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Articles

Development and butyrylcholinesterase/monoamine oxidase inhibition potential of PVA-Moringa oleifera developed nanofibers

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Pages 34-46 | Received 31 Aug 2021, Accepted 24 Nov 2021, Published online: 20 Dec 2021

References

  • Pourabadeh A, Mirjalili M, Shahvazian M. Modification of silk fibroin nanofibers scaffold by PAMAM dendrimer for cell culture. J Exp Nanosci. 2020;15(1):297–306.
  • Huang Y, Zhu C, Xie R, et al. Green synthesis of nickel nanoparticles using Fumaria officinalis as a novel chemotherapeutic drug for the treatment of ovarian cancer. J Exp Nanosci. 2021;16(1):369–382.
  • Abbas S, Chang D, Riaz N, et al. In-vitro stress stability, digestibility and bioaccessibility of curcumin-loaded polymeric nanocapsules. J Exp Nanosci. 2021;16(1):230–246.
  • Vergara-Jimenez M, Almatrafi MM, Fernandez ML. Bioactive components in Moringa oleifera leaves protect against chronic disease. Antioxidants. 2017;6(4):91.
  • Alam F, Shafique Z, Amjad ST, et al. Enzymes inhibitors from natural sources with antidiabetic activity: a review. Phytother Res. 2019;33(1):41–54.
  • Fais A, Era B, Di Petrillo A, et al. 2018). Selected enzyme inhibitory effects of euphorbia characias extracts. Biomed Res Int. 2018;2018:1219367.
  • Sofi HS, Rashid R, Amna T, et al. Recent advances in formulating electrospun nanofiber membranes: Delivering active phytoconstituents. J Drug Delivery Sci Technol. 2020;60:102038. Volume
  • Amna R, Ali K, Malik MI, et al. A brief review of electrospinning of polymer nanofibers: history and main applications: a brief review of electrospinning of polymer nanofibers: history and main applications. 2020;23(3):151–163.
  • Sagadevan S, Vennila S, Muthukrishnan L, et al. Exploring the therapeutic potentials of phyto-mediated silver nanoparticles formed via Calotropis procera (ait.) R. Br. root extract. J Exp Nanosci. 2020;15(1):217–231.
  • Gugulothu D, Barhoum A, Nerella R, et al. Fabrication of nanofibers: electrospinning and non-electrospinning techniques. Barhoum A, Bechelany M, Makhlouf ASH, editors, Handbook of nanofibers. 2019. p. 45–77. Switzerland: Springer Nature.
  • Zhang C, Li Y, Wang P, et al. Electrospinning of nanofibers: Potentials and perspectives for active food packaging. Compr Rev Food Sci Food Saf . 2020;19(2):479–502.
  • Begum HA, Khan K. Study on the various types of needle based and needleless electrospinning system for nanofiber production. Int J Text Sci. 2017;6:110–117.
  • Santhoshkumar R, Hima Parvathy A, Soniya EV. Phytosynthesis of silver nanoparticles from aqueous leaf extracts of Piper colubrinum: characterisation and catalytic activity. J Exp Nanosci. 2021;16(1):295–309.
  • Chen Y-P, Liu H-Y, Liu Y-W, et al. Determination of electrospinning parameters’ strength in poly (D, L)-lactide-co-glycolide micro/nanofiber diameter tailoring. J Nanomater . 2019;2019:1–8.
  • Nisar B, Sultan A, Rubab S. Comparison of medicinally important natural products versus synthetic drugs-a short commentary. Nat Prod Chem Res. 2018;6:308.
  • Dar RA, Shahnawaz M, Qazi PH, General overview of medicinal plants: a review. J Phytopharmacol. 2017;6(6):349–351.
  • Fonmboh DJ, Abah ER, Fokunang TE, et al. An overview of methods of extraction, isolation and characterization of natural medicinal plant products in improved traditional medicine research. AJRIMPS. 2020;9(2):31–57.
  • Ardekani NT, Khorram M, Zomorodian K, et al. Evaluation of electrospun poly (vinyl alcohol)-based nanofiber mats incorporated with Zataria multiflora essential oil as potential wound dressing. Int J Biol Macromol. 2019;125:743–750.
  • Mumtaz A, Majeed A, Zaib S, et al. Investigation of potent inhibitors of cholinesterase based on thiourea and pyrazoline derivatives: synthesis, inhibition assay and molecular modeling studies. Bioorg Chem. 2019;90:103036.
  • Fayemi OE, Ekennia AC, Katata-Seru L, et al. Antimicrobial and wound healing properties of polyacrylonitrile-moringa extract nanofibers. ACS Omega. 2018;3(5):4791–4797.
  • Hikmawati D, Rohmadanik A, Putra A. In the effect of aloe vera extract variation in electrospun polyvinyl alcohol (PVA)-aloe vera-based nanofiber membrane. J Phys Conf Series IOP Publ. 2018;012096.
  • Larit F, Elokely KM, Chaurasiya ND, et al. Inhibition of human monoamine oxidase a and B by flavonoids isolated from two Algerian medicinal plants. Phytomedicine. 2018;40:27–36.
  • Mathew B, Suresh J, Mathew E, et al. Plant secondary metabolites-potent inhibitors of monoamine oxidase isoforms. CNSAMC. 2014;14(1):28–33.
  • Thamer BM, Esmail GA, Al-Dhabi NA, et al. Fabrication of biohybrid electrospun nanofibers for the eradication of wound infection and drug-resistant pathogens. Colloids Surf, A. 2021;609:125691.
  • Abdel Bary E, Soliman YA, Fekri A, et al. Aging of novel membranes made of PVA and cellulose nanocrystals extracted from Egyptian rice husk manufactured by compression moulding process. Int J Environ Stud . 2018;75(5):750–762.
  • Hong X, Zou L, Zhao J, et al. In dry-wet spinning of PVA fiber with high strength and high young’s modulus. IOP Conf Ser Mater Sci Eng. 2018;439:042011.
  • Kebede TG, Dube S, Nindi MM. Fabrication and characterization of electrospun nanofibers from Moringa stenopetala seed protein. Mater Res Express. 2018;5(12):125015.
  • Kim SJ, Young Kim T, Kang BH, et al. Fabrication of graphene oxide/montmorillonite nanocomposite flexible thin films with improved gas-barrier properties. RSC Adv. 2018;8(68):39083–39089.
  • Marmur A, Della Volpe C, Siboni S, et al. Contact angles and wettability: towards common and accurate terminology. Surf Innovations . 2017;5(1):3–8.