-4787-1_4.
  • S. Dey, M.S. Hasnain, and A.K. Nayak, “Chitosan Nanocomposites for Biomedical Applications,” in Chitosan in Biomedical Applications (Elsevier Inc, Academic Press, 2022), 111–38.
  • A. Ali, and S. Ahmed, “A Review on Chitosan and Its Nanocomposites in Drug Delivery,” International Journal of Biological Macromolecules 109 (2018): 273–86.
  • A.A. Maamoun, and A.A. Mahmoud, “Exploring the Mechanical and Bacterial Prospects of Flexible Polyurethane Foam with Chitosan,” Cellulose 29, no. 11 (2022): 6323–38.
  • A.K. El-Ziaty, W.S.I. Abou-Elmagd, S.K. Ramadan, and A.I. Hashem, “Synthesis and Biological Screening of Some Chromonyl-Substituted Heterocycles Derived from 2(3H)-Furanone Derivative,” Synthetic Communications 47, no. 5 (2017): 471–80.
  • A.I. Hashem, A.S.A. Youssef, K.A. Kandeel, and W.S.I. Abou-Elmagd, “Conversion of Some 2(3H)-Furanones Bearing a Pyrazolyl Group into Other Heterocyclic Systems with a Study of Their Antiviral Activity,” European Journal of Medicinal Chemistry 42, no. 7 (2007): 934–9.
  • W.S.I. Abou-Elmagd and A.I. Hashem, “Synthesis of 1-Amidoalkyl-2-Naphthols and Oxazine Derivatives with Study of Their Antibacterial and Antiviral Activities,” Medicinal Chemistry Research 22, no. 4 (2013): 2005–13.
  • H.H. Sayed, A.I. Hashem, N.M. Yousif, and W.A. El-Sayed, “Conversion of 3-Arylazo-5-Phenyl-2(3H)-Furanones into Other Heterocycles of Anticipated Biological Activity,” Archiv Der Pharmazie 340, no. 6 (2007): 315–9.
  • A.R. Morsy, S.K. Ramadan, and M.M. Elsafty, “Synthesis and Antiviral Activity of Some Pyrrolonyl Substituted Heterocycles as Additives to Enhance Inactivated Newcastle Disease Vaccine,” Medicinal Chemistry Research 29, no. 6 (2020): 979–88.
  • S.K. Ramadan, S.S. Shaban, and A.I. Hashem, “Facile and Expedient Synthesis and anti-Proliferative Activity of Diversely Pyrrolones Bearing 1,3-Diphenylpyrazole Moiety,” Synthetic Communications 50, no. 2 (2020): 185–96.
  • E.A.E. El‐Helw, A.R. Morsy, and A.I. Hashem, “Evaluation of Some New Heterocycles Bearing 2‐Oxoquinolyl Moiety as Immunomodulator against Highly Pathogenic Avian Influenza Virus (H5N8),” Journal of Heterocyclic Chemistry 58, no. 4 (2021): 1003–14.
  • E.A.E. El-Helw and A.I. Hashem, “Synthesis and Antitumor Activity Evaluation of Some Pyrrolone and Pyridazinone Heterocycles Derived from 3-((2-Oxo-5-(p-Tolyl)Furan-3(2H)-Ylidene)Methyl)Quinolin-2(1H)-One,” Synthetic Communications 50, no. 7 (2020): 1046–55.
  • C. Fernández-Galleguillos, L.A. Saavedra, and M. Gutierrez, “Synthesis of New 3-(2-Chloroquinolin-3-yl)-5-Phenylisoxazole Derivatives via Click-Chemistry Approach,” Journal of the Brazilian Chemical Society 25 (2014): 365–71.
  • E.A. Ghareeb, N.F. Mahmoud, E.A. El-Bordany, and E.A.E. El-Helw, “Synthesis, DFT, and Eco-Friendly Insecticidal Activity of Some N-Heterocycles Derived from 4-((2-Oxo-1,2-Dihydroquinolin-3-yl)Methylene)-2-Phenyloxazol-5(4H)-One,” Bioorganic Chemistry 112 (2021): 104945.
  • I. Radini, T. Elsheikh, E. El-Telbani, and R. Khidre, “New Potential Antimalarial Agents: Design, Synthesis and Biological Evaluation of Some Novel Quinoline Derivatives as Antimalarial Agents,” Molecules 21, no. 7 (2016): 909.
  • A.M. El-Naggar and S.K. Ramadan, “Efficient Synthesis of Some Pyrimidine and Thiazolidine Derivatives Bearing Quinoline Scaffold under Microwave Irradiation,” Synthetic Communications. 50, no. 14 (2020): 2188–98.
  • M.M. Kaddah, A.R.I. Morsy, A.A. Fahmi, M.M. Kamel, M.M. Elsafty, S.A. Rizk, and S.K. Ramadan, “Synthesis and Biological Activity on IBD Virus of Diverse Heterocyclic Systems Derived from 2-cyano-N'-((2-Oxo-1,2-Dihydroquinolin-3-yl)Methylene)Acetohydrazide,” Synthetic Communications. 51, no. 22 (2021): 3366–78.
  • K.N.M. Halim, S.A. Rizk, M.A. El-Hashash, and S.K. Ramadan, “Straightforward Synthesis, Antiproliferative Screening, and Density Functional Theory Study of Some Pyrazolylpyrimidine Derivatives,” Journal of Heterocyclic Chemistry 58, no. 2 (2021): 636–45.
  • (a) V.R. Solomon and H. Lee, “Quinoline as a Privileged Scaffold in Cancer Drug Discovery,” Current Medicinal Chemistry 18, no. 10 (2011): 1488–508; (b) M.M. Kaddah, A.A. Fahmi, M.M. Kamel, S.A. Rizk, and S.K. Ramadan, “Rodenticidal Activity of Some Quinoline-Based Heterocycles Derived from Hydrazide–Hydrazone Derivative,” Polycyclic Aromatic Compound (2022). doi: 10.1080/10406638.2022.2088576
  • L. Cheng, P.‐P. Cai, R.‐R. Zhang, L. Han, C.‐X. Tan, J.‐Q. Weng, T.‐M. Xu, and X.‐H. Liu, “Synthesis and Insecticidal Activity of New Quinoline Derivatives Containing Perfluoropropanyl Moiety,” Journal of Heterocyclic Chemistry 56, no. 4 (2019): 1312–7.
  • J. Sowmya, B. Padma, and P. Leelavathi, “Quinoline and 2-Nitroimino-1, 3-Diazacycloalkane Hybrids: Design, Synthesis and Insecticidal Activity,” Journal of the Indian Chemical Society. 99, no. 1 (2022): 100279.
  • (a) M. R. Mahmoud, W. S. I. Abou-Elmagd, H. A. Derbala, M. H. Hekal, “Synthesis and Spectral Characterisation of Some Phthalazinone Derivatives,” Journal of Chemical Research 36, no. 2 (2012): 75–82; (b) S.K. Ramadan, A.K. El-Ziaty, and E.A.E. El-Helw, “Synthesis and Antioxidant Evaluation of Some Heterocyclic Candidates from 3-(1,3-Diphenyl-1H-Pyrazol-4-yl)-2-(4-Oxo-4H-Benzo[d][1,3]Oxazin-2-yl)Propenonitrile,” Synthetic Communication 51 (2021): 1272–1283.
  • W.S.I. Abou-Elmagd and A.I. Hashem, “Novel Synthesis of Some Isatin Hydrazones and Pyridazinophthalazines,” Synthetic Communications 43, no. 8 (2013): 1083–91.
  • (a) M.R. Mahmoud, W.S.I. Abou-Elmagd, H.A. Derbala, and M.H. Hekal, “Novel Synthesis of Some Phthalazinone Derivatives,” Chinese Journal of Chemistry 29, no. 7 (2011): 1446–1450. (b) A.M. Youssef, A.K. El‐Ziaty, W.S.I. Abou‐Elmagd, and S.K. Ramadan, “Novel Synthesis of Some Imidazolyl‐, Benzoxazinyl, and Quinazolinyl‐2,4‐Dioxothiazolidine Derivatives,” Journal of Heterocyclic Chemistry 52 (2015): 278–283.
  • M.M. Kaddah, A.A. Fahmi, M.M. Kamel, S.K. Ramadan, and S.A. Rizk, “Synthesis, Characterization, Computational Chemical Studies and Antiproliferative Activity of Some Heterocyclic Systems Derived from 3-(3-(1,3-Diphenyl-1 H-Pyrazol-4-yl) Acryloyl)-2H-Chromen-2-One,” Synthetic Communications 51, no. 12 (2021): 1798–813.
  • M.R. Mahmoud, M.M. El-Shahawi, W.S.I. Abou-Elmagd, and M.H. Hekal, “Novel Synthesis of Isoquinoline Derivatives Derived from (Z)-4-(1,3-Diphenylpyrazol-4-yl)Isochromene-1,3-Dione,” Synthetic Communications 45, no. 14 (2015): 1632–41.
  • S.R. Atta-Allah, W.S.I. Abou-Elmagd, K.A. Kandeel, M.M. Hemdan, D.S. Haneen, and A.S. Youssef, “Synthesis and Antimicrobial Activity Evaluation of Some Novel Hydrazone, Pyrazolone, Chromenone, 2-Pyridone and 2-Pyrone Derivatives,” Journal of Chemical Research 41, no. 11 (2017): 617–23.
  • S.K. Ramadan, N.A. Ibrahim, S.A. El-Kaed, and E.A.E. El-Helw, “New Potential Fungicides Pyrazole-Based Heterocycles Derived from 2-Cyano-3-(1,3-Diphenyl-1H-Pyrazol-4-yl) Acryloyl Isothiocyanate,” Journal of Sulfur Chemistry 42, no. 5 (2021): 529–46.
  • H.E. Hashem, D.S. Haneen, K.F. Saied, and A.S. Youssef, “Synthesis of New Annulated Pyridazine Derivatives and Studying Their Antioxidant and Antimicrobial Activities,” Synthetic Communications 49, no. 22 (2019): 3169–80.
  • N.M. Gad, W.S.I. Abou-Elmagd, D.S. Haneen, and S.K. Ramadan, “Reactivity of 5-Phenyl-3-[(2-Chloroquinolin-3-yl)Methylene] Furan-2(3H)-One towards Hydrazine and Benzylamine: A Comparative Study,” Synthetic Communications 51, no. 9 (2021): 1384–97.
  • S.K. Ramadan, D.R. Abdel Haleem, H.S.M. Abd-Rabboh, N.M. Gad, W.S.I. Abou-Elmagd, and D.S. Haneen, “Synthesis, SAR Studies, and Insecticidal Activities of Certain N-Heterocycles Derived from 3-((2-Chloroquinolin-3-yl)Methylene)-5-Phenylfuran-2(3H)-One against Culex pipiens L. larvae,” RSC Advances 12, no. 22 (2022): 13628–38.
  • H. Mansour, “Thiophenethieno[2,3-b]Pyridine-Chitosan Nanorods; Synthesis, Characterization, BSA-Binding and Kinetic Interactions with BSA, Antibacterial and in-Vitro Release Studies,” Journal of Molecular Structure 1219 (2020): 128611.
  • M.M. El-Naggar, D.S. Haneen, A.B. Mehany, and M.T. Khalil, “New Synthetic Chitosan Hybrids Bearing Some Heterocyclic Moieties with Potential Activity as Anticancer and Apoptosis Inducers,” International Journal of Biological Macromolecules 150 (2020): 1323–30.
  • X. Yu, Y. Liu, Y. Li, and Q. Wang, “Design, Synthesis, and Acaricidal/Insecticidal Activities of Oxazoline Derivatives Containing a Sulfur Ether Moiety,” Journal of Agricultural and Food Chemistry 63, no. 44 (2015): 9690–5.
  • R. Xu, R. Xia, M. Luo, X. Xu, J. Cheng, X. Shao, and Z. Li, “Design, Synthesis, Crystal Structures, and Insecticidal Activities of Eight-Membered Azabridge Neonicotinoid Analogues,” Journal of Agricultural and Food Chemistry 62, no. 2 (2014): 381–90.
  • P. Calvo, C. Remunan-Lopez, J.L. Vila-Jato, and M.J. Alonso, “Novel Hydrophilic Chitosan-Polyethylene Oxide Nanoparticles as Protein Carrier,” Journal of Applied Polymer Science 63, no. 1 (1997): 125–32.
  • W.S. Abbott, “A Method of Computing the Effectiveness of an Insecticide,” Journal of the American Mosquito Control Association 3, no. 2 (1987): 302–3.
  • M. Raymond, “Présentation d’un programme Basic d’analyse log-probit pour micro-ordinateur. Cah. ORSTOM,” Ser. Ent. Med. Parasitol 23 (1985): 117–21.

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